论文标题
实验性地相关的热磁滞和相位的相兼容性
Experimentally correlating thermal hysteresis and phase compatibility in multifunctional Heusler alloys
论文作者
论文摘要
热滞后被认为是具有一阶转换的磁联和铁磁形状记忆材料的周期性应用的主要缺点之一。因此,挑战是制定策略,以改善过渡中涉及的阶段之间的兼容性并研究其对热滞后的影响。为此,我们探讨了Ni2Mn1-XCUXGA0.84AL0.16 Heusler Alloys的热,结构和磁性。当化合物中的Cu含量从X = 0.10到X = 0.25不等时,合金的热滞后降低约为60%,最小磁滞宽度为6 K。我们应用了马氏体的几何非线性理论来解决相位的兼容性,该相位通过参数lambda2量化,转换伸展张量的中间特征值,发现滞后最小的磁滞与更好的晶体学相容性有关(lambda2接近1)与奥斯蒂尼特和马尔特森特阶段之间。此外,我们还表明,在文献中其他几种合金中存在于Ni2Mn1-XCUXGA0.84AL0.16中发现的磁滞性能。这些结果为理解和掌握相位的兼容性提供了新的途径,并最终在多功能的旋转器合金中获得了低的热滞后。
Thermal hysteresis is recognized as one of the main drawbacks for cyclical applications of magnetocaloric and ferromagnetic shape memory materials with first order transformations. As such, the challenge is to develop strategies that improve the compatibility between the phases involved in the transitions and study its influence on thermal hysteresis. With this purpose, we explore the thermal, structural and magnetic properties of the Ni2Mn1-xCuxGa0.84Al0.16 Heusler alloys. The alloys present a thermal hysteresis reduction of ~60% when the Cu content in the compound varies from x = 0.10 to x = 0.25, with a minimum hysteresis width of 6 K being achieved. We applied the geometric non-linear theory of martensite to address the phase compatibility, quantified by the parameter lambda2, the middle eigenvalue of the transformation stretch tensor, and found that the minimum of hysteresis is associated with a better crystallographic compatibility (lambda2 closer to 1) between the austenite and martensite phases. In addition, we show that the valley-like properties of hysteresis found in the Ni2Mn1-xCuxGa0.84Al0.16 compounds is present in several other alloys in the literature. These results provide new pathways to understand as well as to masters the phase compatibility and ultimately achieve a low thermal hysteresis in multifunctional Heusler alloys.