在定向凝固的Co-V-Ga合金中实现优异的超弹性和非凡的弹热效应

Yurong Niu, Haiyang Chen, Xiangyu Zhang, Shengwei Li, D. Cong, T. Ma, Shilei Li, Junpin Lin, Yandong Wang
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引用次数: 14

摘要

研究了Co50.7V33.3Ga16定向凝固合金的超弹性和巨弹热效应。由于[001]A优先取向柱状晶粒的形成,该合金表现出近乎完美的超弹性行为,其完全可逆的压缩应变高达5.4%,应力滞后约为40 MPa,工作温度范围为258 ~ 373 K。同时,在室温下去除400 MPa的单轴应力时,得到了-18.7 K的巨大绝热温度变化ΔTad,这与基于麦克斯韦关系(-19.0 K)和量热测量(-19.9 K)的理论值吻合得很好。在至少115 K的宽温度范围内,得到了大于12.5 K的巨大|ΔTad|。此外,在100次循环后,超弹性效应和弹热效应都保持了良好的功能稳定性,没有明显的退化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Achieving Excellent Superelasticity and Extraordinary Elastocaloric Effect in a Directionally Solidified Co-V-Ga Alloy
Abstract We demonstrate excellent superelasticity and giant elastocaloric effect in a directionally solidified Co50.7V33.3Ga16 alloy. Owing to the formation of [001]A preferentially oriented columnar grains, the as-grown alloy displays nearly perfect superelastic behaviors with fully reversible compressive strain of up to 5.4%, narrow stress hysteresis of about 40 MPa and a wide operating temperature window from 258 to 373 K. Simultaneously, a giant adiabatic temperature change ΔTad of -18.7 K is obtained on removing a uniaxial stress of 400 MPa at room temperature, which is in good agreement with the theoretical values based on Maxwell relation (-19.0 K) and calorimetric measurements (-19.9 K). A large |ΔTad| of greater than 12.5 K is obtained over a wide temperature span of at least 115 K. Moreover, both superelasticity and elastocaloric effect remain good functional stability without any evident degradation for 100 cycles.
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