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2023 | OriginalPaper | Buchkapitel

23. Comparative Analysis of Various MCDM Techniques for the Optimization of W-DLC Coatings for Tool Materials of High-Speed Steel and Cemented Carbide

verfasst von : Sukhdev Gangwar, Subhas Chandra Mondal, Ranjan Kumar Ghadai

Erschienen in: Design in the Era of Industry 4.0, Volume 3

Verlag: Springer Nature Singapore

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Abstract

The current research article deals with the comparison of parametric optimization of W-DLC coatings for tool materials of cemented carbide and high-speed steel by three different multicriteria decision making (MCDM) methods. For the current work the experimental details are obtained from previously published work in which the DLC coating is deposited over to the cemented carbide (HM) and high-speed steel (HSS) substrates using pulsed reactive magnetron sputtering method considering the substrate bias voltage, flow rate of acetylene, the thickness of W-DLC coatings and chromium sublayer while adhesion, hardness and wear resistance of coatings were taken as response parameters. In this work Combined Compromise Solution (CoCoSo), Multi-Attributive Border Approximation Area Comparison (MABAC) and VIekriterijumsko KOmpromisno Rangiranje (VIKOR) MCDM methods are used for ranking of alternatives along with one of the latest weight allocation methods, i.e., Method Based on Removal Effect of Criteria (MEREC). Although 1st ranking was given to different alternatives by all the method but the correlation analysis proved them similar with maximum and minimum value of correlation coefficient 0.95 and 0.87, respectively.

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Metadaten
Titel
Comparative Analysis of Various MCDM Techniques for the Optimization of W-DLC Coatings for Tool Materials of High-Speed Steel and Cemented Carbide
verfasst von
Sukhdev Gangwar
Subhas Chandra Mondal
Ranjan Kumar Ghadai
Copyright-Jahr
2023
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-0428-0_23

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