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首页> 外文期刊>International Journal of Engineering Research and Applications >Experimental Analysis & Optimization of Cylindirical Grinding Process Parameters on Surface Roughness of En15AM Steel
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Experimental Analysis & Optimization of Cylindirical Grinding Process Parameters on Surface Roughness of En15AM Steel

机译:En15AM钢表面粗糙度圆柱磨削工艺参数的实验分析与优化。

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摘要

As per the modern Industrial requirements, higher surface finish mechanical components and mating parts with close limits and tolerances, is one of the most important requirement. Abrasive machining processes are generally the last operations performed on manufactured products for higher surface finishing and for fine or small scale material removal. Higher surface finish and high rate of removal can be obtained if a large number of grains act together. This is accomplished by using bonded abrasives as in grinding wheel or by modern machining processes. In the present study, Taguchi method or Design of experiments has been used to optimize the effect of cylindrical grinding parameters such as wheel speed (rpm), work speed, feed (mm/min.), depth of cut and cutting fluid on the surface roughness of EN15AM steel. Ground surface roughness measurements were carried out by Talysurf surface roughness tester. EN15AM steel has several industrial applications in manufacturing of engine shafts, connecting rods, spindles, studs, bolt, screws etc. The results indicated that grinding wheel speed, work piece speed, table feed rate and depth of cut were the significant factors for the surface roughness and material removal rate. Surface roughness is minimum at 2000 r.p.m. of grinding wheel speed , work piece speed 80 rpm, feed rate 275 mm/min. and 0.06 mm depth of cut.
机译:根据现代工业要求,具有最严格的限制和公差的更高表面光洁度的机械零件和配合零件是最重要的要求之一。研磨加工工艺通常是对制成品执行的最后操作,以实现更高的表面光洁度以及细小或小规模的材料去除。如果大量的晶粒共同作用,可以获得更高的表面光洁度和较高的去除率。这可以通过在砂轮中使用粘结磨料或通过现代加工工艺来实现。在本研究中,使用Taguchi方法或实验设计来优化圆柱磨削参数的效果,例如砂轮速度(rpm),工作速度,进给量(mm / min。),切削深度和切削液在表面上的作用EN15AM钢的粗糙度。地面粗糙度通过Talysurf表面粗糙度测试仪进行。 EN15AM钢在发动机轴,连杆,主轴,螺柱,螺栓,螺钉等的制造中具有多个工业应用。结果表明,砂轮速度,工件速度,工作台进给速度和切削深度是影响表面质量的重要因素。粗糙度和材料去除率。表面粗糙度在2000 r.p.m时最小。砂轮转速,工件转速80 rpm,进给速度275 mm / min。和0.06毫米的切割深度。

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