Journal ArticleDOI
Finishing performance of die-sinking EDM with ultrasonic vibration and powder addition through pulse train studies
R. Rajeswari,M.S. Shunmugam +1 more
TLDR
In this article, the authors proposed a die-sinking electrical discharge machining (EDM) is widely used in die and mold-making industry. Finish EDM conditions are often selected to produce good quality surfaces.Abstract:
Die-sinking electrical discharge machining (EDM) is widely used in die and mold-making industry. Finish EDM conditions are often selected to produce good quality surfaces. Attempts to enhan...read more
Citations
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Journal ArticleDOI
Assessment of PM-EDM cycle factors influence on machining responses and surface properties of biomaterials: A comprehensive review
Al-Amin,Ahmad Majdi Abdul-Rani,Mohd Danish,Harvey M. Thompson,Abdul Azeez Abdu Aliyu,Sri Hastuty,Fatema Tuj Zohura,Michael Bryant,Saeed Rubaiee,T. V. V. L. N. Rao +9 more
TL;DR: In this paper, the influence of various powders on machining and modified surface characteristics of biomaterials is discussed and the future research scopes and challenges of PM-EDM process are included in this study thoroughly.
Journal ArticleDOI
Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel.
Timur Rizovich Ablyaz,E. S. Shlykov,Karim Ravilevich Muratov,Amit Mahajan,Gurpreet Singh,Sandeep Devgan,Sarabjeet Singh Sidhu +6 more
TL;DR: The outcomes depict that EDMed DSS alloy can be considered in the different biomedical and industrial applications and exhibits improved surface wettability responses.
Journal ArticleDOI
Investigation of Coatings, Corrosion and Wear Characteristics of Machined Biomaterials through Hydroxyapatite Mixed-EDM Process: A Review.
Al-Amin,Ahmad Majdi Abdul-Rani,Mohd Danish,Saeed Rubaiee,Abdullah Bin Mahfouz,Harvey M. Thompson,Sadaqat Ali,Deepak Rajendra Unune,M. H. Sulaiman +8 more
TL;DR: In this paper, a comparative analysis of machined surface properties using the existing deposition methods and the EDM technique employing Hydroxyapatite powder (HAp), yielding Ca, P, and O, is presented.
Journal ArticleDOI
Multi-objective optimization of process variables for MWCNT-added electro-discharge machining of 316L steel
Al-Amin,Ahmad Majdi Abdul-Rani,Rasel Ahmed,Muhammad Umair Shahid,Fatema Tuj Zohura,Muhammad Danial Bin Abd Rani +5 more
TL;DR: In this paper, nano multi-walled carbon nanotubes (MWCNT) are utilized to improve the machining and surface responses for 316L steel in the instrument manufacturing industry and the best 21 solution sets predicted through the multi-objective optimization tool called NSGA-II obeying the set objective functions are proposed which are obtained from the Pareto optimal frontiers.
Journal ArticleDOI
Multiple-objective optimization of hydroxyapatite-added EDM technique for processing of 316L-steel
TL;DR: In this article, the authors used both the conventional and non-traditional machining processes to fabricate 316L steel with moderate surface roughness (SR) and thin recast layer (RLT).
References
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Journal ArticleDOI
Measurement and Analysis of Random Data
TL;DR: In this paper, Measurement and Analysis of Random Data (MADR) is used for the analysis of random data in the context of measurement and analysis of statistical data sets.
Journal ArticleDOI
Advancing EDM through fundamental insight into the process
TL;DR: In this paper, the authors show the prospects of electrical discharge machining (EDM) technology by interrelating recent achievements in fundamental studies on EDM with newly developed advanced application technologies.
Journal ArticleDOI
Theoretical models of the electrical discharge machining process. I. A simple cathode erosion model
TL;DR: A simple cathode erosion model for the electrical discharge machining (EDM) process is presented in this article, where a constant fraction of the total power supplied to the gap is transferred to the cathode over a wide range of currents.
Journal ArticleDOI
Theoretical models of the electrical discharge machining process. II. The anode erosion model
TL;DR: In this paper, an erosion model for the anode material is presented, which is capable of showing, via determined migrating melt fronts, the rapid melting of the anodic material as well as the subsequent resolidification of the material foation from plasma dynamics modeling.
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