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- W2245343291 abstract "The calculation of the J integral proved to be a successful method for characterizing the stress and displacement fields around a crack tip under mixed mode loading. A computer program was written to determine the symmetric and antisymmetric J integral quantities. The stress intensity factors from these J integral calculations were in excellent agreement with other calculations. The compact shear specimen used contains three loading holes, the load applied at the center hole being the opposite direction to the load applied at the two outer holes. For 7075-T6 aluminum, K/sub IIc/ was 1.9 times larger than K/sub Ic/. In the brittle photoelastic material K/sub IIc/ was less than K/sub Ic/. Failure of the 4330V steel compact shear specimens came as a result of the average shear stress in the region ahead of the crack tip exceeding the material flow shear stress. The experimental results suggest that the angle of crack growth is best predicted by the maximum tangential stress theory." @default.
- W2245343291 created "2016-06-24" @default.
- W2245343291 creator A5043514221 @default.
- W2245343291 date "1981-06-01" @default.
- W2245343291 modified "2023-10-17" @default.
- W2245343291 title "Application of the J integral to fracture under mixed-mode loading. [MMJINT; 4330V steel]" @default.
- W2245343291 doi "https://doi.org/10.2172/5954232" @default.
- W2245343291 hasPublicationYear "1981" @default.
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