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Nato Science Series II:

Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing

Proceedings of the NATO Advanced Research Workshop on Innovative Superhard Materials and Sustainable Coating, Kiev, Ukraine,12 - 15 May 2004.

Editors: Lee, Jay, Novikov, Nikolay (Eds.)

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About this book

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).

Table of contents (40 chapters)

Table of contents (40 chapters)
  • The Bridge Between the Ideal and Real Mechanical Properties for Superhard Materials

    Pages 1-16

    Brazhkin, V.V. (et al.)

  • Thermodynamic and Kinetic Aspects of Spontaneus Crystallization of Diamond and Cubic Boron Nitride

    Pages 17-30

    Turkevich, V.Z.

  • Strain-Induced Disorder and Phase Transformation in Hexagonal Boron Nitride under Quasi-Homogeneous Pressure up to 25 GPa: In-Situ X-Ray Study in a Rotational Diamond Anvil Cell

    Pages 31-41

    Levitas, Valery I. (et al.)

  • Combining Hard with Soft Materials in Nanoscale under High-Pressure High-Temperature Conditions

    Pages 43-62

    Palosz, B. (et al.)

  • Advanced Manufacturing of Advanced Materials

    Pages 63-80

    Mamalis, A.G.

Buy this book

eBook 66,99 €
price for Spain (gross)
  • ISBN 978-1-4020-3471-8
  • Digitally watermarked, DRM-free
  • Included format: PDF
  • ebooks can be used on all reading devices
  • Immediate eBook download after purchase
Hardcover 291,19 €
price for Spain (gross)
  • ISBN 978-1-4020-3469-5
  • Free shipping for individuals worldwide
  • Usually dispatched within 3 to 5 business days.
  • The final prices may differ from the prices shown due to specifics of VAT rules
Softcover 83,15 €
price for Spain (gross)
  • ISBN 978-1-4020-3470-1
  • Free shipping for individuals worldwide
  • Usually dispatched within 3 to 5 business days.
  • The final prices may differ from the prices shown due to specifics of VAT rules
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Bibliographic Information

Bibliographic Information
Book Title
Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing
Book Subtitle
Proceedings of the NATO Advanced Research Workshop on Innovative Superhard Materials and Sustainable Coating, Kiev, Ukraine,12 - 15 May 2004.
Editors
  • Jay Lee
  • Nikolay Novikov
Series Title
Nato Science Series II:
Series Volume
200
Copyright
2005
Publisher
Springer Netherlands
Copyright Holder
Springer Science+Business Media B.V.
eBook ISBN
978-1-4020-3471-8
DOI
10.1007/1-4020-3471-7
Hardcover ISBN
978-1-4020-3469-5
Softcover ISBN
978-1-4020-3470-1
Series ISSN
1568-2609
Edition Number
1
Number of Pages
IX, 475
Topics