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Preparation of three-dimensional shaped aluminum alloy foam by two-step foaming

机译:两步发泡制备三维异型铝合金泡沫

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摘要

A novel method, named two-step foaming, was investigated to prepare three-dimensional shaped aluminum alloy foam used in car industry, spaceflight, packaging and related areas. Calculations of thermal decomposition kinetics of titanium hydride showed that there is a considerable amount of hydrogen releasing when the titanium hydride is heated at a relatively high temperature after heated at a lower temperature. The hydrogen mass to sustain aluminum alloy foam, having a high porosity, was also estimated by calculations. Calculations indicated that as-received titanium hydride without any pre-treatment can be used as foaming agents in two-step foaming. The processes of two-step foaming, including preparing precursors and baking, were also studied by experiments. Results showed that, low titanium hydride dispersion temperature, long titanium hydride dispersion time and low precursors porosity are beneficial to prepare three-dimensional shaped aluminum alloy foams with uniform pores.
机译:研究了一种称为两步发泡的新方法,以制备用于汽车,航天,包装及相关领域的三维异型铝合金泡沫。氢化钛的热分解动力学的计算表明,当氢化钛在较低温度下加热后,在相对较高的温度下加热时,会释放出大量的氢。还通过计算估算了维持高孔隙率的铝合金泡沫的氢质量。计算表明,不加任何预处理的原样氢化钛可以用作两步发泡中的发泡剂。还通过实验研究了两步发泡的过程,包括制备前体和烘烤。结果表明,较低的氢化钛分散温度,较长的氢化钛分散时间和较低的前驱体孔隙率有利于制备具有均匀孔隙的三维形状的铝合金泡沫。

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