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Microbuckle initiation from a patch of large amplitude fibre waviness in a composite under compression and bending

机译:在压缩和弯曲下,复合材料中大振幅纤维波纹的微扣引发

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摘要

A finite element couple stress formulation is used to predict microbuckle initiation from a patch of fibre waviness in a unidirectional fibre composite under remote compression and bending. Attention is the used on the knock-down in strength due to large amplitude waviness, with the effects of the physical size of the imperfection included by incoI' Porating the fibre bending resistance within the formulation. The predicted strengths deviate significantly from the simpler kinking theory which neglects the role of fibre bending. Initial imperfections in the form of an infinite band and a circular wavy patch are considered f when these imperfections are of large spatial extent and possess a large misalignment angle. the compressive strength approximates the steady state band broadening stress for an infinite band. The effect of an imposed spatial gradient of stress within the composite is explored by determining the compressive strength of beams of finite height B for the loading cases of pure bending and axial compression. It is found that the compressive strength is sensitive to the magnitude of the imposed stress gradient: the compressive strength of the outer fibres of the beam in bending increases with diminishing height of the beam. This size dependence is much reduced for the case of uniform compression.
机译:有限元耦合应力公式用于预测单向纤维复合材料在远距离压缩和弯曲下的纤维波纹,从而预测微扣的萌生。由于大幅度的波纹度,需要注意强度的降低,并且缺陷的物理尺寸的影响包括在incoI中。预测的强度明显偏离了简单的扭结理论,后者忽略了纤维弯曲的作用。当这些缺陷具有较大的空间范围并具有较大的未对准角度时,可以认为它们是无限带和圆形波浪斑块形式的初始缺陷。抗压强度近似于无限带的稳态带展宽应力。在纯弯曲和轴向压缩的载荷情况下,通过确定有限高度B的梁的抗压强度,可以探索复合材料内施加的空间应力梯度的影响。发现抗压强度对施加的应力梯度的大小敏感:弯曲时,梁的外部纤维的抗压强度随着梁的高度减小而增加。对于均匀压缩的情况,这种尺寸依赖性大大降低了。

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