ASTM International - ASTM E531-76(2001)
Standard Practice for Surveillance Testing of High-Temperature Nuclear Component Materials
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| Organization: | ASTM International |
| Publication Date: | 26 March 1976 |
| Status: | inactive |
| Page Count: | 5 |
| ICS Code (Reactor engineering): | 27.120.10 |
scope:
1.1 This practice covers procedures for specimen testing to establish changes occurring in the mechanical properties due to irradiation and thermal effects of nuclear component metallic materials where these materials are used for high temperature applications above 370°C (700°F).
Document History
September 1, 2023
Standard Practice for Surveillance Testing of High-Temperature Nuclear Component Materials
1.1 This practice covers procedures for surveillance program design and specimen testing to establish changes occurring in the mechanical properties of ferrous and nickel-based materials due to...
January 1, 2013
Standard Practice for Surveillance Testing of High-Temperature Nuclear Component Materials (Withdrawn 2022)
4.1 The requirements contained herein can be used as a basis for establishing conditions for safe operation of critical components. The requirements provide for general plant assessment and...
June 1, 2007
Standard Practice for Surveillance Testing of High-Temperature Nuclear Component Materials
The requirements contained herein can be used as a basis for establishing conditions for safe operation of critical components. The requirements provide for general plant assessment and verification...
ASTM E531-76(2001)
March 26, 1976
Standard Practice for Surveillance Testing of High-Temperature Nuclear Component Materials
1.1 This practice covers procedures for specimen testing to establish changes occurring in the mechanical properties due to irradiation and thermal effects of nuclear component metallic materials...
March 26, 1976
Standard Practice for Surveillance Testing of High-Temperature Nuclear Component Materials
1.1 This practice covers procedures for specimen testing to establish changes occurring in the mechanical properties due to irradiation and thermal effects of nuclear component metallic materials...