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CREATION OF SUPERHARD COMPOSITE MATERIALS BASED ON DIAMOND AND BORON NITRIDE

A RasulovKhMaterials Science department, Tashkent State Technical University, UzbekistanZ ChulliyevMaterials Science department, Tashkent State Technical University, UzbekistanF UmirzokovaMaterials Science department, Tashkent State Technical University, UzbekistanArazberdieva ShMaterials Science department, Tashkent State Technical University, UzbekistanM TukhtashevaTashkent Institute of Chemical Technology, UzbekistanS NurmurodovA AllanazrovT PardayevM RakhmonovSh IslomovKh MamarajabovD FengZ LiY ZhuH JiA ShulzenkoS BozhkoA SokolovU MardonovS KhasanovA JeltukhinS OzodovaV FalkovskiyL KlyachkoT SuvonovichK Urokov KamoliddinS Bektemirov BegaliK SunL LiY ZhaoHuanli JiSun& KunYuxin LiangZhihong LiYumei ZhuB BektemirovJ UlashovA AkhmedovM GopirovK BakhadirovE UmarovSh KarimovSh MamirovShI KhabibullayevaN KhusanovN NovikovV BondarenkoJu KocherzhinsskyV ShipiloN AnichenkoI StarchenkoE ShishonokY MeliboyevU ShaozimovaF NorkhudjayevA MukhamedovK GuzashviliZ MirzarakhimovaSh ShukurovN Rizaeva
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Abstract

The article presents the results of research work on the creation of a superhard composite material based on diamond and boron nitride designed to equip metal machining tools and tools for various purposes operated under conditions of intense abrasive impact and significant dynamic loads.The analysis of the results showed that the service life of the plates of metal machining tools increases by 2-3 times.Based on the results of theoretical and experimental research and analysis of the results obtained in the conditions of TURON ABRASIVE LLC, comprehensive scientific, technical and technological methods and recommendations have been proposed to determine further ways of developing high-tech processes in mechanical engineering, contributing to the development and expansion of scientific research, as well as having important significance for the mechanical engineering industries and the economy as a whole.

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