Energy Consumption Analysis in Turning Ti-6Al-4V alloy

S. H. Imran Jaffery, M. Younas, Mushtaq Khan, Liaqat Ali
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引用次数: 2

Abstract

One of the major concerns in manufacturing industries include the amount of energy consumed during machining processes. Therefore, the study of the specific energy during machining must be analyzed in relation to the process parameters (feed rate, speed and depth of cut). This work demonstrates the analysis of specific cutting energy (SCE) and cutting power during titanium alloys machining under dry conditions. Turning experiments with uncoated carbide inserts were performed applying Taguchi Design of Experiments technique and analyzed the effect of speed, feed and depth of cut during turning Ti-6Al-4V titanium alloys. ANOVA was done to find out the influence of the machining parameters on energy consumption. The outcome of this analysis indicates that feed rate is the highly dominant factor responsible for the SCE of a machine tool, whereas, cutting speed was found as the influential factor affecting the power during the machining process. The environmental and economic performance for a machining process may be significantly improved by reducing energy consumption using appropriate machining conditions.
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Ti-6Al-4V合金车削能耗分析
在制造业中,主要关注的问题之一是加工过程中消耗的能量。因此,加工过程中比能的研究必须与工艺参数(进给速度、切削速度和切削深度)有关。本文对干燥条件下钛合金加工的切削能量和切削功率进行了分析。采用田口试验设计技术,对Ti-6Al-4V钛合金进行了无涂层硬质合金刀片车削试验,分析了切削速度、进给量和切削深度对钛合金车削的影响。利用方差分析分析了加工参数对能耗的影响。分析结果表明,进给速度是影响机床SCE的主要因素,而切削速度是影响加工过程中功率的主要因素。通过使用适当的加工条件降低能耗,可以显著提高加工过程的环境和经济性能。
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