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Database: 365,228(8 Aug 2026)

thermal stress during analysis

thermal stress during analysis, Total:169 items.

The international standard classification for "thermal stress during analysis" includes: Pressure vessels, gas cylinders , Structure and structure elements , Advanced ceramics .

The Chinese standard classification for "thermal stress during analysis" includes: Pressure vessel , Spacecraft in general , Special ceramics .


Shanxi Provincial Standard of the People's Republic of China

  • DB14/T 3441-2025 Technical Specification for Thermal Stress Simulation Analysis of Motor Insulation Systems

Professional Standard - Energy

  • NB/T 20476.10-2019 Operating license extension of nuclear power plants—Part 10: Time-limited ageing analysis for pre-stressed concrete containment
  • NB/T 20010.10-2010 PWR Nuclear Power Plant Valve - Part 10: Stress Analysis and Seismic Analysis
  • NB/T 20476.6-2019 Operating license extension of nuclear power plant — Part 6: Time-limited aging analyses of reactor pressure vessel

Professional Standard - Nuclear Industry

  • EJ/T 1022.14-1996 PWR nuclear power plant valve-Part 14: Stress analysis and seismic analysis

未注明发布机构

Taiwan Provincial Standard of the People's Republic of China

Professional Standard - Machinery

General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 38036-2019 Requirements for structural stress analysis of space products
  • GB/T 4732.4-2024 Pressure vessels design by analysis—Part 4:Stress classification method

Professional Standard - Aviation

Professional Standard - Building Materials

  • JC/T 2019-2010 Thermal analysis - Mass spectrometry coupling method for ceramics

American Society for Testing and Materials (ASTM)

  • ASTM E2046-08 Standard Test Method for Reaction Induction Time by Thermal Analysis
  • ASTM RR-E27-1005 2003 E2046-Test Method for Reaction Induction Time by Thermal Analysis
  • ASTM E2046-03 Standard Test Method for Reaction Induction Time by Thermal Analysis
  • ASTM E2046-19 Standard Test Method for Reaction Induction Time by Thermal Analysis
  • ASTM E2046-99 Standard Test Method for Reaction Induction Time by Thermal Analysis
  • ASTM E2046-14 Standard Test Method for Reaction Induction Time by Thermal Analysis
  • ASTM D3895-98 Standard Test Method for Oxidative-Induction Time of Polyolefins by Differential Scanning Calorimetry
  • ASTM STP 97-1950 Application of Stress Analysis in Cast Iron
  • ASTM E1953-02 Standard Practice for Description of Thermal Analysis Apparatus
  • ASTM STP 513-1972 Stress Analysis and Crack Growth
  • ASTM RR-E37-1019 1997 E1860-Test Method for Elapsed Time Calibration of Thermal Analyzers
  • ASTM E1860-07 Standard Test Method for Elapsed Time Calibration Thermal Analyzers
  • ASTM E1860-13(2018) Standard Test Method for Elapsed Time Calibration of Thermal Analyzers
  • ASTM E1860-02 Standard Test Method for Elapsed Time Calibration Thermal Analyzers
  • ASTM E1860-97a Standard Test Method for Elapsed Time Calibration Thermal Analyzers
  • ASTM E1860-23 Standard Test Method for Elapsed Time Calibration of Thermal Analyzers
  • ASTM E1860-13 Standard Test Method for Elapsed Time Calibration of Thermal Analyzers
  • ASTM F218-05 Standard Test Method for Analyzing Stress in Glass
  • ASTM STP 1004-1988 Analytical and Experimental Methods for Residual Stress Effects in Fatigue
  • ASTM D6382/D6382M-99(2022) Standard Practice for Dynamic Mechanical Analysis and Thermogravimetry of Roofing and Waterproofing Membrane Material

Association of German Mechanical Engineers

International Organization for Standardization (ISO)

  • ISO 12493:2017 Rubber, vulcanized — Determination of stress in tension upon heating
  • ISO/FDIS 7933 Ergonomics of the thermal environment — Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • ISO 7933:2023 Ergonomics of the thermal environment — Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • ISO 7933:1989 Hot environments; analytical determination and interpretation of thermal stress using calculation of required sweat rate
  • ISO/TR 14936:1998 Metallic materials - Strain analysis report

American National Standards Institute (ANSI)

  • ANSI/ASTM D3895:1998 Test Method for Oxidative Induction Time of Polyolefins by Thermal Analysis (08.03)

German Institute for Standardization

  • DIN EN ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2004); German version EN ISO 7933:2004
  • DIN EN ISO 7933 E:2002-12 Thermal Environmental Ergonomics Determining and Interpreting Thermal Stress Analytically Using Predicted Thermal Strain Models (Draft)
  • DIN EN ISO 7933:2021-12 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO/DIS 7933.2:2021); German and English version prEN ISO 7933:2021 / Note: Date of issue 2021-10-29*Inte...
  • DIN EN ISO 7933:2018 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using the predicted heat strain model (ISO/DIS 7933:2018); German and English version prEN ISO 7933:2018
  • DIN EN ISO 7933:2004-12 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2004); German version EN ISO 7933:2004 / Note: To be replaced by DIN EN ISO 7933 (2018-05), DIN ...
  • DIN EN ISO 7933:2024 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2023)
  • DIN EN 12515:1997 Hot environments - Analytical determination and interpretation of thermal stress using calculation of required sweat rate (ISO 7933:1989 modified)
  • DIN EN ISO 7933:2024-03 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2023); German version EN ISO 7933:2023
  • DIN EN ISO 7933 E:2018 Draft Document - Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using the predicted heat strain model (ISO/DIS 7933:2018); German and English version prEN ISO 7933:2018
  • DIN EN 26 A1 E:2017-02 Gas-fired instantaneous water heaters for the production of domestic hot water

International Electrotechnical Commission (IEC)

  • IEC TS 62101:2005 Electrical insulation systems - Short-time evaluation of combined thermal and electrical stresses
  • IEC 98/231/DTS:2004 IEC 62101 TS, Ed. 1.0: Electrical insulation systems - Short-time evaluation, combined thermal and electrical stresses

Gosstandart of Russia

  • GOST R 55596-2013 District heating systems. Standard for the stress and seismic analysis
  • GOST R 57794-2017 Ergonomics of the thermal environment. Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • GOST R 55722-2013 Vessels and apparatus. Stress analysis code. Seismic analysis

Korean Agency for Technology and Standards (KATS)

  • KS B 6728-1995 Stress and fatigue analyses for pressure vessels
  • KS A ISO 7933-2021 Ergonomics of the thermal environment-Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • KS A ISO 7933-2005(2021) Ergonomics of the thermal environment-Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • KS A ISO 7933:2005 Ergonomics of the thermal environment-Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • KS B 6728-2020 Stress and fatigue analyses for pressure vessels
  • KS B 6728-2015(2020) Stress and fatigue analyses for pressure vessels
  • KS B 6728-2015 Stress and fatigue analyses for pressure vessels
  • KS B ISO TR 14936:2003 Metallic materials-Strain analysis report
  • KS M ISO 11358-3-2017(2022) Plastics - Thermogravimetry(TG) of polymers - Part3: Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics
  • KS M ISO 11358-3-2017 Plastics - Thermogravimetry(TG) of polymers - Part3: Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics
  • KS M ISO 11358-3-2022 Plastics - Thermogravimetry(TG) of polymers - Part3: Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics
  • KS M ISO 11358-3:2017 Plastics - Thermogravimetry(TG) of polymers - Part3: Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics

GCC Standardization Organization

  • GSO ISO 12493:2013 Rubber, vulcanized - Determination of stress in tension upon heating
  • GSO ISO 11358-3:2015 Plastics -- Thermogravimetry (TG) of polymers -- Part 3: Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics

US-FCR

Association Francaise de Normalisation

  • NF EN ISO 7933:2023 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • NF EN ISO 7933:2005 Ergonomics of thermal environments - Analytical determination and interpretation of thermal stress based on the calculation of the predictable thermal stress
  • NF X35-204*NF EN ISO 7933:2005 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • NF X35-204:1997 Hot environments. Analytical determination and interpretation of thermal stress using calculation of required sweat rate.
  • NF T30-059:1974 PAINTS. DETERMINATION OF IMMEDIATE EFFECT OF HEAT.

Canadian Standards Association (CSA)

  • CSA N290.11-13:2014 Requirements for reactor heat removal capacity during shutdown of nuclear power plants

Ente Nazionale Italiano di Unificazione

  • UNI EN ISO 7933:2005 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • UNI EN ISO 7933:2023 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • UNI EN 12515:1999 Hot environments - Analytical determination and interpretation of thermal stress using calculation of required sweat rate

Swedish Institute for Standards

  • SS-EN ISO 7933:2023 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2023)
  • SS-EN ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2004)
  • SS-ISO 12493:2011 Rubber, vulcanized - Determination of stress in tension upon heating (ISO 12493:2011, IDT)
  • SS-EN 12515:1997 Hot environments - Analytical determination and interpretation of thermal stress using calculation of required sweat rate (ISO 7933:1989, modified)
  • SS-EN ISO 11781:2025 Molecular biomarker analysis — Requirements and guidance for single-laboratory validation of qualitative real-time polymerase chain reaction (PCR) methods (ISO 11781:2025, IDT)

Danish Standards Foundation

  • DS/EN ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • DANSK DS/EN ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain

Japanese Industrial Standards Committee (JISC)

  • JIS R 1618:1994 Measuring method of thermal expansion of fine ceramics by thermomechanical analysis
  • JIS B 8281:1993 Stress and fatigue analyses for pressure vessels

British Standards Institution (BSI)

  • BS EN ISO 7933:2004 Ergonomics of the thermal environment. Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • BS EN ISO 7933:2023 Ergonomics of the thermal environment. Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • BS EN ISO 7933:2005 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • BS PD 6433:1969 Guide to the application of stress analysis to design
  • PD 6433:1969 Guide to the application of stress analysis to design
  • 21/30436560 DC BS EN ISO 7933.2. Ergonomics of the thermal environment. Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • 18/30312137 DC BS EN ISO 7933. Ergonomics of the thermal environment. Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • BS ISO 11358-3:2014 Plastics. Thermogravimetry (TG) of polymers. Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics
  • BS ISO 11358-3:2021 Plastics. Thermogravimetry (TG) of polymers. Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics
  • BS ISO 11358-3:2013 Plastics. Thermogravimetry (TG) of polymers. Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics

European Committee for Standardization (CEN)

  • EN ISO 7933:2023 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2023)
  • FprEN ISO 7933 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO/FDIS 7933:2023)
  • prEN ISO 11357-5 Plastics - Differential scanning calorimetry (DSC) - Part 5: Determination of characteristic reaction-curve temperatures and times, enthalpy of reaction and degree of conversion (ISO/DIS 11357-5:2024)
  • EN 12515:1997 Hot Environments - Analytical Determination and Interpretation of Thermal Stress Using Calculation of Required Sweat Rate ISO 7933: 1989 Modified

VN-TCVN

  • TCVN 7321-2009 Ergonomics of the thermal environment.Analytical determination and interpretation of heat stress using calculation of the predicted heat strain

American Society of Mechanical Engineers (ASME)

Standards Norway

  • NS-EN ISO 7933:2023 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2023)
  • NS-EN ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2004)

Institute of Electrical and Electronics Engineers (IEEE)

  • IEEE 101-1987 Guide for the Statistical Analysis of Thermal Life Test Data

Lithuanian Standards Office

  • LST EN ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2004)

ESDU - Engineering Sciences Data Unit

Spanish Association for Standardization (UNE)

  • UNE-EN ISO 7933:2005 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2004)
  • AENOR UNE-EN ISO 7933:2005 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2004)

American Concrete Institute

  • ACI SP-246-2007 Stress distribution: Prestressed concrete structures are affected by time and temperature

CEN - European Committee for Standardization

  • EN ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain

GB-REG

U.S. Military Regulations and Norms

American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE)

  • ASHRAE ST-16-001-2016 Analyzing the Performance of a Kitchen Exhaust Air Duct with Regards to Recent Standards-A CFD/Thermal-Stress Simulation
  • ASHRAE DA-00-12-1-2000 Simplified Analysis of Building Thermal Storage Effects
  • ASHRAE 3631-1993 Prediction of Mixing Energy Loss in a Simultaneously Heated and Cooled Room: Part 1 - Experimental Analyses Factorial Effects

Society of Automotive Engineers (SAE)

  • SAE AMS4354B-2024 Aluminum Alloy, Plate, 7.9Zn - 1.8Cu - 2.0Mg - 0.10Zr (7099-T7451), Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS4361B-2024 Aluminum Alloy, Plate (7065-T7451), 7.7Zn - 2.1Cu - 1.65Mg - 0.10Zr, Solution Heat Treated, Stress-Relieved, and Overaged
  • SAE AMS4078F-2000 Aluminum Alloy Plate (7075-T7351) Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AIR1168/3B-2025 SAE Aerospace Applied Thermodynamics Manual Aerothermodynamic Systems Engineering and Design (Stabilized: Mar 2025)
  • SAE AMS4407B Aluminum Alloy, Plate (7056-T7651), 9.1Zn - 1.6Cu - 1.9Mg, Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS4201H-2025 Aluminum Alloy Plate, 6.2Zn - 2.3Cu - 2.2Mg - 0.12Zr (7050-T7651), Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS 4407B-2024 Aluminum Alloy, Plate (7056-T7651), 9.1Zn - 1.6Cu - 1.9Mg, Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS4407 Aluminum Alloy, Plate (7056-T7651), 9.1Zn - 1.6Cu - 1.9Mg, Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS4299 Aluminum Alloy, Plate (7449-T7951), 8.1Zn - 1.8Cu - 2.3Mg Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS4299A Aluminum Alloy, Plate (7449-T7951) 8.1Zn - 1.8Cu - 2.3Mg, Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS4407A Aluminum Alloy, Plate (7056-T7651) 9.1Zn - 1.6Cu - 1.9Mg, Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS4299B Aluminum Alloy, Plate (7449-T7951) 8.1Zn - 1.8Cu - 2.3Mg, Solution Heat Treated, Stress Relieved, and Overaged
  • SAE AMS4299B-2023 Aluminum Alloy, Plate (7449-T7951) 8.1Zn - 1.8Cu - 2.3Mg Solution Heat Treated, Stress Relieved, and Overaged

US-Unspecified Preparing Activity

CZ-CSN

Kingdom of Bahrain Testing and Metrology Directorate

  • BH GSO ISO 11358-3:2017 Plastics -- Thermogravimetry (TG) of polymers -- Part 3: Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics

The Directorate General of Specifications and Metrology (DGSM)

  • OS GSO ISO 11358-3:2015 Plastics -- Thermogravimetry (TG) of polymers -- Part 3: Determination of the activation energy using the Ozawa-Friedman plot and analysis of the reaction kinetics

AT-ON

  • ONORM M 7307 Teil.3-1985 Evaluation of stress analyses on boilers or pressure vessels; stress limits for cyclic loadings

Standard Association of Australia (SAA)

  • AS 411:1972 Finite element stress analysis of large structures
  • AS 409:1972 Finite element stress analysis of concrete dam

American Nuclear Society (ANS)

  • ANS 19.3-2011 Steady-state neutronics methods for power reactor analysis