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Fiber pushout test: A three-dimensional finite element computational simulation

机译:光纤推出测试:三维有限元计算模拟

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摘要

A fiber pushthrough process was computationally simulated using three-dimensional finite element method. The interface material is replaced by an anisotropic material with greatly reduced shear modulus in order to simulate the fiber pushthrough process using a linear analysis. Such a procedure is easily implemented and is computationally very effective. It can be used to predict fiber pushthrough load for a composite system at any temperature. The average interface shear strength obtained from pushthrough load can easily be separated into its two components: one that comes from frictional stresses and the other that comes from chemical adhesion between fiber and the matrix and mechanical interlocking that develops due to shrinkage of the composite because of phase change during the processing. Step-by-step procedures are described to perform the computational simulation, to establish bounds on interfacial bond strength and to interpret interfacial bond quality.
机译:使用三维有限元方法对光纤穿通过程进行了计算模拟。界面材料被剪切模量大大降低的各向异性材料所替代,以便使用线性分析来模拟纤维穿入过程。这样的过程容易实现并且在计算上非常有效。它可用于预测复合材料系统在任何温度下的光纤穿入负载。从推入载荷获得的平均界面剪切强度可以很容易地分为两个部分:一个来自摩擦应力,另一个来自纤维与基体之间的化学粘合以及由于复合材料收缩而形成的机械互锁。处理过程中的相变。描述了分步过程来执行计算模拟,建立界面粘结强度的界限并解释界面粘结质量。

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