high temperature fatigue creep
high temperature fatigue creep, Total:51 items.
The international standard classification for "high temperature fatigue creep" includes: Mechanical testing of metals , Testing of metals .
The Chinese standard classification for "high temperature fatigue creep" includes: Metal mechanical property test method , Metal processing property test method .
国家市场监督管理总局、中国国家标准化管理委员会
- GB/T 38822-2020 Metallic materials- Creep-fatigue test method
- GB/T 26077-2021 Metallic materials—Fatigue testing—Axial-strain-controlled method
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 42903-2023 Metallic materials—Testing methods for creep crack and creep-fatigue crack growth rates
- GB/T 38822-2020(英文版) Creep-fatigue test methods for metallic materials
- GB/T 38822-2020e Metallic materials—Creep-fatigue test method
- GB/T 43103-2023 Metallic materials—Methods for creep-fatigue damage assessment and life prediction
- GB/T 2107-1980 Metal material--Twisting fatigue test
Group Standards of the People's Republic of China
- T/SASE 012-2023 Method for high-temperature fatigue life prediction of high-temperature resistant metallic materials
未注明发布机构
- HB 20449-2018 Axial high cycle fatigue testing method of metallic materials at elevated temperature
Professional Standard - Aviation
- HB 5153-1996 Method of Rotating Bending Fatigue Test for Metal at High Temperature
- HB 5153-1980 High temperature rotating bending fatigue test method for metals
American Society of Mechanical Engineers (ASME)
- ASME STP-PT-089-2020 Creep-Fatigue Flaw Growth Analysis to Support Elevated Temperature Flaw Size Acceptance Criteria
- ASME STP-NU-013-2008 IMPROVEMENT OF ASME NH FOR GRADE 91 NEGLIGIBLE CREEP AND CREEP FATIGUE
- ASME STP-NU-039-2012 Creep and Creep-Fatigue Crack Growth at Structural Discontinuities and Welds
- ASME STP-NU-039-2011 CREEP AND CREEP-FATIGUE CRACK GROWTH AT STRUCTURAL DISCONTINUITIES AND WELDS
- ASME STP-PT-070-2014 DESIGN GUIDELINES FOR THE EFFECTS OF CREEP, FATIGUE & CREEP-FATIGUE INTERACTION WITH DESIGN-BY-ANALYSIS AND NONDESTRUCTIVE INSPECTION ACCEPTANCE CRITERIA
- ASME SEC III D1 NH NMA T-2003 Appendix T Rules for Strain, Deformation, and Fatigue Limits at Elevated Temperatures
- ASME STP-NU-041-2011 UPDATE AND IMPROVE SUBSECTION NH �C ALTERNATIVE SIMPLIFIED CREEP-FATIGUE DESIGN METHODS
SE-SIS
- MNC 323-1972 Summary of Swedish Standard for testing at elevated temperatures, creep testing, relaxation testing and fatigue testing
- SIS SS 11 23 15-1982 Steel- Interruptedcreep testing at elevated temperatures(Load and temperature interrupted)
- SIS 11 23 12-1966 Creep-rupture testing of steel at elevated temperatures
- SIS 11 23 16-1973 Non-interrupted creep testing of steel at elevated temperatures
- SIS 11 23 12-1973 Creep-rupture testing of steel at elevated temperatures
American Society for Testing and Materials (ASTM)
- ASTM RR-E08-1009 2013 E2714-Test Method for Creep-Fatigue Testing
- ASTM E2714-13(2020) Standard Test Method for Creep-Fatigue Testing
- ASTM E2714-09 Standard Test Method for Creep-Fatigue Testing
- ASTM E2714-13 Standard Test Method for Creep-Fatigue Testing
- ASTM E2714-09e1 Standard Test Method for Creep-Fatigue Testing
- ASTM RR-E08-1014 2019 E2760-Test Method for Creep-Fatigue Crack Growth Testing
- ASTM E2760-10e2 Standard Test Method for Creep-Fatigue Crack Growth Testing
- ASTM E2760-19e3 Standard Test Method for Creep-Fatigue Crack Growth Testing
- ASTM E2760-19e1 Standard Test Method for Creep-Fatigue Crack Growth Testing
- ASTM E2760-10 Standard Test Method for Creep-Fatigue Crack Growth Testing
- ASTM E2760-16 Standard Test Method for Creep-Fatigue Crack Growth Testing
- ASTM E2760-19e2 Standard Test Method for Creep-Fatigue Crack Growth Testing
- ASTM E2760-10e1 Standard Test Method for Creep-Fatigue Crack Growth Testing
- ASTM E2760-19 Standard Test Method for Creep-Fatigue Crack Growth Testing
- ASTM STP 1643-2023 Advances in Accelerated Testing and Predictive Methods in Creep, Fatigue, and Environmental Cracking
- ASTM C1291-16 Standard Test Method for Elevated Temperature Tensile Creep Strain, Creep Strain Rate, and Creep Time-to-Failure for Monolithic Advanced Ceramics
- ASTM C1291-18 Standard Test Method for Elevated Temperature Tensile Creep Strain, Creep Strain Rate, and Creep Time to Failure for Monolithic Advanced Ceramics
- ASTM C1291-00 Standard Test Method for Elevated Temperature Tensile Creep Strain, Creep Strain Rate, and Creep Time-to-Failure for Advanced Monolithic Ceramics
- ASTM C1291-00a(2005) Standard Test Method for Elevated Temperature Tensile Creep Strain, Creep Strain Rate, and Creep Time-to-Failure for Advanced Monolithic Ceramics
- ASTM C1291-00a(2010) Standard Test Method for Elevated Temperature Tensile Creep Strain, Creep Strain Rate, and Creep Time-to-Failure for Advanced Monolithic Ceramics
- ASTM C1291-00a Standard Test Method for Elevated Temperature Tensile Creep Strain, Creep Strain Rate, and Creep Time-to-Failure for Advanced Monolithic Ceramics
International Organization for Standardization (ISO)
- ISO/TTA 5:2006 Code of practice for creep/fatigue testing of cracked components
- ISO/TTA 5:2007 Code of practice for creep/fatigue testing of cracked components
American Welding Society (AWS)
- WRC 307:1985 Fatigue and Creep Rupture Damage of Perforated Plates Subjected to Cyclic Plastic Straining in Creep Regime
- WRC 512:2006 Creep and Creep/Fatigue Crack Growth Modeling and Testing Methods Relevant to Life Assessment of Cracked Components
WRC - Welding Research Council
- BULLETIN 307-1985 FATIGUE ANMD CREEP RUPTURE DAMAGE OF PERFORATED PLATES SUBJECTED TO CYCLIC PLASTIC STRAINING IN CREEP REGIME
- BULLETIN 394-1994 SIMPLIFIED METHODS FOR CREEP-FATIGUE DAMAGE EVALUATIONS AND THE APPLICATION TO LIFE EXTENSION
- BULLETIN 402-1995 Creep-Fatigue Damage Assessment In Type 316 Stainless Steel Under Uniaxial And Multiaxial Strain Cycling At 1150°F
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