首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications >Analysis of preconditioned glass fibre reinforced composite sandwich I-beams in bending
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Analysis of preconditioned glass fibre reinforced composite sandwich I-beams in bending

机译:预处理玻璃纤维增​​强复合材料夹心工字梁弯曲性能分析

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摘要

The flexural mechanical behaviour of various composite sandwich I-beams has been investigated under quasi-static loading. Both intact and preconditioned I-beam specimens were examined. The intact I-beams had two different support spans. The preconditions included central voids and remote debonds, both embedded at the flange-web intersections, whereas remote, barely visible impact damage (BVID) was introduced on the flange surfaces. It was found that the behaviour of the present I-beams was nearly linear until ultimate failure approached, and that the load-bearing capability exceeded the design requirement, irrespective of the preconditions. The flexural rigidity of the intact I-beams calculated by using the lamination theory compared well with the experimental value. The analytical predictions for maximum deflections and maximum tensile strains were in reasonably good agreement with the respective experimental measurements. It was found that neither the central voids nor the remote debonds or BVID had a significant effect on the flexural behaviour. The process of structural failure was extremely complex and was affected to a greater extent by the relatively low mechanical properties of the polymethacrylimide (PMC) foam core. It was shown that foam compression and local web skin wrinkling were the major failure mechanisms, irrespective of the preconditions.
机译:研究了各种复合夹心工字梁在准静态载荷下的弯曲力学行为。检查完整的和预处理的工字梁样品。完整的工字梁有两个不同的支撑跨度。前提条件包括中心空隙和远端脱胶,它们都嵌入在凸缘-腹板相交处,而在凸缘表面则引入了远端,几乎看不见的冲击损伤(BVID)。结果发现,在达到最终破坏之前,目前的工字梁的性能几乎是线性的,并且与先决条件无关,其承载能力超过了设计要求。使用层压理论计算的完整工字梁的抗弯刚度与实验值进行了比较。最大挠度和最大拉伸应变的分析预测与各自的实验测量结果相当吻合。发现中央空隙,远端脱骨或BVID均对弯曲行为没有显着影响。结构破坏的过程极其复杂,并且受到聚甲基丙烯酰亚胺(PMC)泡沫芯相对较低的机械性能的较大影响。结果表明,与先决条件无关,泡沫压缩和局部腹板皮肤起皱是主要的失效机理。

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