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Aluminium foam–polymer composites: processing and characteristics

机译:泡沫铝-聚合物复合材料:加工和特性

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摘要

Dissemination of closed cell metal foam unique properties (low density, efficient energy absorption, high vibration/sound attenuation) in real life products has often been difficult to realise. With advanced pore morphology (APM) aluminium foam–polymer hybrids a new and simplified process route targeted at application in foam-filled structures (e.g. automotive A-pillar) has been introduced. APM foams are made from spherical, small volume foam elements joined to each other in a separate process step. Joining the aluminium foam elements by adhesive bonding delivers composite foam with approximately 80–95 wt.% aluminium foam and 5–20 wt.% adhesive (polymer). Setting up cellular structures from spherical foam elements allows for automatic part production, good pore morphology control and cost effective aluminium foam application. An automated production line is displayed and discussed. Mechanical properties of APM aluminium foam–polymer hybrids are similar to other closed cell aluminium foams. Integration of APM foams in profiles resulted in significantly improved properties as observed for conventional closed cell aluminium foam fillings. The unique properties of APM composite foams make them an attractive alternative as a cost effective and easily applicable material of construction with targeted uses such as energy absorbing reinforcement of composite structures.
机译:在现实生活中的产品中传播闭孔金属泡沫的独特特性(低密度,有效的能量吸收,高振动/声音衰减)通常很难实现。借助先进的孔形态(APM)铝泡沫聚合物混合物,引入了一种新的,简化的工艺路线,旨在应用于泡沫填充结构(例如汽车A柱)。 APM泡沫由球形的小体积泡沫元件制成,它们在单独的工艺步骤中相互连接。通过粘合剂粘结将铝泡沫元件连接起来,可以得到复合泡沫,其中泡沫铝的含量约为80-95%(重量),粘合剂(聚合物)的含量为5-20%(重量)。由球形泡沫元件设置多孔结构,可实现自动零件生产,良好的孔形态控制和经济的铝泡沫应用。显示并讨论了一条自动生产线。 APM泡沫铝聚合物的机械性能与其他闭孔泡沫铝相似。与常规闭孔铝泡沫填充料相比,将APM泡沫整合到型材中可显着改善性能。 APM复合泡沫的独特性能使其成为具有吸引力的替代方案,成为具有目标用途(例如复合结构的能量吸收增强)的经济高效且易于应用的建筑材料。

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