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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigations on microgeometry of meso bevel and meso helical gears manufactured by WEDM process
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Investigations on microgeometry of meso bevel and meso helical gears manufactured by WEDM process

机译:MESO斜面和MESO螺旋齿轮MICEGE测定的研究

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This article reports about investigations on microgeometry of meso bevel and meso helical gears manufactured by wire electro discharge machining (WEDM) process. Effects of eight WEDM parameters (namely, peak current, pulse-on time, pulse-off time, servo-gap voltage, wire feed rate, wire tension, dielectric pressure and percentage cutting speed) on single pitch error and total pitch error for meso bevel gear and total profile error and total pitch error for meso helical gear were studied. A total of 31 experiments for meso bevel gear and 31 experiments for meso helical gears were conducted using one-factor-at-time approach to identify optimum ranges/values of the eight WEDM parameters for further experiments. It revealed existence of optimum ranges of servo-gap voltage, pulse-on time, pulse-off time, and percentage of the cutting speed to minimize microgeometry errors in meso bevel and helical gears and that use of higher values of peak current, wire feed rate, wire tension, and dielectric pressure yields better quality of meso bevel and helical gears. The best quality meso helical gear has better quality (DIN 6, DIN 6, and DIN 8) than the best quality meso bevel gear (DIN 7, DIN 7, and DIN 10) for single pitch error, total pitch error, and radial runout; whereas for successive pitch error, reverse is true. Meso helical gear has better surface finish (R (a) 1.1 mu m and R (max) 7.3 mu m) than meso bevel gear (R (a) 1.3 mu m and R (max) 8.0 mu m). Examination of tooth profiles of the best quality meso gears by scanning electron microscopy revealed that they have uniform tooth profiles that are free from burrs, nicks, asperities, dimples, undercutting at the root, and sharp edges on both end faces of the gears. It also revealed that tooth flank surfaces are free from micro-cracks, pores, and globules. The present work proves that WEDM has potential to be a better alternative for manufacturing better quality net-shaped meso bevel and helical gears which will not require any further post-manufacturing processing.
机译:本文报告了由电焊料加工(WEDM)工艺制造的Meso Bevel和Meso螺旋齿轮的微观测定的调查。八个WEDM参数(即,峰值电流,脉冲 - 脉冲时间,脉冲差距,伺服间隙电压,电线张力,介电压力和百分比切割速度)对单调误差和梅萨的总沥青误差的影响研究了锥形齿轮和总轮廓误差和中间螺旋齿轮的总螺距误差。使用单因素 - 有时间方法进行一次对Meso斜面齿轮和31个实验进行Meso螺旋齿轮的实验,以确定八个WEDM参数的最佳范围/值进行进一步的实验。它揭示了伺服间隙电压,脉冲 - 脉冲关闭时间,脉冲关闭时间和切割速度百分比的最佳范围,以最小化Meso斜面和螺旋齿轮中的微曲测量误​​差,并且使用较高值的峰值电流,送丝速率,线张力和介电压力产生更好的Meso斜面和斜齿轮。最优质的Meso螺旋齿轮具有比最佳优质Meso锥齿轮(DIN 7,DIN 7,DIN 10)更好的质量(DIN 6,DIN 6和DIN 8),用于单音高误差,总螺距误差和径向跳动;而对于连续的音高错误,则反向是真的。 Meso螺旋齿轮具有更好的表面光洁度(R(a)1.1 mu m和r(max)7.3 mu m)而不是meso锥齿轮(r(a)1.3 mu m和r(max)8.0 mu m)。通过扫描电子显微镜检查最佳质量的Meso齿轮的齿谱揭示它们具有均匀的齿形轮廓,这些齿形是没有毛刺,刻痕,粗糙度,凹坑,根部底切,齿轮两端面上的锋利边缘。它还透露,牙齿侧面表面不含微裂纹,毛孔和球状。本工作证明,WEDM具有更好的制造更优质的网状MESO斜面和螺旋齿轮的更好的替代方案,这将不需要任何进一步的制造后加工。

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