首页> 外文会议>IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >Effect of Grain Size on the Thermal Properties of Nickel-Titanium Shape Memory Alloys Across the Martensite-Austenite Phase Transition
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Effect of Grain Size on the Thermal Properties of Nickel-Titanium Shape Memory Alloys Across the Martensite-Austenite Phase Transition

机译:粒度对马氏体-奥氏体相变过程中镍钛形状记忆合金热性能的影响

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In this work, the thermal conductivity and volumetric heat capacity of 50-50 NiTi shape memory alloys (SMA) with varying grain size are investigated as a function of temperature. SMAs, and NiTi in particular, have a critical role to play in next-generation solid-state refrigeration systems and long-term thermal storage applications. However, their performance in these applications is predicated on their latent heat, thermal conductivity and heat capacity. Complicating the prediction of their performance is the wide variability in reported results for each of these properties within the scientific literature and a lack of information regarding their temperature-dependence, particularly as SMAs experience a martensitic-austenitic phase transition. We use Frequency-Domain Thermoreflectance (FDTR) to probe the thermal transport properties of NiTi as a function of average grain size and temperature and report our results here. Differential Scanning Calorimetry (DSC) and Transmission Electron Microscopy (TEM) are used to characterize the phase transitions and microstructure of the NiTi, respectively. Collectively, these measurements provide a better understanding of the impact of grain size and phase transition on thermal transport and storage within NiTi as it changes phase, permitting improved predictions of their behavior in a host of important applications.
机译:在这项工作中,研究了50-50种具有不同晶粒尺寸的NiTi形状记忆合金(SMA)的导热率和体积热容随温度的变化。 SMA,尤其是NiTi,在下一代固态制冷系统和长期储热应用中起着至关重要的作用。但是,它们在这些应用中的性能取决于它们的潜热,热导率和热容量。关于其性能的预测变得复杂的是,科学文献中每种特性的报告结果差异很大,并且缺乏有关其温度依赖性的信息,尤其是当SMA经历马氏体-奥氏体相变时。我们使用频域热反射率(FDTR)来探究NiTi作为平均晶粒尺寸和温度的函数的热传输特性,并在此处报告我们的结果。差示扫描量热法(DSC)和透射电子显微镜(TEM)分别用于表征NiTi的相变和微观结构。总而言之,这些测量可以更好地理解晶粒尺寸和相变对NiTi内相变时热传输和存储的影响,从而可以更好地预测其在许多重要应用中的行为。

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