首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of Hf solute additions on the precipitation and hardenability in Ni-rich NiTi alloys
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Influence of Hf solute additions on the precipitation and hardenability in Ni-rich NiTi alloys

机译:Hf溶质的添加对富NiNiTi合金析出和淬透性的影响

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摘要

Very Ni-rich NiTi alloys have recently been shown to have an unusually high hardness, comparable to tool steels, and other attributes that make them promising candidates for bearing and related applications. This high hardness has been associated with the precipitation of a large volume fraction of Ni4Ti3 platelets, resulting in a matrix that consists of narrow B2 matrix channels. In this work, a series of Ni-rich ternary alloys with dilute solute additions of Hf (54Ni-45Ti-1Hf, 55Ni-44Ti-1Hf, 54Ni-44Ti-2Hf, and 56Ni-40Ti-4Hf (at.%)) have been investigated. Transmission electron microscopy confirmed a B2 NiTi matrix phase containing nanoscale Ni4Ti3 platelets, H-phase precipitates, and R-phase; however, the H-phase and R-phase were not present initially but only after aging for a period of time. At aging times greater than similar to 100 h at 400 degrees C, all ternary alloys showed a slight secondary increase in hardness, which was attributed to H-phase precipitation and growth within the B2 channels. In the particular case of the 56Ni-40Ti-4Hf alloy, hardness increased with aging to a maximum value of 679 VHN, which was greater than all other binary or ternary alloys examined. Additionally the H-phase appeared to alter or delay the typical breakdown sequence of the metastable Ni4Ti3 strengthening phase by removing the excess Ni needed for its decomposition. The collective results provide new material insights for creating a next-generation NiTi based bearing alloy. (C) 2015 Elsevier B.V. All rights reserved.
机译:最近已显示,非常富镍的NiTi合金具有与工具钢相当的异常高的硬度,并且具有使其成为轴承和相关应用的有希望的候选者的其他属性。这种高硬度与大量体积的Ni4Ti3血小板的沉淀有关,从而形成了由狭窄的B2基体通道组成的基体。在这项工作中,一系列具有稀有Hf溶质添加的富镍三元合金(54Ni-45Ti-1Hf,55Ni-44Ti-1Hf,54Ni-44Ti-2Hf和56Ni-40Ti-4Hf(原子百分比))被调查。透射电子显微镜证实B2 NiTi基质相包含纳米级的Ni4Ti3血小板,H相沉淀和R相。但是,最初不存在H相和R相,仅在一段时间后才存在。在大于400摄氏度下100小时的时效时,所有三元合金均显示出轻微的二次硬度增加,这归因于H相沉淀和B2通道内的生长。在56Ni-40Ti-4Hf合金的特殊情况下,硬度会随着时效的增加而增加,达到最大值679 VHN,这比所有其他二元或三元合金都高。另外,H相似乎通过除去分解所需的过量Ni而改变或延迟了亚稳Ni4Ti3强化相的典型击穿顺序。总体结果为创建下一代基于NiTi的轴承合金提供了新的材料见解。 (C)2015 Elsevier B.V.保留所有权利。

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