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首页> 外文期刊>Journal of Sandwich Structures and Materials >Investigation of elastomeric foam response applied as core for composite sandwich beams through progressive failure of the beams
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Investigation of elastomeric foam response applied as core for composite sandwich beams through progressive failure of the beams

机译:通过横梁进行复合夹层梁的弹性泡沫响应的调查

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摘要

In this paper an elastomeric foam is applied as core for the composite sandwich beams and load carrying capacity, load-deflection response, and progressive failure are examined through experimental and finite element studies. The objective of this study is to assess the efficiency of elastomeric foam-cored sandwich (EFCS) beams relative to crushable foam-cored sandwich (CFCS) beams. The experimental program consists of two phases. In the first phase, some characterization tests are conducted on the constituent materials of the sandwich beams such as tension, compression, and shear tests on the foam and bending test on the composite beams utilized as skins. Then in the second phase, the performance of the sandwich beams is examined under bending conditions. The load carrying behavior of the sandwich beams is considered dependent on two main features of the constituent materials: (1) the hyperelastic behavior of the foam core and (2) the progressive damage of the composite skins. These characteristics are simulated by the finite element models. Due to elastomeric rather than crushable deformation of the applied foam as the core, the conventional damage modes of the CFCS beams associated to the brittleness of the core material are omitted through load carrying capacity of the EFCS beams. So in the recent sandwich beams by omission of the core failure modes and utilization of compressive residual strength of the top composite skin, considerable energy is absorbed prior to failure of the bottom composite skin. By simulation of the test specimens using FE models, the response of the foam applied as core for the sandwich beams through progressive failure of the beams is investigated. The results show that the elastomeric foam core can provide superior features for the sandwich components especially for the cases in which high energy absorption capacity is required.
机译:在本文中,通过实验和有限元研究检查弹性体泡沫作为复合夹层梁的核,负载载荷能力,载荷偏转响应和逐渐破坏。本研究的目的是评估相对于可抵抗力泡沫芯夹层(CFCS)梁的弹性体泡沫粘土夹心(EFCS)束的效率。实验程序包括两个阶段。在第一阶段,一些表征测试在夹中梁的组成材料上进行,例如张力,压缩和泡沫上的剪切试验和作为皮肤的复合梁上的弯曲试验。然后在第二阶段,在弯曲条件下检查夹层梁的性能。夹层光束的负载承载行为被认为取决于构成材料的两个主要特征:(1)泡沫芯的高速行为和(2)复合皮肤的渐进损伤。这些特性由有限元模型进行模拟。由于弹性体而不是施加的泡沫作为芯的可抵碎变形,通过EFCS梁的负载承载能力省略与芯材料的脆性相关的CFCS梁的常规损伤模式。因此,在最近的夹层光束中通过省略核心衰竭模式和用于顶部复合皮肤的压缩残余强度的利用,在底部复合皮肤失效之前吸收了相当大的能量。通过使用Fe模型模拟测试样品,研究了作为梁通过梁的渐进梁的晶体施加芯的泡沫的响应。结果表明,弹性体泡沫芯可为夹层组分提供优异的特征,特别是对于需要高能量吸收能力的情况。

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