Javascript must be enabled to continue!
WEDM Process Parameters Analysis and Optimization: A REVIEW
View through CrossRef
Wire Electrical Discharge Machining (WEDM) represents a non-conventional machining approach that harnesses thermal electrical energy for the fabrication of intricate structures. WEDM machines excel in achieving precise dimensions and a polished surface finish. It finds frequent application in the machining of robust materials that pose challenges for conventional manufacturing methods due to issues like vibrations. Within this machining method, numerous process parameters and performance indicators come into play, prompting various studies and investigations into its intricacies. This paper presents a comprehensive overview of current research trends in WEDM, particularly focusing on parameters for enhancing performance, such as surface roughness (SR), material removal rate (MRR), and Kerf width (KW). Notably, several process parameters, including pulse-off-time (TOFF), servo voltage (SV), pulse-on-time (TON), peak current (I), and wire tension (WT), contribute to the WEDM process. Additionally, various optimization techniques like the Taguchi method, Grey Relation Analysis (GRA), and analysis of variance (ANOVA) are employed across diverse materials, encompassing alloys, superalloys, and composites. The findings of this study suggest the importance of considering various process parameters, such as pulse-off-time (TOFF), servo voltage (SV), pulse-on-time (TON), peak current (I), and wire tension (WT), in the WEDM process. Moreover, the application of optimization techniques like the Taguchi method, Grey Relation Analysis (GRA), and analysis of variance (ANOVA) is recommended. These recommendations aim to improve the understanding and optimization of WEDM processes, especially when applied to diverse materials, including alloys, superalloys, and composites
Title: WEDM Process Parameters Analysis and Optimization: A REVIEW
Description:
Wire Electrical Discharge Machining (WEDM) represents a non-conventional machining approach that harnesses thermal electrical energy for the fabrication of intricate structures.
WEDM machines excel in achieving precise dimensions and a polished surface finish.
It finds frequent application in the machining of robust materials that pose challenges for conventional manufacturing methods due to issues like vibrations.
Within this machining method, numerous process parameters and performance indicators come into play, prompting various studies and investigations into its intricacies.
This paper presents a comprehensive overview of current research trends in WEDM, particularly focusing on parameters for enhancing performance, such as surface roughness (SR), material removal rate (MRR), and Kerf width (KW).
Notably, several process parameters, including pulse-off-time (TOFF), servo voltage (SV), pulse-on-time (TON), peak current (I), and wire tension (WT), contribute to the WEDM process.
Additionally, various optimization techniques like the Taguchi method, Grey Relation Analysis (GRA), and analysis of variance (ANOVA) are employed across diverse materials, encompassing alloys, superalloys, and composites.
The findings of this study suggest the importance of considering various process parameters, such as pulse-off-time (TOFF), servo voltage (SV), pulse-on-time (TON), peak current (I), and wire tension (WT), in the WEDM process.
Moreover, the application of optimization techniques like the Taguchi method, Grey Relation Analysis (GRA), and analysis of variance (ANOVA) is recommended.
These recommendations aim to improve the understanding and optimization of WEDM processes, especially when applied to diverse materials, including alloys, superalloys, and composites.
Related Results
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical activi...
Application of Taguchi Approach on Wire Electrical Discharge Machining of SS304
Application of Taguchi Approach on Wire Electrical Discharge Machining of SS304
<div class="section abstract"><div class="htmlview paragraph">SS304 (Stainless Steel 304) is a nickel- chromium based alloy, that is extensively used for the applicatio...
Advanced machining of TiNiCo shape memory alloys for biomedical applications
Advanced machining of TiNiCo shape memory alloys for biomedical applications
Wire electro discharge machining (WEDM) is one of the most productive non-traditional machining processes. Complex shapes can be cut through the WEDM process. In the present study,...
Experimental investigations on WEDM performance characteristics of FGH99 powder metallurgy superalloy
Experimental investigations on WEDM performance characteristics of FGH99 powder metallurgy superalloy
Abstract
In response to challenges posed by conventional machining methods, an exploratory experimental investigation was conducted to assess the effectiveness of wire elec...
THE COMPARATIVE EFFECT OF WIRE ELECTRODES ON WIRE BREAKAGE FREQUENCY AND CUTTING RATE IN WEDM OF INCONEL 706
THE COMPARATIVE EFFECT OF WIRE ELECTRODES ON WIRE BREAKAGE FREQUENCY AND CUTTING RATE IN WEDM OF INCONEL 706
Non-traditional machining methods like wire electric discharge machining (WEDM) appear to be an ideal choice for machining high strength super alloys like Inconel 706, because of t...
Multiple Performance Optimization in WEDM Parameters Using Desirability Analysis
Multiple Performance Optimization in WEDM Parameters Using Desirability Analysis
In this article, the effect of wire electrical discharge machining (WEDM) parameters such as pulse-on time (TON), pulse-off time (TOFF), and wire feed (F) on material removal rate ...
Gas-Liquid Combined Multiple Cut in High-Speed WEDM
Gas-Liquid Combined Multiple Cut in High-Speed WEDM
This paper investigates a new process of wire electrical discharge machining (WEDM) as gas-liquid combined multiple cut. High-speed WEDM (HS-WEDM) finishing was compared in atmosph...
Multiple Performance Optimization in WEDM Parameters Using Grey Relational Analysis
Multiple Performance Optimization in WEDM Parameters Using Grey Relational Analysis
In this investigation, a new approach is based on Grey Relational Analysis and Taguchi method to optimize the machining parameters with multi performance characteristics in WEDM of...

