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Elastocaloric effect and superelastic stability in Ni–Mn–In–Co polycrystalline Heusler alloys: hysteresis and strain-rate effects

机译:Ni-Mn-In-Co多晶Heusler合金的弹性热效应和超弹性稳定性:磁滞和应变率效应

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摘要

Controlling material hysteresis and working frequency variability are fundamentally important for refrigeration cycle efficiency and power density in solid-state cooling systems. For elastocaloric cooling, understanding the relationship between the width of the stress hysteresis and elastocaloric behaviour during superelastic cycles under varied strain rates is important. In this work, we report the effects of strain rate effects on the superelastic and elastocaloric responses in Ni45Mn50−xInxCo5 (x = 13.6–14.0 in at%) polycrystalline alloys. We observed a strong correlation between stress hysteresis and superelastic stability during mechanical cycling under increasing strain rates. Excellent transformation reversibility and stable superelastic responses are observed for x = 13.6 with a narrow hysteresis (49 MPa), whereas transformation irreversibility and dramatically deteriorated superelastic stability occur for x = 13.8, with a wide hysteresis (138 MPa). Furthermore, isothermal loading–unloading cycles under increasing and constant maximum applied stress were performed for the x = 13.6 samples, with a combination of low transformation stress and small transformation hysteresis. We suggest that a balance between transformation strain and hysteresis energy loss is fundamental to achieving a high coefficient of performance for elastocaloric materials.
机译:对于固态冷却系统,控制材料滞后和工作频率可变性对于制冷循环效率和功率密度至关重要。对于弹性热冷却,了解在不同应变速率下超弹性循环过程中应力滞后宽度与弹性热行为之间的关系非常重要。在这项工作中,我们报告了应变速率效应对Ni45Mn50-xInxCo5(at%时x = 13.6-14.0)多晶合金中超弹性和弹性反应的影响。我们观察到在增加应变速率的机械循环过程中,应力滞后与超弹性稳定性之间存在很强的相关性。当x = 13.6时具有窄的磁滞(49 MPa)时,观察到优异的相变可逆性和稳定的超弹性响应,而对于x = transformation13.8时,具有宽的磁滞(138 MPa)时,出现了相变不可逆性和显着恶化的超弹性稳定性。此外,对于x = 13.6的样品,在不断增加和恒定的最大外加应力下进行了等温加载-卸载循环,同时具有较低的相变应力和较小的相变滞后。我们建议,转变应变和磁滞能量损失之间的平衡是实现弹性材料高性能系数的基础。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Binfeng Lu; Jian Liu;

  • 作者单位
  • 年(卷),期 -1(7),-1
  • 年度 -1
  • 页码 2084
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-21 10:58:13

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