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首页> 外文期刊>Journal of Reinforced Plastics and Composites >A FEM METHOD FOR PREDICTION OF ENERGY ABSORPTION CAPABILITY OF CRASHWORTHY POLYMER COMPOSITE MATERIALS
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A FEM METHOD FOR PREDICTION OF ENERGY ABSORPTION CAPABILITY OF CRASHWORTHY POLYMER COMPOSITE MATERIALS

机译:脆性聚合物复合材料能量吸收能力的有限元方法

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Crashworthy performance of composite materials is commonly expressed in terms of specific energy absorption capability. It is determined by progressive crushing of tubular composite specimen by applying axial compressive load. The specific energy absorption capability of composite material is calculated using the mean crush load obtained from the compression test. In this work efforts have been made to develop a finite element calculation method for predicting the mean crush load. For analysis purpose, we considered filament wound glass fiber/epoxy and woven glass fiber/epoxy composite tubes which crush by splaying mode. Based on the microscopic observations, various microfracture processes in the splaying mode crush zone were identified. Longitudinal cracking of tube wall is relatively important compared to other fracture processes. The contribution of longitudinal cracking of tube wall on the mean crush load and energy absorption capability of composite material was estimated. The predicted values were in reasonably good agreement with the experimental results. [References: 42]
机译:复合材料的耐碰撞性能通常用比能量吸收能力来表示。它是通过施加轴向压缩载荷逐渐压碎管状复合材料试样而确定的。复合材料的比能吸收能力是根据压缩试验获得的平均压碎载荷计算的。在这项工作中,已经努力开发一种用于预测平均挤压载荷的有限元计算方法。为了分析的目的,我们考虑了缠绕的玻璃纤维/环氧树脂和玻璃纤维/环氧树脂编织的复合管,它们通过张开模式而破裂。基于微观观察,确定了八字形挤压区的各种微裂缝过程。与其他断裂过程相比,管壁的纵向开裂相对重要。估算了管壁的纵向开裂对复合材料平均破碎载荷和能量吸收能力的影响。预测值与实验结果相当吻合。 [参考:42]

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