Numerical Analysis of Mechanical Test Methods for Evaluating Shear Strength of Joint by Using Interface Element
Hisashi Serizawa, Kazuaki Katayama, Charles A. Lewinsohn, Mrityunjay Singh, Hidekazu Murakawa
Abstract
Hisashi Serizawa, Kazuaki Katayama, Charles A. Lewinsohn, Mrityunjay Singh, Hidekazu Murakawa
Abstract
As examples of the most typical methods to determine the shear strength of SiC/SiC composite joints, the tensile test of lap joined composite and the asymmetrical four point bending test of butt joined composite were analyzed by using finite element method with the interface element. From the calculation results, it was revealed that the strength in the tensile test was strongly influenced by the residual stress as the increase of the joint layer thickness. In the case of asymmetrical bending test, it was found that the crack initiation point would move due to the residual stress and the strength was also affected by the joint layer thickness.
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As examples of the most typical methods to determine the shear strength of SiC/SiC composite joints, the tensile test of lap joined composite and the asymmetrical four point bending test of butt joined composite were analyzed by using finite element method with the interface element. From the calculation results, it was revealed that the strength in the tensile test was strongly influenced by the residual stress as the increase of the joint layer thickness. In the case of asymmetrical bending test, it was found that the crack initiation point would move due to the residual stress and the strength was also affected by the joint layer thickness.
Key concepts: Materials science, Composite material, Ultimate tensile strength, Composite number, Structural engineering, Finite element method, Joint (building), Bending