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首页> 外文期刊>International journal of impact engineering >Bridging the scales: Continuum-based material constitutive modeling of mechanical and ballistic test data from composites and fabrics
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Bridging the scales: Continuum-based material constitutive modeling of mechanical and ballistic test data from composites and fabrics

机译:缩小尺度:基于连续体的材料和复合材料和弹道测试数据的材料本构模型

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摘要

Modeling fiber-reinforced composites and fabrics in ballistic applications can be difficult after the initiation of damage and failure. Mesoscale models can provide accurate results, but they are much more computationally intensive than standard continuum approaches. However, an accurate continuum model for these materials requires a thorough understanding of the relevant deformation and failure mechanisms. A new continuum modeling approach was developed in which the average stresses and strains within a composite containing multiple fiber orientations are related at the element, lamina, and constituent length scales using rules of mixtures. The new approach was used to simulate a variety of mechanical and ballistic test data from different composite and fabric materials. The accuracy of the results demonstrates the predictive capability of the new model to reproduce deformation and damage of composites under generalized loading conditions.
机译:在破坏和破坏开始后,很难在弹道应用中对纤维增强的复合材料和织物进行建模。中尺度模型可以提供准确的结果,但是它们比标准连续体方法的计算量大得多。但是,针对这些材料的准确连续模型需要彻底了解相关的变形和破坏机理。开发了一种新的连续体建模方法,其中使用混合规则,包含多种纤维取向的复合材料内的平均应力和应变在元素,层板和组成长度尺度上相关。该新方法用于模拟来自不同复合材料和织物材料的各种机械和弹道测试数据。结果的准确性证明了新模型在一般载荷条件下再现复合材料变形和损坏的预测能力。

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