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A revised virtual crack closure technique for physically consistent fracture mode partitioning

机译:用于物理上一致的断裂模式分配的修订的虚拟裂纹闭合技术

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The virtual crack closure technique (VCCT) is awell-established method for computing the energy release rate when analysing fracture problems via the finite element method. Formixed-mode fracture problems, theVCCTis also commonly used to partition the fracture modes, i.e. to determine the energy release rate contributions related to the three classical fracture modes. A perhaps little known fact, however, is that in some circumstances the standard VCCT predicts physically inconsistent, negative values for the modal contributions to the energy release rate. Focusing on I/II mixed-mode problems, this paper presents a revised VCCT which furnishes a physically consistent partitioning of fracturemodes by associating the mode I and II contributions to the amounts of work done in a suitably defined two-step process of closure of the virtually extended crack. Deeper investigation pinpoints the origins of the physically inconsistent predictions of the standard VCCT in the lack of energetic orthogonality between the crack-tip force components used to compute the modal contributions. Further insight into the problem is offered by a geometric construction, which introduces the ‘ellipse of crack-tip flexibility’. In closing, the phenomena of contact, interpenetration, and friction between the crack surfaces are briefly touched upon.
机译:虚拟裂纹闭合技术(VCCT)是一种建立完善的方法,用于通过有限元方法分析断裂问题时的能量释放速率。对于混合模式裂缝问题,VCCT通常也用于划分裂缝模式,即确定与三种经典裂缝模式有关的能量释放速率贡献。然而,一个鲜为人知的事实是,在某些情况下,标准VCCT会预测对能量释放速率的模态贡献在物理上不一致的负值。针对I / II混合模式问题,本文提出了一种修订的VCCT,通过将模式I和II的贡献与在适当定义的两步闭合过程中完成的工作量相关联,提供了断裂模式在物理上的一致划分。实际上扩展了裂纹。在用于计算模态贡献的裂纹尖端力分量之间缺乏高能正交性的情况下,更深入的研究指出了标准VCCT物理上不一致的预测的起因。几何结构可进一步了解该问题,其中介绍了“裂纹尖端的椭圆度”。最后,简短地介绍了裂纹表面之间的接触,互穿和摩擦现象。

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