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Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing

Modern industry imposes ever increasing requirements upon tools and tool materials as to the provision for performance under the conditions of high cutting speeds and dynamic loads as well as under intensive thermal and chemical interactions with workpiece materials. The industry demands a higher productivity in combination with the accuracy of geometry and dimensions of workpieces and quality of working surfaces of the machined pieces. These requirements are best met by the tool superhard materials (diamond and diamond-like cubic boron nitride). Ceramics based on silicon carbide, aluminum and boron oxides as well as on titanium, silicon and aluminum nitrides offer promise as tool materials. Tungsten-containing cemented carbides are still considered as suitable tool materials. Hi- hardness and high strength composites based on the above materials fit all the requirements imposed by machining jobs when manufacturing elements of machinery, in particular those operating under the extreme conditions of high temperatures and loads. These elements are produced of difficult-- machine high-alloy steels, nickel refractory alloys, high-tech ceramics, materials with metallic and non-metallic coatings having improved wear resistance, as well as of special polymeric and glass-ceramic materials. Materials science at high pressure deals with the use of high-pressure techniques for the development and production of unique materials whose preparation at ambient pressure is impossible (e. g. , diamond, cubic boron nitride, etc. ) or of materials with properties exceeding those of materials produced at ambient pressure (e. g. , high-temperature superconductors).

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  • "Modern industry imposes ever increasing requirements upon tools and tool materials as to the provision for performance under the conditions of high cutting speeds and dynamic loads as well as under intensive thermal and chemical interactions with workpiece materials. The industry demands a higher productivity in combination with the accuracy of geometry and dimensions of workpieces and quality of working surfaces of the machined pieces. These requirements are best met by the tool superhard materials (diamond and diamond-like cubic boron nitride). Ceramics based on silicon carbide, aluminum and boron oxides as well as on titanium, silicon and aluminum nitrides offer promise as tool materials. Tungsten-containing cemented carbides are still considered as suitable tool materials. Hi- hardness and high strength composites based on the above materials fit all the requirements imposed by machining jobs when manufacturing elements of machinery, in particular those operating under the extreme conditions of high temperatures and loads. These elements are produced of difficult-- machine high-alloy steels, nickel refractory alloys, high-tech ceramics, materials with metallic and non-metallic coatings having improved wear resistance, as well as of special polymeric and glass-ceramic materials. Materials science at high pressure deals with the use of high-pressure techniques for the development and production of unique materials whose preparation at ambient pressure is impossible (e. g. , diamond, cubic boron nitride, etc. ) or of materials with properties exceeding those of materials produced at ambient pressure (e. g. , high-temperature superconductors)."@en
  • "Modern industry imposes ever increasing requirements upon tools and tool materials as to the provision for performance under the conditions of high cutting speeds and dynamic loads as well as under intensive thermal and chemical interactions with workpiece materials. The industry demands a higher productivity in combination with the accuracy of geometry and dimensions of workpieces and quality of working surfaces of the machined pieces. These requirements are best met by the tool superhard materials (diamond and diamond-like cubic boron nitride). Ceramics based on silicon carbide, aluminum and boron oxides as well as on titanium, silicon and aluminum nitrides offer promise as tool materials. Tungsten-containing cemented carbides are still considered as suitable tool materials. Hi- hardness and high strength composites based on the above materials fit all the requirements imposed by machining jobs when manufacturing elements of machinery, in particular those operating under the extreme conditions of high temperatures and loads. These elements are produced of difficult-- machine high-alloy steels, nickel refractory alloys, high-tech ceramics, materials with metallic and non-metallic coatings having improved wear resistance, as well as of special polymeric and glass-ceramic materials. Materials science at high pressure deals with the use of high-pressure techniques for the development and production of unique materials whose preparation at ambient pressure is impossible (e. g. , diamond, cubic boron nitride, etc. ) or of materials with properties exceeding those of materials produced at ambient pressure (e. g. , high-temperature superconductors)."
  • "The book contains the results of the latest achievements of leading researchers from 9 countries in the field of diamond and diamond-like carbon, cubic boron nitride and other superhard materials; high-density engineering ceramics; high pressure-high temperature technique; computer-aided modeling; diamond, cubic boron nitride, ceramic and cemented carbide tools; development, production and applications of nanostructured materials; films and wear-resistant coating; and methods for quality control of tool materials and tools."@en

http://schema.org/genre

  • "Electronic books"@en
  • "Conference proceedings"@en
  • "Conference proceedings"
  • "Kongress"
  • "Conference papers and proceedings"

http://schema.org/name

  • "Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing"
  • "Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing"@en
  • "Innovative superhard materials and sustainable coatings for advanced manufacturing proceedings of the ATO advanced research workshop on innovative superhard materials and sustainable coatings Kiev, Ukraine 12-15 May 2004"@en
  • "Innovative superhard materials and sustainable coatings for advanced manufacturing proceedings of the NATO Advanced Research Workshop on Innovative Superhard Materials and Sustainable Coatings Kiev, Ukraine 12-15 May 2004"
  • "Innovative superhard materials and sustainable coatings for advanced manufacturing : [proceedings of the NATO Advanced Research Workshop on Innovative Superhard Materials and Sustainable Coatings, Kiev, Ukraine, 12 - 15 May 2004]"
  • "Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing Proceedings of the NATO Advanced Research Workshop on Innovative Superhard Materials and Sustainable Coatings Kiev, Ukraine 1215 May 2004 00"@en
  • "Innovative superhard materials and sustainable coatings for advanced manufacturing"@en
  • "Innovative superhard materials and sustainable coatings for advanced manufacturing"
  • "Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing : Proceedings of the NATO Advanced Research Workshop on Innovative Superhard Materials and Sustainable Coatings Kiev, Ukraine 12-15 May 2004"
  • "Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing Proceedings of the NATO Advanced Research Workshop on Innovative Superhard Materials and Sustainable Coatings Kiev, Ukraine 12-15 May 2004"
  • "Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing Proceedings of the NATO Advanced Research Workshop on Innovative Superhard Materials and Sustainable Coatings Kiev, Ukraine 12-15 May 2004"@en