金属铝泡沫的生产方法及结构稳定剂分析

Karla Grgic, Igor Ćulum, B. Lela, J. Krolo, S. Jozić
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引用次数: 0

摘要

铝合金泡沫是一种多孔金属,其结构类似于珊瑚、骨头、海绵等天然材料的形状。由于它们的结构,这些材料保留了基材的良好机械性能,同时比无孔金属轻得多。金属泡沫可以用作能量和振动的吸收器、热交换器、绝缘体和过滤器。这种材料的主要缺点是生产成本高。为降低生产成本,采用铝合金芯片作为基材。泡沫由A360和AA 7075铝合金制成。采用CaCO3作为发泡剂,添加Zn和CaO作为稳定剂制备多孔结构。本文的主要目的是研究不同稳定剂对发泡后孔隙形状和相对密度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANALYSIS OF PRODUCTION METHOD AND STABILIZING AGENT ON STRUCTURE OF ALUMINUM METAL FOAMS
Aluminium alloy foams are a form of porous metal whose structure resembles the shape of natural materials such as coral, bone, sponge, etc. Due to their structure, these materials retain good mechanical properties of the base material while being significantly lighter than non-porous metal. Metal foams can be used as energy and vibration absorbers, heat exchangers, insulators, and filters. The main disadvantage of this type of material is its high production cost. To reduce production costs, aluminium alloy chips are used as base material. Foams are made of A360 and AA 7075 aluminium alloys. To produce a porous structure, CaCO3 is used as a foaming agent while Zn and CaO were added as stabilizing agents. The main goal of the paper was to investigate the difference in the shape of pores and relative density after foaming with different stabilizing agents.
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