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MAIN SURFACE CRACK PROPAGATION AND CRACK INITIATION AND PROPAGATION ON COUNTER PLAIN SURFACE UNDER CYCLIC BENDING

机译:循环弯曲下反平面主表面裂纹的扩展及裂纹的萌生和扩展

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摘要

Cyclic bending is a dominant loading mode in structures sustaining thermal loads. Under cyclic bending loads, a crack also initiates and propagates on the counter surface while the main crack grows. And then, these cracks meet and penetrate the thickness of the component. Numerical analysis was performed for the evaluation of the main elliptical crack propagation and crack initiation and propagation at the counter surface under cyclic out-of-plane bending. An inelastic three-dimensional finite element analysis took crack opening and closure into account. When the front surface is in tension, the main crack opens and the compressive strain on the counter surface increases. Thus, deeper the main crack, larger the total strain range on the counter surface and this stimulates crack initiation on the counter surface. As the main crack propagates, the J-integral range at the deepest point decreases for deeper than 40 % of the plate thickness, and the crack grows slower. On the other hand, the J-integral range of the counter surface crack increase rapidly and crack propagation rate of the counter crack becomes larger than that of the main crack. Both the cracks on front and counter surfaces meet near 2/3 of the plate thickness of the component. The calculated crack propagation rates in both longitudinal and depth directions of the main and the counter surface cracks based on the J-integral ranges are close to the experimental ones.
机译:在承受热负荷的结构中,循环弯曲是主要的​​负荷模式。在周期性弯曲载荷下,当主裂纹扩展时,裂纹也会在对应表面上引发并扩展。然后,这些裂纹会遇到并穿透组件的厚度。进行了数值分析,以评估主椭圆形裂纹扩展以及在循环面外弯曲下在相对表面的裂纹萌生和扩展。非弹性三维有限元分析考虑了裂纹的开合。当前表面处于张紧状态时,主裂纹会打开,并且对应表面上的压缩应变会增加。因此,主裂纹越深,反面上的总应变范围越大,这会刺激反面上的裂纹萌生。随着主裂纹的扩展,最深点的J积分范围减小的深度超过板厚的40%,并且裂纹的生长速度变慢。另一方面,相对表面裂纹的J积分范围迅速增加,并且相对裂纹的裂纹扩展速率大于主裂纹的扩展速率。正面和背面上的裂纹都接近组件板厚度的2/3。基于J积分范围计算出的主裂纹和相对表面裂纹在纵向和深度方向上的裂纹扩展速率与实验值接近。

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