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On the Potential of CVD Diamond Films as Mechanical Seal Face Materials

机译:CVD金刚石膜作为机械密封面材料的潜力

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Polycrystalline diamond coatings have been deposited by microwave plasma-assisted CVD onto silicon carbide substrates. The coating conditions and the substrate properties were varied systematically using the Taguchi method and the resulting coating morpho morphologies logies were determined. A second Taguchi experiment was then used to assess the tribological performance of the coatings against a range of counterface materials in a thrust washer test rig. The results of these tests are reported here, and they confirm the he excellent tribological performance that can be obtained. Consideration is also given to the role of surface texture in determining seal performance. A simple mathematical model has been developed to assist in the characterisation and interpretation of the tribological results produced. The surface texture of the diamond films was identified as significant to their tribo-performance. The model demonstrated how the surface texture could contribute to interface lubrication.
机译:多晶金刚石涂层已经通过微波等离子体辅助CVD沉积在碳化硅衬底上。使用Taguchi方法系统地改变了涂层条件和基材性能,并确定了所得的涂层形态学逻辑。然后使用第二个Taguchi实验在推力垫圈试验台中评估涂层对一系列对面材料的摩擦学性能。这些测试的结果报告在这里,它们证实了所获得的优异的摩擦学性能。还应考虑表面纹理在确定密封性能方面的作用。已经开发了一个简单的数学模型来帮助表征和解释所产生的摩擦学结果。金刚石薄膜的表面纹理被认为对它们的摩擦性能很重要。该模型演示了表面纹理如何有助于界面润滑。

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