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Performance of pulsed-electrochemical honing and pulsed-electrochemical finishing in improving quality of bevel gears

机译:脉冲电化学珩磨和脉冲电化学精加工提高锥齿轮质量的性能

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This article presents a comparative study concerning performance of pulsed-electrochemical honing (PECH) and pulsed-electrochemical finishing (PECF) in straight bevel gear finishing. Performance of these processes were compared in terms of average percentage difference in the considered parameters of surface features of bevel gear namely average percentage differences in average surface roughness 'PDR_a', maximum surface roughness 'PDR_(max)' and depth of surface roughness 'PDR_z', micro-geometry (i.e. average percentage differences in single pitch error 'PDf_p', adjacent pitch error 'PDf_u', cumulative pitch error 'PDF_p', and percentage difference in runout 'PDF_r') and finishing productivity (i.e. material removal rate 'MRR'). Microstructure and microhardness were also considered as measure for performance assessment. Observed results show PECH is proficient in simultaneously improving all the considered responses of bevel gears by more than 50% as compared to PECF. The PECH-finished gear additionally displayed unrivalled microstructure and better microhardness when contrasted with PECF-finished gear. These changes will upgrade the working-life and operating performance of the finished gear.
机译:本文就直齿锥齿轮精加工中脉冲电化学珩磨(PECH)和脉冲电化学精加工(PECF)的性能进行了比较研究。根据锥齿轮表面特征参数的平均百分比差异(即平均表面粗糙度“ PDR_a”,最大表面粗糙度“ PDR_(max)”和表面粗糙度“ PDR_z”的平均百分比差异)比较了这些工艺的性能',微观几何形状(即单个螺距误差'PDf_p',相邻螺距误差'PDf_u',累积螺距误差'PDF_p'的平均百分比差异以及跳动'PDF_r'的百分比差异)和精加工生产率(即材料去除率' MRR')。显微组织和显微硬度也被认为是性能评估的量度。观察到的结果表明,与PECF相比,PECH能够同时将锥齿轮的所有考虑到的响应同时提高50%以上。与PECF精加工齿轮相比,PECH精加工齿轮还显示出无与伦比的显微组织和更好的显微硬度。这些变化将提高成品齿轮的使用寿命和运行性能。

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