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Estimation of optimal cutting conditions during machining of CP-Ti grade 2 in fuzzy-VIKOR context: A hybrid approach

机译:模糊 - 维芯背景下CP-TI级2级加工期间最佳切削条件的估算:混合方法

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摘要

Purpose - To explore a hybrid approach in order to attain optimal cutting conditions proficient of generating adequate dimensional accuracy in combination with virtuous surface finish during turning of commercially pure titanium (CP-Ti) grade 2.Design/methodology/approach - to the present paper, an application of the hybrid fuzzy-VTKOR method has been proposed to estimate an optimal combination of process variables during turning of commercially pure titanium (CP-Ti) grade 2. Three distinct input factors, namely, cutting speed, feed rate and depth of cut,were selected, each varied at three levels. Thus, a series of experiments were performed based on Taguchi's 3-factor-3-level (L_(27)) orthogonal array. The major attention was given to acquire minimum cutting force and flank wear along with good surface finish. The adequacy of the proposed methodology was verified with the help of ANOVA test.Findings - The results of the investigation revealed that the suggested hybrid technique is quite effective,easily understandable and time-saving approach, which can be successfully implemented to solve various problems either of similar or of different kinds.Originality/value - Increasing demand of qualitative as well as low cost products is identified as the main challenging task in the current competitive market Therefore, estimation and selection of the most suitable machining environment are of paramount importance in a real-time manufacturing system. Machining process involves both qualitative and quantitative factors, may be conflicting in nature, all to be considered together.Consequently, an appropriate combination of the machining variables is evidently desirable to meet the aforesaid challenges effectively.
机译:目的 - 探讨混合方法,以便在商业纯钛(CP-TI)等级的转向期间与良性表面处理结合产生足够的尺寸精度的最佳切削条件.Design/Methodology/appach - 到本文,已经提出了混合模糊VTKOR方法的应用来估计在商业上纯钛(CP-TI)级的转弯期间的过程变量的最佳组合。三个不同的输入因素,即切割速度,进料速度和深度选择切割,各自在三个层次变化。因此,基于Taguchi的3因子-3级(L_(27))正交阵列进行一系列实验。给出了主要关注,以获得最小的切割力和侧面磨损以及良好的表面光洁度。在ANOVA Test.findings的帮助下验证了所提出的方法的充分性 - 调查结果显示,建议的混合技术非常有效,容易理解和节省时间的方法,可以成功实施以解决各种问题不同的种类或不同的。实时制造系统。加工过程涉及定性和定量因素,本质上可能相互冲突,所有这些都是相互矛盾的,所有这些都是在一起的.Consequency,显然希望有效地理解地满足上述挑战的适当组合。

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