PARAMETRIC OPTIMIZATION OF PLASMA ARC CUTTING PROCESS PARAMETER FOR INCONEL718 ALLOY MATERIAL USING GREY RELATIONAL ANALYSIS
Paper Title: PARAMETRIC OPTIMIZATION OF PLASMA ARC CUTTING PROCESS PARAMETER FOR INCONEL718 ALLOY MATERIAL USING GREY RELATIONAL ANALYSIS
Authors Name: Panchani Tejas , Vikram Patel , Priyank Patel
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Author Reg. ID: TIJER_100100
Published Paper Id: TIJER1101021
Published In: Volume 2 Issue 3, March-2015
Abstract: Now a day with the increase in competition in market and to achieve high accuracy the nonconventional machining like PAC is become life line of any industry. Plasma arc cutting (PAC) is a widely used process for the cutting of different types of metals in several operating conditions. PAC is considered challenging technology compared to its main competitors: oxy-fuel and laser cutting. Today, because of advances in equipment design and improvement in cut quality, previously unheard of applications, such as multiple torch cutting of mild steel, are becoming common place. The aim of the work is the optimization of PAC of INCONAL 718 plates, this experimental analysis of the influence of Current, Cutting Speed and Arc Gap on the maximum MRR in cutting specimens made of INCONAL 718 Material. The Response Process Parameters are measure in Plasma Machining Operations Such as MRR, HAZ and Surface Roughness have been considered for Each Experiment. Experimentation was planned as per Taguchi’s L9 Orthogonal array. We have been using techniques Such as, analytical hierarchy process (AHP), multi-objective optimization on the basis of ratio analysis (MOORA), and Grey Relational Analysis (GRA) for Optimal Process Parameters of Plasma Cutting machine. The weight for each criterion (response) is obtained by Analytical Hierarchy Process using judgments of the decision maker. All method is applied to ranking of the process parameters of Plasma Machine.
Keywords: Plasma machine, Layer Current, Cutting speed, Arc Gap, AHP, MOORA, GRA Method.
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Page No: 120-127
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Research Area: Science and Technology
Published Paper URL: https://tijer.org/TIJER/viewpaperforall?paper=TIJER1101021
Published Paper PDF: https://tijer.org/TIJER/papers/TIJER1101021
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2349-9249 | IMPACT FACTOR: 8.57 Calculated By Google Scholar| ESTD YEAR: 2014
An International Scholarly Open Access Journal, Peer-Reviewed, Refereed Journal Impact Factor 8.57 Calculate by Google Scholar and Semantic Scholar | AI-Powered Research Tool, Multidisciplinary, Monthly, Multilanguage Journal Indexing in All Major Database & Metadata, Citation Generator
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