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Formation mechanism and single abrasive wear of TaC dense creamic layer on surface of gray cast iron

机译:灰铸铁表面TAC致密粉粉体层的形成机理和单磨损磨损

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摘要

TaC dense ceramic layer on the surface of gray cast iron was prepared in situ using casting-heat treatment process. Phase composition, morphology, and element distribution of TaC dense ceramics were analyzed and determined using X-ray diffraction (XRD), scanning electron microscopy (SEM), and energy dispersive spectrometry (EDS). The microstructure and crystal structure of Ta-TaC interface and TaC-Fe interface were studied using transmission electron microscopy (TEM), and TEM samples were prepared using focused ion beam (FIB) technique. Scratch test with progressively increasing load of 0-50 N was conducted on the surface of TaC dense ceramic layer. Single abrasive wear behavior of TaC dense ceramic layer was evaluated using microscopic morphology of scratch, friction curve, and acoustic emission curve. Results show that TaC dense ceramic layer on gray cast iron surface was obtained via in situ reaction of C atoms in gray cast iron with Ta atoms in tantalum plate. Dominant mechanism for TaC particle growth is the diffusion of C atoms into the octahedral gap of Ta, and growth direction of TaC particles is the normal direction of Ta plate. TaC dense ceramic layer with a thickness of 20 pm can carry critical load of 48.7 N. The critical compressive stress of TaC dense ceramic layer on the gray cast iron matrix is estimated to be 302.08 MPa by theoretical calculation. The plastic deformation of TaC dense ceramic occurs before critical load of 48.7 N, and brittle fracture occurs after critical load of 48.7 N. The single abrasive wear form of TaC dense ceramic is the cutting wear.
机译:使用铸热处理方法原位制备灰铸铁表面上的TAC致密陶瓷层。使用X射线衍射(XRD),扫描电子显微镜(SEM)和能量分散光谱(EDS)分析和测定TAC致密陶瓷的相组成,形态和元素分布。使用透射电子显微镜(TEM)研究了TA-TAC接口和TAC-Fe界面的微观结构和晶体结构,使用聚焦离子束(FIB)技术制备TEM样品。在TAC致密陶瓷层的表面上进行逐渐增加的0-50n载荷的刮擦试验。使用划痕,摩擦曲线和声发射曲线的微观形态评估TAC致密陶瓷层的单个研磨行为。结果表明,灰铸铁中的C原子与钽板中的Ta原子原位反应获得灰铸铁表面上的TAC致密陶瓷层。 TAC颗粒生长的主要机理是C原子的扩散到TA的八面体间隙中,TAC颗粒的生长方向是TA板的正常方向。厚度为20μm的TAC致密陶瓷层可以承载48.7 n的临界负荷。通过理论计算估计TAC致密陶瓷层的TAC致密陶瓷层的临界压缩应力。通过理论计算估计为302.08MPa。 TAC致密陶瓷的塑性变形发生在48.7 n的临界载荷之前,并且在48.7 n的临界负荷后发生脆性断裂。TAC致密陶瓷的单个磨料磨损形式是切削磨损。

著录项

  • 来源
    《CERAMICS INTERNATIONAL》 |2019年第12期|共9页
  • 作者单位

    Xian Univ Technol Sch Mat Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Xian Univ Technol Sch Mat Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Guangdong Inst Mat &

    Proc Guangzhou 510000 Guangdong Peoples R China;

    Xian Univ Technol Sch Mat Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Xian Univ Technol Sch Mat Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Xian Univ Technol Sch Mat Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Xian Univ Technol Sch Mat Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Yulin Univ Yulin 719000 Peoples R China;

    Shaanxi Key Lab Nano Mat &

    Technol Xian 710055 Shaanxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 陶瓷工业;硅酸盐工业;
  • 关键词

    In situ reaction; Tantalum carbide; FIB; Critical load; Abrasive wear;

    机译:原位反应;钽;FIB;临界负荷;磨料磨损;

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