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首页> 外文期刊>Composites >Crack propagation along interface having randomly fluctuating mechanical properties during DCB test finite difference implementation - Evaluation of G(c) distribution with effective crack length technique
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Crack propagation along interface having randomly fluctuating mechanical properties during DCB test finite difference implementation - Evaluation of G(c) distribution with effective crack length technique

机译:在DCB测试有限差分实施过程中沿具有随机波动机械性能的界面的裂纹扩展-使用有效裂纹长度技术评估G(c)分布

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摘要

A finite difference numerical scheme is implemented to study the crack initiation and propagation along a Double Cantilever Beam specimen assuming either elastic-brittle interface or elastic perfectly plastic behavior. The finite difference calculations are first compared to known analytic solution to evidence the benefits and limits of this numerical method. Then randomly fluctuating interface properties along the crack propagation path is considered to investigate the effect of variability on the force versus opening displacement evolution measured at a macroscopic scale. The local fluctuation of the critical Strain Energy Release Rate (SERR), G(c), could be estimated using the effective crack length technique. However, local minima of the critical strain energy release rate induce unstable crack propagation so that the weakest regions of the interface are not probed. Also, fluctuation of interface properties induce distortion of Gc distribution which could lead to non-conservative evaluation of the interface toughness. (C) 2016 Elsevier Ltd. All rights reserved.
机译:假设弹性-脆性界面或弹性完全塑性行为,采用有限差分数值方案研究沿双悬臂梁试样的裂纹萌生和扩展。首先将有限差分计算与已知的解析解进行比较,以证明这种数值方法的好处和局限性。然后考虑沿裂纹扩展路径随机波动的界面特性,以研究在宏观尺度下测得的力对开口位移演化的变化性的影响。临界应变能释放率(SERR)的局部波动G(c)可使用有效裂纹长度技术估算。但是,临界应变能释放率的局部最小值导致裂纹扩展不稳定,因此未探测到界面的最薄弱区域。而且,界面性能的波动引起Gc分布的变形,这可能导致界面韧性的非保守评估。 (C)2016 Elsevier Ltd.保留所有权利。

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