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Effect of Stoichiometry on Shape Memory Properties and Functional Stability of Ti–Ni–Pd Alloys

机译:化学计量比对Ti-Ni-Pd合金形状记忆性能和功能稳定性的影响

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摘要

Ti–Ni–Pd shape memory alloys are promising candidates for high-temperature actuators operating at above 373 K. One of the key issues in developing high-temperature shape memory alloys is the degradation of shape memory properties and dimensional stabilities because plastic deformation becomes more pronounced at higher working temperature ranges. In this study, the effect of the Ti:(Ni + Pd) atomic ratio in TixNi70−xPd30 alloys with Ti content in the range from 49 at.% to 52 at.% on the martensitic transformation temperatures, microstructures and shape memory properties during thermal cycling under constant stresses were investigated. The martensitic transformation temperatures decreased with increasing or decreasing Ti content from the stoichiometric composition. In both Ti-rich and Ti-lean alloys, the transformation temperatures decreased during thermal cycling and the degree of decrease in the transformation temperatures became more pronounced as the composition of the alloy departed from the stoichiometric composition. Ti2Pd and P phases were formed during thermal cycling in Ti-rich and Ti-lean alloys, respectively. Both Ti-rich and Ti-lean alloys exhibited superior dimensional stabilities and excellent shape memory properties with higher recovery ratio and larger work output during thermal cycling under constant stresses when compared with the alloys with near-stoichiometric composition.
机译:Ti-Ni-Pd形状记忆合金是在373 K以上工作的高温执行器的有希望的候选者。开发高温形状记忆合金的关键问题之一是形状记忆特性和尺寸稳定性的下降,因为塑性变形变得更大。在较高的工作温度范围内表现出色。在这项研究中,Ti:(Ni + Pd)原子比在Ti含量范围从49 at。%到52 at。%的TixNi70-xPd30合金中对马氏体转变温度,微观结构和形状记忆性能的影响研究了在恒定应力下的热循环。随着化学计量组成的Ti含量的增加或减少,马氏体转变温度降低。在富钛和贫钛合金中,随着合金的组成偏离化学计量组成,相变温度在热循环期间降低,并且相变温度的降低程度变得更加明显。在富钛和贫钛合金的热循环过程中分别形成了Ti2Pd和P相。与具有近化学计量组成的合金相比,富钛和贫钛合金均表现出优异的尺寸稳定性和出色的形状记忆性能,在恒定应力下的热循环过程中具有较高的回收率和较大的功输出,具有较高的尺寸稳定性。

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