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Microbuckle initiation from a hole and from the free edge of a fibre composite

机译:从孔洞和纤维复合材料的自由边缘引发微扣

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Microbuckle initiation from an open hole, from a filled hole, and from the free surface of a unidirectional fibre composite is examined by a finite element method. The role of fibre bending resistance is included in the formulation so that a hole size effect is predicted. It is found that the open hole knocks-down the compressive strength to the order of 20 tau(Y), while the filled hole reduces the strength to about 40 tau(Y), where tau(Y) is the in-plane shear modulus of the composite. Pre-existing fibre waviness adjacent to the hole gives a further reduction in the compressive strength. The role of in-plane shear stress and transverse stress in reducing the open hole compressive strength is examined: the compressive strength is reduced by the presence of shear and transverse tension, but the effect is less pronounced than that observed previously for the case of a circular patch of waviness. The study concludes with an investigation of the influence of the free surface on microbuckle initiation from a band of waviness and from a semi-circular patch of waviness a negligible effect of the free surface on the compressive strength is predicted. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 28]
机译:通过有限元方法研究了从单向纤维复合材料的开孔,填充孔和自由表面引发的微扣。纤维抗弯曲性的作用包括在配方中,因此可以预测孔径的影响。发现开孔将抗压强度降低到20 tau(Y)数量级,而填充孔将强度降低到约40 tau(Y),其中tau(Y)是面内剪切模量复合材料。邻近孔的预先存在的纤维波纹会进一步降低抗压强度。检验了平面内切应力和横向应力在降低裸眼抗压强度中的作用:由于存在剪切力和横向张力,抗压强度降低,但这种作用不如以前在大孔情况下明显。圆形波纹。该研究的结论是,对自由表面对波纹带和半圆形波纹的微扣引发的影响进行了调查,预测了自由表面对抗压强度的影响可忽略不计。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:28]

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