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An Analytical Model for the Effect of Elastic Modulus Mismatch on Laminate Threshold Strength

机译:弹性模量失配对层压阈值强度的分析模型

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A scheme for calculating the stress intensity factor at the crack tip in a two-dimensional bimaterial laminate composite has been developed to model the damage tolerance obtained in brittle ceramics by using this geometry. One limitation of the model is its assumption of homogenous elastic properties throughout the composite, limiting the accuracy of predictions it can make about real material systems. Finite element simulations of the same architecture that allow for elastic modulus mismatch give results that are moderately different from those obtained from the homogeneous model. We present an analytical expression for the stress intensity factor around a crack tip in a laminated composite that can take into account the elastic modulus mismatch. To make the problem tractable, the model is based on the assumption that the system behaves as a homogeneous anisotropic material when the stress field at the crack tip arises out of far Held tractions applied away from the crack tip. The model improves upon the homogeneous model, giving results that are closer to those from the finite element simulations. We, however, conclude that more work is required to predict the stresses at the tip as the crack approaches a material interface before a complete analytical model can be obtained.
机译:已经开发了一种用于计算二维双层层压复合材料中的裂纹尖端处的应力强度因子的方案,以通过使用该几何形状来模拟脆性陶瓷中获得的损坏耐受性。该模型的一个限制是其在整个复合材料中的均匀弹性特性的假设,限制了它可以制造关于真实材料系统的预测的精度。具有弹性模量失配的相同架构的有限元模拟给出与从均匀模型中获得的结果中等不同的结果。我们在层压复合材料中呈现裂缝尖端的应力强度因子的分析表达,其可以考虑弹性模量失配。为了使问题发布,该模型基于当系统在裂纹尖端处的应力场出现在远离裂纹尖端的牵引术中时,该模型基于均匀各向异性材料。该模型改善了均匀模型,提供了更接近有限元模拟的结果。然而,我们得出结论,随着裂缝在获得完整分析模型之前接近材料界面之前,需要更多的工作来预测尖端的应力。

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