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首页> 外文期刊>The Physics of Metals and Metallography >Formation of Nanocrystalline Structure in the Amorphous Ti_(50)Ni_(25)Cu_(25) Alloy upon Severe Thermomechanical Treatment and the Size Effect of the Thermoelastic Martensitic B2 <-> B19 Transformation
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Formation of Nanocrystalline Structure in the Amorphous Ti_(50)Ni_(25)Cu_(25) Alloy upon Severe Thermomechanical Treatment and the Size Effect of the Thermoelastic Martensitic B2 <-> B19 Transformation

机译:剧烈热处理后非晶态Ti_(50)Ni_(25)Cu_(25)合金中纳米晶结构的形成和马氏体B2 <-> B19热弹性转变的尺寸效应

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The results of the comparative analysis of the Ti_(50)Ni_(25)Cu_(25)-alloy structures produced in the initial amorphous state by rapid quenching from the melt (RQM), after severe plastic deformation by torsion under high pressure (HPT), and post deformation heat treatment (PHT) are presented. The study was carried out using neutron and X-ray diffraction, transmission and scanning electron microscopy, and measurements of electrical properties. The initially amorphous alloy has been established to nanocrystallize after torsion under a pressure of 7 GPa to 0.5 revolutions of the anvil. Then, after 1, 5, 10, and 15 rev, the alloy again undergoes the strain-induced amorphization even with the retention, even after 5-15 rev, of a large number of highly dispersed nanocrystals less than 3-4 nm in size with a distorted B2 lattice in the amorphous matrix. Their crucial role as nuclei of crystallization provides the total low-temperature nanocrystallization during subsequent annealing starting from 250-300°C. It is shown that PHT of the alloy amorphized by HPT makes it possible to produce extremely uniform nanocrystalline (NC), submicrocrystalline (SMC), or bimodal (NC + SMC) austenitic 52-type structures in it. A complete diagram of thermoelastic martensitic transformations in the region of 2?2-austenite states, from nanostructured state to conventional polycrystaUine one, has been constructed. The size effect on the stabilization of martensitic transformation in nanocrystalline B2 alloy has been established.
机译:高压扭转(HPT)引起的严重塑性变形后,通过从熔体(RQM)快速淬火而以初始非晶态生成的Ti_(50)Ni_(25)Cu_(25)合金组织的比较分析结果),并介绍了变形后热处理(PHT)。该研究是使用中子和X射线衍射,透射和扫描电子显微镜以及电学性质进行的。已经建立起最初的非晶态合金,使其在7 GPa至0.5转的砧座压力下扭转后会纳米化。然后,在1、5、10和15转后,即使在5-15转后仍保留大量尺寸小于3-4 nm的大量高度分散的纳米晶体,合金仍会发生应变诱导的非晶化在非晶基质中具有扭曲的B2晶格。它们作为结晶核的关键作用可在随后的250-300°C退火过程中提供总的低温纳米结晶。结果表明,通过HPT非晶化的合金的PHT可以在其中产生极其均匀的纳米晶(NC),亚微晶(SMC)或双峰(NC + SMC)奥氏体52型结构。构造了从纳米结构态到传统的多晶态的2?2-奥氏体状态区域的热弹性马氏体转变的完整图。已经建立了尺寸对稳定纳米B2合金中马氏体相变的影响。

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