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Tribological Behaviour of Mechanically Synthesized Titanium-Boron Carbide Nanostructured Coating

机译:机械合成的钛硼碳化物纳米结构涂层的摩擦学行为

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摘要

In this paper, titanium-boron carbide (Ti/B_4C) nanocomposite coatings with different B_4C nanoparticles contents were fabricated by surface mechanical attrition treatment (SMAT) method by using B_4C nanoparticles with average nanoparticle size of 40 nm. The characteristics of the nanopowder and coatings were evaluated by microhardness test, scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Friction and wear performances of nanocomposite coatings and pure titanium substrate were comparatively investigated, with the effect of the boron carbide content on the friction and wear behaviours to be emphasized. The results show the microhardness, friction and wear behaviours of nanocomposite coatings are closely related with boron carbide nanoparticle content. Nanocomposite coating with low B_4C content shows somewhat (slight) increased microhardness and wear resistance than pure titanium substrate, while nanocomposite coating with high B_4C content has much better (sharp increase) wear resistance than pure titanium substrate. The effect of B_4C nanoparticles on microhardness and wear resistance was discussed.
机译:本文采用平均表面粒径为40 nm的B_4C纳米粒子,通过表面机械磨损处理(SMAT)方法制备了具有不同B_4C纳米粒子含量的碳化钛硼(Ti / B_4C)纳米复合涂层。通过显微硬度测试,扫描电子显微镜(SEM)和透射电子显微镜(TEM)评估了纳米粉末和涂层的特性。比较研究了纳米复合涂层和纯钛基体的摩擦磨损性能,重点研究了碳化硼含量对摩擦磨损性能的影响。结果表明,纳米复合涂层的显微硬度,摩擦磨损性能与碳化硼纳米颗粒含量密切相关。 B_4C含量低的纳米复合涂层比纯钛基材显示出(轻微)提高的显微硬度和耐磨性,而B_4C含量高的纳米复合涂层比纯钛基材具有更好的(锐化)耐磨性。讨论了B_4C纳米粒子对显微硬度和耐磨性的影响。

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