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首页> 外文期刊>Applied Surface Science >In situ TiC/Inconel 625 nanocomposites fabricated by selective laser melting: Densification behavior, microstructure evolution, and wear properties
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In situ TiC/Inconel 625 nanocomposites fabricated by selective laser melting: Densification behavior, microstructure evolution, and wear properties

机译:通过选择性激光熔化制造的原位TiC / Inconel 625纳米复合材料:致密化行为,微观结构演化和磨损性能

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摘要

An Inconel 625-based nanocomposite reinforced with TiC nanoparticles (TiC/IN625) was successfully prepared by selective laser melting. The effects of laser fluence on the densification, microstructure, crystal structure, microhardness, and wear performance of the prepared nanocomposites were systematically investigated. A low laser fluence induced many defects, such as pores, cavities, and unmelted particles, whereas a high laser fluence resulted in a significantly increased densification. The increase in the laser fluence resulted in the continuous development of the microstructure of TiC/IN625 nanocomposites. A laser fluence of 139 J/mm(3) led to insufficient growth, while a sufficient growth was achieved at the laser fluence of 167 J/mm(3); at 208 J/mm(3), refined columnar/cellular dendrites were formed. Compared to IN625, smaller grains (less than 5 mu m) and a larger proportion of sub-grain boundaries appeared in the TiC/IN625 nanocomposites due to grain refinement. The TiC phases precipitated in situ in the grain boundaries, and a high level of dislocation was introduced into the TiC/IN625 nanocomposites. The maximum microhardness of the TiC/IN625 nanocomposites was 440 HV at the laser fluence of 208 J/mm(3). The lowest coefficient of friction and wear rate were 0.33 and 3.5 x 10(-4) mm(3) N-1 m(-1), respectively.
机译:通过选择性激光熔化成功制备了用TiC纳米颗粒(TiC / IN625)加强的基于625个基的纳米复合材料。系统研究了激光物流量对制备纳米复合材料的致密化,微观结构,晶体结构,显微硬度和磨损性能的影响。低激光物流量诱导许多缺陷,例如孔,腔和未涂抹颗粒,而高激光物质导致致密化显着增加。激光物质的增加导致TiC / IN625纳米复合材料的显微结构的连续发育。 139J / mm(3)的激光器流量导致增长不足,而在激光器流量为167J / mm(3)的激光流量上实现了足够的生长;在208 j / mm(3),形成精制柱状/细胞树突。与IN625相比,由于晶粒细化,在TIC / IN625纳米复合材料中出现较小的晶粒(小于5μm)和较大比例的亚粒边界。在晶界原位沉淀的TIC相位,并将高水平的位错引入TIC / IN625纳米复合材料中。 TIC / IN625纳米复合材料的最大显微性为440HV,激光器流量为208J / mm(3)。最低系数摩擦和磨损率分别为0.33和3.5×10(-4)mm(3)n-1m(-1)。

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  • 来源
    《Applied Surface Science》 |2020年第jul15期|145981.1-145981.14|共14页
  • 作者单位

    Jiangsu Univ Dept Mech Engn Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Dept Mech Engn Zhenjiang 212013 Jiangsu Peoples R China;

    Univ Manchester Dept Aerosp & Civil Engn Manchester M13 9PL Lancs England;

    Jiangsu Univ Dept Mech Engn Zhenjiang 212013 Jiangsu Peoples R China;

    Jiangsu Univ Dept Mech Engn Zhenjiang 212013 Jiangsu Peoples R China;

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

    Selective laser melting; Nanocomposites; TiC; Microstructure; Wear;

    机译:选择性激光熔化;纳米复合材料;TIC;微观结构;穿;

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