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Continuously cast Cu-Al-Ni shape memory alloy - Properties in as-cast condition

机译:连续铸造的Cu-Al-Ni形状记忆合金-铸态性能

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In respect to the cost of constituents, Cu-Al-Ni alloys can be regarded as low-cost shape memory alloys. However, the processing is quite costly due to the brittleness of the ingots. Therefore it would be advantageous to produce semi-finished products directly from the melt via highly productive technique. A laboratory device for vertical continuous casting directly from the vacuum induction melting furnace was experimentally employed for continuous casting of the Cu-13 wt.% Al-4 wt.% Ni shape memory alloy. A water-cooled copper crystalliser with a graphite insert was used to cast φ 16 mm strands. Diverse sets of casting parameters were tested, the average casting speeds being within the range from 250 mm min~(-1) to 625 mm min~(-1). The castability of the alloy using this technique was good. Strands were examined in the as-cast condition, and no cracks or other defects were discovered. Medium casting speeds resulted in good surface quality, and a fully martensitic microstructure was obtained even at the lowest average casting speed. The paper presents and discusses the surface quality, microstructures and mechanical properties.
机译:关于成分的成本,Cu-Al-Ni合金可以被认为是低成本的形状记忆合金。但是,由于铸锭的脆性,加工成本很高。因此,通过高生产率的技术直接从熔体生产半成品将是有利的。通过实验直接从真空感应熔炼炉中进行垂直连续铸造的实验室装置被用于连续铸造Cu-13重量%的Al-4重量%的Ni形状记忆合金。使用带有石墨插件的水冷铜结晶器铸造φ16 mm的铸坯。测试了不同的铸造参数集,平均铸造速度在250 mm min〜(-1)至625 mm min〜(-1)的范围内。使用该技术的合金的铸造性良好。在铸态下检查钢绞线,未发现裂纹或其他缺陷。中等的铸造速度可产生良好的表面质量,即使在最低的平均铸造速度下也可获得完全的马氏体组织。本文介绍并讨论了表面质量,微观结构和力学性能。

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