ASTM C531 Standard Test Method for Linear Shrinkage and Coefficient of Thermal Expansion of Chemical-Resistant Mortars, Grouts, Monolithic Surfacings, and Polymer Concretes
Данный раздел/документ содержится в продуктах:
- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
- ASTM C1433 Standard Specification for Precast Reinforced Concrete Monolithic Box Sections for Culverts, Storm Drains, and Sewers
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- ASTM C398 Standard Practice for Use of Hydraulic Cement Mortars in Chemical-Resistant Masonry
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- 23
- ASTM C1433 Standard Specification for Precast Reinforced Concrete Monolithic Box Sections for Culverts, Storm Drains, and Sewers
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- ASTM C398 Standard Practice for Use of Hydraulic Cement Mortars in Chemical-Resistant Masonry
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- 23.040
- ASTM C1433 Standard Specification for Precast Reinforced Concrete Monolithic Box Sections for Culverts, Storm Drains, and Sewers
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- ASTM C398 Standard Practice for Use of Hydraulic Cement Mortars in Chemical-Resistant Masonry
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- 23.040.50
- ASTM C1433 Standard Specification for Precast Reinforced Concrete Monolithic Box Sections for Culverts, Storm Drains, and Sewers
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- ASTM C398 Standard Practice for Use of Hydraulic Cement Mortars in Chemical-Resistant Masonry
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- ASTM C1433 Standard Specification for Precast Reinforced Concrete Monolithic Box Sections for Culverts, Storm Drains, and Sewers
- ASTM C1433 Standard Specification for Precast Reinforced Concrete Monolithic Box Sections for Culverts, Storm Drains, and Sewers
- ASTM C1433 Standard Specification for Precast Reinforced Concrete Monolithic Box Sections for Culverts, Storm Drains, and Sewers
- ASTM C309 Standard Specification for Liquid Membrane-Forming Compounds for Curing Concrete
- ASTM C398 Standard Practice for Use of Hydraulic Cement Mortars in Chemical-Resistant Masonry
- ASTM C398 Standard Practice for Use of Hydraulic Cement Mortars in Chemical-Resistant Masonry
- ASTM C723 Standard Practice for Chemical-Resistant Resin Grouts for Brick or Tile
- ASTM C399 Standard Practice for Use of Chemical-Resistant Resin Mortars
- ASTM C386 Standard Practice for Use of Chemical-Resistant Sulfur Mortar
- ASTM C395 Standard Specification for Chemical-Resistant Resin Mortars
- ASTM C321 Standard Test Method for Bond Strength of Chemical-Resistant Mortars
- ASTM C466 Standard Specification for Chemically Setting Silicate and Silica Chemical-Resistant Mortars
- ASTM C1433 Standard Specification for Precast Reinforced Concrete Monolithic Box Sections for Culverts, Storm Drains, and Sewers
- Картотека зарубежных и международных стандартов
ASTM International
Standard Test Method for Linear Shrinkage and Coefficient of Thermal Expansion of Chemical-Resistant Mortars, Grouts, Monolithic Surfacings, and Polymer Concretes
N C531
Annotation
This test method covers the measurement of the linear shrinkage during setting and curing and the coefficient of thermal expansion of chemical-resistant mortars, grouts, monolithic surfacings, and polymer concretes.
A bar of square cross-section is cast to a prescribed length in a mold that holds measuring studs that are captured in the ends of the finished casting.
The change in length after curing is measured and used to calculate shrinkage.
NOTE 1—Shrinkage determinations should not be made on sulfur mortars, since this test method cannot truly reflect the overall linear shrinkage of a sulfur mortar.
The change in length at a specific elevated temperature is measured and used to calculate the coefficient of thermal expansion.
This test method is limited to materials with aggregate size of 0.25 in. (6 mm) or less.
The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.
This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.



