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CAREER: Ab Initio Calculations for Design of High Temperature Materials

CAREER: Ab Initio Calculations for Design of High Temperature Materials
职业:高温材料设计的从头计算
批准号:
0953984
负责人:
Raymundo Arroyave
金额:
$40.08万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-03-01 至 2016-02-29

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中文摘要
翻译
本学院早期职业发展(Career)奖的研究目标是基于密度泛函理论,通过电子结构计算系统地研究高温金属体系。本研究计划的具体目标是:(i)开发实用的方法来处理设计用于高温工作的材料的热力学和结构特性的非谐波效应;(ii)由PI的密切合作伙伴协助开发高温共振超声光谱学,以测量高温弹性常数。(三)系统地模拟结构缺陷对金属间化合物性能的影响,特别强调它们对结构稳定性的影响,以便制定合金准则,以优化高温性能;(iv)开发一个框架,用于集成多个原子模拟工具,用于自动预测材料性能,并以集成计算材料工程(ICME)方法的精神生成材料性能数据库。本研究计划解决了高温金属间化合物和合金进一步发展所必需的问题。通过这项工作,将实现对影响金属高温热机械性能的潜在物理机制的基本理解。拟议的课程创新将允许扩大本科生的研究经验。PI将与NSF-RET项目合作,为中学数学和科学教师提供研究经验。拟议的本科生研究活动(与美国国家科学基金会资助的以少数民族为重点的LSAMP IV项目有关)以及与墨西哥机构的合作将扩大本科生/研究生的参与范围,提高他们的国际视野。该职业奖还将通过以下方式促进人力资源的形成:培养学生在计算材料科学方面的能力;透过撰写论文及会议报告,培养学生的沟通技巧;通过鼓励学生参加科学会议,向他们介绍科学界。
英文摘要
The research objective of this Faculty Early Career Development (CAREER) award is to systematically investigate high-temperature metallic systems through electronic structure calculations based on density functional theory. The specific goals of the present research program are: (i) to develop practical approaches to treating anharmonic effects on the thermodynamic and structural properties of materials designed to operate at high temperatures; (ii) to assist in the development, by a close collaborator of the PI, of high-temperature Resonant Ultrasound Spectroscopy to measure high temperature elastic constants. (iii) to systematically model the influence of configurational defects on the properties of intermetallic compounds, with special emphasis on their effects on structural stability, allowing the development of alloying guidelines to optimize high temperature properties; (iv) to develop a framework for the integration of multiple atomistic simulation tools for the automated prediction of material properties as well as to generate material property databases in the spirit of Integrated Computational Materials Engineering (ICME) approaches. This research program addresses problems that are essential for the further development of high temperature intermetallics and alloys. Through this work, a fundamental understanding of the underlying physical mechanisms that influence the high temperature thermo-mechanical properties of metals will be achieved. The proposed curriculum innovations will allow the scaling up of undergraduate research experiences. The PI will collaborate with the NSF-RET program to provide research experiences for secondary math and science teachers. Proposed undergraduate research activities (linked to the minority-focused, NSF-funded LSAMP IV program) as well as collaborations with Mexican institutions will broaden participation and enhance international perspective of undergraduate/graduate students. This CAREER award will also contribute to the formation of human resources by: training students in computational materials science; fostering students' communication skills through manuscript preparation and conference presentations; introducing the students to the scientific community by encouraging participation in scientific meetings.
期刊论文(0)
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会议论文
DMREF: Optimizing Problem formulation for prinTable refractory alloys via Integrated MAterials and processing co-design (OPTIMA)
DMREF: AI-Guided Accelerated Discovery of Multi-Principal Element Multi-Functional Alloys
CDS&E: Efficient Uncertainty Analysis in Multi-physics Phase Field Models of Microstructure Evolution
Probing Microstructure-Martensitic Transformation Couplings in Metamagnetic Shape Memory Alloys
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  • 批准号:
    24ZR1471400
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    薛金锋
  • 依托单位:
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