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Synthesis and Performance of Plasma-Sprayed Polymer/Steel Coating System

机译:等离子喷涂聚合物/钢涂层体系的合成与性能

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Low friction thermally sprayed polymer-steel coatings for high contact pressure rolling/sliding systems were developed using high-energy plasma spraying. Polymers were applied as a thermally sprayed thin film (75-100 μm) over a thicker (250-750 μm) thermally sprayed steel coating. Twin roller rolling/sliding tests were performed at 5 and 35% creep and contact loads of 1700 N on a 5 mm contact face. A lower coefficient of friction (0.10-0.15) with increased durability, compared with that of an AISI 1080 steel thermally sprayed coating (coefficient of friction of 0.46), was observed under these rolling-sliding contact conditions. The polymer's ability to control friction and wear stems from the mechanical anchoring of the polymer film to the rough surface of the steel coating. The polymer film was characterized by scanning electron microscopy and Fourier transform infrared analysis.
机译:使用高能等离子喷涂技术开发了用于高接触压力滚动/滑动系统的低摩擦热喷涂聚合物-钢涂层。将聚合物以热喷涂薄膜(75-100μm)的形式涂覆在较厚(250-750μm)的热喷涂钢涂层上。双辊滚动/滑动测试是在5mm的接触面上以5%和35%的蠕变和1700 N的接触载荷进行的。在这种滚动滑动接触条件下,与AISI 1080钢热喷涂涂层相比,摩擦系数较低(0.10-0.15),且耐久性得到提高(摩擦系数为0.46)。聚合物控制摩擦和磨损的能力源于将聚合物膜机械锚固到钢涂层的粗糙表面上。通过扫描电子显微镜和傅立叶变换红外分析对聚合物膜进行表征。

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