Outstanding Mechanical and Magnetocaloric Properties of MnCoGe Alloy Fabricated Through Hot Pressing Sintering
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T(2024)
摘要
MnCoGe-based alloys represent promising candidates for magnetic refrigeration due to their advantageous Curie temperature and structural transition temperature near room temperature, coupled with exceptional magneto- caloric effect (MCE). However, the practical application of these materials is constrained by their inferior mechanical properties. Although resin bonding enhanced these properties, it simultaneously detracted from the MCE. In order to overcome this challenge, a novel synthesis method combining arc melting and hot press sintering is proposed. This approach led to an enhancement in the mechanical properties of MnCoGe-based alloys without compromising their MCE. The results of our investigation indicated that the Mn 1 & sdot;16 Co 0.84 Ge alloy has achieved an unprecedented compressive stress of 367 MPa. At room temperature, this alloy undergoes a first- order martensitic phase transformation characterized by a mixed crystal structure comprised of hexagonal austenite and orthorhombic martensite. Furthermore, the Mn 0 & sdot;91 Co 1.09 Ge alloy demonstrated a maximum isothermal entropy change of 19.5 J/kg K under a 7 T magnetic field. This study establishes a robust framework for designing high-performance magnetic refrigeration materials that integrate excellent mechanical properties with superior MCE.
更多查看译文
关键词
MnCoGe alloy,Mechanical properties,Crystal structure,Magnetocaloric effect
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
数据免责声明
页面数据均来自互联网公开来源、合作出版商和通过AI技术自动分析结果,我们不对页面数据的有效性、准确性、正确性、可靠性、完整性和及时性做出任何承诺和保证。若有疑问,可以通过电子邮件方式联系我们:report@aminer.cn