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Analysis of the bending and failure of fiber metal laminates based on glass and carbon fibers

机译:基于玻璃和碳纤维的纤维金属层压板的弯曲和失效分析

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The purpose of this paper is to investigate the mechanisms of cracking and failure in fiber metal laminates (FMLs) subjected to 3-point bending. Two types of laminates, based on the glass/epoxy and carbon/epoxy composites, were selected for the study. The paper presents the failures of matrix and fibers as well as the effects of different thicknesses of metal layers on the tested laminates. The mechanisms of failure observed for the two tested types of fibers with uniform thickness of aluminum sheets seem similar. The results demonstrate that the tested laminates exhibit the following failure modes: fiber breakage, matrix cracking, fiber/matrix debonding, delamination, and anodic layer failure. Given the behavior of aluminum under the compressive and tensile stresses, the aluminum layer acts as a barrier preventing FML failure during bending. In addition to aluminum layer thickness, the fiber type and composite layer directions are also important factors to be considered.
机译:本文的目的是探讨纤维金属层压板(FMLS)的裂缝和失效机制,经过3点弯曲。选择基于玻璃/环氧和碳/环氧复合材料的两种类型的层压材料进行研究。本文呈现了基质和纤维的故障以及不同厚度金属层对测试层压板的影响。对于具有均匀厚度的铝板厚度的两种测试类型的纤维的故障机制似乎是相似的。结果表明,经测试的层压板表现出以下的失效模式:纤维破裂,基质破裂,纤维/矩阵剥离,分层和阳极层失效。鉴于铝在压缩和拉伸应力下的行为,铝层用作防止弯曲过程中的屏障。除铝层厚度外,纤维型和复合层方向也是所考虑的重要因素。

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