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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Study of laser texturing assisted abrasive flow finishing for enhancing surface quality and microgeometry of spur gears
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Study of laser texturing assisted abrasive flow finishing for enhancing surface quality and microgeometry of spur gears

机译:激光纹理辅助磨削流程精加工,以提高浇口齿轮的表面质量和微曲线测定法

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This paper reports on study of laser texturing assisted abrasive flow finishing (LT-AFF) process of the hobbed spur gear (HSG) to further improve their microgeometry, surface finish, micohardness, microstructure, wear resistance, and material removal rate (MRR) as compared to AFF process. Preliminary experiments were conducted to identify optimum values of power and focal length of the continuous fiber laser of 1064-nm wavelength, and number of passes for laser texturing of the HSG made of 20MnCr5 alloy steel. Identified optimum values were used to produce homothetic texture on flank surfaces of HSG in a direction perpendicular to the lay profile generated by hobbing. Influence of laser texturing was studied by comparing deviations in microgeometry, average and maximum surface roughness values, microhardness, wear resistance, and MRR of HSG directly finished by AFF and laser-textured hobbed spur gears (LTHSG) finished by AFF. Previously optimized value of viscosity of AFF medium was used during finishing of HSG and LTHSG. Deviations in total profile, total lead and total pitch, and radial runout were used to indicate deviation in microgeometry of the spur gears. Results reveal that AFF of LTHSG reduced surface roughness and errors in microgeometry and improved microhardness, microstructure, wear resistance, and MRR than direct of AFF of HSG. Improved microgeometry and surface quality of spur gears will lead to their increased operating performance and service life thus reducing their running noise and vibrations and preventing their premature and failures. This research proves that productivity of AFF process can be improved significantly by laser texturing for finishing the spur gears.
机译:这对激光纹理化的研究论文报告辅助磨料流精加工(LT-AFF)的滚铣正齿轮(HSG)的过程以进一步改善它们的微几何,表面光洁度,micohardness,显微组织,耐磨损性,和材料去除速率(MRR),为相比AFF过程。初步实验以确定由20MnCr5合金钢的HSG的激光纹理功率和1064纳米波长的连续光纤激光器的焦距,以及通过次数的最佳值。鉴定最佳值被用来产生对HSG的齿侧面位似纹理的方向垂直于由滚齿产生的捻轮廓。通过在微几何,平均和最大表面粗糙度值,显微硬度,耐磨损性进行比较研究的偏差激光纹理化的影响,并且HSG的MRR通过AFF和AFF完成激光纹理化滚铣正齿轮(LTHSG)直接结束。 HSG和LTHSG的精加工过程中使用AFF介质的粘度的先前优化值。在总分布,总铅和总间距,和径向跳动偏差为用于指示在正齿轮的微观几何偏差。结果揭示LTHSG的那AFF减小的表面粗糙度和错误在微几何的和改进的硬度,微观结构,耐磨性,和MRR比直接HSG的AFF的。的正齿轮改进的微几何和表面质量会导致他们的增加的操作的性能和使用寿命从而降低其运行噪声和振动,并防止其过早和失败。这个研究证实了AFF方法生产率可以通过显著激光毛化精加工直齿轮提高。

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