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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >The effects of vacuum induction melting and electron beam melting techniques on the purity of NiTi shape memory alloys
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The effects of vacuum induction melting and electron beam melting techniques on the purity of NiTi shape memory alloys

机译:真空感应熔化和电子束熔化技术对NiTi形状记忆合金纯度的影响

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摘要

The usual process to produce NiTi shape memory alloys is by vacuum induction melting (VIM) using graphite crucible that contaminates the bath with carbon. The contamination by oxygen comes from residual oxygen inside the melting chamber. A new alternative process to produce NiTi alloys is by electron beam melting (EBM) using water-cooled copper crucible that eliminates the carbon contamination and the oxygen contamination would be minimized due to operation in high vacuum. This work compares the two processes and shows that the carbon contamination is four to ten times lower for EBM compared to VIM products and that the final oxygen content is much more dependent on the starting raw materials. The purity of the final product should be very important mainly in terms of biomedical applications and the contaminations by carbon and oxygen affect the direct and reverse martensitic transformation temperatures.
机译:生产NiTi形状记忆合金的常用方法是使用石墨坩埚通过真空感应熔炼(VIM),该坩埚会用碳污染熔池。氧气的污染来自熔化室内的残留氧气。生产NiTi合金的一种新的替代方法是使用水冷铜坩埚通过电子束熔化(EBM)消除碳污染,并且由于在高真空下运行而将氧污染降至最低。这项工作对这两个过程进行了比较,结果表明,与VIM产品相比,EBM的碳污染降低了四到十倍,并且最终的氧含量更多地取决于起始原料。最终产品的纯度应该在生物医学应用方面非常重要,并且碳和氧的污染会影响马氏体相变温度的正反。

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