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Investment Casting of Ti Alloys for Biomedical Application

机译:生物医学应用中Ti合金的投资铸造

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The aim of this study is to clarify the alpha-case formation mechanisms for the economic net-shape forming of Ti and Ti alloys. The a-case formation reaction between Ti and Al_2O_3 mold was examined in a plasma arc melting furnace. The reaction products were characterized by using an electron probe micro-analyzer and transmission electron microscopy. The α-case generation between Ti and Al_2O_3 mold could not be explained by the conventional α-case formation mechanism, which is known to be formed by the interstitials, especially oxygen dissolved from mold materials. However, on the basis of our experimental results and thermodynamic consideration, it was confirmed that the α-case is formed not only by interstitial oxygen atoms but also by substitutional metal atoms dissolved from mold materials. Based on the α-case formation mechanism, α-case free net-shape forming of Ti and Ti alloys could be possible for biomedical applications.
机译:本研究的目的是阐明Ti和Ti合金经济净形状的α-壳体形成机制。在等离子体弧熔炉中检查Ti和Al_2O_3模具之间的壳体形成反应。通过使用电子探针微分析仪和透射电子显微镜来表征反应产物。 Ti和Al_2O_3模具之间的α-壳体不能通过传统的α-壳体形成机制来解释,该机制已知由间质形成,尤其是从模具材料溶解的氧气形成。然而,在我们的实验结果和热力学考虑的基础上,证实αUICE不仅由间质氧原子形成,而且由溶于模具材料溶解的替代金属原子而形成。基于αUACE的形成机制,可以对Ti和Ti合金的αUIACE自由净形状形成是可能的生物医学应用。

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