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Ti元素對AlFeCrCoCuTi多組元高熵合金的組織及耐磨性能影響
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桂林電子科技大學(xué)材料科學(xué)與工程學(xué)院

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TG113.12

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國家自然科學(xué)基金資助項目(511610065)


Effect of Ti addition on the microstructure and wear resistance of AlFeCrCoCuTiX high-entropy alloys
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Guilin university of electronic technology School of Materials Science and Engineering

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    摘要:

    研究了非自耗電弧熔煉AlFeCrCoCu,AlFeCrCoCuTi多組元高熵合金以及AlFeCrCoCuTi合金800℃回火后的組織、硬度及耐磨性能。研究發(fā)現(xiàn),相比于AlFeCrCoCu合金,隨著Ti的加入,AlFeCrCoCuTi合金組織結(jié)構(gòu)趨于復(fù)雜,由之前簡單的BCC FCC相變?yōu)橛筛缓珹l、Co、Ti的BCC1相和富含F(xiàn)e、Cr的(α-Cr,Fe)BCC2相的枝晶共晶組織和晶間富Cu的FCC相以及晶間富含Cr2Ti和Fe2Ti金屬間化合物的ω析出相共同組成。Ti的加入,析出的Cr2Ti和Fe2Ti的金屬間化合物起到了強化作用,提高了合金的硬度。合金具有很強的抗回火軟化能力。合金的摩擦磨損測試主要以黏著磨損為主,金屬間化合物析出強化作用提高了合金的耐磨性,而回火后的合金耐磨性能更優(yōu)。主要原因是隨著摩擦?xí)r間的增加,回火后的合金表面上生成了一層氧化物附著在摩擦表面,提高了合金的耐磨性。

    Abstract:

    The microstructure of AlFeCrCoCuTiX (x=0,1) high-entrophy alloys fabricated by an arc remelter with as-cast structures and 800℃ tempering treated structure were investigated by XRD,SEM,EDS and DSC. The alloys wear resistance also be tested. The result show that the AlFeCrCoCu high-entrophy alloy can posses face-centered cubic (FCC) and body-centered cubic (BCC), and with the addition of titanium, the AlFeCrCoCuTi high-entrophy alloy was composed of primary dendrite phase ( The β phase rich in Al、Co、Ti and the α phase rich in Fe、Cr eutectic structure) , interdendrite phase rich in Cu and the precipitated phase that rich in Cr2Ti,Fe2Ti intermetallic compounds. With the addition of titanium,The precipitation intermetallic compound reinforced the metal,and the alloys hardness was improved. The alloys exhibits a superior resistance to temperature and softening property. The alloy was adhesive wear behaviors, the addition of Ti, due to the effect of precipitation strengthening of the precipitated phase, the alloys wear resistance is improved. And the 800 ℃ tempering alloy wear-resisting performance is more better than that of the as-cast alloy. The main reason is that with the increase of friction time, the 800 ℃ tempering alloy generateed a layer of oxide on the surface and attached to the friction surface, improve the wear resistance of the alloy.

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謝紅波. Ti元素對AlFeCrCoCuTi多組元高熵合金的組織及耐磨性能影響[J].稀有金屬材料與工程,2016,45(1):145~151.[xiehongbo. Effect of Ti addition on the microstructure and wear resistance of AlFeCrCoCuTiX high-entropy alloys[J]. Rare Metal Materials and Engineering,2016,45(1):145~151.]
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  • 收稿日期:2014-02-28
  • 最后修改日期:2014-10-09
  • 錄用日期:2014-11-20
  • 在線發(fā)布日期: 2019-01-04
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