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Potential effects of micromechanical stresses on the failure initiation in composite laminates

机译:微机械应力对复合材料层压板失效引发的潜在影响

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In this work, we consider the effect of modeling details on the potential initiation of failure within a laminated composite in the classical free edge problem. The work follows the demonstration by Pagano and Rybicki (1974) that the artificial singularities introduced by the effective modulus (EM) approach may lead to inconsistencies in the physical/mechanical behavior, such as failure, of the body. The present authors (1998) have recently revisited this issue by solving the same boundary value problem using modern finite element technology (ANSYS) in a micromechanical model (MM) and have shown stresses that were in very good agreement with the earlier work. Unfortunately, the transverse stresses developed in the composite studied were very small, so that experimental confirmation based on failure initiation is not feasible. Therefore, we now consider a similar laminate under a transverse loading (loading normal to the fiber direction) to accentuate these stresses, as well as the fiber-matrix interfacial stresses.
机译:在这项工作中,我们考虑了建模细节对经典自由边缘问题中层状复合材料内部潜在破坏引发的影响。这项工作遵循了Pagano和Rybicki(1974)的论证,即有效模量(EM)方法引入的人工奇点可能导致身体的物理/机械行为不一致,例如失效。本作者(1998年)最近通过在微机械模型(MM)中使用现代有限元技术(ANSYS)解决相同的边值问题,重新探讨了该问题,并显示出与早期工作非常吻合的应力。不幸的是,在所研究的复合材料中产生的横向应力很小,因此基于破坏起始的实验确认是不可行的。因此,我们现在考虑在横向载荷(垂直于纤维方向的载荷)下的类似层压材料,以加重这些应力以及纤维-基体界面应力。

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