Abas Muhammad, Alkahtani Mohammed, Khalid Qazi Salman, Hussain Ghulam, Abidi Mustufa Haider, Buhl Johannes
Department of Industrial Engineering, University of Engineering & Technology, Peshawar P.O. Box 25100, Pakistan.
Department of Industrial Engineering, College of Engineering, King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia.
Materials (Basel). 2022 Jun 8;15(12):4086. doi: 10.3390/ma15124086.
End-milling operation of steel grade material is a challenging task as it is hard-to-cut material. Proper selection of cutting tools, cutting conditions, and cutting process parameters is important to improve productivity, surface quality, and tool life. Therefore, the present study investigated the end-milling operation of AISI 1522H steel grade under minimum-quantity lubrication (MQL) conditions using a novel blend of vegetable oils, namely canola and olive oil. Cutting process parameters considered were spindle speed (), feed rate (), depth of cut (), width of cut (), and cutting conditions (), while responses were average surface roughness (Ra), cutting forces (Fc), tool wear (TW), and material removal rate (MRR). Experimental runs were designed based on the definitive screening design (DSD) method. Analysis of variance (ANOVA) results show that feed rate significantly affects all considered responses. Nonlinear prediction models were developed for each response variable, and their validity was also verified. Finally, multi-response optimization was performed using the combinative distance-based assessment (CODAS) method coupled with criteria importance through inter-criteria correlation (CRITIC). The optimized parameters found were: = 1200 rpm, = 320 mm/min, = 0.6 mm, = 8 mm, and = 100 mL/h. Further, it was compared with other existing multi-response optimization methods and induced good results.
对钢种材料进行立铣加工是一项具有挑战性的任务,因为它是难切削材料。正确选择切削刀具、切削条件和切削工艺参数对于提高生产率、表面质量和刀具寿命至关重要。因此,本研究在最小量润滑(MQL)条件下,使用菜籽油和橄榄油的新型植物油混合物,对AISI 1522H钢种进行了立铣加工研究。所考虑的切削工艺参数有主轴转速()、进给速度()、切削深度()、切削宽度()和切削条件(),而响应指标为平均表面粗糙度(Ra)、切削力(Fc)、刀具磨损(TW)和材料去除率(MRR)。基于确定性筛选设计(DSD)方法设计了实验运行。方差分析(ANOVA)结果表明,进给速度对所有考虑的响应指标都有显著影响。为每个响应变量建立了非线性预测模型,并验证了其有效性。最后,使用基于组合距离的评估(CODAS)方法结合基于准则间相关性的准则重要性(CRITIC)进行了多响应优化。找到的优化参数为:= 1200转/分钟,= 320毫米/分钟,= 0.6毫米,= 8毫米,= 100毫升/小时。此外,还将其与其他现有的多响应优化方法进行了比较,取得了良好的结果。