Effect of Cu Doping on Phase Transition, Thermal Strain, and Thermal Expansion Property in Polycrystalline Ni50Mn23−xCuxGa27 Alloys

Shengxian Wei, Fen E Hu, Li-ping Deng, Bao Yue, Yiming Cao, Xijia He, Yuanlei Zhang, Yanru Kang, K. Xu, Zhe Li
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Abstract

The influence of Cu doping on phase transition, thermal strain, and thermal expansion property of polycrystalline Ni50Mn23−xCuxGa27(x = 1, 3, 5, 6 and 7) alloys is investigated. The results show that with increasing Cu concentration, martensitic transformation gradually gets close to Curie transition. A magnetostructural transition (MST) is observed in samples with x = 6 and 7. Such MST can enhance magnitude of transformation strain. Besides, Ni50Mn23−xCuxGa27 alloys possess an isotropic, recoverable, and thermally stable thermal strain. Excitedly, Cu doping can effectively tune the phase transition, thermal strain, and thermal expansion properties of Ni50Mn23−xCuxGa27 alloys. Adjustable coefficients of thermal expansion from positive to negative are obtained by Cu‐doped Ni50Mn23−xCuxGa27 alloys. The average linear expansion coefficient (α) between −140.44 and −207.70 ppm K−1 is observed in samples with x = 6 and 7 for a narrow temperature span of 11–14 K. When the temperature span is about 72 K (x = 6) and 73 K (x = 7), which is the largest temperature span observed in Ni–Mn–Ga‐based alloys recently, the α values decrease to about −36 ppm K−1. These findings are beneficial for manipulating the thermal expansion property of Ni–Mn–Ga–Cu alloys and their multifunctional applications.
Cu掺杂对Ni50Mn23−xCuxGa27多晶合金相变、热应变和热膨胀性能的影响
研究了Cu掺杂对Ni50Mn23−xCuxGa27(x = 1,3,5,6和7)合金相变、热应变和热膨胀性能的影响。结果表明:随着Cu浓度的增加,马氏体转变逐渐接近居里转变;在x = 6和7的样品中观察到磁结构转变(MST)。MST可以提高相变应变的大小。此外,Ni50Mn23−xCuxGa27合金具有各向同性、可恢复和热稳定的热应变。令人兴奋的是,Cu掺杂可以有效地调节Ni50Mn23−xCuxGa27合金的相变、热应变和热膨胀性能。Cu掺杂Ni50Mn23−xCuxGa27合金的热膨胀系数可由正向负调节。在x = 6和7的样品中,在11-14 K的狭窄温度范围内,平均线性膨胀系数(α)在- 140.44和- 207.70 ppm K - 1之间。当温度跨度为72 K (x = 6)和73 K (x = 7)时,α值降至- 36 ppm K−1左右,这是近年来在Ni-Mn-Ga基合金中观察到的最大温度跨度。这些发现有利于Ni-Mn-Ga-Cu合金的热膨胀性能调控及其多功能应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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