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Impact of Peak Material Volume of Polycrystalline CVD Diamond Coatings on Dry Friction Against Aluminum

机译:多晶CVD金刚石涂层峰值材料体积对铝干摩擦的影响

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摘要

For economic and environmental reasons, dry forming is of increasing interest due to the shortening of process chains, cost savings and reduction of environmental pollution. The aim of these investigations is to examine to what extent chemical vapor deposited (CVD) diamond coatings are suitable for dry forming of aluminum and to identify the surface topology requirements for a low friction coefficient and low wear. Nine different surface topologies of CVD diamond coatings were tested in an oscillating ball-on-plate tribometer test against aluminum balls with a Hertzian contact stress of 759 MPa and 99,900 cycles. It could be concluded that the peak material volume (Vmp) of the diamond coating is the most important factor for achieving a low abrasion of aluminum as well as a low friction coefficient against aluminum. The Vmp should be smaller than 0.04 ml/m(2). Microcrystalline CVD diamond with a post-treated surface has great potential for dry forming of aluminum.
机译:由于经济和环境原因,由于流程链缩短,成本节约和环境污染降低,干成型越来越受益。 这些研究的目的是检查化学气相沉积的程度(CVD)金刚石涂层适用于铝的干燥成形,并识别低摩擦系数和低磨损的表面拓扑要求。 九个不同表面拓扑的CVD金刚型涂层在振荡的球形摩擦计测试中进行了测试,以防止铝球,其偏振接触应力为759 MPa和99,900次循环。 可以得出结论,金刚石涂层的峰值材料体积(VMP)是实现铝低磨损的最重要因素以及铝的低摩擦系数。 VMP应小于0.04ml / m(2)。 微晶CVD金刚石具有后处理过的表面具有很大的干燥铝的潜力。

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