The effect of an elevated temperature aqueous environment upon the J-controlled tearing of a low-alloy steel

Author:

James L.A,Porr W.C

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference62 articles.

1. Bryan RH et al. Pressurized thermal shock test of 6-in.-thick pressure vessels. PTSE-2: investigation of low tearing resistance and warm prestressing. Report NUREG/CR-4888, December 1987.

2. Continuum and micromechanics treatment of constraint in fracture;Dodds;International Journal of Fracture,1993

3. Chao YJ, Ji W. Cleavage fracture quantified by J and A2. Constraint effect in fracture: theory and applications. ASTM STP 1244. 1995. p. 3–20

4. Review of the J and I integrals and their implications for crack growth resistance and toughness in ductile fracture;Cotterell;International Journal of Fracture,1996

5. Shoji T, Nakajima H, Tsuji H, Takahashi H, Kondo T. Effect of microstructure and strength of low-alloy steels on cyclic crack growth in high-temperature water. Corrosion fatigue: mechanics, metallurgy electrochemistry, and engineering. ASTM STP 801. 1983. p. 256–86.

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