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通过放电等离子烧结制备的机械合金化Ni-TiC复合材料的力学和摩擦学行为

Mechanical and Tribological Behavior of Mechanically Alloyed Ni-TiC Composites Processed via Spark Plasma Sintering.

作者信息

Walunj Ganesh, Bearden Anthony, Patil Amit, Larimian Taban, Christudasjustus Jijo, Gupta Rajeev Kumar, Borkar Tushar

机构信息

Department of Mechanical Engineering, Washkewicz College of Engineering Cleveland State University, Cleveland, OH 44115, USA.

Department of Material Science and Engineering, North Carolina State University, Raleigh, NC 27606, USA.

出版信息

Materials (Basel). 2020 Nov 23;13(22):5306. doi: 10.3390/ma13225306.

Abstract

Titanium carbide (TiC) reinforced nickel (Ni) matrix composites were processed via mechanical alloying (MA) followed by spark plasma sintering (SPS) process. Mechanical alloying has gained special attention as a powerful non-equilibrium process for fabricating amorphous and nanocrystalline materials, whereas spark plasma sintering (SPS) is a unique technique for processing dense and near net shape bulk alloys with homogenous microstructure. TiC reinforcement varied from 5 to 50 wt.% into nickel matrix to investigate its effect on the microstructure and mechanical behavior of Ni-TiC composites. All Ni-TiC composites powder was mechanically alloyed using planetary high energy ball mill with 400 rpm and ball to powder ratio (BPR) 15:1 for 24 h. Bulk Ni-TiC composites were then sintered via SPS process at 50 MPa pressure and 900-1200 °C temperature. All Ni-TiC composites exhibited higher microhardness and compressive strength than pure nickel due to the presence of homogeneously distributed TiC particles within the nickel matrix, matrix grain refinement, and excellent interfacial bonding between nickel and TiC reinforcement. There is an increase in Ni-TiC composites microhardness with an increase in TiC reinforcement from 5 to 50 wt.%, and it reaches the maximum value of 900 HV for Ni-50TiC composites.

摘要

通过机械合金化(MA)然后进行放电等离子烧结(SPS)工艺制备了碳化钛(TiC)增强镍(Ni)基复合材料。机械合金化作为一种制备非晶态和纳米晶材料的强大非平衡工艺受到了特别关注,而放电等离子烧结(SPS)是一种用于加工具有均匀微观结构的致密和近净形块状合金的独特技术。将TiC增强相以5至50 wt.% 的比例添加到镍基体中,以研究其对Ni-TiC复合材料微观结构和力学行为的影响。所有Ni-TiC复合材料粉末均使用行星式高能球磨机在400 rpm转速和球粉比(BPR)为15:1的条件下进行24小时的机械合金化。然后通过SPS工艺在50 MPa压力和900 - 1200 °C温度下对块状Ni-TiC复合材料进行烧结。由于镍基体内均匀分布的TiC颗粒、基体晶粒细化以及镍与TiC增强相之间优异的界面结合,所有Ni-TiC复合材料的显微硬度和抗压强度均高于纯镍。随着TiC增强相从5 wt.% 增加到50 wt.%,Ni-TiC复合材料的显微硬度增加,对于Ni-50TiC复合材料,其达到了900 HV的最大值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5766/7700394/99aea31abce4/materials-13-05306-g001.jpg

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