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Experimental investigation of MRR, surface roughness and overcut of AISI 304 stainless steel in EDM

机译:电火花加工中AISI 304不锈钢的MRR,表面粗糙度和超切的实验研究

摘要

EDM has become an important and cost-effective method of machining extremely tough and brittle electrically conductive materials. It is widely used in the process of making moulds and dies and sections of complex geometry and intricate shapes. The workpiece material selected in this experiment is AISI 304 Stainless steel taking into account its wide usage in industrial applications. In today’s world 304 stainless steel contributes to almost half of the world’s production and consumption for industrial purposes. The input variable parameters are current, pulse on time and duty cycle. Taguchi method is applied to create an L27 orthogonal array of input variables using the Design of Experiments (DOE). The effect of the variable parameters mentioned above upon machining characteristics such as Material Removal Rate (MRR), Surface Roughness (SR) and Overcut (OC) is studied and investigated. The tool material is copper.ud The results obtained showed that current was the most significant parameter followed by pulse on time and the least significant was the duty cycle for the entire three responses namely Material removal rate, Surface roughness and overcut. With the increase in current and duty cycle MRR increased but for pulse on time it increased only up to 100 µs and then started to decrease. SR increased significantly with the increase in current; for pulse on time it increased up to 100 µs and after that there was no significant increase; and in case of duty cycle SR increased up to 70% and then started to decrease. OC increased with the increase in current and pulse on time but in different fashion and in case of duty cycle, OC increased up to 70% and then started decreasing.ud
机译:EDM已成为加工极硬而脆的导电材料的重要且经济高效的方法。它广泛用于制造模具和模具以及复杂几何形状和复杂形状的型材的过程中。考虑到它在工业应用中的广泛使用,本实验中选择的工件材料是AISI 304不锈钢。在当今世界,304不锈钢占工业用途生产和消费量的近一半。输入变量参数为电流,脉冲接通时间和占空比。使用Taguchi方法使用实验设计(DOE)创建输入变量的L27正交数组。研究并研究了上述可变参数对加工特性(如材料去除率(MRR),表面粗糙度(SR)和超切(OC))的影响。工具材料为铜。 ud得到的结果表明,电流是最重要的参数,其次是脉冲接通时间,而最不重要的是整个三个响应(材料去除率,表面粗糙度和过切)的占空比。随着电流和占空比的增加,MRR增加,但对于脉冲导通时间,MRR仅增加到100 µs,然后开始下降。 SR随着电流的增加而显着增加;对于脉冲导通时间,它增加到100 µs,此后没有明显增加。占空比SR上升到70%,然后开始下降。 OC随着电流和脉冲导通时间的增加而增加,但是以不同的方式出现,并且在占空比的情况下,OC上升到70%,然后开始下降。

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    Poddar Ayush;

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  • 年度 2012
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