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Mechanical and tribological performance of a hybrid MMC coating deposited on Al–17Si piston alloy by laser composite surfacing technique

机译:激光复合堆焊技术在Al-17Si活塞合金上沉积混合MMC涂层的力学和摩擦学性能

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摘要

Laser composite surfacing (LCS) is a photon driven manufacturing technology that can be utilized for depositing hybrid metal matrix composite coatings (HMMC) on softer Ti/Al/Mg alloys to enhance their tribo-mechanical properties. LCS offers the advantages of higher directionality, localized microstructural refinement and higher metallurgical bonding between coating and substrate. The current research presents the tribo-mechanical evaluation and characterization of solid lubricant based Ni–WC coatings deposited by LCS on Al–Si piston alloy by varying the concentration of graphite between 5-to-15-weight percentage. The tribological behavior of LCS samples was investigated using a ball-on-plate tribometer. Results indicate that the surface hardness, wear rate and friction coefficient of the Al–Si hypereutectic piston alloy were improved after LCS of graphite based HMMC coatings. The maximum surface hardness of 781 H _(v) was acquired for the Ni–WC coating containing 5 wt% graphite. The friction coefficient of Al–Si under dry sliding conditions was reduced from 0.47 to 0.21. The reduction in the friction coefficient was attributed to the formation of a shearable transfer layer, which prevented delamination and reduced adhesion, abrasion and fatigue cracking.
机译:激光复合表面处理(LCS)是一种光子驱动的制造技术,可用于在较软的Ti / Al / Mg合金上沉积混合金属基质复合涂层(HMMC),以增强其摩擦机械性能。 LCS具有更高的方向性,局部微结构细化以及涂层和基材之间更高的冶金结合等优点。当前的研究提出了通过在5到15重量百分比之间改变石墨的浓度,LCS在Al-Si活塞合金上沉积的固体润滑剂基Ni-WC涂层的摩擦力学评估和特性。 LCS样品的摩擦学性能是使用板球式摩擦计研究的。结果表明,石墨基HMMC涂层的LCS改善了Al-Si过共晶活塞合金的表面硬度,磨损率和摩擦系数。含有5 wt%石墨的Ni–WC涂层的最大表面硬度为781 H _(v)。干式滑动条件下Al-Si的摩擦系数从0.47降低到0.21。摩擦系数的降低归因于可剪切转移层的形成,该转移层防止了分层并减少了附着力,磨损和疲劳裂纹。

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