含镍单相浓固溶体合金的热物理性质

IF 7.9 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
K. Jin , S. Mu , K. An , W.D. Porter , G.D. Samolyuk , G.M. Stocks , H. Bei
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引用次数: 91

摘要

系统地研究了Ni和8种含Ni的单相面心立方浓固溶体合金在1273 K高温下的温度相关热物理性质,包括比热容、晶格热膨胀、热扩散率和电导率。在室温下,合金的比热值为0.4 ~ 0.5 J·g−1·K−1,但由于居里态和K态的转变,合金的温度依赖性很大。基于第一性原理方法分离了NiCo、NiFe、Ni-20Cr和NiCoFeCr中晶格、电子和磁对比热的贡献。除了NiFe和NiCoFe在铁磁状态下由于磁致伸缩效应而具有较低的热膨胀系数外,合金具有相似的热膨胀行为。基于准调和近似的计算准确地预测了NiCo和NiFe与温度相关的晶格参数;误差0.2%,但与中子衍射测定值相比,Ni-20Cr的误差低估了1%。所有含Cr合金的导热系数都非常相似,由于磁性无序性大,其导热系数远低于Ni合金和不含Cr合金。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Thermophysical properties of Ni-containing single-phase concentrated solid solution alloys

Thermophysical properties of Ni-containing single-phase concentrated solid solution alloys

Temperature dependent thermophysical properties, including specific heat capacity, lattice thermal expansion, thermal diffusivity and conductivity, have been systematically studied in Ni and eight Ni-containing single-phase face-centered-cubic concentrated solid solution alloys, at elevated temperatures up to 1273 K. The alloys have similar specific heat values of 0.4–0.5 J·g−1·K−1 at room temperature, but their temperature dependence varies greatly due to Curie and K-state transitions. The lattice, electronic, and magnetic contributions to the specific heat have been separated based on first-principles methods in NiCo, NiFe, Ni-20Cr and NiCoFeCr. The alloys have similar thermal expansion behavior, with the exception that NiFe and NiCoFe have much lower thermal expansion coefficient in their ferromagnetic state due to magnetostriction effects. Calculations based on the quasi-harmonic approximation accurately predict the temperature dependent lattice parameter of NiCo and NiFe with < 0.2% error, but underestimated that of Ni-20Cr by 1%, compared to the values determined from neutron diffraction. All the alloys containing Cr have very similar thermal conductivity, which is much lower than that of Ni and the alloys without Cr, due to the large magnetic disorder.

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来源期刊
Materials & Design
Materials & Design Engineering-Mechanical Engineering
CiteScore
14.30
自引率
7.10%
发文量
1028
审稿时长
85 days
期刊介绍: Materials and Design is a multi-disciplinary journal that publishes original research reports, review articles, and express communications. The journal focuses on studying the structure and properties of inorganic and organic materials, advancements in synthesis, processing, characterization, and testing, the design of materials and engineering systems, and their applications in technology. It aims to bring together various aspects of materials science, engineering, physics, and chemistry. The journal explores themes ranging from materials to design and aims to reveal the connections between natural and artificial materials, as well as experiment and modeling. Manuscripts submitted to Materials and Design should contain elements of discovery and surprise, as they often contribute new insights into the architecture and function of matter.
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