Simplicity, Consistency and Conservatism of Some Recent Charpy Energy–Fracture Toughness Correlations in Estimating the ASTM E-1921 Reference Temperature

Author:

Sreenivasan P. R.

Publisher

Springer Science and Business Media LLC

Reference14 articles.

1. Sreenivasan P R, Estimation of ASTM E-1921 reference temperature from Charpy tests: Charpy energy–fracture toughness correlation method, Eng Fract Mech 75 (2008) 5229.

2. ASTM E1921-97, Annual Book of ASTM Standards, Vol. 03.01, ASTM, Philadelphia (1998), p 1060.

3. Nevasmaa P, and Wallin K, Structural Integrity Assessment Procedures for European Industry Sintap Task 3 Status Review Report: Reliability Based Methods, REP. SINTAP VTT/4 (SINTAP-3–2-1997), VTT Manufacturing Technology, Espoo, Finland (1997).

4. Peter Julisch (Dipl.-Ing), Bruchmechanische Bewertung von Rohrleitungskomponenten auf der Basis statistisch verteilter Werkstoffkennwerte (Fracture-mechanics evaluation of piping components on the basis of material parameters distributed statistically), Ph D Thesis, submitted to the Department of Mechanical Engineering, University of Stuttgart (Materialprüfungsanstalt (MPA) Universität Stuttgart) in 2007 and approved in 2008.

5. Wallin, K, Low-cost J–R curve estimation based on CVN upper shelf energy, Fatigue Fract Eng Mater Struct 24 (2001) 537.

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