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Porous NiTi alloys produced by press-and-sinter from Ni/Ti and Ni/TiH_2 mixtures

机译:Ni / Ti和Ni / TiH_2混合物通过压制和烧结制成的多孔NiTi合金

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摘要

This work presents a comparative study of using two different titanium powders to synthesise porous NiTi alloys by a conventional press-and-sinter process. Two batches of powder mixture were prepared and compared: Ni/Ti-a mixture of titanium made from a hydrogenation-dehydrogenation process (HDH-Ti) and nickel, and Ni/TiH_2-a mixture of TiH_2 and nickel. The powder mixtures were pressed under three different compaction pressures and subsequently sintered in vacuum at three different temperatures (i.e., 1000,1100 and 1200 ℃) for 2 h. The results obtained from microstructure observations show that the porous alloys have open porosities from 10.2% to 33.8% and the largest pore size ranges from 3.5 to 27.4 μm. The predominant phase identified in all the produced porous NiTi alloys is B2 NiTi phase with the presence of other minor phases. Particularly, in the Ni/Ti compacts sintered at 1000 ℃ some Ti particles were left unreacted. The static and cyclic stress-strain behaviours of the porous NiTi alloys made from Ni/Ti and Ni/TiH_2 compacts were also investigated. In comparison with the Ni/Ti sintered samples, the samples sintered from Ni/TiH_2 mixture exhibit a higher porosity, smaller pore size, higher fracture strength, smaller cyclic residual strain, higher recovery pseudoelastic strain and lower secant modulus.
机译:这项工作提供了一种比较研究,该研究使用两种不同的钛粉通过常规的压制和烧结工艺合成多孔NiTi合金。制备并比较了两批粉末混合物:Ni / Ti-由氢化-脱氢工艺(HDH-Ti)和镍制成的钛混合物和Ni / TiH_2-TiH_2和镍的混合物。将粉末混合物在三种不同的压紧压力下压制,然后在三种不同的温度(即1000,1100和1200℃)下真空烧结2小时。从微观结构观察获得的结果表明,多孔合金具有10.2%至33.8%的开孔率,最大孔径在3.5至27.4μm的范围内。在所有生产的多孔NiTi合金中确定的主要相为B2 NiTi相,并存在其他次要相。特别是在1000℃烧结的Ni / Ti压块中,一些Ti颗粒未反应。还研究了由Ni / Ti和Ni / TiH_2压块制成的多孔NiTi合金的静态和循环应力应变行为。与Ni / Ti烧结样品相比,从Ni / TiH_2混合物烧结的样品具有较高的孔隙率,较小的孔径,较高的断裂强度,较小的循环残余应变,较高的恢复拟弹性应变和较低的割线模量。

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  • 来源
    《Materials Science and Engineering》 |2013年第10期|117-125|共9页
  • 作者单位

    Department of Chemical and Materials Engineering, The University of Auckland, Private Bag 92019, Auckland 1142, New Zealand;

    Department of Chemical and Materials Engineering, The University of Auckland, Private Bag 92019, Auckland 1142, New Zealand;

    School of Chemical Sciences, The University of Auckland, Private Bag 92019, Auckland 1142, New Zealand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Shape memory alloys; Titanium alloys; Intermetallics; Sintering; Fracture;

    机译:形状记忆合金;钛合金;金属间化合物烧结;断裂;

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