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Compressive performance evaluation of APM (Advanced Pore Morphology) foam filled tubes

机译:APM(高级孔隙形态)泡沫填充管的压缩性能评估

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The aim of this paper is to study the uniaxial-compressive crush performance of thin-walled structures filled with Advanced Pore Morphology (APM) foam elements, exploring their deformation and failure mechanisms. The APM-foam elements are integral-skin closed-cell foams of near spherical shape fabricated through the Powder-Compacting-Foaming method by heating precursor in a continuous belt furnace. Two lightweight structures using the APM-foam elements were assembled, tested and evaluated: (i) Al-alloy tube filled with non-bonded APM-foam elements and (ii) Al-alloy tube filled with polyamide-bonded APM-foam elements. Non-bonded APM-foam filled tubes were prepared by pouring the APM-foam elements into an empty Al-alloy tube (without any bonding). Polyamide-bonded APM foam filled tubes were prepared by pouring the APM-foam elements coated with polyamide into an empty Al-alloy tube and then submitted to a heat treatment curing the polyamide. The axial crush performance of the APM foam filled tubes was compared to that of the empty tubes (with and without heat treatment) and tubes filled with conventional closed-cell foam. The results show a significant influence of the adhesive bonding on the compressive behaviour of polyamide-bonded APM foam filled tubes, which exhibit controlled deformation behaviour without appearance of cracks and show superior specific energy absorption per mass unit. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文的目的是研究填充有高级孔隙形态(APM)泡沫元件的薄壁结构的单轴压缩抗压性能,探索其变形和破坏机理。 APM泡沫元件是通过在连续带式炉中加热前体,通过粉末压实发泡法制成的近球形整体表皮闭孔泡沫。组装,测试和评估了使用APM泡沫元件的两种轻质结构:(i)填充有非粘结APM泡沫元件的铝合金管和(ii)填充有聚酰胺粘结的APM泡沫元件的铝合金管。通过将APM泡沫元件倒入空的铝合金管中(不进行任何粘合)来制备未粘合的APM泡沫填充管。通过将涂有聚酰胺的APM泡沫元件倒入一个空的铝合金管中,然后进行热处理使聚酰胺固化,来制备聚酰胺粘合的APM泡沫填充管。将APM泡沫填充管的轴向抗压性能与空管(经过和不经过热处理)以及填充有常规闭孔泡沫的管的轴向抗压性能进行了比较。结果表明,粘合剂粘结对聚酰胺粘结的APM泡沫填充管的压缩行为有显着影响,其表现出受控的变形行为而没有出现裂纹,并且每质量单位显示出优异的比能量吸收。 (C)2015 Elsevier Ltd.保留所有权利。

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