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原位自生(TiC+TiB)/Ti6Al4V復(fù)合材料摩擦磨損性能研究
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江蘇科技大學(xué)材料科學(xué)與工程學(xué)院

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TG115.5+8

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Friction and Wear Performance of In-situ (TiC+TiB)/Ti6Al4V Composites
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School of Materials Science and Engineering,Jiangsu University of Science and Technology

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    摘要:

    本文用原位反應(yīng)法制備了不同TiC和TiB增強相含量的(TiC+TiB)/Ti6Al4V復(fù)合材料(簡記為TMC),用HT-1000型摩擦磨損試驗機研究了外加載荷對原位本文用原位反應(yīng)法制備了不同TiC和TiB增強相含量的(TiC+TiB)/Ti6Al4V復(fù)合材料(簡記為TMC),用HT-1000型摩擦磨損試驗機研究了外加載荷對原位(TiC+TiB)/Ti6Al4V復(fù)合材料干滑動摩擦磨損性能的影響,并利用掃描電鏡及布魯克三維形貌儀觀察分析其磨損行為。結(jié)果顯示,與Ti6Al4V基體相比,TiC+TiB增強相的生成提高了復(fù)合材料的耐磨性。對于含不同體積分?jǐn)?shù)增強相的復(fù)合材料,隨著外加載荷的增加,材料的磨損率和磨損深度增加,摩擦系數(shù)減小且在小范圍內(nèi)波動。在小負載下,磨損的表面覆蓋有一些溝槽和少量磨屑;在大負載下,磨損的表面覆蓋有一些淺溝槽和大量磨屑。磨損機制為磨粒磨損和氧化磨損。隨著負荷增加,碎屑的尺寸增加,磨損加劇。

    Abstract:

    (TiC+TiB)/Ti6Al4V composites with different TiC and TiB contents were prepared by in situ synthesis. The influence of load on dry sliding friction and wear performance of in-situ (TiC+TiB)/Ti6Al4V composites (designated as TMC) was studied by HT-1000 friction and wear testing machine, and the wear behaviors of the composites were also investigated by scanning electron microscopy (SEM) and Bruker 3D profilometer. The results show that the wear resistance of TMC was improved by the formation of TiC and TiB phases compared with Ti6Al4V matrix. For the composites with different volume fraction reinforcing phases, the wear rate and wear depth were increased with the increasing of the applied load, and the friction coefficient decreased and fluctuated within a small range. At low loads, the worn surface was covered with grooves and a small amount of wear debris; under heavy loads, the worn surface was covered with narrow and shallow grooves and large amount of wear debris. Wear mechanisms were abrasive wear and oxidation wear. With the increasing of the load, the size of the debris was increased.

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白雪,金云學(xué),盧璇,陳亞楠.原位自生(TiC+TiB)/Ti6Al4V復(fù)合材料摩擦磨損性能研究[J].稀有金屬材料與工程,2018,47(12):3624~3628.[Bai Xue, Jin Yunxue, Lu Xuan, Chen Yanan. Friction and Wear Performance of In-situ (TiC+TiB)/Ti6Al4V Composites[J]. Rare Metal Materials and Engineering,2018,47(12):3624~3628.]
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  • 收稿日期:2017-05-04
  • 最后修改日期:2017-06-01
  • 錄用日期:2017-06-23
  • 在線發(fā)布日期: 2019-01-04
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