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Effect of the transitional gradient of material property on the mechanical behavior of a non-homogeneous interlayer

机译:物质过渡梯度对非均相中间层的力学行为的影响

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The main idea of this paper is to study the effects of the transitional gradient of material property at interface on the mechanical behavior of a bi-interface structure with a sandwiched non-homogeneous interlayer. Four different types of transitional functions of material property are put forward and their influences are analyzed by the finite element method. It is indicated that, to diminish the value of the gradient of Young's modulus at interface is beneficial to decreasing the stress concentration at interface. Under the mode-I loading, among all the mode-I and mode-II stress intensity factors at both interfaces, the dominant one is always the mode-I stress intensity factor at the more rigid interface. With the gradient of Young's modulus at interface decreasing, the SIFs corresponding to the two different interfaces vary inversely, however, the dominant stress intensity factor decreases. To reduce the gradient of material property at interfaces, i.e., to reduce the weak-discontinuity of interfaces, will be beneficial to enhancing the ability of bi-interface structure against fracture. (C) 2007 Elsevier B.V. All rights reserved.
机译:本文的主要思想是研究材料特性过渡梯度在双界面结构与夹层的非均匀中间层的界面上的影响。提出了四种不同类型的材料性能的过渡功能,有限元方法分析了它们的影响。结果表明,为了减小界面的杨氏模量的梯度的值是有益的,可以降低界面处的应力浓度。在模式-I加载下,在两个接口的所有模式-I和模式-II应力强度因子中,主导地位始终是更刚性接口处的模式-I应力强度因子。随着杨氏模量的梯度减小,对应于两个不同界面的SIFS反应不变,然而,显性应力强度因子降低。为了减少界面处的材料性质的梯度,即减少接口的弱不连续性,将有利于提高双界面结构与骨折的能力。 (c)2007 Elsevier B.v.保留所有权利。

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