Author:
Ashkinazi E E,Popovich A F,Yurov V Yu,Sedov V S,Sovyk D N,Sergeichev K F,Rogalin V E,Konov V I
Abstract
Abstract
A coating technology for application of hardening of diamond coatings on carbide tools for treatment of mineral fiberglass based on quartz texture with chromate-phosphate cohesive (FQTCC) is proposed. The purpose of this development is to increase the edge strength of the tool. The use of the technology described above allowed, in comparison with the cutter without diamond coating, to increase the productivity of processing by 11.5 times, by cutting speed by 2.3 times, and by the minute supply by 5.0 times. The approach is based on changing the configuration of the microwave field when applying a diamond coating on hard alloy substrates in the microwave plasma of the ARDIS-100 reactor by using specially designed plateholders. This method allows for the group coating on several substrates in a single process. A simplified mathematical model for calculating the temperature of the top of the cutter during the growth of a CVD diamond film, taking into account heat transfer through thermal conductivity and radiation, has been constructed. Temperature distribution on the surface of a tungsten carbide cutter in the temperature range optimal for diamond growth was constructed. The difference between the average (experimental) and maximum (calculated) temperature in such a cutter was from 80 to 138°C.
Subject
General Physics and Astronomy
Reference6 articles.
1. Texture formation in polycrystalline diamond f;Wild;J. Appl. Phys.,1990
2. Synthesis of high-quality diamond coatings by methods of activated chemical vapor deposition;Gritsyna;PSE,2013
3. MPCVD diamond tool cutting-edge coverage: dependence on the side wedge angle;Fernandes;Diamond and related materials,2001
4. Plateholder design for deposition of uniform diamond coatings on WC-Co substrates by microwave plasma CVD for efficient turning application;Ashkihazi;Diamond and related materials,2017
5. Mechanistic force modeling for milling of carbon fiber reinforced polymers with double helix tools;Karpat;Manufacturing Technology,2013
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