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On Productivity of WSEM Process for Manufacturing Meso-Sized Helical and Bevel Gears

机译:关于制造中型螺旋齿轮齿轮的WSEM工艺的生产率

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This paper reports on productivity of wire spark-erosion-machining (WSEM) process for manufacturing meso-sized helical gear (MHG) and meso-sized bevel gear (MBG). Productivity of WSEM process is measured by volumetric gear cutting rate (VGCR). Variation in VGCR with four WSEM parameters such as servo voltage 'S_v' pulse-on time 'T_(on )',pulse-off time 'T_(off)', and feed rate of wire 'W_(F)' is also studied. Box-Behnken design approach of Response Surface Methodology (RSM) was used to design and conduct 29 experimental runs with replicates twice for analysis of VGCR. Analysis of variance (ANOVA) was used to determine the significant parameters and their interactions. It was observed that all considered WSEM parameters are significant and considerably affect VGCR. Desirability function analysis was used to find the optimum WSEM parameters so as to enhance the productivity of WSEM process to manufacture the better quality of MHG and MBG. Confirmation experiments were performed to validate the optimized values of VGCR corresponding to MHG and MBG and achieved much closer to it. Scanning electron micrographs (SEM) of MHG and MBG revealed uniform and burr-free tooth profile, bore and smoother cracks-free flank surfaces.
机译:本文报道了线索腐蚀加工(WSEM)工艺的生产率,用于制造中间尺寸螺旋齿轮(MHG)和台面尺寸锥齿轮(MBG)。 WSEM工艺的生产率由体积换档速率(VGCR)测量。还研究了具有四个WSEM参数的VGCR的变化,例如伺服电压'S_V'脉冲 - 接通时间'T_(ON)',脉冲关闭时间'T_(OFF)'和电线W_(F)'的进给速率。 Box-Behnken响应表面方法(RSM)的设计方法用于设计和进行29种实验运行,两次复制两次,以分析VGCR。方差分析(ANOVA)用于确定显着的参数及其相互作用。观察到,所有考虑的WSEM参数都是显着的并且很大影响VGCR。期望函数分析用于找到最佳的WSEM参数,以提高WSEM工艺的生产率制造MHG和MBG的更好质量。进行确认实验以验证对应于MHG和MBG的VGCR的优化值,并实现了更近的。 MHG和MBG的扫描电子显微照片(SEM)显示出均匀和无脉冲齿廓,孔和更光滑的无裂缝的侧面。

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