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Effects of metallic Ti particles on the aging behavior and the influenced mechanical properties of squeeze-cast (SiC_p+Ti)/7075Al hybrid composites

机译:金属钛颗粒对(SiC_p + Ti)/ 7075Al杂化复合材料的时效行为及其力学性能的影响

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摘要

The effects of metallic Ti particles on the aging behavior of squeeze-cast (SiC_p+Ti)/7075Al hybrid composites and the mechanical properties of the aging treated composites were investigated. Results shown that the precipitation hardening of the hybrid composites during aging processes was delayed due to the segregation of solute Mg atoms in the vicinity of the Ti particles even though the activation energy of the η' precipitates in the hybrid composites was reduced when compared with the Ti particle-free composites. The segregation of the solute Mg atoms was facilitated as a result of the high diffusivity paths formed by the generated dislocations in the matrix induced by the thermal misfit between the SiC particle and the matrix. The smaller activation energy for the hybrid composite may attribute to a significant reduction in the nucleation rate of the dislocation nucleated η' precipitates compared with the Ti particle-free composite. After aging treated under the optimum aging conditions, the tensile strength of both composites was improved because of the precipitation hardening of the matrix alloy. In contrast with the reduced ductility of the traditional Ti particle-free composites after aging treatment, the ductility of the Ti particle-containing composites was improved as a result of the strengthened interfaces between the Ti particles and the matrix alloy.
机译:研究了金属钛颗粒对挤压铸造(SiC_p + Ti)/ 7075Al复合材料时效行为的影响以及时效处理后复合材料的力学性能。结果表明,尽管与混合态复合材料相比,杂化复合材料中η'析出物的活化能降低,但由于固溶Mg原子在Ti颗粒附近的偏析,导致了时效复合材料的析出硬化被延迟。不含钛的复合材料。由于SiC颗粒与基体之间的热失配引起的基体内产生的位错形成的高扩散路径,促进了Mg溶质原子的偏析。与无Ti颗粒的复合材料相比,杂化复合材料的活化能较小,这可归因于位错成核的η'沉淀物的成核速率显着降低。在最佳时效条件下进行时效处理后,由于基体合金的沉淀硬化,两种复合材料的拉伸强度均得到改善。与传统的无Ti颗粒复合材料在时效处理后降低的延展性相反,由于Ti颗粒与基体合金之间的界面增强,含Ti颗粒的复合材料的延展性得到了改善。

著录项

  • 来源
    《Materials Science and Engineering》 |2015年第3期|190-197|共8页
  • 作者单位

    National Engineering Research Center of Near-net-shape Forming for Metallic Materials, South China University of Technology, Guangzhou 510640, People's Republic of China;

    National Engineering Research Center of Near-net-shape Forming for Metallic Materials, South China University of Technology, Guangzhou 510640, People's Republic of China;

    National Engineering Research Center of Near-net-shape Forming for Metallic Materials, South China University of Technology, Guangzhou 510640, People's Republic of China;

    National Engineering Research Center of Near-net-shape Forming for Metallic Materials, South China University of Technology, Guangzhou 510640, People's Republic of China;

    National Engineering Research Center of Near-net-shape Forming for Metallic Materials, South China University of Technology, Guangzhou 510640, People's Republic of China;

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

    Composites; Aging hardening; Microstructure; Mechanical property;

    机译:复合材料;时效硬化;微观结构机械性能;

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