The Effects of Carbides and Cavities on Creep Crack Growth in HK40 Steel

Author:

ZHU S.J.,ZHAO J.,WANG F.G.,CAO Z.B.

Publisher

Elsevier

Reference8 articles.

1. Creep Fracture and Residual Life Prediction of a Petrochemical Furnace Tube Steel;Dunlop;Scand. J. Metallurgy,1978

2. The Creep Fracture of Wrought Nickel-Base Alloys by a Fracture Mechanics Approach;Floreen;Metall. Trans. A,1975

3. Kobayashi, M., O.Miyagawa and J.Takahashi (1985). The Effects of Grain and Grain Boundary Strength on Creep Crack Growth Behavior in Austenitic Heat-Resistant Steel. In: Proceedings of Mechanical Society of Japan, A, 51, 1107—1104 (in Japanese).

4. Persson, N.G. and S.Waher (1975). Evaluation of Materials for Pyrolysis Furnace Tubes with a Creep Damage Model. In: Proceedings of the Fourth Nordic High Temperature Symposium, 2, 259—275.

5. Short-Time Tensile and Long-Time Creep Rupture Properties of the HK-40 Alloy and Type 310 Stainless Steel at Temperature to 2000F;VanEcho;Trans. ASME, J. Basic Eng.,1967

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