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Interlaminar analysis of composite structures considering cohesive contact by finite element method

机译:考虑有限元法考虑粘性接触的复合结构的层间分析

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Delamination of reinforced polymer materials is one of the catastrophic and an unsolved mystery for composite structures.Very often, a composite structure under shear loading experiences an interlayer fracture. Among many of the fracturemodes, crack initiation due to the failure of the matrix is very common. The polymer matrix is weaker in mechanicalproperties than the fibers and shows inferior shear performance under different loading conditions. In this study, epoxylayers under shear loading have been analyzed by cohesive contact generated by the finite element method by ABAQUS.The development of stress and failure features have been identified by existing cohesive zone theories. A comparativeanalysis has been performed for composite structures fabricated with neat epoxy and epoxy modified with electrospuncarbon nanofiber. The qualitative study indicates composites structure fabricated from nanomaterial modified matrix mayshow different cohesive zone. Therefore, composite materials reinforced with an additional phase in the matrix may exhibitdifferent delamination mechanics under short beam shear loading. A detailed analysis of the cohesive contact parametershas been introduced and to characterize the delamination behavior in the matrix layer in between the interlaminar regionhas been discussed. The current study indicates a change in the cohesive zone is necessary for better representation ofnanofiber modified epoxy contact than the conventional epoxy layer analysis.
机译:增强聚合物材料的分层是复合结构的灾难性和未解决的谜团之一。通常,在剪切装载下的复合结构经历层间骨折。其中许多骨折模式,由于矩阵故障导致的裂纹启动非常常见。聚合物基质在机械中较弱属性比纤维在不同的负载条件下显示出劣质剪切性能。在这项研究中,环氧树脂通过ABAQUS由有限元方法产生的粘性接触分析剪切载量下的层。现有的粘性区理论已识别应力和失效特征的发展。比较的已经进行了用纯净环氧树脂和用Electurpum改性的复合结构进行的复合结构进行分析碳纳米纤维。定性研究表明,从纳米材料改性矩阵制造的复合材料结构显示不同的凝聚区。因此,在基质中加强的复合材料加强了另外的相位短梁剪切载荷下的不同分层力学。对凝聚力接触参数的详细分析已经介绍并在InterlaMinar地区之间的矩阵层中的分层行为表征已经讨论过。目前的研究表明,更好地表示需要粘性区的变化纳米纤维改性环氧树脂接触比常规环氧树脂层分析。

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