Parametric Analysis of Different Grades of Steel Materials Used in Plastic Industries through Die Sinking EDM Process

Author:

Bose Goutam Kumar1ORCID,Pain Pritam2

Affiliation:

1. Haldia Institute of Technology, India

2. Haldia Institute of Technology, Haldia, India

Abstract

In the present research work four different work materials viz. EN24, D2, H13, P20 which are commonly use in plastic industries are considered for machining applying EDM process. Four different control parameters such as pulse on time, pulse off time, gap current, and Spark gap are considered to study the effect on the performance of responses like material removal rate, surface roughness and overcut using a square shape copper tool with lateral flushing. A well design experimental plan is used to reduce the total number of experiment following L9 orthogonal array. Based on Taguchi methodology the significant process parameters affecting the responses are identified applying ANOVA for each material. The effect of the responses with respect to the four control parameters for the four different work materials is compared through linear graphs. A well-known Grey relational analysis is carried out where the weights are calculated using entropy method to full fill the multi criteria decision making process.

Publisher

IGI Global

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Nature Inspired Metaheuristic Approach for Best Tool Work Combination for EDM Process;Computational Optimization Techniques and Applications;2021-08-25

2. Multi-Objective Optimization of EDM Process on AISI P-20 Tool Steel Using Multi-Criteria Decision-Making Technique;Machine Learning Applications in Non-Conventional Machining Processes;2021

3. Bio-Inspired Meta-Heuristic Multi-Objective Optimization of EDM Process;Advances in Civil and Industrial Engineering;2019

4. Comparison of Conventional, Powder Mixed, and Ultrasonic Assisted EDM by Phenomenological Reasoning;International Journal of Materials Forming and Machining Processes;2018-07

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