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首页> 外文期刊>Materials and Manufacturing Processes >Parametric optimization of deep-hole drilling on AISI 1045 steel and online tool condition monitoring using an accelerometer
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Parametric optimization of deep-hole drilling on AISI 1045 steel and online tool condition monitoring using an accelerometer

机译:使用加速度计的AISI 1045钢和在线工具状况监测深孔钻探的参数优化

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摘要

This paper aims at investigating the effects of the deep-hole drilling parameters such as cutting speed (V-c), feed rate (FR) (F-r), and coolant pressure (C-p) on the quality of the hole produced. The diameter and depth of the deep hole considered in the present work were 10 and 120 mm, respectively. In this study, hole quality was analyzed using surface roughness, cylindricity, and circularity characteristics. Coolant pressure and spindle speed play a vital role in determining the quality of the hole. During the drilling process, the fitness of the tool wear was observed by using an accelerometer. The experiments were conducted by varying the drilling parameters based on Taguchi's Design of Experiment, and the output responses were measured and optimized using grey relation analysis. The results indicate a yield of the better surface finish from higher spindle speed, lower circularity, and cylindricity. Also, the tool wear was reduced by decreasing spindle speed. Based on the grey relational technique, optimal process parameter settings were found such as spindle speed of 2228 rpm, FR of 0.023 mm/rev, and coolant pressure of 30 kgf/cm(2).
机译:本文旨在调查深孔钻孔参数,例如切削速度(V-C),进料速率(F-R)和冷却剂压力(C-P)的影响。本作工作中考虑的深孔的直径和深度分别为10且120mm。在该研究中,使用表面粗糙度,圆柱度和圆形特性分析空穴质量。冷却剂压力和主轴速度在确定孔的质量方面发挥着至关重要的作用。在钻井过程中,通过使用加速度计观察工具磨损的适应度。通过改变基于Taguchi的实验设计的钻探参数进行实验,并使用灰色关系分析测量和优化输出响应。结果表明,从较高的主轴速度,下圆形度和圆柱形的更好表面处理的产率。而且,通过降低主轴速度来降低工具磨损。基于灰色关系技术,找到最佳过程参数设置,例如2228 rpm的主轴速度,fr为0.023 mm / ref,冷却剂压力为30kgf / cm(2)。

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