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Sintering properties of Ti-27Nb alloys prepared by using Ti/TiH2 powders under argon and hydrogen sintering processes

机译:通过在氩气和氢烧结过程下使用Ti / TiH2粉末制备Ti-27NB合金的烧结性能

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In the present study, Ti-27Nb alloy specimens were prepared from Ti/TiH2 powders using Nb powders through the argon sintering process (ASP) and hydrogen sintering process (HSP). X-ray diffraction and scanning electron microscopy studies were conducted, and the sintered density, Vickers hardness, and Rockwell hardness of the Ti-27Nb alloys produced by different sintering processes, as a function of the vacuum sintering temperature (1350-1450 degrees C), were measured. The results showed that the Ti-27Nb alloy sintered bodies with the highest density and hardness were obtained by HSP. In addition, the pore size and number of HSP specimens were smaller and less than those of the ASP specimens. It was found that the Ti-27Nb alloy, produced by HSP, can prevent the formation of oxide layers, resulting in enhanced densification and hardness. Furthermore, HSP can also prevent the formation of hydrides and eliminate the dehydrogenation step. At the same time, the problem of brittleness and failure caused by hydride formation could be solved. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本研究中,使用Nb粉末通过氩烧结工艺(ASP)和氢烧结过程(HSP),从Ti / TiH2粉末制备Ti-27NB合金标本。进行X射线衍射和扫描电子显微镜研究,并通过不同烧结工艺产生的Ti-27NB合金的烧结密度,维氏硬度和罗克韦尔硬度,作为真空烧结温度的函数(1350-1450℃) ,被测量。结果表明,通过HSP获得具有最高密度和硬度的Ti-27NB合金烧结体。此外,孔径和Hsp样品的数量较小,小于ASP样本。发现通过HSP产生的Ti-27NB合金可以防止氧化物层的形成,导致致密化和硬度增强。此外,HSP还可以防止氢化物的形成并消除脱氢步骤。同时,可以解决氢化物形成引起的脆性和失效问题。 (c)2018 Elsevier B.v.保留所有权利。

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