首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Analysis of the surface roughness for novel magnetorheological finishing of a typical blind hole workpiece
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Analysis of the surface roughness for novel magnetorheological finishing of a typical blind hole workpiece

机译:典型盲孔工件新型磁流学精加工表面粗糙度分析

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摘要

In modern high-performance machinery, parts which are highly finished and dimensionally accurate play a vital role. Surface finish enhances characteristics like wear, corrosion, pitting, and oxidation resistance of the surfaces. A novel magnetorheological polishing process using permanent magnets is developed to finish the internal cylindrical and bottom surfaces of the blind hole cylindrical workpiece. The process is capable of finishing the internal cylindrical and flat bottom surfaces of tubular and nontubular-shaped blind hole workpiece. Finishing of blind hole surfaces finds extensive application in dies and automotive components such as automobile actuators, cylinder body, valve seats, etc. In this study, two different tools for finishing the internal and flat bottom surfaces of blind hole cylindrical workpiece have been developed. The causal factor for material removal in the form of microchips is abrasive wear. The present study focuses on the calculation of forces acting on abrasive particles and mathematical modeling and simulation of the surface roughness. The performance of both newly developed tools for finishing the cylindrical blind hole mild steel workpiece is evaluated. After 275 finishing cycles, the R-a values improved by 55.2% in the internal cylindrical ferromagnetic workpiece and by 53.33% after 75,000 cycles on the flat surface of ferromagnetic blind hole workpiece. The theoretical and experimental values of the surface roughness are found to be consistent. The experimental surface roughness values of blind hole internal cylindrical surfaces are within 6.26% of the theoretical values, whereas in finishing the blind hole bottom surface it is found within 7.9% of the theoretical values.
机译:在现代化的高性能机械中,高度完成和尺寸准确的零件起到重要作用。表面光洁度增强了表面的磨损,腐蚀,蚀和抗氧化性等特性。开发了一种使用永磁体的新型磁流变抛光工艺,以完成盲孔圆柱形工件的内圆柱和底表面。该过程能够完成管状和内毛状盲孔工件的内圆柱和扁平底表面。盲目孔表面的整理在这项研究中发现了在诸如汽车致动器,缸体,阀座等的模具和汽车部件中的广泛应用,已经开发出两种不同的用于整理盲孔圆柱工件的内部和平坦底表面的工具。微芯片形式的材料去除的因果因素是磨料磨损。本研究侧重于计算作用于磨料颗粒的力和地面粗糙度的数学建模和模拟。评估了新开发的用于整理圆柱形盲孔温和钢工件的性能。在275次完成循环之后,R-A值在内圆柱形铁磁工件中提高55.2%,在铁磁盲孔工件的平坦表面上的75,000个循环后得到53.33%。发现表面粗糙度的理论和实验值是一致的。盲孔内圆柱形表面的实验表面粗糙度值在理论值的6.26%以内,而在整理盲孔底面时,它在理论值的7.9%以内发现。

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