A Generalized Geometric Shape Function for Evaluation of SIF Values of Thin-Walled Axially-Cracked Fuel Pin Specimens
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics
Reference6 articles.
1. M.K. Samal, G. Sanyal, J.K. Chakravartty, 2009. Experimental and numerical study of fracture behaviour of tubular specimens in a Pin-Loading-Tension setup. J. of Mechanical Engineering Science 224(1)pp. 1-12.
2. V. Grigoriev, B. Jossefson, A. Lind. and B. Rosborg, 1995. A pin-loading tension test for evaluation of thin-walled tubular materials. Scripta Metallurgica et Materialia 33(1)pp. 109-114.
3. V. Grigoriev and R. Jacobson, 2005. Delayed Hydrogen Cracking Velocity and J-Integral Measurements on Irradiated BWR Cladding. J. of ASTM International. 2(8)pp. 1-16.
4. M.K. Samal, G. Sanyal, J.K. Chakravartty, 2010. Estimation of fracture behaviour of thin walled nuclear reactor fuel pins using pin- loading tension (PLT) test. Nuclear Engineering and Design, 240pp. 4043-4050.
5. M.K. Samal, G. Sanyal, J.K. Chakravartty, 2011. Investigation of failure behavior of two different types of Zircaloy clad tubes used as nuclear reactor fuel pins. Engineering Failure Analysis, 18(8)pp. 2042-2053.
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1. A unified method to estimate J-resistance curve of thin-walled metallic tube containing axial cracks;Theoretical and Applied Fracture Mechanics;2023-02
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