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Nanoporous Copper-Zinc-Aluminum Shape Memory Alloy and Preparation and Application Thereof

机译:纳米多孔铜锌铝形状记忆合金及其制备和应用

摘要

The present invention discloses a nanoporous copper-zinc-aluminum shape memory alloy and a preparation method and an application thereof. According to the method, firstly a pure Cu block, a pure Zn block and a pure Al block are proportioned in a certain mass ratio before being smelted to obtain a copper-zinc-aluminum alloy ingot; the obtained copper-zinc-aluminum alloy ingot is melt spun using a copper roller rapid quenching method under vacuum protection to obtain an ultrathin strip CuZnAl master alloy which is then subjected to an etching treatment with a solution containing chloride ions at a temperature of 0˜80° C. for 10˜300 minutes to obtain a nanoporous Cu/CuZnAl material; and finally the nanoporous CuZnAl material is sealed in a high vacuum quartz tube for a heat treatment to obtain a nanoporous copper-zinc-aluminum shape memory alloy having a superelastic single β phase at room temperature. The preparation method according to the present invention is highly controllable and can be used in the industry preparing electrode materials for lithium ion secondary batteries to remarkably improve the cyclic performance of electrode materials.
机译:本发明公开了一种纳米孔铜锌铝形状记忆合金及其制备方法和应用。根据该方法,首先将纯铜块,纯锌块和纯铝块按一定的质量比进行配比,然后再熔融,得到铜锌铝合金锭。利用铜辊快速淬火法在真空保护下对得到的铜锌铝合金锭进行熔纺,得到超薄带状CuZnAl母合金,然后在0〜0℃的温度下用含氯离子的溶液进行蚀刻处理。 80℃下10〜300分钟,得到纳米多孔Cu / CuZnAl材料;最后将纳米多孔CuZnAl材料密封在高真空石英管中进行热处理,得到室温下具有超弹性单β相的纳米多孔铜锌铝形状记忆合金。根据本发明的制备方法是高度可控的,并且可用于工业制备锂离子二次电池用电极材料以显着改善电极材料的循环性能。

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