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Mechanical performance of carbon-fibre- and glass-fibre-reinforced epoxy I-beams: I. Mechanical behaviour

机译:碳纤维和玻璃纤维增​​强的环氧工字梁的机械性能:I.机械性能

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摘要

This paper is the first in a series which detail the mechanical behaviour, finite element predictions and fractographic observations of the failure of composite I-beams. Experimental investigations into the behaviour under static load of both unnotched and web- and flange-notched continuously reinforced carbon-fibre/epoxy and glass-fibre/epoxy I-beams are discussed. A four-point flexural configuration is used. The global static response and ultimate failure are described in terms of strains, compliance, buckling and final fracture. A mode of buckling that is antisymmetric across the width of the compressive flange is observed prior to failure in all cases. Failure of the unnotched I-beams is concentrated around a buckle on the compressive flange whilst failure of the notched I-beams initiates from a shear-loaded circular cutout within the web. Buckling of the unnotched beams occurs at loads that are approximately 50% of the failure loads. Failure of the notched beams occurs at loads that are approximately 75% of the failure loads of the unnotched beams. Buckling and failure of the glass/epoxy beams occur at loads that are approximately 75% of the corresponding loads in the carbon/epoxy beams.
机译:本文是该系列文章中的第一篇,详细介绍了复合工字梁的力学行为,有限元预测和分形观察。讨论了无缺口,腹板和法兰缺口连续增强的碳纤维/环氧树脂和玻璃纤维/环氧树脂工字梁在静载荷下的行为的实验研究。使用四点弯曲构造。整体的静态响应和最终破坏用应变,顺应性,屈曲和最终断裂来描述。在所有情况下,破坏之前都会观察到一种在压缩凸缘的宽度上反对称的屈曲模式。无切口工字梁的故障集中在压缩法兰上的带扣周围,而有切口工字梁的故障是由腹板内的剪切载荷圆形切口引起的。未缺口梁的屈曲发生在载荷大约为失效载荷的50%时。缺口梁的失效发生在未缺口梁的失效载荷的75%左右。玻璃/环氧树脂梁的屈曲和破坏发生在大约碳/环氧树脂梁相应载荷的75%的载荷下。

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