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Modeling of nonlinear response in loading-unloading tests for fibrous composites under tension and compression

机译:拉伸和压缩条件下纤维复合材料装卸测试中的非线性响应建模

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Loading-unloading tests on unidirectional HTS40/PA6 carbon/polyamide laminates are performed in this study to identify the nature of off-axis nonlinear deformation of fibrous composites under tension and compression. Experimental results reveal the involved residual strain (plastic strain) and hysteresis loop during loading and unloading, and their dependence on stress level, fiber orientation, and tension or compression mode. The hysteresis behavior is assumed to be induced by a component of strain, which is considered as anelastic strain. This strain is recoverable like elastic deformation but dissipates work like plastic deformation. An approach is developed to predict the tension-compression asymmetry in plastic strain and anelastic strain, as well as the dependence of asymmetry on stress level and fiber orientation. The proposed approach is a modification of a strength differential model that considers the nonlinear deformation completely as plastic strain for monotonic tests. Predicted off-axis loading-unloading responses of unidirectional laminates are compared with the experimental results. The modified model is found to be effective for adequately describing the tension-compression asymmetry not only in plastic strain but also in complex nonlinear hysteresis behavior.
机译:在本研究中,对单向HTS40 / PA6碳/聚酰胺层压板进行了装卸测试,以确定在拉伸和压缩条件下纤维复合材料的轴外非线性变形的性质。实验结果揭示了在加载和卸载过程中涉及的残余应变(塑性应变)和磁滞回线,以及它们对应力水平,纤维取向以及张力或压缩模式的依赖性。假定磁滞行为是由应变的一个分量引起的,该应变被视为非弹性应变。这种应变可以像弹性变形那样恢复,但是可以像塑性变形那样消散功。开发了一种方法来预测塑性应变和非弹性应变中的拉伸压缩不对称性,以及不对称性对应力水平和纤维取向的依赖性。所提出的方法是对强度微分模型的修改,该强度微分模型将非线性变形完全视为单调测试的塑性应变。将预测的单向层压板的离轴装卸响应与实验结果进行了比较。发现改进的模型不仅足以有效地描述塑性变形中的拉伸-压缩不对称性,而且还可以有效地描述复杂的非线性磁滞行为。

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