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Deformation and energy absorption of composite egg-box panels

机译:复合蛋盒面板的变形和能量吸收

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Static compressive tests of composite egg-box panels, whose stacking sequences and number of plies were controlled, were carried out to investigate their deformation behaviour and energy absorption capacity. Silicon rubber moulds were first moulded from an aluminium egg-box panel template. These moulds were in turn used to fabricate composite specimens. Two fabric prepregs, carbon/epoxy plain weave fabric and glass/epoxy 4-harness satin weave were draped over the rubber mould with various stacking angles. The specimens were cured in an autoclave using vacuum bag degassing moulding and an appropriate cure cycle. The nominal stress-strain relations of the specimens were compared and multiply-interrupted compressive tests were used to identify fracture initiation and development. The energy absorption per unit mass of composite egg-box panels were compared with that of an aluminium egg-box panel. From the test results it was concluded that the compressive behaviour of the composite structure is affected by the local stacking sequence of the fabrics and by shear deformation during initial lay-up and draping. By considering the stress-stain behaviour, energy absorption and material cost, the optimal material and draping condition were proposed for a composite egg-box panel.
机译:对复合蛋盒面板进行了静态压缩试验,研究了其堆叠顺序和层数,以研究其变形行为和能量吸收能力。硅橡胶模具首先由铝蛋盒面板模板模制而成。这些模具又用于制造复合材料样品。将两种织物预浸料,碳/环氧树脂平纹织物和玻璃/环氧树脂四线缎纹织物以不同的堆叠角度覆盖在橡胶模具上。使用真空袋脱气成型法和适当的固化周期,将样品在高压釜中固化。比较了标本的名义应力-应变关系,并使用多次间断压缩试验来确定裂缝的产生和发展。将复合蛋盒面板的单位质量能量吸收与铝蛋盒面板的能量吸收进行了比较。从测试结果可以得出结论,复合结构的压缩行为受织物的局部堆积顺序和初始铺放和悬垂过程中的剪切变形的影响。考虑应力应力行为,能量吸收和材料成本,提出了复合蛋盒面板的最佳材料和悬垂条件。

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