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A mixed mode crack growth model taking account of fracture surface contact and friction

机译:考虑断裂面接触和摩擦的混合模式裂纹扩展模型

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摘要

Fracture surface interactions, of whatever origin, can significantly affect the stress intensity factor, and consequently, can also be relevant to fatigue crack propagation. In the occurrence of interaction between fracture surfaces, the effective loading cycle experienced by material near the crack tip may be very different from that evaluated on the basis of the external loadings only. The purpose of the work described in this paper is to obtain the effective mode II stress intensity factor, k IIeff, in a surface cracked elasto-plastic plate with a factory roof fracture surface subjected to an in-plane shear (mode II) loading. A new model estimating the magnitude of the frictional mode II stress intensity factor, k f, arising from the mismatch of the fracture surface roughness during in-plane shear, is developed. Furthermore, the results of this study are employed in modeling the fatigue response of the surface cracked plates subjected to mixed mode loading.
机译:无论起源如何,断裂表面的相互作用都会显着影响应力强度因子,因此,也可能与疲劳裂纹扩展有关。在断裂面之间发生相互作用时,裂纹尖端附近的材料所经历的有效载荷周期可能与仅基于外部载荷所评估的有效载荷周期有很大不同。本文所描述的工作的目的是获得表面裂纹的弹塑性塑料板的有效模式II应力强度因子k IIeff ,该板具有工厂屋顶断裂面并经受面内剪切(模式II)加载。建立了一个新的模型,该模型可以估算由面内剪切过程中断裂表面粗糙度的不匹配引起的摩擦模式II应力强度因子k f 的大小。此外,这项研究的结果被用于模拟表面裂纹板在混合模式载荷下的疲劳响应。

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