Optimization of Wire Electric Discharge Machining (WEDM) Process Parameters for AISI 1045 Medium Carbon Steel Using Taguchi Design of Experiments.

IF 3.2
Uzair Khaleeq Uz Zaman, Usman Ahmed Khan, Shahid Aziz, Aamer Ahmed Baqai, Sajid Ullah Butt, Danish Hussain, Ali Siadat, Dong Won Jung
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引用次数: 6

Abstract

With the growth of the manufacturing industry, the demand for alloy materials with high hardness, toughness, and impact strength has increased. Since products from such alloy materials are extremely difficult to manufacture with high accuracy and reduced surface roughness using traditional machining techniques, wire electric discharge machining can be used to machine such complex parts with more precision. In this case-study-based research, machining factors such as current, pulse-on time, and voltage are studied to determine their effects on the material removal rate for AISI 1045 medium carbon steel. The Taguchi L9 orthogonal array is used in the design of experiments for optimization. Statistical techniques such as analysis of variance and signal-to-noise ratio are used to identify the control parameters that matter most in bringing about optimal results. Based on the results, the current is the most crucial control variable in this investigation. Moreover, the maximum material removal rate obtained was 0.7112 mm3/min with the obtained optimized values of current (I) = 16 A, voltage (V) = 50 V, and pulse-on time (Ton) = 100 µs.

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基于田口试验设计的aisi1045中碳钢线切割加工工艺参数优化
随着制造业的发展,对高硬度、高韧性、高冲击强度合金材料的需求不断增加。由于这种合金材料的产品很难用传统的加工技术制造出高精度和降低表面粗糙度的产品,因此可以使用线材电火花加工来加工这种复杂的零件,并且精度更高。在本案例研究中,研究了电流、脉冲导通时间和电压等加工因素对AISI 1045中碳钢材料去除率的影响。实验设计采用田口L9正交阵列进行优化设计。使用方差分析和信噪比等统计技术来确定对产生最佳结果最重要的控制参数。根据研究结果,电流是本次研究中最关键的控制变量。在电流(I) = 16 A,电压(V) = 50 V,脉冲导通时间(Ton) = 100µs的优化条件下,获得的材料去除率最大为0.7112 mm3/min。
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