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首页> 外文期刊>Tribology International >Anti-frictional role of diamond and graphite suspended bio-oil based nano-aerosols at sliding interface of Al-SiCp and WC-6Co
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Anti-frictional role of diamond and graphite suspended bio-oil based nano-aerosols at sliding interface of Al-SiCp and WC-6Co

机译:Al-SICP和WC-6CO的滑动界面处的金刚石和石墨悬浮生物油基纳米气溶胶的抗摩擦作用

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摘要

Current study investigates tribo-phenomena at sliding interface of Al2124-17SiC(p) disc and WC-6Co pin and explores suitability of nano-oil aerosols as lubricants. They form chip-tool tribo-pair in machining. Ploughing, adhesion, abrasion were predominant under dry sliding. Adhesion and friction-coefficient (COF) were severer with higher normal load and lower sliding velocity. Aerosol of palm-oil arrested adhesion of aluminium on carbide pin and reduced COF by 80-82% through film-lubrication but at low load conditions. Diamond/graphite nanoparticles (1 wt%) suspension helped palm-oil sustain film-lubrication at sliding interface even in extreme conditions, reducing COF further and arresting adhesion phenomenon. Rolling of near-spherical nano-diamonds or basal-plane shearing within graphite nano-platelets caused additional reduction in friction. Graphite nano-aerosol was superior and similarly effective in high-speed milling as SQL-medium.
机译:目前的研究调查了Al2124-17SiC(p)圆盘和WC-6Co销滑动界面的摩擦现象,并探索了纳米油气溶胶作为润滑剂的适用性。它们在加工中形成切屑-刀具摩擦副。在干滑条件下,犁耕、粘着和磨损占主导地位。法向载荷越大,滑动速度越低,粘着系数和摩擦系数越大。棕榈油气溶胶阻止了铝在硬质合金销上的粘附,并通过薄膜润滑降低了80-82%的COF,但在低负荷条件下。即使在极端条件下,金刚石/石墨纳米颗粒(1 wt%)悬浮液也有助于棕榈油在滑动界面处维持膜润滑,进一步降低COF并阻止粘附现象。近球形纳米金刚石的滚动或石墨纳米片内的基面剪切导致摩擦的额外减少。石墨纳米气雾剂在高速铣削中的效果优于SQL介质。

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