首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigations on surface quality, surface integrity and specific energy consumption in finishing of straight bevel gears by PECH process
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Investigations on surface quality, surface integrity and specific energy consumption in finishing of straight bevel gears by PECH process

机译:用PECH工艺研究直齿锥齿轮精加工的表面质量,表面完整性和比能耗

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Applications of electrochemical finishing (ECF) and its hybridization with the other mechanical processes are attracting the interest for finishing various engineering components due to their flexible behavior. Pulse electrochemical honing (PECH) is a hybrid finishing process which provides benefits of pulsed ECF and mechanical honing processes simultaneously to improve the surface quality and surface integrity of the workpiece components. The present study is aimed at studying the effects of the three most important PECH parameters namely applied voltage, electrolyte composition, and electrolyte concentration on the aspects of surface quality (i.e., surface roughness, waviness, material ratio curve), of surface integrity (i.e., wear indicators, microhardness, microstructure, and residual stresses), and of finishing productivity (i.e., material removal rate) of the straight bevel gears made of alloy steel (20MnCr5) by the PECH process. An aqueous mixture of non-passivating electrolyte (i.e., NaCl) and passivating electrolyte NaNO3 was used as electrolyte. The three input parameters were varied at three levels to identify their optimum combination using preidentified optimum values of other process parameters. The identified optimum values are 75 % NaCl + 25 % NaNO3 as electrolyte composition, 7.5 % as electrolyte concentration, and 8 V as applied voltage while finishing the bevel gears for an optimum duration of 6 min. Results have shown significant improvement in surface roughness (i.e., the average surface roughness value reduced from 2.84 to 1.03 mu m; the maximum surface roughness value decreased from 24.59 to 6.06 mu m; depth of roughness reduced from 13.51 to 5.42 mu m) and surface waviness (i.e., average waviness reduced from 5.04 to 1.58 mu m; maximum waviness reduced from 30.17 to 5.52 mu m). Analysis of microstructure, residual stresses, material ratio curve, wear indicators, and microhardness of the PECH-finished gears also showed significant improvement in them compared to an unfinished gear. Comparative analysis of energy consumption in PECH and ECH processes found that PECH consumes 25 % less energy than the ECH process does for achieving the same level of finishing. The present work proves that PECH is a superior, productive, and more energy-efficient process compared to the conventional gear finishing processes and ECH process.
机译:电化学涂饰(ECF)的应用及其与其他机械工艺的混合,因其灵活的性能而引起了对各种工程组件进行涂饰的兴趣。脉冲电化学珩磨(PECH)是一种混合精加工工艺,可同时提供脉冲ECF和机械珩磨工艺的优点,以改善工件部件的表面质量和表面完整性。本研究旨在研究三个最重要的PECH参数,即施加电压,电解质成分和电解质浓度对表面质量(即表面粗糙度,波纹度,材料比率曲线),表面完整性(即,磨损指标,显微硬度,显微组织和残余应力),以及通过PECH工艺制成的合金钢(20MnCr5)直齿锥齿轮的最终生产率(即材料去除率)。非钝化电解质(即,NaCl)和钝化电解质NaNO 3的水性混合物用作电解质。三个输入参数在三个级别上变化,以使用其他过程参数的预先确定的最佳值来确定其最佳组合。确定的最佳值为75%NaCl + 25%NaNO3作为电解质成分,7.5%作为电解质浓度,8V作为施加电压,同时使锥齿轮精加工6分钟的最佳持续时间。结果表明,表面粗糙度(即平均表面粗糙度值从2.84降低到1.03微米;最大表面粗糙度值从24.59降低到6.06微米;粗糙度深度从13.51降低到5.42微米)有了显着改善。波纹度(即,平均波纹度从5.04降低到1.58微米;最大波纹度从30.17降低到5.52微米)。与未加工的齿轮相比,PECH加工齿轮的微观结构,残余应力,材料比曲线,磨损指标和显微硬度的分析也显示出它们的显着改善。对PECH和ECH工艺的能耗进行的比较分析发现,与达到相同精加工水平的ECH工艺相比,PECH的能耗要少25%。本工作证明,与传统的齿轮精加工工艺和ECH工艺相比,PECH是一种优越,高产且更节能的工艺。

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