首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Friction reduction of highly-loaded rolling-sliding contacts by surface modifications under elasto-hydrodynamic lubrication
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Friction reduction of highly-loaded rolling-sliding contacts by surface modifications under elasto-hydrodynamic lubrication

机译:通过在弹性流体动力润滑下进行表面改性来降低高负荷滚动滑动触点的摩擦

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摘要

Due to the operation in mixed and boundary friction, minimization of friction losses in automobile powertrains offers high potential for lowering of greenhouse gas emissions and saving fossil fuels. In cooperation between Surface Engineering Institute (IOT) and Gear Research Center (FZG), surface modifications in terms of stochastic and deterministic structures, diamond-like carbon (DLC) and nitride hard physical vapor deposition (PVD) coatings were tested in lubricated rolling-sliding contacts in twin-disk and gear efficiency test-rig. It was found that deterministic structured surfaces provide for reduction of friction losses by up to 7% under extreme boundary friction conditions at high Hertzian stresses and small relative lubricant film thicknesses. Application-oriented tests using DLC coated gear wheels in gear efficiency test-rig exhibited a reduction of friction losses between 10% and 21% compared to uncoated gear wheels. The DLC coating ZrCg developed at IOT provided for friction reduction of 15% for small circumferential speeds in boundary friction. Friction losses were reduced by up to 39% at higher circumferential speeds in spite of fully separated surfaces in the fluid friction regime. Due to their thermophysical properties, it is assumed that DLC coatings have an impact on viscosity and shear resistance of the lubricant. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于在混合摩擦和边界摩擦中运行,因此使汽车动力总成中的摩擦损失最小化具有降低温室气体排放和节省化石燃料的巨大潜力。在表面工程研究所(IOT)和齿轮研究中心(FZG)之间的合作下,对表面随机性和确定性结构,类金刚石碳(DLC)和氮化物硬质物理气相沉积(PVD)涂层的表面改性进行了润滑滚压试验,双盘和齿轮效率测试装置中的滑动触点。已经发现,在高赫兹应力和较小的相对润滑剂膜厚度的极端边界摩擦条件下,确定性结构化表面可将摩擦损失降低多达7%。在齿轮效率测试台中使用DLC涂层齿轮进行面向应用的测试,与未涂层齿轮相比,摩擦损失降低了10%到21%。在IOT开发的DLC涂层ZrCg可在边界摩擦时以较小的圆周速度将摩擦降低15%。尽管在流体摩擦状态下表面完全分开,但在较高的圆周速度下,摩擦损失最多可减少39%。由于其热物理性质,假定DLC涂层对润滑剂的粘度和抗剪切性有影响。 (C)2015 Elsevier B.V.保留所有权利。

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