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A semi-analytical solution method for problems of cohesive fracture and some of its applications

机译:一种半分析解决方法,用于粘性骨折的问题及其应用

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Cohesive zone models are extensively used for the failure load estimates for structure elements with cracks. This paper focuses on some features of the models associated with the failure load and size of the cohesive zone predictions. For simplicity, considered is a mode I crack in an infinite plane under symmetrical tensile stresses. A traction-separation law is prescribed in the crack process zone. It is assumed by the problem statement that the crack faces close smoothly. This requirement is satisfied numerically by a formulation of the modified boundary conditions. The critical state of a plate with a cohesive crack is analyzed using singular integral equations. A numerical procedure is proposed to solve the obtained systems of integral equations and inequalities. The presented solution is in agreement with other published results for some limiting cases. Thus, an effective methodology is devised to solve crack mechanics problems within the framework of a cohesive zone model. Using this methodology, some problems are solved to illustrate the (i) influence of shape parameters of traction-separation law on the failure load, (ii) ability to account for contact stress for contacting crack faces, (iii) influence of getting rid of stress finiteness condition in the problem statement.
机译:粘性区域模型广泛用于具有裂缝的结构元素的故障负载估计。本文重点介绍与故障负载和凝聚区预测的故障负载和大小相关的模型的某些功能。为简单起见,考虑是在对称拉伸应力下在无限平面中裂纹的模式。在裂纹过程区中规定了牵引分离法。问题陈述假设裂缝面孔平滑。通过修改边界条件的制定来满足该要求。使用奇异的整体方程分析具有粘性裂纹的板的临界状态。提出了一种数值程序来解决所获得的整体方程和不等式的系统。本解决方案与其他限制案件的其他公布结果一致。因此,设计了有效的方法,以解决凝聚区模型的框架内的裂缝力学问题。使用这种方法,解决了一些问题以说明(i)对牵引分离法的形状参数对破坏负荷的影响,(ii)解释接触应力以接触裂纹面,(iii)摆脱的影响问题陈述中的应力有限性条件。

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