ZH

RU

ES

Coefficient of thermal expansion in standard sample year

Coefficient of thermal expansion in standard sample year, Total:79 items.

In the international standard classification, Coefficient of thermal expansion in standard sample year involves: Surface treatment and coating, Mechanical testing, Earthworks. Excavations. Foundation construction. Underground works, Road vehicles in general, Plastics, Coals, Insulating fluids, Refractories, Analytical chemistry, Fasteners, Linear and angular measurements, Rubber and plastics products, Construction materials, Metrology and measurement in general, Protection of and in buildings.


The American Road & Transportation Builders Association, Coefficient of thermal expansion in standard sample year

  • AASHTO TP60-2000 Standard Test Method for the Coefficient of Thermal Expansion of Hydraulic Cement Concrete 2000 Edition
  • AASHTO TP 60-2000 Standard Method of Test for Coefficient of Thermal Expansion of Hydraulic Cement Concrete
  • AASHTO T 336-2015 Standard Method of Test for Coefficient of Thermal Expansion of Hydraulic Cement Concrete
  • AASHTO T 336-2010 Standard Method of Test for Coefficient of Thermal Expansion of Hydraulic Cement Concrete [Superseded: AASHTO TP 60, AASHTO TP 60, AASHTO TP 60, AASHTO TP 60, AASHTO TP 60]

CEN - European Committee for Standardization, Coefficient of thermal expansion in standard sample year

  • EN ISO 20274:2017 Vitreous and porcelain enamels - Preparation of samples and determination of thermal expansion coefficient

International Organization for Standardization (ISO), Coefficient of thermal expansion in standard sample year

  • ISO 20274:2017 Vitreous and porcelain enamels - Preparation of samples and determination of thermal expansion coefficient

British Standards Institution (BSI), Coefficient of thermal expansion in standard sample year

  • BS EN ISO 20274:2017 Vitreous and porcelain enamels. Preparation of samples and determination of thermal expansion coefficient

American Society for Testing and Materials (ASTM), Coefficient of thermal expansion in standard sample year

  • ASTM E228-06 Standard Test Method for Linear Thermal Expansion of Solid Materials With a Push-Rod Dilatometer
  • ASTM D4829-08 Standard Test Method for Expansion Index of Soils
  • ASTM D4829-95 Standard Test Method for Expansion Index of Soils
  • ASTM D4829-07 Standard Test Method for Expansion Index of Soils
  • ASTM D4829-03 Standard Test Method for Expansion Index of Soils
  • ASTM D4829-08a Standard Test Method for Expansion Index of Soils
  • ASTM D696-16 Standard Test Method for Coefficient of Linear Thermal Expansion of Plastics Between &x2212;30&xb0;C and 30&xb0;C with a Vitreous Silica Dilatometer
  • ASTM C671-94 Standard Test Method for Critical Dilation of Concrete Specimens Subjected to Freezing (Withdrawn 2003)
  • ASTM D696-08e1 Standard Test Method for Coefficient of Linear Thermal Expansion of Plastics Between −30°C and 30°C with a Vitreous Silica Dilatometer
  • ASTM D720-91(1999) Standard Test Method for Free-Swelling Index of Coal
  • ASTM D1903-08(2017) Standard Practice for Determining the Coefficient of Thermal Expansion of Electrical Insulating Liquids of Petroleum Origin, and Askarels
  • ASTM D5335-14 Standard Test Method for Linear Coefficient of Thermal Expansion of Rock Using Bonded Electric Resistance Strain Gauges
  • ASTM D5335-04 Standard Test Method for Linear Coefficient of Thermal Expansion of Rock Using Bonded Electric Resistance Strain Gages
  • ASTM D5335-99 Standard Test Method for Linear Coefficient of Thermal Expansion of Rock Using Bonded Electric Resistance Strain Gages
  • ASTM D5335-08 Standard Test Method for Linear Coefficient of Thermal Expansion of Rock Using Bonded Electric Resistance Strain Gauges
  • ASTM D1903-96 Standard Test Method for Coefficient of Thermal Expansion of Electrical Insulating Liquids of Petroleum Origin, and Askarels
  • ASTM A453/A453M-11 Standard Specification for High-Temperature Bolting, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-12 Standard Specification for High-Temperature Bolting, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM D2765-01(2006) Standard Test Methods for Determination of Gel Content and Swell Ratio of Crosslinked Ethylene Plastics
  • ASTM C824-91(1996) Standard Practice for Specimen Preparation for Determination of Linear Thermal Expansion of Vitreous Glass Enamels and Glass Enamel Frits by the Dilatometer Method
  • ASTM C824-91(2015) Standard Practice for Specimen Preparation for Determination of Linear Thermal Expansion of Vitreous Glass Enamels and Glass Enamel Frits by the Dilatometer Method
  • ASTM D6341-10 Standard Test Method for Determination of the Linear Coefficient of Thermal Expansion of Plastic Lumber and Plastic Lumber Shapes Between -30 and 140&176F (-34.4 and 60&176C)
  • ASTM D6341-14a Standard Test Method for Determination of the Linear Coefficient of Thermal Expansion of Plastic Lumber and Plastic Lumber Shapes Between –30 and 140°F &40;–34.4 and 60°C&41;
  • ASTM D6341-16 Standard Test Method for Determination of the Linear Coefficient of Thermal Expansion of Plastic Lumber and Plastic Lumber Shapes Between &x2013;30 and 140&xb0;F (&x2013;34.4 and 60&xb0;C)
  • ASTM D6341-98 Standard Test Method for Determination of the Linear Coefficient of Thermal Expansion of Plastic Lumber and Plastic Lumber Shapes Between -30 and 140176F (-34.4 and 60176C)
  • ASTM D6341-98(2005) Standard Test Method for Determination of the Linear Coefficient of Thermal Expansion of Plastic Lumber and Plastic Lumber Shapes Between -30 and 140176F (-34.4 and 60176C)
  • ASTM A453/A453M-04 Standard Specification for High-Temperature Bolting Materials, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-03 Standard Specification for High-Temperature Bolting Materials, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-00e1 Standard Specification for High-Temperature Bolting Materials, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-17 Standard Specification for High-Temperature Bolting, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-08 Standard Specification for High-Temperature Bolting Materials, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-02 Standard Specification for High-Temperature Bolting Materials, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-00 Standard Specification for High-Temperature Bolting Materials, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-10 Standard Specification for High-Temperature Bolting, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-16 Standard Specification for High-Temperature Bolting, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM A453/A453M-10e1 Standard Specification for High-Temperature Bolting, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM E2430/E2430M-13 Standard Specification For Expanded Polystyrene (ldquo;EPSrdquo;) Thermal Insulation Boards For Use In Exterior Insulation and Finish Systems (ldquo;EIFSrdquo;)
  • ASTM E2430-05(2013) Standard Specification For Expanded Polystyrene (ldquo;EPSrdquo;) Thermal Insulation Boards For Use In Exterior Insulation and Finish Systems (ldquo;EIFSrdquo;)
  • ASTM A453/A453M-15 Standard Specification for High-Temperature Bolting, with Expansion Coefficients Comparable to Austenitic Stainless Steels
  • ASTM C531-18(2023) Standard Test Method for Linear Shrinkage and Coefficient of Thermal Expansion of Chemical-Resistant Mortars, Grouts, Monolithic Surfacings, and Polymer Concretes
  • ASTM C531-00(2005) Standard Test Method for Linear Shrinkage and Coefficient of Thermal Expansion of Chemical-Resistant Mortars, Grouts, Monolithic Surfacings, and Polymer Concretes
  • ASTM C531-00 Standard Test Method for Linear Shrinkage and Coefficient of Thermal Expansion of Chemical-Resistant Mortars, Grouts, Monolithic Surfacings, and Polymer Concretes
  • ASTM C531-00(2012) Standard Test Method for Linear Shrinkage and Coefficient of Thermal Expansion of Chemical-Resistant Mortars, Grouts, Monolithic Surfacings, and Polymer Concretes
  • ASTM D6341-13 Standard Test Method for Determination of the Linear Coefficient of Thermal Expansion of Plastic Lumber and Plastic Lumber Shapes Between ndash;30 and 140deg;F (ndash;34.4 and 60deg;C)
  • ASTM D6341-21 Standard Test Method for Determination of the Linear Coefficient of Thermal Expansion of Plastic Lumber and Plastic Lumber Shapes Between –30 and 140°F (–34.4 and 60°C)
  • ASTM C531-18 Standard Test Method for Linear Shrinkage and Coefficient of Thermal Expansion of Chemical-Resistant Mortars, Grouts, Monolithic Surfacings, and Polymer Concretes
  • ASTM D6341-14 Standard Test Method for Determination of the Linear Coefficient of Thermal Expansion of Plastic Lumber and Plastic Lumber Shapes Between ndash;30 and 140deg;F 40;ndash;34.4 and 60deg;C41;

Association Francaise de Normalisation, Coefficient of thermal expansion in standard sample year

  • NF EN ISO 20274:2017 Emaux vitrifiés - Préparation d'échantillons d'émail et détermination du coefficient de dilatation thermique
  • NF A91-317*NF EN ISO 20274:2017 Vitreous and porcelain enamels - Preparation of samples and determination of thermal expansion coefficient

Military Standard of the People's Republic of China-General Armament Department, Coefficient of thermal expansion in standard sample year

  • GJB/J 5128-2002 Specification for reference materials for thermal conductivity, specific heat, and coefficient of linear expansion for use in explosives

AASHTO - American Association of State Highway and Transportation Officials, Coefficient of thermal expansion in standard sample year

  • T 336-2011 Standard Method of Test for Coefficient of Thermal Expansion of Hydraulic Cement Concrete
  • TP 60-2000 Standard Method of Test for Coefficient of Thermal Expansion of Hydraulic Cement Concrete
  • T 336-2010 Standard Method of Test for Coefficient of Thermal Expansion of Hydraulic Cement Concrete
  • T 336-2015 Standard Method of Test for Coefficient of Thermal Expansion of Hydraulic Cement Concrete
  • T 336-2009 Standard Method of Test for Coefficient of Thermal Expansion of Hydraulic Cement Concrete

German Institute for Standardization, Coefficient of thermal expansion in standard sample year

  • DIN EN ISO 20274:2017 Vitreous and porcelain enamels - Preparation of samples and determination of thermal expansion coefficient (ISO 20274:2017)

Institute of Interconnecting and Packaging Electronic Circuits (IPC), Coefficient of thermal expansion in standard sample year

  • IPC TM-650 2.4.24-1994 Glass Transition Temperature and Z-Axis Thermal Expansion by TMA; Revision C - December 1994

RU-GOST R, Coefficient of thermal expansion in standard sample year

  • GOST 28947-1991 Glass Hydrometers. Conventional value for tne thermal cubic expasion coefficient (for use in tne preparation of measurement table for liquids)
  • GOST R 8.940-2017 State system for ensuring the uniformity of measurements. National standard. Standard reference data. Copper-zinc alloys. Temperature coefficient of linear expansion and electrical resistivity temperature range from 300 to 2/3 temperature of melting

GOSTR, Coefficient of thermal expansion in standard sample year

  • GOST R 8.949-2018 State system for ensuring the uniformity of measurements. Standard reference data. Niobium. The parameters of the crystal lattice. Coefficient of linear thermal expansion from 120 K to 400 K
  • GOST R 8.954-2018 State system for ensuring the uniformity of measurements. Standard reference data. Vanadium. Lattice parameters. Coeffi cient of linear thermal expansion in the range of temperatures from 240 K to 400 K
  • GOST R 8.950-2018 State system for ensuring the uniformity of measurements. Standard reference data. Molybdenum. The parameters of the crystal lattice. Coefficient of linear thermal expansion in the temperature range from 90 K to 350 K
  • GOST R 8.953-2018 State system for ensuring the uniformity of measurements. Standard reference data. Silicide of vanadium. The lattice parameters in the concentration range from 20 at.% to 25 at.% of silicon. Coefficient of linear thermal expansion in the range from 20 K u
  • GOST R 8.941-2017 State system for ensuring the uniformity of measurements. National standard. Standard reference data. Materials for standard LTEC. Graphite GIP-4. Linear temperature expansion coefficient for the temperature range from 20°C to 2500°C
  • GOST R 8.935-2017 State system for ensuring the uniformity of measurements. National standard. Standard reference data. Titanium. Lattice constants for the temperature range from 5 K to 300 К. Linear temperature expansion coefficient for the temperature range from 5 К to 1
  • GOST R 8.992-2020 State system for ensuring the uniformity of measurements. Standard reference data. Armko iron. Nickel. Temperature coefficient linear expansion and electrical resistivity in the temperature range from 300 K to 1000 K
  • GOST R 8.988-2020 State system for ensuring the uniformity of measurements. Standard reference data. The density and thermal expansion of liquid lithium-lead alloys in the temperature range from the liquidus line to 1050 K and in the concentration range from 10 at. % to 84

ES-UNE, Coefficient of thermal expansion in standard sample year

  • UNE 43312:1982 ERRATUM:2011 Glass hydrometers. Conventional value for the thermal cubic-expansion coefficient (for use in the preparation of measurement tables for liquids)

(U.S.) Ford Automotive Standards, Coefficient of thermal expansion in standard sample year

  • FORD ESW-M2D261-A-2004 NITRILE BUTADIENE RUBBER, CONTROLLED SWELL - OIL SEAL ***TO BE USED WITH FORD WSS-M99P1111-A***
  • FORD ESW-M2D261-A-2009 NITRILE BUTADIENE RUBBER, CONTROLLED SWELL - OIL SEAL ***TO BE USED WITH FORD WSS-M99P1111-A***

PL-PKN, Coefficient of thermal expansion in standard sample year

  • PN B13047-1992 Glass hydrometers. Conventional value for the thermal cubic expansion coefficient (for use in the preparation of measurement tables for liguids)

AT-ON, Coefficient of thermal expansion in standard sample year

  • ONORM B 6410-2002 External thermal insulation composite systems - Processing standard for insulating boards for systems with expanded polystyrene particle foam EPS-F and final coat as well as for insulating boards for systems with mineral wool MW-PT and final coal




Copyright ©2007-2023 ANTPEDIA, All Rights Reserved