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The quasi-static axial compressive properties and energy absorption behavior of ex-situ ordered aluminum cellular structure filled tubes

机译:异位有序铝蜂窝结构填充管的准静态轴向压缩特性和能量吸收行为

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In this study, the ex-situ ordered aluminum cellular structure filled tubes with different filler types, filling ratios and filling positions were fabricated by inserting the ordered aluminum cellular structure fillers into the aluminum tubes directly. The ordered aluminum cellular structure fillers were prepared by the selective laser sintering and the infiltration casting. The compressive properties and energy absorption behavior of ex-situ ordered aluminum cellular structure filled tubes were assessed by quasi-static axial compression tests. The effects of the ordered cellular structure types, filling ratios and filling positions on compressive properties and energy absorption behavior of ex-situ ordered aluminum cellular structure filled tubes were investigated. The results show that both the uniform and graded ordered aluminum cellular structures as filler materials can significantly improve the compressive properties and energy absorption behavior. Meanwhile, the compressive properties and energy absorption behavior of ex-situ ordered aluminum cellular structure filled tubes can be tailored by changing the filling ratios and positions. It is noticed that the ex-situ ordered aluminum cellular structure vertically filled the middle part of the thin-walled tubes exhibit superior compressive properties and energy absorption behavior compared with the ex-situ ordered aluminum cellular structure horizontally filled the bottom of the thin-walled tubes.
机译:在这项研究中,通过将有序的铝蜂窝结构填料直接插入铝管中,制造出具有不同填料类型,填充比和填充位置的异位有序铝蜂窝结构填充管。通过选择性激光烧结和熔铸制备有序的铝多孔结构填料。通过准静态轴向压缩试验评估了异位有序铝蜂窝结构填充管的压缩性能和能量吸收行为。研究了有序孔结构类型,填充比和填充位置对异位有序铝孔结构填充管的压缩性能和能量吸收行为的影响。结果表明,均匀且分级的有序铝蜂窝结构作为填充材料均可显着改善压缩性能和能量吸收性能。同时,可以通过改变填充比例和位置来定制异位有序铝蜂窝结构填充管的压缩性能和能量吸收性能。注意到,与水平填充在薄壁底部的异位有序铝蜂窝结构相比,垂直填充在薄壁管中部的异位有序铝蜂窝结构表现出优异的压缩性能和能量吸收性能。管。

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