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Please use this identifier to cite or link to this item: http://hdl.handle.net/11375/17275
Title: NANO-MECHANICAL CHARACTERISTICS OF WEAR RESISTANT PVD COATINGS IN RELATION TO WEAR PERFORMANCE OF CUTTING TOOLS DURING HARD END MILLING OF H13 TOOL STEEL
Authors: Kornberg, Anton Benjamin
Advisor: Veldhuis, Stephen C.
Department: Mechanical Engineering
Keywords: PVD;loading support;nanoindentation;nano-scaled scratch
Publication Date: Jun-2015
Abstract: Two families of PVD hard coatings were successfully used for high performance end milling of hardened H13 tool steel. The first family of coatings are AlCrN-based, they are used for wet machining and the other family is based on TiAlCrSiYN coating and are used for dry machining of H13. It was shown that there is a strong potential for further advancement in the wear performance of the coatings by improving the coating architecture as well as by varying the deposition parameters used during their synthesis. A number of deposition parameters of the coatings show a strong impact on wear performance of the cutting tools. Wear performance was related to the structure and a number of nano-mechanical characteristics of the coating layer assessed using the NanoTest system produced by Micro Materials. It was shown that critical characteristics like nano-hardness, loading support factor and nano-scaled scratch resistance can be used to predict the wear performance of a cutting tool.
URI: http://hdl.handle.net/11375/17275
Appears in Collections:Open Access Dissertations and Theses

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Komarov Anton thesis for SGS_3.docx
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