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Experimental investigation into the surface integrity and tribological property of AISI 1045 steel specimen for barrel finishing

机译:AISI 1045钢标本对桶装钢标本的表面完整性和摩擦学性能的实验研究

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Surface integrity is one of the important parameters that affect mechanical properties of an assembly like friction between mating parts and wear resistance. In this research, the effects of different barrel finishing conditions such as rotational speed, diameter of media and load of media on the surface integrity and tribological properties were systematically investigated for AISI 1045 steel, which is widely used for power transmission gears and shafts, aircraft landing gear and other friction pair parts. Their percentage change in surface roughness Ra, hardness and topography were analyzed by MarSurf roughness tester, a Vickers micro-hardness tester and ZeGage Plus optical profiler, respectively. The tribological property was analyzed using a ball-on-flat micro-tribological tester. Results indicated that barrel finishing process improved surface integrity of AISI 1045 and slightly decreased friction coefficient. The optimum process parameters were the diameter of 2 mm, the rotational speed of 360 r/min, and the load of 70%. The predicted model of the%ΔRa was obtained by regression analysis and validated by the experimental observation.
机译:表面完整性是影响组件的机械性能的重要参数之一,如配合部件和耐磨性之间的摩擦。在该研究中,对于AISI 1045钢,系统地研究了不同桶形整理条件如旋转速度,介质直径和培养基的载荷负荷的影响,这是广泛用于动力传动齿轮和轴,飞机着陆齿轮和其他摩擦配件。 SMARURF粗糙度测试仪分别分析其表面粗糙度Ra,硬度和地形的百分比变化,分别分别分析了维氏微型硬度测试仪和ZEGAGE加光分析仪。使用扁平的微摩擦测试仪分析摩擦学性质。结果表明,桶整理过程改善了AISI 1045的表面完整性,略微降低了摩擦系数。最佳工艺参数为直径为2mm,转速为360升/分,负荷为70%。通过回归分析获得%ΔRa的预测模型并通过实验观察验证。

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