Approximate elastic-plastic analysis of the static and impact behaviour of polymer composite sandwich beams

R.A.W. Mines, Norman Jones
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引用次数: 46

Abstract

An elastic-plastic beam bending model has been developed to simulate the post-upper skin failure energy absorption behaviour of polymer composite sandwich beams under three-point bending. The beam skins consist of woven and chopped strand glass, while the core is a resin impregnated non-woven polyester material known as Coremat. A polyester resin was used for the construction. The theoretical model consists of a central hinge dominated by a crushing core and tensile elastic strains in the lower skin. Experimental measurements of the non-linear force-deflection characteristics for the beam are compared to the theoretical predictions from the model, and it is shown that the shear crushing of the core has an important effect on the behaviour of the beam. The model shows that the most important material properties are the lower skin tensile failure strain and the core crushing strength. Dynamic effects are included in the model in the form of a strain rate dependence of the core crushing stress and the strain rate dependence of the failure strain in the lower skin. The increase in material strength with strain rate gives rise to an improved energy absorption capacity for the beam under impact loading.

聚合物复合材料夹层梁静力和冲击性能的近似弹塑性分析
建立了一种弹塑性梁弯曲模型,模拟了聚合物复合材料夹层梁在三点弯曲作用下的上表皮破坏后能量吸收行为。梁表皮由编织和切割玻璃线组成,而核心是树脂浸渍的无纺布聚酯材料,称为Coremat。该结构使用了聚酯树脂。该理论模型由一个由破碎核心主导的中心铰链和下表皮的拉伸弹性应变组成。梁的非线性力-挠度特性的实验测量结果与模型的理论预测结果进行了比较,结果表明,芯的剪切破碎对梁的行为有重要影响。该模型表明,最重要的材料性能是下表皮拉伸破坏应变和核心抗压强度。动态效应包括在模型中,其形式是核心破碎应力的应变率依赖关系和下表皮破坏应变的应变率依赖关系。材料强度随应变率的增加而增加,使梁在冲击载荷下的能量吸收能力得到提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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