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📢 Call for Papers — Volume 13, Issue 5 (May 2026) | Submission Deadline: May 31, 2026 | Rapid peer review: 2–3 days | Impact Factor: 7.37 (SJIF 2026)

Paper Details

📄 IJAERD-OJS-1697

A comparative study of cutting forces with Ti–6Al–4V and Inconel 718 using coated carbide tool with dry and wet high speed machining

Author(s):Shubhangi S. Shetake, Rohit V. Zende
Institution:Assistant Professor, Mechanical Department, AISSMS COE, Pune
Published In:Vol. 3, Issue 9 — September 2016
Page No.:210-217
Domain:Engineering
Type:Research Paper
ISSN (Online):2348-4470
ISSN (Print):2348-6406
Abstract

Titanium alloy Ti-6Al-4V and Nickel based supper alloy Inconel 718 have been widely used in modernmanufacturing. Titanium alloy Ti-6Al-4V and Nickel based supper alloy Inconel 718 are extensively used in aerospaceapplication, gas turbine, rocket and biomedical application, etc. A comparative experimental study on cutting forces ofTitanium alloy Ti-6Al-4V and Nickel based supper alloy Inconel 718 with carbide coated tool were conducted using samemachining setup. The experiments were carried out under dry and wet cutting condition. Experiments were conducted byFull Factorial design to find the effect of Process parameters such as Cutting speed, Feed and Depth of cut on Feedforce, Thrust force and Tangential force. Statistical method are used to estimate relation between output parametersFeed force, Feed force and Tangential force with input parameters Cutting Speed, Feed and Depth of cut. Regressionanalysis is performed and empirical relation is formed for Feed force, Thrust force and Tangential force. It has beenobserved that wet cutting condition reduces the cutting forces. Comparative study between Titanium alloy Ti-6Al-4V andNickel based supper alloy Inconel 718 shows that Feed force, Thrust force and Tangential force of Ti alloy Ti-6Al-4Vare less than Inconel 718 for considered input parameters speed, Feed and Depth of cut.

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🕮 How to Cite

Shubhangi S. Shetake, Rohit V. Zende, “A comparative study of cutting forces with Ti–6Al–4V and Inconel 718 using coated carbide tool with dry and wet high speed machining”, International Journal of Advance Engineering and Research Development (IJAERD), Vol. 3, Issue 9, pp. 210-217, September 2016.

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