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Effect of fibre architecture on the specific energy absorption in carbon epoxy composite tubes under progressive crushing

机译:渐进压碎过程中纤维结构对碳环氧复合材料管吸收比能的影响

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This paper presents the progressive crushing performance of composite tubes with varied fibre architecture. The effect of lay-up configuration and influence of percentage of unidirectional (UD) and woven fabric (WF) fibre architectures on the specific energy absorption (SEA) is investigated using experiments. Composite tubes with internal diameter 42 mm and wall thickness to diameter of 0.05 were manufactured for a range of specimens with different ratios of axial and hoop fibres. The samples were chamfered at an angle of 70 degrees. Progressive crushing of specimens under quasi-static (20 mm/min) and dynamic (4.48-6.7 m/s) loading were performed. A new factor Axial Fibre Mass Fraction (AFMF) was introduced to describe the mass fraction of axial fibres to reflect upon the SEA response. To investigate the influence of AFMF and loading rate on the crushing mechanism of composite tubes, computer tomography (CT) was additionally. The calculated SEA for different loading conditions indicate a drop of 10%-20% for dynamic cases depending on the fibre architecture of the samples. The CT-scans present a relationship between debris length and AFMF. The average length of debris decreases with the increase of AFMF which indicates more intense fibre breaking, reduced integrity of the 'petals' and hence increased SEA.
机译:本文介绍了具有不同纤维结构的复合管的渐进式破碎性能。使用实验研究了叠层构型的影响以及单向(UD)和机织织物(WF)纤维结构百分比对比能量吸收(SEA)的影响。制造了一系列内径为42 mm,壁厚与直径为0.05的复合管,用于一系列具有不同比例的轴向和环向纤维的样品。样品以70度角倒角。在准静态(20 mm / min)和动态(4.48-6.7 m / s)载荷下对样品进行渐进粉碎。引入了新的轴向纤维质量分数(AFMF)来描述轴向纤维的质量分数,以反映SEA响应。为了研究AFMF和加载速率对复合管破碎机理的影响,还添加了计算机断层扫描(CT)。对于不同的负载条件,计算得出的SEA表示,在动态情况下,取决于样品的纤维结构,下降10%-20%。 CT扫描显示了碎片长度与AFMF之间的关系。碎片的平均长度随AFMF的增加而减少,这表明纤维断裂更剧烈,“花瓣”的完整性降低,因此SEA增加。

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