The Relationship Between Grain Structure and Deformation Behavior to the Fracture Mechanism in High Strength-High Ductility Combination Nanostructured Materials

高强高延复合纳米结构材料晶粒结构和变形行为与断裂机制的关系

基本信息

  • 批准号:
    1602080
  • 负责人:
  • 金额:
    $ 43.01万
  • 依托单位:
  • 依托单位国家:
    美国
  • 项目类别:
    Continuing Grant
  • 财政年份:
    2016
  • 资助国家:
    美国
  • 起止时间:
    2016-09-01 至 2022-08-31
  • 项目状态:
    已结题

项目摘要

Non-technical Abstract The proposed research concerning the next generation of high strength materials is envisaged to extend the state-of-art of processing of high strength-high ductility alloys with superior formability. The unlocking of fracture mechanisms underlying high strength-high ductility combination will be a major breakthrough in guiding the development of strong and ductile metallic materials. The ultimate objective is to determine guidelines to pioneer a new frontier of high strength-high ductility materials for light and efficient solutions involving energy absorption and formability. Furthermore, new techniques will be developed to understand material behavior that will be applicable to other metallic systems. The high strength-high ductility combination of nanograined materials will allow for thinner sections or components, which will lead to fuel economy in the transportation sector.Technical AbstractThe research objective of the award is to determine the fundamental criteria in obtaining high strength - high ductility combination in metals with grain size in the nanometer range. The criteria will be elucidated by conducting controlled mechanical deformation experiments in conjunction with the study of deformed region via microscopy tools. Experiments will involve increasing the stability of the principal constituent with decrease in grain size. The criteria will define if the stability of the principal constituent of the metallic material is responsible in governing the ductility and delayed fracture of high strength metallic materials. The changes in deformation behavior will be studied as a function of grain size from nanograin regime to conventional micrometer regime. Physical models with predictive capabilities for a wide range of material systems based on the inter-relationship between grain size, deformation process and fracture mechanisms will be developed.
非技术摘要所提出的有关下一代高强度材料的研究旨在扩展具有优异成形性的高强度高延展性合金的加工技术。揭示高强高塑组合的断裂机制将是指导强韧金属材料发展的重大突破。最终目标是确定指导方针,开拓高强度高延展性材料的新领域,以实现涉及能量吸收和成型性的轻型高效解决方案。 此外,还将开发新技术来了解适用于其他金属系统的材料行为。纳米颗粒材料的高强度-高延展性组合将允许更薄的截面或部件,这将导致运输领域的燃油经济性。技术摘要该奖项的研究目标是确定获得高强度-高延展性组合的基本标准晶粒尺寸在纳米范围内的金属。该标准将通过进行受控机械变形实验并结合显微镜工具对变形区域的研究来阐明。实验将涉及随着晶粒尺寸的减小而增加主要成分的稳定性。该标准将定义金属材料主要成分的稳定性是否负责控制高强度金属材料的延展性和延迟断裂。将研究变形行为的变化作为晶粒尺寸从纳米晶态到传统微米态的函数。基于晶粒尺寸、变形过程和断裂机制之间的相互关系,将开发具有预测能力的物理模型,适用于各种材料系统。

项目成果

期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
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Devesh Misra其他文献

Microstructure, Mechanical Properties and Deformation Behavior of Fe-28.7Mn-10.2Al-1.06C High Specific Strength Steel
Fe-28.7Mn-10.2Al-1.06C高比强度钢的显微组织、力学性能及变形行为
  • DOI:
    10.3390/met12040602
  • 发表时间:
    2022
  • 期刊:
  • 影响因子:
    2.9
  • 作者:
    Liang Ma;Zhengyou Tang;Zeyu You;Guofu Guan;Hua Ding;Devesh Misra
  • 通讯作者:
    Devesh Misra
Relationship Between Impact Toughness and Microstructure for the As-Rolled and Simulated HAZ of Low-Carbon Steel Containing Ti-Ca Oxide Particles
含Ti-Ca氧化物颗粒低碳钢轧态和模拟热影响区冲击韧性与显微组织的关系
Tailoring the Microstructure of Coarse-Grained HAZ in Steel for Large Heat Input Welding: Effect of Ti–Mg–Ce–V Inclusion/Precipitation Particles
调整大热输入焊接钢中粗晶热影响区的微观结构:Ti–Mg–Ce–V 夹杂物/沉淀颗粒的影响
  • DOI:
    10.1007/s11661-021-06321-6
  • 发表时间:
    2021
  • 期刊:
  • 影响因子:
    0
  • 作者:
    Chao Wang;Junjie Hao;Jian Kang;Guo Yuan;Devesh Misra;Guodong Wang
  • 通讯作者:
    Guodong Wang
Effect of Q&P and Q&T Treatments on the Stability of Austenite and Mechanical Properties of Steel 0.2% C – 8.5% Mn – 3.0% Al
  • DOI:
    10.1007/s11041-023-00848-8
  • 发表时间:
    2023-01-01
  • 期刊:
  • 影响因子:
    0.6
  • 作者:
    Zhichao Li;Xinjing Li;Y. Mou;Devesh Misra;Xin Zhang;Lian;Huiping Li
  • 通讯作者:
    Huiping Li

Devesh Misra的其他文献

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{{ truncateString('Devesh Misra', 18)}}的其他基金

Collaborative Research: The interaction of surfaces structured at the nanometer scale with the cells in the physiological environment
合作研究:纳米尺度结构的表面与生理环境中细胞的相互作用
  • 批准号:
    2224942
  • 财政年份:
    2023
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
Ultrafine-grained Magnesium Alloys Manufactured by Multi-axial Forging: Elucidating Mechanisms of Achieving Both High Strength and High Ductility
多轴锻造制造超细晶镁合金:阐明实现高强度和高延展性的机制
  • 批准号:
    2130586
  • 财政年份:
    2022
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
Ultrafine-grained Magnesium Alloys Manufactured by Multi-axial Forging: Elucidating Mechanisms of Achieving Both High Strength and High Ductility
多轴锻造制造超细晶镁合金:阐明实现高强度和高延展性的机制
  • 批准号:
    2130586
  • 财政年份:
    2022
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
MRI: Acquisition of an Advanced Nanoscale Deformation with Imaging System for Multiscale Study of the Mechanical Behavior of Advanced Materials
MRI:通过成像系统获取先进的纳米级变形,用于先进材料机械行为的多尺度研究
  • 批准号:
    1530891
  • 财政年份:
    2015
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
The Interplay Between Grain Size and Austenite Stability on Constitutive Deformation Behavior of High Strength-High Ductility Combination Nanostructured Materials
晶粒尺寸和奥氏体稳定性之间的相互作用对高强度-高延性组合纳米结构材料本构变形行为的影响
  • 批准号:
    1458074
  • 财政年份:
    2014
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
Processing-Structure-Property Relationship in the Fabrication of Hybrid Nanostructured Materials with Tunable Architecture
具有可调结构的混合纳米结构材料制造中的加工-结构-性能关系
  • 批准号:
    1458090
  • 财政年份:
    2014
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
Processing-Structure-Property Relationship in the Fabrication of Hybrid Nanostructured Materials with Tunable Architecture
具有可调结构的混合纳米结构材料制造中的加工-结构-性能关系
  • 批准号:
    1331437
  • 财政年份:
    2013
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
The Interplay Between Grain Size and Austenite Stability on Constitutive Deformation Behavior of High Strength-High Ductility Combination Nanostructured Materials
晶粒尺寸和奥氏体稳定性之间的相互作用对高强度-高延性组合纳米结构材料本构变形行为的影响
  • 批准号:
    1261883
  • 财政年份:
    2013
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
Interfacial Nucleation and Growth of Hierarchical Structures and Phases in Polymer Nanocomposites
聚合物纳米复合材料中分层结构和相的界面成核和生长
  • 批准号:
    0824001
  • 财政年份:
    2009
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant
Nanoscale Near-Surface Deformation Response in Nanostructured Materials
纳米结构材料中的纳米级近表面变形响应
  • 批准号:
    0852795
  • 财政年份:
    2009
  • 资助金额:
    $ 43.01万
  • 项目类别:
    Standard Grant

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