1991TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series AOpen access

Stress Intensity Factors for the Interface Crack between Dissimilar Orthotropic Materials.

Ryoji YUUKI, Jinquan Xu

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Abstract

A correct form of the definition of the stress intensity factors is presented for an interface crack between dissimilar orthotropic materials, and the extrapolation methods to determine the stress intensity factors by numerical results are proposed. From some numerical results, it is confirmed that the definition is vallid and the extrapolation methods are very efficient. This study also investigates the stress distribution on the interface between dissimilar orthotropic materials. It is found that there exists a good pair for dissimilar orthotropic materials, in which the stress singularity disappears at the edge of the interface.

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A correct form of the definition of the stress intensity factors is presented for an interface crack between dissimilar orthotropic materials, and the extrapolation methods to determine the stress intensity factors by numerical results are proposed. From some numerical results, it is confirmed that the definition is vallid and the extrapolation methods are very efficient. This study also investigates the stress distribution on the interface between dissimilar orthotropic materials. It is found that there exists a good pair for dissimilar orthotropic materials, in which the stress singularity disappears at the edge of the interface.

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Available abstract

A correct form of the definition of the stress intensity factors is presented for an interface crack between dissimilar orthotropic materials, and the extrapolation methods to determine the stress intensity factors by numerical results are proposed. From some numerical results, it is confirmed that the definition is vallid and the extrapolation methods are very efficient. This study also investigates the stress distribution on the interface between dissimilar orthotropic materials. It is found that there exists a good pair for dissimilar orthotropic materials, in which the stress singularity disappears at the edge of the interface.

Key concepts: Orthotropic material, Stress intensity factor, Extrapolation, Materials science, Enhanced Data Rates for GSM Evolution, Stress (linguistics), Composite material, Structural engineering

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