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      Si 3N 4–TiN conductive ceramic composites: topography on EDMed surfaces and precise drilled holes

      1 , 2
      Materials Science and Technology

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          Abstract

          In this study, it is challenging to drill a 5 mm hole in a Si 3N 4–TiN conductive ceramic composite, specifically when attempting to identify an association between EDM machining inputs such as current, pulse on-time, pulse off-time, dielectric pressure and spark gap and performance parameters like as Material Removal Rate, Electrode Wear Rate, Average Surface Roughness, and geometrical tolerances such as Cylindricity, Circularity and perpendicularity. The study examines the surface deformations of a composite comprising EDAX report, machined electrode and molybdenum wire following WEDM machining. Current of 5A, Pulse on-time of 9µs, Pulse off-time of 7µs, spark gap of 0.15 mm, dielectric pressure of 21.0 kg/cm 2, material removal rate of 0.004214 g/min, electrode wear rate of 0.000245 g/min and surface roughness of 0.349 µm were found to be optimal. The experimental findings show that good surface finish may be attained on a copper electrode-machined surface, along with improved machining accuracy, closer geometrical tolerances and lesser anomalies.

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          Optimization of EDM Parameters on Machining Si3N4–TiN Composite for Improving Circularity, Cylindricity, and Perpendicularity

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            Performance of ZrB2–Cu composite as an EDM electrode

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              Surface integrity, fatigue performance and dry sliding wear behaviour of Si3N4–TiN after wire-electro discharge machining

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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Materials Science and Technology
                Materials Science and Technology
                0267-0836
                1743-2847
                November 2023
                October 01 2023
                November 2023
                : 39
                : 15
                : 2006-2017
                Affiliations
                [1 ] Department of Mechanical Engineering, Mahendra Institute of Technology (Autonomous), Namakkal District, India
                [2 ] Department of Mechanical Engineering, Mahendra Polytechnic College, Namakkal District, India
                Article
                10.1080/02670836.2023.2187156
                19cdddb8-8482-4a95-a98f-08272a045baa
                © 2023

                https://journals.sagepub.com/page/policies/text-and-data-mining-license

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