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Synthesis of Ti-based bulk quasicrystal by shock compression

机译:冲击压缩合成Ti基块状准晶体

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摘要

We attempted to produce a Ti_(45)Zr_(38)Ni_(17) bulk icosahedral (i) quasicrystal by a shock compression technique, in which a single-stage powder gun discharges a flyer plate that consolidates the target powders. The results were also compared with those by a conventional hot-pressing. The powder mixtures for the shock compression were blended by two kinds of methods; that is, gently mixing in a vial, and mechanically alloying by a planetary ball mill. A large bulk i-phase sample, with a Ti2Ni crystal phase, was synthesized from mechanically alloyed powders after shock compression at a higher flyer velocity, although the conventional hot-pressing at 3 MPa synthesized only the Ti2Ni phase. For the gently mixed powders, no reaction occured even after shock compression. High-pressure and high-temperature produced during shock compression, and milling process were key factors to obtain the i-phase. The Vickers hardness and the wetting contact angle with pure water under an atmospheric pressure for the bulk sample containing the i-phase were about 7 GPa and about 70°, respectively.
机译:我们试图通过冲击压缩技术生产Ti_(45)Zr_(38)Ni_(17)体二十面体(i)准晶体,其中单级粉末枪释放出可凝结目标粉末的传单板。还将结果与常规热压的结果进行了比较。通过两种方法将用于冲击压缩的粉末混合物混合:也就是说,在小瓶中轻轻混合,然后通过行星式球磨机进行机械合金化。尽管在3 MPa的常规热压下仅合成了Ti2Ni相,但在较高的飞行器速度下进行冲击压缩后,由机械合金化粉末合成了具有Ti2Ni晶相的大块i相样品。对于轻度混合的粉末,即使在冲击压缩后也没有反应发生。冲击压缩过程中产生的高压和高温以及研磨过程是获得i相的关键因素。对于含有i相的块状样品,在大气压下的维氏硬度和与纯水的润湿接触角分别为约7 GPa和约70°。

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