River sand GOST 8736 93 characteristics. Sand for construction work

Sieve mesh sizes, mm 2.5 1.25 0.63 0.315 0.16 m.016

partial residues on sieves, in % 0.9 6.2 5.8 18.9 46.8 21.4

total residues on sieves, in % 0.9 7.1 12.9 31.8 78.6 100

humidity step 1 2 3 4 5 6

bulk density of wet soil Yj 1.88 1.93 1.96 2.00 2.03 2.00

volumetric weight of the soil skeleton Yck 1.77 1.79 1.80 1.81 1.80 1.76

absolute soil moisture W% 5.64 6.58 8.87 10.30 12.52 13.50

Maximum density 1.81 g/cm3

Bulk density in natural state 1.54 g/cm3

Optimum humidity 10.3 2. Grain composition according to GOST 8735-88

3. Determination of the maximum density and optimum moisture content of the sand.

Results of laboratory tests according to GOST 22733-2002

Soil density versus moisture content graph

Passport data of sand

1. Qualitative characteristics according to GOST 8736-2014

optimal sand moisture content, sand filtration coefficient, m/day

Size modulus

total residue on the sieve 0.63, the presence of grains larger than 5 mm, the presence of grains larger than 10 mm, Building sand

sand group according to GOST 8736-2014 clause 4.3.2, tab. No. 1 Very fine, class 2

Repair Items:

RUR99

Model: Be2Me

Be2Me bottle with silicone teat from birth 250 ml blue. The feeding bottle in combination with a silicone milk nipple (S size, small flow) is designed to feed your baby from 0 months. It is equipped with a convex accurate scale with a convenient step - 30 ml. Use and care: before use, boil in an open container for no more than 3 minutes. After feeding, wash the products with warm soapy water and rinse thoroughly. The bottle is suitable for heating baby food in the microwave or warmer. Warm the bottle in the microwave for no more than 1 minute. and only in open form, without a nipple, ring and cap.

RUR3426

Model:

1. A. Altaev. Memorable meetings Altaev A. 2. A. N. Ostrovsky in the memoirs of contemporaries 3. A. P. Chekhov in the memoirs of contemporaries 4. A. Ya. Panaeva (Golovacheva). Memories of Panaev A. 5. V. G. Belinsky in the memoirs of contemporaries 6. V. G. Korolenko in the memoirs of contemporaries 7. V. Mayakovsky in the memoirs of contemporaries 8. Near Tolstoy Goldenweiser A. 9. Herzen in the memoirs of contemporaries 10. Gogol in memoirs contemporaries 11. D. V. Grigorovich D. V. Literary memoirs Grigorovich D. 12. I. I. Panaev. Literary memoirs Panaev I. 13. I. I. Pushchin. Notes on Pushkin. Pushchin's letters I. 14. From distant years Passek T. P. 15. L. N. Tolstoy in the memoirs of contemporaries (set of 2 books) 16. L. N. Tolstoy in the last year of his life Bulgakov N. 17. L. F Panteleev. Memoirs Panteleev L. F. 18. M. Gorky in the memoirs of contemporaries 19. M. Gorky. Literary portraits Gorky M. 20. M. K. Kuprina-Iordanskaya. Years of youth Kuprin-Iordanskaya M. 21. M. Yu. Lermontov in the memoirs of contemporaries 22. N. A. Tuchkova-Ogaryova. Memoirs of Tuchkov-Ogareva N. A. 23. N. V. Shelgunov, L. P. Shelgunova, M. L. Mikhailov. Memories (set of 2 books) 24. N. N. Zlatovratsky. Memoirs Zlatovratsky N. 25. Nikitenko A. V. Diary (set of 3 books) Nikitenko A. 26. Essays on the Past Tolstoy S. L. 27. P. V. Annenkov. Literary Memoirs Annenkov P. 28. P. D. Boborykin. Memories (set of 2 books) Boborykin P. 29. T. G. Shevchenko in the memoirs of contemporaries 30. F. M. Dostoevsky in the memoirs of contemporaries (set of 2 books)

RUR949

Model: Hasbro

Characteristics of the Skate Brunch Playset: - age: 4+ - gender: for boys and girls - set: 1 figurine, accessories. - material: plastic. - packaging size: 18 * 6.5 * 23 cm. - packaging: blister on cardboard. - country of brand owner: USA. The Trolls with Accessories play set is based on the new animated cartoon, which premiered in October 2016. The heroes of the cartoon get into trouble, from which they get out thanks to great courage and the ability to make friends. The set includes a figurine of one of the cartoon characters and accessories matching his character. The game set "Brunch with Skate" can be bought in our online store

RUR920

Model:

Venice is the most amazing and romantic city in the world, a city of canals and unusual original architecture, in which Byzantium, Gothic and Renaissance are intertwined. This book will help you see the invisible Venice - a city full of secrets and memories, where, according to Vladimir Nabokov: "... on the stone lips of a beautiful past / an unspoken word / an unfulfilled dream burns with a smile ..."

1329 07/27/2019 5 min.

Sand is a demanded material in the field of construction. Depending on the type of this product, it can be used in the manufacture of mortars, concrete, when laying a house, arranging a foundation. This is not the whole list of works in which sand can be used. This material is distinguished by the origin and size of the granules. To determine the choice of material, you need to carefully familiarize yourself with its features and classification.

Specifications

According to GOST 8736 93, the following technological characteristics have been developed for building sand:

  1. Granule size modulus is determined by using special trays in which dispersion of materials occurs. The cell sizes can vary from 0.16 to 5 mm. In the field of construction, sand is widely used, in which the fineness modulus will leave 1.2 mm
  2. Density- this is an indicator indicating the ratio of the volume of space between the granules to the total space occupied by the substance. This parameter depends on the configuration of the granules.
  3. Humidity level.
  4. Filtration coefficient suggests the ability of the material to filter water. It depends on the number of foreign impurities. The lowest values ​​for the crude material. The grain size also affects the filtration coefficient. For alluvial sand, this figure is 2-2.5 mm.
  5. Environmental friendliness. Sand has the 1st degree of radioactivity, for which the specific activity of radionuclides reaches 370 Bg/kg, which is a safe norm.
  6. Quantity of clay and silt. To determine the sand is subjected to the elutriation procedure. If the composition of the material contains a large amount of sifted additives, this will lead to a decrease in the strength characteristics of the finished product.
  7. Parameters such as density, voidness and moisture are interrelated. If the moisture content of the product reaches 10%, then the density increases, and if the moisture content exceeds 10%, then vice versa, it decreases. The same will be different.

How sand is used for construction work GOST 8736 2014 can be found in this

On the video - sand for construction work GOST 8736 93:

Material obtained artificially from quartz can be subjected to stonecrop and enrichment. As a result, it will be called molding. The size of its granules can reach 0.16-0.18 mm. The product is used in the manufacture of glass, ceramic parts, putties. Molding sand, in addition to conventional construction, is actively involved in the construction of water treatment facilities.

When the resulting materials have undergone heat treatment, porous sand is often used as a filler in the production of lightweight concrete mixes, as well as bulk insulation. The presented product can be used in the construction of agricultural facilities, roads, landscape design. will have different qualities.

Marble

This version of the artificial material can be used very rarely in the field of construction. As a rule, it is used in the production of ceramic tiles, tiles. This type of material is also widely used when decorating in landscape design and in various filters.

If we consider shungizite sand, then it is produced by crushing, in which burnt shungite was used as a raw material. It is used as a porous filler, which has excellent thermal insulation properties.

Career

This type of sand is natural. For its extraction, an open method is used. It contains various impurities, among which clay and dust particles can be noted. There are also a few stones. If the sand has not been processed, then it can only be used when pouring the area under the foundation.

In order to be used extensively, it must be washed or sieved to remove the weight of the impurities present. The sifted product can be used in plastering, foundation works, as well as in the production of asphalt concrete mixtures.

When rinsing was used to clean quarry sand, the finished product was called alluvial. During such processing, only small particles remain, the size of which is not more than 0.6 mm. Such a product can be used for interior cladding, in the manufacture of concrete and bricks.

If we consider quarry sand, the particle size of which exceeds 5 mm, then it is used in the manufacture of a solution, which will then be used in the installation of reinforced concrete structures. If you need to prepare a mortar for laying bricks, then you should use a material with a particle size of no more than 2.5 mm.

River

The presented type of natural sand is obtained from the bottom of the rivers. It contains no impurities, stones and clay. For this reason, the product is called universal. It can be used in the production of cement screeds, for the manufacture of concrete, in cleaning filters. When preparing a cement mortar, river sand settles much faster than quarry sand, therefore, it must be mixed very quickly. For this reason, river sand is often replaced with quarry sand.

Nautical

The extraction of this natural material is carried out from the bottom of the sea. The composition of the sand is not inferior to the river. During the additive process, the material undergoes a process of washing, thickening and enrichment. After that, hydromechanical processing awaits. Upon completion of all these manipulations, high quality sand is obtained. It is actively used in the preparation of building mixtures, screeds, plasters and masonry.

This natural material is characterized by high decorative qualities, since it contains uniform rounded grains of sand. But the cost of sea sand is not so low already, so today they are trying to find a newer method of extracting it in order to lower the cost.

Sand is an important element in the performance of various construction works. Thanks to him, it is possible to obtain a mortar for masonry, foundation. But for each branch of construction there is its own type of material, which differs not only in origin, but also in the size of grains of sand.

GOST 8736 is a standard that is supported and defined in most CIS countries. This standard is applicable only to material of natural, natural origin and one that is obtained as a result of screening of sand during the grinding of hard, rocks.

In the latter case, the true density is in the range of 2.0-2.8 g/cm. The purpose is to be used as a filler for heavy, light and other types of concrete. It is used as a filler for roads, construction of structures.

Links to Sand Standards

As part of the decision some references to other GOSTs are used:

  • GOST number 8267 93 - it contains standards for dense rocks of mountains and work with crushed stone, gravel obtained in this way. whitepaper;
  • GOST number 8269.0 97 - Crushed stone, which is obtained when working with hard rocks and secondary raw materials obtained from construction. Test calculations;
  • GOST number 8735 88 - the use of sand in production, methods of its testing;
  • GOST number 30108 94 - the document defines the conditions for the specific type of radionuclides.

Definitions

Sand happens several types, for a qualitative understanding of the essence of the issue, it is necessary to familiarize yourself with the main differences:

  • natural sand. A material that has a free-flowing state, while it is inorganic. Grains reach a size of 5 mm. Sand is obtained as a result of the natural crushing of rocks. It is obtained by mining from sandy deposits or mixed with gravel;
  • special enrichment equipment may be used;
  • crushed. The grain size does not differ and is less than 5 mm. It is made by a person using special equipment of a crushing and grinding type. Obtained as a result of crushing rocks;

  • fractional. This is homogeneous sand, which was previously divided into 2 or more fractions. For this, special screening equipment is used;

  • screenings from crushing. Product of inorganic origin, grain size up to 5 mm. Obtained by sifting the destroyed rocks of the mountains. It is a secondary product in the production of crushed stone and some types of metals. Also obtained from some non-metallic minerals.

Technical requirements

Production is carried out in accordance with the standards of technical documentation, which are agreed with the enterprise and the norms of technical legislation.

Sand is divided into 2 classes depending on the quality of the material. The main indicators for dividing into categories are: the grain of the material and the amount of impurities of dust and clay.

Grain composition is divided into 2 categories:

  1. I class - high quality material, the fraction ranges from large to small;
  2. II class - sand, which is of somewhat worse quality, but it has a greater variety of fractions, down to the smallest. In this case, the thickness of the grain is also determined, the class includes thin and very thin.

Size modulus

The document regulates the difference in sand by size modulus (Mk), also regulates the residual amounts of residues after filtering, it can take the following indicators:

Prior agreement with the manufacturer may indicate that in class II sand, deviations from the normative data are permissible but within 5%.

The document also determines the number of large grains and small, dusty ones. So, to meet the standard you need:

Specifications

The document strictly regulates the partial proportion of dusty pieces in the sand. Also the percentage of clay is determined.

Strength grade

Deviation in fine-grained material of the second class is allowed, but by prior agreement with the manufacturer and within 7%. sand has a dependence, especially for the screening type, on the resistance of the material.

The rocks of the metamorphic type differ significantly from the igneous ones. The minimum tensile strength for such types is 60 MPa, and for sedimentary types more than 40 MPa.

Regulatory characteristics are presented in the table:

With prior agreement of both parties to the contract, it is possible that the sand GOST 8736 will have differences (screening out when breaking) strength. Instead of a minimum threshold of 40 MPa, a decrease in this indicator is allowed, but still not lower than 20 MPa.

Sand, which is intended for filling, in addition to other characteristics, must have resistance to the effects of a chemical reaction to alkali. This is influenced by the composition of the screening sand.

A necessary indicator is sand, which allows you to evaluate the penetrating ability of the material.

The higher the value, the better the quality characteristics it has. The lowest throughput brings the value closer to 0. A low indicator indicates a clay component, which may narrow the scope of sand use.

The resistance of sand is determined by the mineral composition, taking into account substances that harm the quality of the material.

In position A sand GOST 8736 there are indications of the types and possible components, impurities that are considered harmful. and true density, filtration coefficient, grain components - sand made taking into account GOST 8736 93, must be contained individually by the manufacturer and indicated in the documents.

Natural quarry or mountain

Sand and from screenings, which has a grain size above 2.8 g / cm3 or contains rocks, impurities with a negative impact may have a limited number of applications.

When there are any deviations from the standards, then such sand has a narrow focus on undemanding areas of production. This is preliminarily regulated with specialized research centers.

Coarse-grained for construction work

Building sand that passed GOST 8736 93 is allowed to be mixed with natural type and screening sand. The mass fraction of the second type is not more than 20%.

The manufacturer is obliged to provide the buyer with full information on geological exploration, which indicates: the petrographic and mineral structure of the rock, the amount and type of organic matter, grain density, voidness.

medium-grained river

River natural sand should have a reference color even when the material is treated with sodium. Radiation-hygienic assessment is carried out in special laboratories, where the level of natural radionuclides is determined.

Based on the estimated data, it is concluded about the scope of use sand:

  • content less than 370 Bq / kg - the material is applicable for the construction of new buildings;
  • the amount from 370 to 740 Bq/kg allows the use of sand as filling for roads that are within populated areas. Also allowed for use in the construction of enterprises;
  • if the assessment showed 740-1500 Bq / kg - this is the least valuable type, It is used only for laying roads outside cities.

Sand GOST 8736 93 is cleaned of debris, if possible, otherwise it is excluded from production.

For more information about the use of sand, see the video:

Rules for the acceptance of quartz, river and alluvial sand

River, alluvial sand and screenings during crushing must be evaluated before being sent to the consumer and additional samples are taken upon delivery of the cargo. For this, special tests are made, the technical control service is responsible for the reception.

To maintain quality, acceptance control is carried out, as well as periodic tests and verification of the condition of the rocks. Control is carried out within the enterprise once a day.

This is how samples are taken from each production line, then it is stated whether the sand is suitable for construction or whether it is suitable or there are any deviations from the norm.

When conducting control comes to light:

  • grain composition;
  • the presence of clay and its quantity in pieces;
  • the amount of dusty residues and clay components;
  • absence of third-party impurities and debris.

Periodic control is carried out in order to determine changes in rocks over a certain period of time:

  • once every 3 months - the density of the embankment is determined, if necessary, testing under certain humidity conditions is possible. The presence of harmful, organic additives and their quantity are revealed;
  • once a year or with a changing composition of the rock, it is necessary to check the density of the grains, the amount of minerals contained, mostly harmful. The strength grade and effectiveness of radionuclides are determined.

Radionuclide studies cannot be performed within the enterprise, so samples are taken to specialized research institutions. They must be accredited by the regulatory authorities.

During construction work, it is necessary to carry out various calculations related to the consumption of various materials. Going by, get acquainted with how many bags of cement in 1 m3.

Plasterboard surface sheathing is the most common type of rough finish today. about how to glue drywall.

Currently, many people use foam plastic, which is a type of foam plastic, to insulate their structure. all information about applying plaster on penoplex.

If geological analysis data are not available, then an assessment of radioactivity can be made immediately after mining. An expressive variant is used, based on the alluvium map. Preparation for samples for examination is carried out on the basis of GOST 8735.

The material is sold in batches, so the acceptance and delivery is made for all the material included in the batch.

In the case of rail or sea delivery, a consignment is a simultaneous quantity of directed cargo. When delivering, all material brought per day is taken into account.

Why do we need a passport for sand GOST 8736 93

The consumer may require passport for sand GOST 8736 93 issued to the enterprise and technical documentation for the batch. To obtain information about the quality of the goods, samples should be taken, their number depends on the order:

  • for batches up to 350 m3, the number of samples is 10;
  • orders with a volume of 350 - 700 m3 can be subjected to 15 samples;
  • above 700 m3 samples should be taken from 20 different locations.

The price per m3 of sand GOST 8736 93 is approximately 500 rubles, but the cost varies greatly in accordance with the quality of the product, the remoteness of the quarry and the allowance of the manufacturer, intermediary. So river sand GOST 8736 93 is somewhat more expensive than screening after crushing.

Also sand coarse-grained is slightly cheaper, than a fine fraction and not every manufacturer shares a fraction.

Transport and storage

Sand can be transported in trains and ships, and does not need to be covered. In cars, transportation is carried out according to the approved standards of the enterprise itself.

The main condition for storing sand is to have a warehouse with a sufficient level of hygiene so that the sand does not become contaminated.

Most of the transportation rules are standardized in the relevant requirements for railway transport and traffic rules.

In winter, it must be stored in a place that will prevent the material from freezing. The room is rarely heated due to large, so the material is sometimes shoveled or processed with solutions that do not spoil the quality of the sand.

Conclusion

Sand natural, alluvial, construction or screenings from rocks GOST 8736 93 regulates compliance with technical standards for use in construction. The main provisions of the resolution are technical standards and product quality control.

The standard applies to natural sand and sand from rock crushing screenings with a true grain density of 2.0 to 2.8 g / cm3, intended for use as an aggregate for heavy, light, fine-grained, cellular and silicate concretes, mortars, preparation of dry mixes, for the device of the bases and coverings of highways and airfields.
The requirements of the standard do not apply to graded and crushed sands.

Designation: GOST 8736-93*
Russian name: Sand for construction work. Specifications
Status: current
Replaces: GOST 26193-84 “Materials from crushing screenings of igneous rocks for construction work. Specifications” GOST 8736-85 “Sand for construction works. Specifications»
Text update date: 08.10.2010
Date added to database: 08.10.2010
Date of entry into force: 01.07.1995
Designed by: TsNIIOMTP Gosstroy USSR 127434, Moscow, Dmitrovskoe sh., 9
VNIPIISTROMSYRE 109028, Moscow, Pokrovsky Blvd., 6/20
NIIZhB 109428, Moscow, 2nd Institutskaya st., 6
Soyuzdornia of the Russian Federation
Approved: Ministry of Construction of Russia (28.11.1994)
Published: Standards Publishing House No. 1995
Standartinform No. 2009

GOST 8736-93

INTERSTATE STANDARD

SAND FOR CONSTRUCTION WORKS

TECHNICAL CONDITIONS

INTERSTATE SCIENTIFIC AND TECHNICAL COMMISSION
FOR STANDARDIZATION AND TECHNICAL REGULATION
IN CONSTRUCTION (MNTKS)

Foreword

1 DEVELOPED by the institute VNIPIIstromsyre with the participation of SoyuzDorNII, NIIZhB, TsNIIOMTP of the Russian Federation

INTRODUCED by the Ministry of Construction of Russia

2 ADOPTED by the Interstate Scientific and Technical Commission for Standardization and Technical Regulation in Construction (MNTKS) November 10, 1993

State name

Name of the public administration body for construction

The Republic of Azerbaijan

Gosstroy of the Republic of Azerbaijan

Republic of Armenia

State Architecture of the Republic of Armenia

Republic of Belarus

Gosstroy of the Republic of Belarus

The Republic of Kazakhstan

Ministry of Construction of the Republic of Kazakhstan

Republic of Kyrgyzstan

Gosstroy of the Kyrgyz Republic

The Republic of Moldova

Ministry of Architecture of the Republic of Moldova

the Russian Federation

Gosstroy of Russia

The Republic of Tajikistan

Gosstroy of the Republic of Tajikistan

The Republic of Uzbekistan

Goskomarchitektstroy of the Republic of Uzbekistan

3 INTRODUCED from July 1, 1995 as the state standard of the Russian Federation by Decree of the Ministry of Construction of Russia dated November 28, 1994 No. 18-29

4 INSTEAD OF GOST 8736-85, GOST 26193-84

INTERSTATE STANDARD

SAND FOR CONSTRUCTION WORKS

Technicalconditions

Sand for construction works.
Specifications

Introduction date 1995-07-01

1 AREA OF USE

This standard applies to natural sand and sand from rock crushing screenings with a true grain density of 2.0 to 2.8 g / cm 3, intended for use as a filler for heavy, light, fine-grained, cellular and silicate concretes, mortars, preparation of dry mixes, for the device of the bases and coverings of highways and airfields.

The requirements of this standard do not apply to graded and crushed sands.

The requirements of this standard set out in paragraphs, , , sections and , are mandatory.

2 REGULATORY REFERENCES

GOST 8269.0 Crushed stone and gravel from dense rocks and industrial waste for construction work. Methods of physical and mechanical tests

GOST 8735-88 Sand for construction work. Test methods.

GOST 30108-94 Building materials and products. Determination of specific effective activity of natural radionuclides

(Changed edition. Rev. No. 2).

3 DEFINITIONS

The following terms are used in this standard.

natural sand- inorganic bulk material with a grain size of up to 5 mm, formed as a result of the natural destruction of rocky rocks and obtained during the development of sand and sand-gravel deposits without using or using special processing equipment.

(Changed edition. Rev. No. 1).

crushed sand- sand with a grain size of up to 5 mm, made from rocky rocks and gravel using special crushing and grinding equipment.

Graded sand - sand separated into two or more fractions using special equipment.

Sand from crushing screenings - inorganic bulk material with a grain size of 5 mm, obtained from rock crushing screenings in the production of crushed stone and from waste from the enrichment of ores of ferrous and non-ferrous metals and non-metallic minerals and other industries.

4 TECHNICAL REQUIREMENTS

4.1 Sand must be manufactured in accordance with the requirements of this standard according to the technological documentation approved by the manufacturer.

4.2 Sand, depending on the values ​​of standardized quality indicators (grain composition, content of dust and clay particles), is divided into two classes.

4.3 Main parameters and dimensions

4.3.1 Depending on the grain composition, sand is divided into groups according to size:

I class - very coarse (sand from crushing screenings), increased fineness, coarse, medium and fine;

Class II - very coarse (sand from crushing screenings), increased size, coarse, medium, fine, very fine, fine and very fine.

4.3.2 Each group of sand is characterized by the value of the fineness modulus indicated in the table.

Table 1

Fineness modulus Mk

Very large

St. 3.5

Increased size

»3.0 to 3.5

Large

»2.5»3.0

Average

»2.0»2.5

Small

"1.5"2.0

Very small

»1.0»1.5

Thin

»0.7»1.0

Very thin

Up to 0.7

4.3.3 The total balance of sand in a sieve with mesh No. 063 must correspond to the values ​​\u200b\u200bspecified in the table.

table 2

Percent by weight

Total residue on sieve No. 063

Very large

St. 75

Increased size

»65 to 75

Large

»45»65

Average

»30»45

Small

»10»30

Very small

To 10

Thin

Not standardized

Very thin

»»

Note - By agreement between the manufacturer and the consumer in the sand of class II, the deviation of the total residue on sieve No. 063 from the above is allowed, but not more than ± 5%.

4.3.4 Grain content 10, 5 and less than 0.16 mm should not exceed the values ​​indicated in the table.

Table 3

As a percentage by weight, not more than

St. 10 mm

St. 5 mm

Less than 0.15mm

I class

Small

II class

Very large and oversized

Large and medium

Small and very small

Slim and very thin

Not allowed

Not standardized

4.4Characteristics

in natural sand

in sand from crushing screenings

in natural sand

in sand from crushing screenings

I class

Very large

0,35

Increased size. large and medium

0,25

0,35

Small

0,35

0,50

II class

Very large

Extra large, large and medium

Small and very small

Slim and very thin

Not standardized

0,1*

Note - In very fine natural sand of class II, in agreement with the consumer, the content of dust and clay particles is allowed up to 7% by weight.

* For sands obtained during the enrichment of ores of ferrous and non-ferrous metals and non-metallic minerals of other industries.

4.4.2 Sands from crushing screenings, depending on the strength of rock and gravel, are divided into grades. Igneous and metamorphic rocks must have a compressive strength of at least 60 MPa, sedimentary rocks - at least 40 MPa.

Grade of sand from crushing screenings in terms of strength must correspond to that indicated in the table.

Table 5

Ultimate compressive strength of rock in water-saturated state, MPa, not less than

Gravel crushability in the cylinder

1400

1200

1000

Dr8

Dr12

Dr16

Dr24

Note - It is allowed, by agreement between the manufacturer and the consumer, the supply of sandII from sedimentary rocks with a compressive strength of less than 40 MPa, but not less than 20 MPa.

The resistance of sand is determined by the mineralogical and petrographic composition and the content of harmful components and impurities. The list of rocks and minerals classified as harmful components and impurities, and their maximum allowable content are given in the Appendix.

4.4.4 Sand from rock screenings, having a true grain density of more than 2.8 g / cm 3 or containing grains of rocks and minerals classified as harmful components in an amount exceeding their permissible content, or containing several different harmful components, is released for specific types construction works according to technical documents developed in accordance with the established procedure and coordinated with laboratories specialized in the field of corrosion.

4.4.5 It is allowed to supply a mixture of natural sand and sand from crushing screenings with the content of the latter not less than 20% by weight, while the amount of the mixture must meet the requirements of this standard for the quality of sands from crushing screenings.

4.4.6 The manufacturer must inform the consumer of the following characteristics established by geological exploration:

Mineralogical and petrographic composition indicating rocks and minerals attributed to harmful components and impurities;

Void;

The true density of grain sand.

At BUT eff up to 370 Bq/kg - in newly constructed residential and public buildings;

At BUT eff st. 370 to 740 Bq / kg - for road construction within the territory of settlements and zones of promising development, as well as during the construction of industrial buildings and structures;

At BUT eff st. 740 to 1500 Bq/kg - in road construction outside settlements.

If necessary, in accordance with the national standards in force on the territory of the state, the value of the specific effective activity of natural radionuclides can be changed within the limits indicated above.

(Changed edition. Rev. No. 1, 2).

4.4.9 Sand should not contain foreign contaminants.

5 ACCEPTANCE RULES

5.1 Sand must be accepted by the manufacturer's technical control service.

5.2 To check the compliance of the sand quality with the requirements of this standard, acceptance and periodic tests are carried out.

5.3 Acceptance tests at the manufacturing plant are carried out daily by testing a single-shift sample taken according to GOST 8735 from each production line.

During acceptance control, determine:

Grain composition;

Once a quarter - bulk density (bulk density at moisture during shipment is determined as necessary), as well as the presence of organic impurities (humic substances) in natural sand;

Once a year and in each case of changes in the properties of the developed rock - the true grain density, the content of rocks and minerals classified as harmful components and impurities, the strength grade of sand from crushing screenings, the specific effective activity of natural radionuclides.

Periodic monitoring of the indicator of specific effective activity of natural radionuclides is carried out in specialized laboratories accredited in accordance with the established procedure for carrying out gamma spectrometric tests or radiation metric laboratories of supervisory authorities.

In the absence of geological exploration data on the radiation-hygienic assessment of the deposit and the conclusion about the sand class, the manufacturer conducts a radiation-hygienic assessment of the developed rock sections using the express method directly in the face or in the warehouses of finished products (alluvium map) in accordance with the requirements of GOST 30108.

5.5 Sampling and preparation of sand samples for quality control at the manufacturer is carried out in accordance with the requirements of GOST 8735.

5.6 Delivery and acceptance of sand is carried out in batches. A batch is the amount of material that is simultaneously supplied to one consumer in one train or in one vessel. When shipped by road, a batch is the amount of sand shipped to one consumer during the day.

5.7 The consumer during the control check of the quality of sand should apply the sampling procedure given in - order. If the results of the control check on the grain composition and the content of dust-like and clay particles are unsatisfactory, the batch of sand is not accepted.

Lot sizeNumber of spot samples

Up to 350 m ............................................... ...................................ten

St. 350 to 700 m .............................................. ..........................fifteen

St. 700 m ............................................... ....................................ten

From incremental samples, a combined sample is formed, characterizing the controlled lot. Averaging, reduction and sample preparation is carried out according to GOST 8735.

5.9 For a control check of the quality of sand shipped by rail, point samples are taken when unloading wagons from the flow of sand on belt conveyors used to transport it to the consumer's warehouse. When unloading the wagon, five point samples are taken at regular intervals. The number of cars is determined taking into account the receipt of the required number of incremental samples in accordance with.

The wagons are selected according to the instructions of the consumer. If the batch consists of one wagon, five point samples are taken during its unloading, from which a combined sample is obtained.

If continuous transport is not used during unloading, point samples are taken directly from the wagons. To do this, the surface of the sand in the wagon is leveled and holes 0.2-0.4 m deep are dug at the sampling points. Sampling points should be located in the center and at the four corners of the wagon, at the same time, the distance from the sides of the car to the sampling points should be at least 0.5 m. Samples from the holes are taken with a scoop, moving it from bottom to top along the walls of the hole.

5.10 For the control check of the quality of sand supplied by water transport, point samples are taken during unloading of ships. In the case of using belt conveyors for unloading, incremental samples are taken at regular intervals from the sand flow on the conveyors. When unloading the ship with grab cranes, point samples are taken with a scoop at regular intervals as they are unloaded directly from the newly formed sand surface in the ship, and not from the holes.

For a control check of sand unloaded from ships and laid on alluvium maps by hydromechanization, point samples are taken in accordance with 2.9 GOST 8735.

In the case of using belt conveyors for sand unloading, point samples are taken from the sand flow on conveyors. When unloading each car, one point sample is taken. The number of cars is determined taking into account the receipt of the required number of point samples. Cars are selected according to the instructions of the consumer.

If the lot consists of less than ten cars, sand samples are taken from each car.

If conveyor transport is not used when unloading cars, point samples are taken directly from the cars. To do this, the surface of the sand in the car is leveled, a hole is dug in the center of the body with a depth of 0.2-0.4 m. Sand samples are taken from the hole with a scoop, moving it from bottom to top along the wall of the hole.

5.12 The amount of sand supplied is determined by volume or mass. Sand measurement is carried out in wagons, ships or cars.

Sand shipped in wagons or cars is weighed on truck scales. The mass of sand shipped in vessels is determined by the draft of the vessel.

The amount of sand from units of mass to units of volume is recalculated according to the values ​​of the bulk density of sand, determined at its moisture content during shipment. In the supply contract, the calculated sand moisture content adopted by agreement of the parties is indicated.

5.13 The manufacturer is obliged to accompany each batch of supplied sand with a document on its quality in the established form, which must indicate:

Manufacturer's name and address;

Number and date of issue of the document;

Batch number and amount of sand;

Wagon and vessel numbers, invoice numbers;

Class, particle size module, total residue on sieve No. 063;

Specific effective activity of natural radionuclides in sand according to ;

Designation of this standard.

6 CONTROL METHODS

6.1 Sand tests are carried out according to GOST 8735.

6.2 The specific effective activity of natural radionuclides in sand is determined according to GOST 30108.

7 TRANSPORT AND STORAGE

7.1 Sand is transported in open railway wagons and ships, as well as cars in accordance with the rules approved in the established manner for the carriage of goods by the appropriate mode of transport and stored in the warehouse of the manufacturer and consumer under conditions that protect the sand from pollution.

When transporting sand by rail, it must also be ensured that the requirements of the Technical Conditions for Loading and Securing Cargoes approved by the Ministry of Railways are met.

7.2 When shipping and storing sand in winter, the manufacturer must take measures to prevent freezing (shoveling, treatment with special solutions, etc.).

APPENDIX A

(mandatory)

The permissible content of rock minerals classified as harmful components and impurities in sand used as aggregate for concrete and mortar should not exceed the following values:

Amorphous varieties of silicon dioxide, soluble in alkalis (chalcedony, opal, flint, etc.) - no more than 50 mmol / l;

Sulfur, sulfides, besides pyrite (marcasite, pyrrhotite, etc.) and sulfates (gypsum, anhydrite, etc.) are recalculated SO 3 - no more than 1.0%, pyrite in terms of SO 3 - no more than 4% by weight;

Mica - no more than 2% by weight:

Haloid compounds (halite, sylvin, etc.), including water-soluble chlorides, in terms of chlorine ion - no more than 0.15% by weight;

Coal - no more than 1% by weight;

Organic impurities (humic acids) - less than the amount that gives the sodium hydroxide solution (colorimetric sample according to GOST 8267) a color corresponding to the color of the standard or darker than this color. durability.

The permissible content of zeolite, graphite, oil shale is established on the basis of studies of the effect of sand on the durability of concrete or mortar.

APPENDIX B

(informational)

(Deleted. Amendment No. 2).

Keywords:natural sand, construction works, sand from screenings of crushing, fractionated sand, crushed sands, grain composition

GOST 8736-93

Group G17

INTERSTATE STANDARD

SAND FOR CONSTRUCTION WORKS

Specifications

Sand for construction works. Specifications

ISS 91.100.15
OKSTU 5711

Introduction date 1995-07-01

Foreword

1 DEVELOPED by the Institute VNIPIIstroysyrye with the participation of SoyuzDorNII, NIIZhB, TsNIIOMTP of the Russian Federation

INTRODUCED by the Ministry of Construction of Russia

2 ADOPTED by the Interstate Scientific and Technical Commission for Standardization and Technical Regulation in Construction (MNTKS) on November 10, 1993

State name

The Republic of Azerbaijan

Republic of Armenia

State Architecture of the Republic of Armenia

Republic of Belarus

Gosstroy of the Republic of Belarus

The Republic of Kazakhstan

Ministry of Construction of the Republic of Kazakhstan

Republic of Kyrgyzstan

Gosstroy of the Kyrgyz Republic

The Republic of Moldova

Ministry of Architecture of the Republic of Moldova

the Russian Federation

Gosstroy of Russia

The Republic of Tajikistan

The Republic of Uzbekistan


Amendment No. 1 was adopted by the Interstate Scientific and Technical Commission for Standardization, Technical Regulation and Certification in Construction (MNTKS) on December 10, 1997.


State name

Name of the public administration body for construction

The Republic of Azerbaijan

Gosstroy of the Republic of Azerbaijan

Republic of Armenia

Republic of Belarus

The Republic of Kazakhstan

Agency for Construction and Architectural and Urban Planning Control of the Ministry of Economy and Trade of the Republic of Kazakhstan

Kyrgyz Republic

Ministry of Architecture of the Kyrgyz Republic

the Russian Federation

Gosstroy of Russia

The Republic of Tajikistan

Gosstroy of the Republic of Tajikistan


Amendment No. 2 was adopted by the Interstate Scientific and Technical Commission for Standardization, Technical Regulation and Certification in Construction (MNTKS) on May 17, 2000.

Voted for the change:

State name

Name of the public administration body for construction

The Republic of Azerbaijan

Gosstroy of the Republic of Azerbaijan

Republic of Armenia

Ministry of Urban Development of the Republic of Armenia

Republic of Belarus

Ministry of Construction and Architecture of the Republic of Belarus

The Republic of Kazakhstan

Construction Committee of the Ministry of Energy, Industry and Trade of the Republic of Kazakhstan

Republic of Kyrgyzstan

State Committee under the Government of the Kyrgyz Republic for Architecture and Construction

The Republic of Moldova

Ministry of Environment and Territory Improvement of the Republic of Moldova

the Russian Federation

Gosstroy of Russia

The Republic of Tajikistan

Committee for Architecture and Construction of the Republic of Tajikistan

The Republic of Uzbekistan

Goskomarchitektstroy of the Republic of Uzbekistan

3 INTRODUCED from July 1, 1995 as the state standard of the Russian Federation by Decree of the Ministry of Construction of Russia of November 28, 1994 N 18-29

4 INSTEAD OF GOST 8736-85, GOST 26193-84

5 EDITION (March 2006) with Amendments N, adopted in February 1998, December 2000 (IUS 5-98, 5-2001)


INTRODUCED Amendment No. 3, adopted by the Interstate Scientific and Technical Commission for Standardization, Technical Regulation and Conformity Assessment in Construction (MNTKS) (Minutes No. 38 dated 18.03.2011). State-developer Russia. By order of the Federal Agency for Technical Regulation and Metrology of October 13, 2011 N 452-st, it was put into effect on the territory of the Russian Federation from January 1, 2012

Change No. 3 was made by the database manufacturer according to the text of IUS No. 1, 2012

1 area of ​​use

1 area of ​​use

This standard applies to natural rock sand with a true grain density of 2.0 to 2.8 g / cm 3, intended for use as an aggregate for heavy, light, fine-grained, cellular and silicate concretes, mortars, preparation of dry mixes, for the device bases and coverings of highways and airfields.

The requirements of this standard do not apply to graded and crushed sands.

The requirements of this standard, set out in clauses 4.4.1, 4.4.3, 4.4.7, 4.4.8, sections 5 and 6, are mandatory.

(Changed edition, Rev. N 3).

2 Normative references

GOST 8267-93 Crushed stone and gravel from dense rocks for construction work. Specifications

GOST 8269.0-97 Crushed stone and gravel from dense rocks and industrial waste for construction work. Methods of physical and mechanical tests

GOST 8735-88 Sand for construction work. Test Methods

GOST 30108-94 Building materials and products. Determination of specific effective activity of natural radionuclides

3 Definitions

The following terms are used in this standard.

natural sand: Inorganic bulk material with a grain size of up to 5 mm, formed as a result of the natural destruction of hard rocks and obtained during the development of sand and sand-gravel deposits without the use or using special processing equipment.

crushed sand: Sand with a grain size of up to 5 mm, made from rocks and gravel using special crushing and grinding equipment.

graded sand: Sand separated into two or more fractions using special equipment.

(Changed edition, Rev. N 1,).

4 Technical requirements

4.1 Sand must be manufactured in accordance with the requirements of this standard according to the technological documentation approved by the manufacturer.

4.2 Sand, depending on the values ​​of standardized quality indicators (grain composition, content of dust and clay particles), is divided into two classes I and II.

(Changed edition, Rev. N 3).

4.3 Basic parameters and dimensions

4.3.1 Depending on the grain composition, sand of classes I and II is divided into groups according to size:

class I - increased size, large, medium and small;

class II - oversized, large, medium, small, very small, thin and very thin.

(Changed edition, Rev. N 3).

4.3.2 Each group of sand is characterized by the value of the fineness modulus indicated in table 1.

Table 1

Sand group

Fineness modulus Mk

Increased size

Large

Average

Small

Very small

Thin

Very thin

(Changed edition, Rev. N 3).

4.3.3 The total balance of sand on a sieve with mesh N 063 must correspond to the values ​​\u200b\u200bspecified in table 2.

table 2

Percent by weight

Sand group

Full residue on sieve N 063

Increased size

Large

Average

Small

Very small

Thin

Not standardized

Very thin

Note - By agreement between the manufacturer and the consumer, in class II sand, a deviation of the total residue on sieve N 063 from the above is allowed, but not more than ± 5%.

(Changed edition, Rev. N 3).

Table 3

Class and group of sand

St.10 mm

Less than 0.16mm

I class

Small

II class

Increased size

Large and medium

Small and very small

Slim and very thin

Not allowed

Not standardized

(Changed edition, Rev. N 3).

4.4 Characteristics

Table 4

As a percentage by weight, no more

Class and group of sand

Class I

Extra large, large and medium

Small

Class II

Extra large, large and medium

Small and very small

Slim and very thin

Note - By agreement with the consumer in very fine sand of class II, the content of dust and clay particles up to 7% by weight is allowed.

(Changed edition, Rev. N 3).

4.4.2 (Deleted, Rev. N 3).

4.4.3 Sand intended for use as an aggregate for concrete should be resistant to the chemical attack of cement alkalis.

The resistance of sand is determined by the mineralogical and petrographic composition and the content of harmful components and impurities. The list of rocks and minerals classified as harmful components and impurities, and their maximum allowable content are given in Appendix A.

4.4.4, 4.4.5 (Deleted, Rev. N 3).

4.4.6 The manufacturer must inform the consumer of the following characteristics established by geological exploration:

Mineralogical and petrographic composition indicating rocks and minerals classified as harmful components and impurities;

Void;

True density of sand grains.

4.4.7 Natural sand, when treated with a sodium hydroxide solution (colorimetric test for organic impurities according to GOST 8735), should not give the solution a color that matches or is darker than the color of the standard.

4.4.8 Sand must be given a radiation-hygienic assessment, the results of which determine the scope of its application. Sand, depending on the values ​​of the specific effective activity of natural radionuclides, is used:

At up to 370 Bq/kg - in newly constructed residential and public buildings;

- at St. 370 to 740 Bq / kg - for road construction within the territory of settlements and zones of promising development, as well as during the construction of industrial buildings and structures;

At St. 740 to 1500 Bq/kg - in road construction outside settlements.

If necessary, in the national norms in force on the territory of the state, the value of the specific effective activity of natural radionuclides can be changed within the limits indicated above.

(Changed edition, Rev. N 1, 2).

4.4.9 Sand should not contain any foreign contaminants.

5 Acceptance rules

5.1 Sand must be accepted by the manufacturer's technical control service.

5.2 To check the compliance of the sand quality with the requirements of this standard, acceptance and periodic tests are carried out.

5.3 Acceptance tests at the manufacturer are carried out daily by testing one replacement sample taken in accordance with GOST 8735 from each production line.

During acceptance control, determine:

Grain composition;

5.4 When periodically testing sand, determine:

Once a quarter - bulk density (bulk density at moisture during shipment is determined as necessary), as well as the presence of organic impurities (humic substances) in natural sand;

Once a year and in each case changes in the properties of the mined rock - the true density of grains, the content of rocks and minerals classified as harmful components and impurities, the specific effective activity of natural radionuclides.

Periodic monitoring of the indicator of specific effective activity of natural radionuclides is carried out in specialized laboratories accredited in accordance with the established procedure for the right to conduct gamma-spectrometric tests or in radiation-metric laboratories of supervisory authorities.

In the absence of geological exploration data on the radiation and hygienic assessment of the deposit and the conclusion on the sand class, the manufacturer conducts a radiation and hygienic assessment of the developed rock sections using the express method directly in the face or in the warehouses of finished products (alluvium map) in accordance with the requirements of GOST 30108 .

(Changed edition, Rev. N 3).

5.5 Sampling and preparation of sand samples for quality control at the manufacturer is carried out in accordance with the requirements of GOST 8735.

5.6 Delivery and acceptance of sand is carried out in batches. A batch is considered to be the amount of material that is simultaneously supplied to one consumer in one train or in one vessel. When shipped by road, a batch is the amount of sand shipped to one consumer during the day.

5.7 When controlling the quality of sand, the consumer must apply the sampling procedure given in 5.8-5.11. If the results of the control check on the grain composition and the content of dust-like and clay particles are unsatisfactory, the batch of sand is not accepted.

5.8 The number of incremental samples taken for the control check of the quality of sand in each batch, depending on the volume of the batch, must be at least:

Lot size

Number of incremental samples

St. 350 to 700 m

From incremental samples, a combined sample is formed that characterizes the controlled lot. Averaging, reduction and sample preparation is carried out according to GOST 8735.

5.9 For a control check of the quality of sand shipped by rail, point samples are taken when unloading wagons from the sand stream on belt conveyors used to transport it to the consumer's warehouse. When unloading the wagon, five point samples are taken at regular intervals. The number of wagons is determined taking into account obtaining the required number of incremental samples in accordance with 5.8.

Cars are selected at the direction of the consumer. If the batch consists of one wagon, five point samples are taken during its unloading, from which a combined sample is obtained.

If continuous transport is not used during unloading, point samples are taken directly from the wagons. To do this, the sand surface in the car is leveled and holes 0.2-0.4 m deep are dug at the sampling points. The sampling points should be located in the center and at the four corners of the car, while the distance from the sides of the car to the sampling points should not less than 0.5 m. Samples from the holes are taken with a scoop, moving it from bottom to top along the walls of the hole.

5.10 For a control check of the quality of sand supplied by water transport, point samples are taken during unloading of ships. In the case of using belt conveyors for unloading, incremental samples are taken at regular intervals from the sand flow on the conveyors. When unloading the ship with clamshell cranes, spot samples are taken with a scoop at regular intervals as they are unloaded directly from the newly formed sand surface in the ship, and not from the holes.

For a control check of sand unloaded from ships and laid on alluvium maps by hydromechanization, point samples are taken in accordance with 2.9 GOST 8735.

5.11. To control the quality of sand shipped by road, point samples are taken when unloading cars.

In the case of using belt conveyors for sand unloading, point samples are taken from the sand flow on conveyors. When unloading each car, one point sample is taken. The number of cars is determined taking into account obtaining the required number of incremental samples according to 5.8. Cars are chosen at the direction of the consumer.

If the lot consists of less than ten cars, sand samples are taken from each car.

If conveyor transport is not used when unloading cars, point samples are taken directly from cars. To do this, the surface of the sand in the car is leveled, a hole is dug in the center of the body with a depth of 0.2-0.4 m. Sand samples are taken from the hole with a scoop, moving it from bottom to top along the wall of the hole.

5.12 The amount of sand supplied is determined by volume or mass. Sand measurement is carried out in wagons, ships or cars.

Sand shipped in wagons or cars is weighed on truck scales. The mass of sand shipped in ships is determined by the ship's draft.

The amount of sand from units of mass to units of volume is recalculated according to the values ​​of the bulk density of sand, determined at its moisture content during shipment. The supply contract indicates the calculated sand moisture content adopted by agreement of the parties.

5.13 The manufacturer is obliged to accompany each batch of supplied sand with a document on its quality in the established form, which should indicate:

Name of the manufacturer and its address;

Number and date of issue of the document;

Batch number and amount of sand;

Wagon numbers and vessel number, invoice numbers;

Class, particle size module, total residue on the sieve N 063;

Specific effective activity of natural radionuclides in sand in accordance with 5.4;

Designation of this standard.

6 Control methods

6.1 Sand tests are carried out in accordance with GOST 8735.

6.2. The specific effective activity of natural radionuclides in sand is determined according to GOST 30108.

7 Transport and storage

7.1 Sand is transported in open railway wagons and ships, as well as cars in accordance with the rules approved in accordance with the established procedure for the carriage of goods by the appropriate mode of transport and stored in the warehouse of the manufacturer and consumer in conditions that protect the sand from pollution.

When transporting sand by rail, it must also be ensured that the requirements of the Technical Conditions for Loading and Securing Cargoes applicable to this type of transport are met.

(Changed edition, Rev. N 3).

7.2 When shipping and storing sand in winter, the manufacturer must take measures to prevent freezing (shoveling, treatment with special solutions, etc.).

APPENDIX A (mandatory). The content of harmful impurities

APPENDIX A
(mandatory)

The permissible content of rocks and minerals classified as harmful components and impurities in sand used as aggregate for concrete and mortar should not exceed the following values:

Amorphous varieties of silicon dioxide, soluble in alkalis (chalcedony, opal, flint, etc.) - no more than 50 mmol / l;

Sulfur, sulfides, except for pyrite (marcasite, pyrrhotite, etc.) and sulfates (gypsum, anhydrite, etc.) in terms of SO - no more than 1.0%; pyrite in terms of SO - no more than 4% by weight;

Mica - no more than 2% by weight;

Haloid compounds (halite, sylvin, etc.), including water-soluble chlorides, in terms of chlorine ion - no more than 0.15% by weight;

Coal - no more than 1% by weight;

Organic impurities (humic acids) - less than the amount that gives the sodium hydroxide solution (colorimetric sample according to GOST 8267) a color corresponding to the color of the standard or darker than this color. The use of sand that does not meet this requirement is allowed only after receiving positive results of tests of sand in concrete or mortar for durability characteristics.

The permissible content of zeolite, graphite, oil shale is established on the basis of studies of the effect of sand on the durability of concrete or mortar.

APPENDIX B (Deleted, Rev. N 2).

Electronic text of the document

prepared by Kodeks JSC and verified against:

official publication
M.: Standartinform, 2006

Revision of the document, taking into account
changes and additions prepared
JSC "Kodeks"