Feasibility of mild hard turning of stainless steel using coated carbide tool
Hard turning has been explored as an alternative to the traditional processing technique used to manufacture parts made of hardened steels. However, advanced cutting tool materials for hard turning applications are relatively expensive. The continuous developments in carbide tool material and its co...
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my.utm.296972019-05-10T07:14:33Z http://eprints.utm.my/id/eprint/29697/ Feasibility of mild hard turning of stainless steel using coated carbide tool Noordin, Mohd. Yusof Kurniawan, D. Tang, Y. C. Muniswaran, K. TJ Mechanical engineering and machinery Hard turning has been explored as an alternative to the traditional processing technique used to manufacture parts made of hardened steels. However, advanced cutting tool materials for hard turning applications are relatively expensive. The continuous developments in carbide tool material and its coating technology have offered inexpensive cutting tool alternatives for a mild range of hard turning operations. Commercially available TiAlN-coated carbide tool is utilized in this study to perform hard turning of stainless steel within the mild range (47-48 HRC) at various cutting parameters, i.e., cutting speed and feed. Empirical models to measure its performance by quantifying the effect of the cutting parameters to the tool's service lifetime and the machined workpiece's surface roughness are developed. The coated carbide tool performed hard turning with fair tool life and fine surface finish, especially at low cutting parameters as shown by the models' solutions for the optimized input selection. Springer-Verlag 2012-06 Article PeerReviewed Noordin, Mohd. Yusof and Kurniawan, D. and Tang, Y. C. and Muniswaran, K. (2012) Feasibility of mild hard turning of stainless steel using coated carbide tool. International Journal of Advanced Manufacturing Technology, 60 (9-12). pp. 853-863. ISSN 0268-3768 http://dx.doi.org/10.1007/s00170-011-3656-0 DOI:10.1007/s00170-011-3656-0 |
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TJ Mechanical engineering and machinery Noordin, Mohd. Yusof Kurniawan, D. Tang, Y. C. Muniswaran, K. Feasibility of mild hard turning of stainless steel using coated carbide tool |
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Hard turning has been explored as an alternative to the traditional processing technique used to manufacture parts made of hardened steels. However, advanced cutting tool materials for hard turning applications are relatively expensive. The continuous developments in carbide tool material and its coating technology have offered inexpensive cutting tool alternatives for a mild range of hard turning operations. Commercially available TiAlN-coated carbide tool is utilized in this study to perform hard turning of stainless steel within the mild range (47-48 HRC) at various cutting parameters, i.e., cutting speed and feed. Empirical models to measure its performance by quantifying the effect of the cutting parameters to the tool's service lifetime and the machined workpiece's surface roughness are developed. The coated carbide tool performed hard turning with fair tool life and fine surface finish, especially at low cutting parameters as shown by the models' solutions for the optimized input selection. |
format |
Article |
author |
Noordin, Mohd. Yusof Kurniawan, D. Tang, Y. C. Muniswaran, K. |
author_facet |
Noordin, Mohd. Yusof Kurniawan, D. Tang, Y. C. Muniswaran, K. |
author_sort |
Noordin, Mohd. Yusof |
title |
Feasibility of mild hard turning of stainless steel using coated carbide tool |
title_short |
Feasibility of mild hard turning of stainless steel using coated carbide tool |
title_full |
Feasibility of mild hard turning of stainless steel using coated carbide tool |
title_fullStr |
Feasibility of mild hard turning of stainless steel using coated carbide tool |
title_full_unstemmed |
Feasibility of mild hard turning of stainless steel using coated carbide tool |
title_sort |
feasibility of mild hard turning of stainless steel using coated carbide tool |
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Springer-Verlag |
publishDate |
2012 |
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http://eprints.utm.my/id/eprint/29697/ http://dx.doi.org/10.1007/s00170-011-3656-0 |
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