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Stress intensity factors for circular hole and inclusion using finite element alternating method

机译:圆孔和夹杂物应力强度因子的有限元交替法

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摘要

A centre cracked plate subjected to remote tensile and shear loading is considered for the analysis. Effect of circular hole and influence of shrunk fit inclusion on stress intensity factors are studied. Multiply connected domain boundary value problem is solved using finite element alternating method (FEAM). Parametric studies involving drilled hole/inclusion sizes and locations are investigated. Energy release rates evaluated using the stress field obtained by FEAM are in good agreement with other methods. The optimum location in reducing the stress intensity factor with hole/ inclusion is obtained and located at a distance 20% of semi-crack length from crack tip on the side opposite the ligament for Mode-I loading and it is also observed that the location is almost invariant of hole sizes. For Mode-II loading, the optimum location for the hole is located at a distance about 23% of semi-crack length from the middle of the crack along the transverse direction. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 13]
机译:分析中考虑了承受远距离拉伸和剪切载荷的中心裂纹板。研究了圆孔的影响以及收缩配合包含对应力强度因子的影响。使用有限元交替法(FEAM)解决了乘法连接域边值问题。对涉及钻孔/夹杂物尺寸和位置的参数研究进行了研究。使用FEAM获得的应力场评估的能量释放速率与其他方法非常吻合。获得了降低孔洞/夹杂物的应力强度因子的最佳位置,并将其放置在距与韧带-I型韧带相对的一侧的裂纹尖端的半裂纹长度的20%处,并且还观察到该位置为孔的大小几乎不变。对于II型加载,孔的最佳位置位于沿横向方向从裂纹中间开始的半裂纹长度的大约23%的距离处。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:13]

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