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Modeling the influence of layer shifting on the properties and nonlinear response of woven composites subject to continuum damage

机译:模拟层移位对连续破坏的机织复合材料性能和非线性响应的影响

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摘要

The influence of relative layer shifting on the elastic and damage response of plain weave composite laminates is analyzed using a continuum damage mechanics approach in combination with the finite element method. First, the homogenized properties of the woven composite as a function of the number of layers and of layer shifting are presented. Next, the damage development in various shifting configurations is studied using different damage constitutive models for the matrix and the fiber bundles. It is shown that the impact of layer shifting on both the elastic response and the nonlinear damage response is significant. Most notably, the model captures changes in the damage mechanisms within the woven composite that occur due to layer shifting, resulting in stiffer, more brittle behavior, which has been shown experimentally in the literature. Model results in the linear and nonlinear regimes are shown to be consistent with both an independent analytical model and reported experiments.
机译:结合连续损伤力学方法,结合有限元方法,分析了相对层位移对平纹复合材料层合板弹性和损伤响应的影响。首先,提出了织造复合材料的均质性能随层数和层移位的函数。接下来,对基体和纤维束使用不同的损伤本构模型,研究各种换挡构造下的损伤发展。结果表明,层位移对弹性响应和非线性损伤响应的影响都很大。最值得注意的是,该模型捕获了由于层移动而引起的机织复合材料内部损伤机理的变化,从而导致了更硬,更脆的行为,这已在文献中进行了实验证明。线性和非线性状态下的模型结果均与独立分析模型和已报道的实验一致。

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