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Surface integrity of bearing steel element with a new high-efficiency shear thickening polishing technique

机译:新型高效剪切增稠抛光技术的轴承钢元件表面完整性

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The bearing steel elements with high quality surface are required to improve the performance of bearings. A new high-efficiency shear-thickening polishing (STP) technology was used on bearing steel element ultraprecision machining. A kind of high efficiency shear thickening polishing slurry (HE-STPS) was prepared by mechanical mixing and ultrasonic dispersion method. The polishing experiments were carried out on a new intelligent polishing machine (HE-STP-II). The surface integrity of bearing steel element was studied by scanning electron microscopy (SEM), laser profilometer and some micro-scale test devices, then surface roughness and profile accuracy from sample surface were measured. Surface roughness decreases slightly as SiO2size reaches nanoscale, which is related to the cutting depth of individual abrasive. The HE-STP would be a continuous process of wear, whose complex machining mechanism including micro-cutting, adhesive wear and other machining mechanism, which could reduce machining scratches and other micro defects, and achieve “flexible polishing” on the bearing steel element surface. The studies indicated that high surface integrity of bearing steel element could be obtained by this new high-efficiency polishing method.
机译:需要具有高质量表面的轴承钢元件来改善轴承性能。一种新的高效剪切增稠抛光(STP)技术被用于轴承钢元件的超精密加工。通过机械混合和超声分散法制备了一种高效剪切增稠抛光液(HE-STPS)。抛光实验是在新型智能抛光机(HE-STP-II)上进行的。通过扫描电子显微镜(SEM),激光轮廓仪和一些微型测试设备研究了轴承钢元件的表面完整性,然后测量了样品表面的表面粗糙度和轮廓精度。当SiO2尺寸达到纳米级时,表面粗糙度略有降低,这与单个磨料的切削深度有关。 HE-STP将是一个连续的磨损过程,其复杂的机械加工机制包括微切割,粘着磨损和其他机械加工机制,可以减少机械刮痕和其他微观缺陷,并在轴承钢元件表面实现“柔性抛光” 。研究表明,通过这种新的高效抛光方法可以获得轴承钢元件的高表面完整性。

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