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BEM analysis of crack onset and propagation along fiber-matrix interface under transverse tension using a linear elastic-brittle interface model L

机译:使用线性弹性-脆性界面模型L进行横向拉伸下沿纤维-基体界面的裂纹发生和扩展的BEM分析

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The behavior of the fiber-matrix interface under transverse tension is studied by means of a new linear elastic-brittle interface model. Similar models, also called weak or imperfect interface models, are frequently applied to describe the behavior of adhesively bonded joints. The interface is modeled by a continuous distribution of linear-elastic springs which simulates the presence of a thin adhesive layer (interphase). In the present work a new linear elastic-brittle constitutive law for the continuous distribution of springs is introduced. In this law the normal and tangential stresses across the undamaged interface are, respectively, proportional to the relative normal and tangential displacements. This model not only allows for the study of crack growth but also for the study of crack onset. An important feature of this law is that it takes into account the variation of the fracture toughness with the fracture mode mixity of a crack growing along the interface between bonded solids, in agreement with previous experimental results. The present linear elastic-brittle interface model is implemented in a 2D boundary element method (BEM) code to carry out micromechanical analysis of the fiber-matrix interface failure in fiber-reinforced composite materials. It is considered that the behavior of the fiber-matrix interphase can be modeled by the present model although, strictly speaking, there is usually no intermediate material between fiber and matrix. A linear-elastic isotropic behavior of both fiber and matrix is assumed, the fiber being stiffer than the matrix. The failure mechanism of an isolated fiber under transverse tension, i.e., the onset and growth of the fiber-matrix interface crack, is studied. The present model shows that failure along the interface initiates with an abrupt onset of a partial debonding between the fiber and the matrix, caused by presence of the maximum radial stress at the interface, and this debonding further develops as a crack growing along the interface.
机译:通过一种新的线性弹性-脆性界面模型研究了纤维-基体界面在横向张力下的行为。相似的模型(也称为弱或不完美的界面模型)经常用于描述粘合接头的行为。该界面通过线性弹性弹簧的连续分布来建模,该分布模拟了薄粘合剂层(相间)的存在。在本工作中,介绍了一种用于弹簧连续分布的新的线性弹性-脆性本构律。在该定律中,未损坏界面上的法向和切向应力分别与相对法向和切向位移成比例。该模型不仅可以研究裂纹扩展,而且可以研究裂纹的发生。该定律的一个重要特征是,它考虑了沿结合固体之间的界面生长的裂纹的断裂模式混合性随断裂韧性的变化,这与以前的实验结果一致。本发明的线性弹性-脆性界面模型是在2D边界元方法(BEM)代码中实现的,以对纤维增强复合材料中的纤维-基质界面破坏进行微力学分析。尽管严格地说,通常在纤维和基体之间通常没有中间材料,但是可以认为,可以用本模型来模拟纤维-基体间相的行为。假定纤维和基质都具有线弹性各向同性,纤维比基质坚硬。研究了孤立纤维在横向张力下的破坏机理,即纤维-基体界面裂纹的发生和发展。本模型表明,由于界面处存在最大径向应力,导致沿界面的破坏是由于纤维和基体之间部分剥离的突然开始而引起的,这种剥离随着沿界面生长的裂纹而进一步发展。

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