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Rapid screening of alloy elements to improve the elastic properties of dilute Pt-based alloys: High-throughput first-principles calculations and modeling

机译:合金元素的快速筛选,提高稀PT基合金的弹性性能:高通量第一原理计算和建模

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摘要

Platinum (Pt)-based dilute solid solutions are an important category of high-temperature alloys and bond coatings. In this study, the effects of 33 alloying elements on the mechanical and electronic properties of dilute Pt-based solid solutions are systematically investigated under atom relaxation and full relaxation using first-principles calculations based on density functional theory. The negative mixing enthalpy of Pt-dilute solid solutions means that the solubility of the solute elements in the Pt-based dilute alloys is energetically favorable at 0 K. Niobium, rhenium, and scandium are promising candidate elements for increasing the hardness and ductility of dilute Pt-based solid solutions. In addition, the electronic basis for the mechanical properties of Pt-dilute solid solutions is investigated in terms of the electronic density and mean bond population. The results demonstrate that the Pt-X bond lengths are shorter than the Pt-Pt bond length, resulting in greater hardness. Moreover, the model for the composition dependent elastic properties is built based on the CALPHAD approach, which will be used to the Pt-based multiphase alloys in the future. As certain alloying elements improve the hardness and ductility of Pt, this research expands our knowledge of the mechanism of dilute Pt-based solid solutions and provides a basis for next-generation superalloys or bond coatings at higher temperatures.
机译:基于铂(Pt)的稀固溶溶液是一类重要的高温合金和粘合涂层。在该研究中,33个合金元素对稀pt基固溶体的机械和电子性质的影响在原子松弛下系统地研究了基于密度函数理论的第一原理计算的全部放松。 Pt-稀固溶液的负混合焓意味着溶质元素在Pt基稀合金中的溶解度在0k.铌,铼和钪中具有能量良好的良好良好的候选元素,用于增加稀释的硬度和延展性基于PT的固体溶液。此外,在电子密度和平均键群方面研究了Pt-稀固溶液的机械性能的电子基础。结果表明,PT-X键长度比Pt-Pt键长长度短,导致更大的硬度。此外,基于Calphad方法构建了组合物依赖性弹性特性的模型,该方法将在未来使用基于PT基的多相合金。随着某种合金元素改善PT的硬度和延展性,该研究扩展了我们对稀释Pt基固溶体的机理的了解,为下一代超合金或在较高温度下的粘合涂层提供了基础。

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  • 来源
    《Journal of Applied Physics》 |2020年第23期|235103.1-235103.12|共12页
  • 作者单位

    Faculty of Materials Science and Engineering Kunming University of Science and Technology Kunming 650093 P R China;

    Faculty of Materials Science and Engineering Kunming University of Science and Technology Kunming 650093 P R China;

    Faculty of Materials Science and Engineering Kunming University of Science and Technology Kunming 650093 P R China Department of Materials Science and Engineering Pennsylvania State University University Park Pennsylvania 16802 USA;

    Sino-Precious Metals Holding Co. Ltd. Kunming 650093 China;

    Sino-Precious Metals Holding Co. Ltd. Kunming 650093 China;

    Sino-Precious Metals Holding Co. Ltd. Kunming 650093 China;

    Faculty of Materials Science and Engineering Kunming University of Science and Technology Kunming 650093 P R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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