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PLANE STRESS STABLE CRACK GROWTH AND J-INTEGRAL HRR FIELD

机译:平面应力稳定裂纹扩展和J积分HRR场

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Moire interferometry with line densities of 1200 and 40 lines per mm was used to determine the two orthogonal displacements surrounding a stably extending crack in a 2024-T3 aluminum alloy, single edge cracked specimen. The test protocol consisted of using the fine moire grating prior to and up to the onset of crack extension and the coarse moire: grating for the ensuing crack extension up to Delta a = 6 mm. The displacement fields were used to compute the J-integrals for various contours during crack tip blunting and crack extension. As expected, the far-field J-integral value prior to stable crack growth coincided with the LEFM strain energy release rate G, and validated the experimental procedure. However, the J values obtained from the near tip contour increased slowly, while the far-field J values increased rapidly with increasing stable crack growth. The HRR displacement field was computed from the experimentally determined far-field J. The HRR displacement field agreed with the measured displacement field prior to stable crack growth since J = G. However, the HRR horizontal displacement field progressively deviated from the measured values with crack extension. [References: 32]
机译:使用线密度为1200和每毫米40条线的莫尔干涉仪来确定围绕2024-T3铝合金单边缘裂纹试样中稳定延伸的裂纹的两个正交位移。测试方案包括在裂纹扩展开始之前和开始之前使用细莫尔光栅和粗莫尔光栅:用于随后的裂纹扩展直至Delta a = 6 mm的光栅。在裂纹尖端钝化和裂纹扩展过程中,位移场用于计算各种轮廓的J积分。不出所料,稳定裂纹扩展之前的远场J积分值与LEFM应变能释放速率G吻合,并验证了实验程序。然而,从近端轮廓获得的J值缓慢增加,而远场J值随着稳定的裂纹扩展增加而迅速增加。 HRR位移场是根据实验确定的远场J计算得出的。由于J = G,HRR位移场与在稳定裂纹扩展之前测得的位移场相符。但是,HRR水平位移场逐渐偏离带有裂纹的测量值延期。 [参考:32]

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