含钪钛-铑基合金的高温热机械性能

Y. Kudriavtsev, G. V. Kurdyumov, E. Semenova, I. Frantsevich
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引用次数: 2

摘要

**Email: selena@ipms.kiev.ua已知在高温下,由第4族和第8族过渡金属形成的等原子二元化合物会发生马氏体相变,这可能伴随着形状记忆效应。在这些化合物中,钛铑(TiRh)是特别感兴趣的,不仅因为它在高温下经历了两次马氏体转变,其中一个已经观察到形状记忆效应,而且因为它在高于400℃的温度下表现出不同寻常的形状恢复行为。本文研究了以Sc代替Ti的50% at%铑-钪-钛三元合金的热力学和力学性能。首次采用电阻法、膨胀法和三点弯曲法在20℃至850℃的温度范围内对这些合金进行了研究。结果表明,在~340oC和~750oC温度下,Sc含量为0.1的样品在~340oC和~750oC的马氏体相变范围内均表现出完全的形状恢复。还观察到双向形状恢复。TiRh和Rh-Sc-Ti合金具有较小的温度滞后,这是执行器应用中使用的合金所需要的。在较宽的温度范围内,TiRh和sc合金在冷却和加热时均表现出变形过程的连续性和形状恢复。TiRh和Rh-Sc-Ti合金的这一特性意味着它们可以在室温到850℃的温度范围内应用于不同的热调节元件。
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High Temperature Thermomechanical Properties of Titanium-Rhodium-based Alloys Containing Scandium
**Email: selena@ipms.kiev.ua At high temperatures, the equiatomic binary compounds formed by Groups 4 and 8 transition metals are known to undergo martensitic transformation, which may be accompanied by a shape memory effect. Among these compounds, titanium-rhodium (TiRh) is of special interest not only because it undergoes two martensitic transformations at high temperature, for one of which the shape memory effect has been observed, but also because it demonstrates unusual shape recovery behaviour at temperatures higher than 400oC. The present work focuses upon the thermomechanical and mechanical properties of 50 at% rhodiumscandium-titanium ternary alloys where Ti is substituted by Sc. These alloys were investigated for the first time using electrical resistance, dilatometry and three-point bending techniques in the temperature range 20oC to 850oC. It was found that the sample with 0.1 at% Sc exhibited full shape restoration in the ranges of both martensitic transformations at ~340oC and ~750oC. Two-way shape recovery was also observed. A small temperature hysteresis, desirable for alloys used in actuator applications, is present in TiRh and Rh-Sc-Ti alloys. Both TiRh and Sc-containing alloys exhibit continuity of the deformation process on cooling and shape restoration on heating in a wide range of temperatures. This feature of both TiRh and Rh-Sc-Ti alloys implies the possibility of their application in different heat-regulating elements at temperature ranges from room temperature to 850oC.
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Platinum Metals Review
Platinum Metals Review CHEMISTRY, PHYSICAL-
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