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Fracture behavior of periodically bonded interface of piezoelectric bi-material under compressive-shear loading

机译:压缩剪切载荷下压电双材料定期粘结界面的断裂行为

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摘要

A closed-form solution is constructed for a bi-material consisting of two piezoelectric (or piezoelectric and dielectric) half-planes, which are periodically bonded along the interface and can partially contact along the initially unbonded parts. Under compressive loading, the size of the frictionless contact zone is usually quite large; in some cases the interface is completely closed. Such a situation is frequently observed in industrial applications. Since the periodic bonding of two different materials is extremely widespread, it is very important to study the influence of the mutual material properties of the composite and the applied loading on the size and shape of the opened regions, as well as the stress intensity factor at the bonding points. To formulate the problem, the electromechanical factors are presented through piecewise analytic functions, so that the problem in question is reduced to the combined periodic Dirichlet-Riemann problem, which is solved exactly. The obtained solution provides explicit formulas for the mechanical stresses and displacements along the interface and allows one to find the dependence of the contact zones and the stress intensity factor on the ratio of the bonded parts of the interface to the period for the different values of applied loading and materials.
机译:闭合溶液构造成用于由两个压电(或压电和电介质)半平面组成的双层,它们沿界面周期性地粘合,并且可以沿最初未粘附的部分部分地接触。在压缩负载下,无摩擦接触区的尺寸通常非常大;在某些情况下,界面完全关闭。在工业应用中经常观察到这种情况。由于两种不同材料的周期性粘合非常普遍,研究复合材料的互材料特性和施加的负载对开放区域的尺寸和形状的影响非常重要,以及应力强度因子粘合点。为了制定问题,通过分段分析函数呈现机电因子,因此所讨论的问题被降低到组合的周期性Dirichlet-riemann问题,这是完全解决的。所获得的解决方案为沿接口的机械应力和位移提供了明确的公式,并允许一个人找到接触区域和应力强度因子的依赖性对界面的粘接部分与应用的不同值的界面的粘合部分的比率。装载和材料。

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