...
首页> 外文期刊>Materials Science and Engineering >Multiscale design of a-Al, eutectic silicon and Mg_2Si phases in Al-Si-Mg alloy manipulated by in situ nanosized crystals
【24h】

Multiscale design of a-Al, eutectic silicon and Mg_2Si phases in Al-Si-Mg alloy manipulated by in situ nanosized crystals

机译:通过原位纳米晶体操纵Al-Si-Mg合金中A-Al,共晶硅和Mg_2SI相的多尺度设计

获取原文
获取原文并翻译 | 示例
           

摘要

A new design method of Al-Si-Mg alloy manipulated by in situ nanosized crystals was proposed. Starting from source design of the microstructure manipulation agent with a high crystallographic matching relationship with the α-Al, eutectic Si and NfeSi phases in Al-Si-Mg alloy, the interatomic misfit (f_r) between NiTi(B2) and α-Al or Mg_2Si is 5.0% or 5.3%, respectively, and that between NiTi(B2) and Si is 9.9%, corresponding to good crystallographic matching. Based on calculations, in situ nanosized crystals could be considered as heterogeneous nucleation sites of α-Al, eutectic Si and Mg_2Si, thus, uniformly fine a-Al grains, near-spherical eutectic Si and fine precipitated Mg_2Si were obtained. The solidification behavior analysis also highly corresponded to the E2EM calculations. In the alloy manipulated by 0.05 wt% NiNbTi manipulation agent, the average sizes of α-Al, eutectic Si and Mg_2Si were greatly decreased by nearly 8, 2 and 20 times, respectively, thus achieving comprehensive multiscale manipulation of the microstructure of the alloy in one step. Specially, the huge energy stemmed from the B2 to B19' phase transformation will generate a large number of crystal defects, which provides nucleation sites and driving force for the formation of Mg_2Si and greatly refines the Mg_2Si.Moreover, the yield stress, tensile stress and fracture strain of the manipulated alloy were simultaneously improved by 34.1%, 20.4% and 35.0%, respectively. The excellent strength and plasticity could be ascribed to grain-refinement strengthening, Orowan strengthening and eutectic Si refinement and spheroidization, which reduced the stress concentration during deformation. The comprehensive microstructure manipulation of Al-Si-Mg alloy using nanosized crystals formed by in situ physical crystallization, especially the manipulation of the precipitated phase, is an innovative work that not only avoids the "poisoning" effect between multiple manipulation agents but also realizes comprehensive manipulation of the overall microstructure, consequently broadening further industrial applications.
机译:提出了一种通过原位纳米晶体操纵的Al-Si-Mg合金的新设计方法。从微观结构操纵剂的源设计开始,具有与α-Al,共晶Si和NFESI相中的高晶状体匹配关系,NITI(B2)和α-A1或α-A1之间的间隙错入(F_R)或Mg_2SI分别为5.0%或5.3%,并且Niti(B2)和Si之间的9.9%,对应于良好的晶体匹配。基于计算,原位纳米晶体可以被认为是α-Al,共晶Si和Mg_2SI的异质成核位点,因此获得均匀细的A-Al晶粒,近球形共晶Si和细沉淀的Mg_2Si。凝固行为分析也高于E2EM计算。在由0.05wt%的Ninbti操作剂操纵的合金中,α-Al,共晶Si和Mg_2Si的平均尺寸分​​别在近8,2和20次分别大大降低,从而实现了合金的微观结构的综合多尺度操纵一步。特别地,从B2到B19'相变的巨大能量会产生大量的晶体缺陷,它为形成Mg_2SI的形成,并且大大改善了Mg_2Si的核心缺陷。屈服应力,拉伸应力和操作合金的断裂应变分别提高34.1%,20.4%和35.0%。优异的强度和可塑性可以归因于晶粒细化强化,orowan强化和共晶Si细化和球化,其在变形过程中降低了应力浓度。使用原位物理结晶形成的纳米晶体的综合微观结构操纵Al-Si-Mg合金,尤其是沉淀相的操纵,是一种创新的工作,不仅避免了多种操作代理之间的“中毒”效应,还可以实现全面操纵整体微观结构,从而扩大了进一步的工业应用。

著录项

  • 来源
    《Materials Science and Engineering》 |2021年第20期|140627.1-140627.11|共11页
  • 作者单位

    State Key Laboratory of Automotive Simulation and Control Jilin University PR China Key Laboratory of Automobile Materials Ministry of Education and Department of Materials Science and Engineering Jilin University Renmin Street NO. 5988 Changchun Jilin Province 130025 PR China;

    State Key Laboratory of Automotive Simulation and Control Jilin University PR China Key Laboratory of Automobile Materials Ministry of Education and Department of Materials Science and Engineering Jilin University Renmin Street NO. 5988 Changchun Jilin Province 130025 PR China;

    Department of Mechanical Engineering School of Engineering and Computer Science Oakland University Rochester Ml 48309 USA;

    Department of Mechanical Engineering School of Engineering and Computer Science Oakland University Rochester Ml 48309 USA;

    State Key Laboratory of Automotive Simulation and Control Jilin University PR China School of Mechanical and Aerospace Engineering Jilin University Renmin Street NO. 5988 Changchun Jilin Province 130025 PR China;

    State Key Laboratory of Automotive Simulation and Control Jilin University PR China Key Laboratory of Automobile Materials Ministry of Education and Department of Materials Science and Engineering Jilin University Renmin Street NO. 5988 Changchun Jilin Province 130025 PR China School of Materials Science and Engineering Jiangsu University of Science and Technology Zhenjiang 212003 Jiangsu PR China;

    State Key Laboratory of Automotive Simulation and Control Jilin University PR China Key Laboratory of Automobile Materials Ministry of Education and Department of Materials Science and Engineering Jilin University Renmin Street NO. 5988 Changchun Jilin Province 130025 PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Al-Si-Mg alloy; Comprehensive microstructure manipulation; Spheroidization of eutectic Si; Mg_2Si refinement; Phase transformation; Mechanical properties;

    机译:Al-Si-mg合金;综合微观结构操作;共晶Si的球化;MG_2SI改进;相变;机械性能;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号