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Ceramic Cutting Tools

Ceramic Cutting Tools
Author: E. Dow Whitney
Publisher: William Andrew
Total Pages: 381
Release: 2012-12-02
Genre: Technology & Engineering
ISBN: 0815516312

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Interest in ceramics as a high speed cutting tool material is based primarily on favorable material properties. As a class of materials, ceramics possess high melting points, excellent hardness and good wear resistance. Unlike most metals, hardness levels in ceramics generally remain high at elevated temperatures which means that cutting tip integrity is relatively unaffected at high cutting speeds. Ceramics are also chemically inert against most workmetals.


Advanced Ceramic Tools for Machining Application

Advanced Ceramic Tools for Machining Application
Author: Xing Sheng Li
Publisher: Trans Tech Publications
Total Pages: 284
Release: 1994
Genre: Technology & Engineering
ISBN:

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Advanced ceramic tools represent the latest development of cutting tools used for machining and their application has greatly improved productivity. This book aims to introduce the fundamentals and skills necessary for effective application of the tools.


Advanced Ceramic Tools for Machining Application - I

Advanced Ceramic Tools for Machining Application - I
Author: Xing Sheng Li
Publisher: Trans Tech Publications Ltd
Total Pages: 272
Release: 1994-09-14
Genre: Technology & Engineering
ISBN: 3035703477

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Advanced ceramic tools represent the latest development of cutting tools used for machining and their application has greatly improved productivity.


Non-Oxide Technical and Engineering Ceramics

Non-Oxide Technical and Engineering Ceramics
Author: S. Hampshire
Publisher: Springer Science & Business Media
Total Pages: 459
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9400934238

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Conferences on technical and engineering ceramics are held with increasing frequency, having become fashionable because the potential of ceramics in profitable growth industries is an urgent matter of considerable debate and discussion. Japanese predictions are that the market value of ceramics will grow 10 at about 10% per annum to reach at least $10 by the end of the century. Seventy per cent of this market will be in electroceramics, applications for which include insulating substrates in integrated circuits, ferroelectric capacitors, piezoelectric oscillators and transdu cers, ferrite magnets, and ion-conducting solid electrolytes and sen sors. All these are oxides, and so are excluded by the title of the Limerick Conference. Why 'Non-oxide'? The other major ceramics potential is in struc tural engineering components and engine applications. Here, the greatest impetus to research and development has been the attempt to produce a ceramic gas turbine. Heat engines become more efficient as their working temperature increases, but nickel-base superalloy en gines have about reached their limit. Compared with metals, ceramics have higher strengths at high temperatures, better oxidation and corrosion resistance, and are also less dense. In general, ceramics have better properties above about 1000°C except in one respect-their inherent brittleness. The work of fracture is therefore much smaller than for metals and so the permitted flaw size is also smaller.


Cutting Tool Applications

Cutting Tool Applications
Author: George Schneider (Jr.)
Publisher:
Total Pages: 243
Release: 2002
Genre: Carbide cutting tools
ISBN: 9780615121918

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Ceramics in Machining Processes

Ceramics in Machining Processes
Author: Alan G. King
Publisher:
Total Pages: 344
Release: 1966
Genre: Ceramic materials
ISBN:

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Machining of Hard Materials

Machining of Hard Materials
Author: J. Paulo Davim
Publisher: Springer Science & Business Media
Total Pages: 221
Release: 2011-02-24
Genre: Technology & Engineering
ISBN: 1849964505

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Hard machining is a relatively recent technology that can be defined as a machining operation, using tools with geometrically defined cutting edges, of a work piece that has hardness values typically in the 45-70HRc range. This operation always presents the challenge of selecting a cutting tool insert that facilitates high-precision machining of the component, but it presents several advantages when compared with the traditional methodology based in finish grinding operations after heat treatment of work pieces. Machining of Hard Materials aims to provide the reader with the fundamentals and recent advances in the field of hard machining of materials. All the chapters are written by international experts in this important field of research. They cover topics such as: • advanced cutting tools for the machining of hard materials; • the mechanics of cutting and chip formation; • surface integrity; • modelling and simulation; and • computational methods and optimization. Machining of Hard Materials can serve as a useful reference for academics, manufacturing and materials researchers, manufacturing and mechanical engineers, and professionals in machining and related industries. It can also be used as a text for advanced undergraduate or postgraduate students studying mechanical engineering, manufacturing, or materials.


Cutting Tool Technology

Cutting Tool Technology
Author: Graham T. Smith
Publisher: Springer Science & Business Media
Total Pages: 606
Release: 2008-07-03
Genre: Technology & Engineering
ISBN: 184800205X

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It is a well acknowledged fact that virtually all of our modern-day components and assemblies rely to some extent on machining operations in their manufacturing process. Thus, there is clearly a substantive machining requirement which will continue to be of prime importance for the foreseeable future. Cutting Tool Technology provides a comprehensive guide to the latest developments in the use of cutting tool technology. The book covers new machining and tooling topics such as high-speed and hard-part machining, near-dry and dry-machining strategies, multi-functional tooling, ‘diamond-like’ and ‘atomically-modified’ coatings, plus many others. Also covered are subjects important from a research perspective, such as micro-machining and artificial intelligence coupled to neural network tool condition monitoring. A practical handbook complete with troubleshooting tables for common problems, Cutting Tool Technology is an invaluable reference for researchers, manufacturers and users of cutting tools.


Ceramic Materials and Components for Engines

Ceramic Materials and Components for Engines
Author: Jürgen G. Heinrich
Publisher: John Wiley & Sons
Total Pages: 678
Release: 2008-11-21
Genre: Technology & Engineering
ISBN: 3527612777

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Several ceramic parts have already proven their suitability for serial application in automobile engines in very impressive ways, especially in Japan, the USA and in Germany. However, there is still a lack of economical quality assurance concepts. Recently, a new generation of ceramic components, for the use in energy, transportation and environment systems, has been developed. The efforts are more and more system oriented in this field. The only possibility to manage this complex issue in the future will be interdisciplinary cooperation. Chemists, physicists, material scientists, process engineers, mechanical engineers and engine manufacturers will have to cooperate in a more intensive way than ever before. The R&D activities are still concentrating on gas turbines and reciprocating engines, but also on brakes, bearings, fuel cells, batteries, filters, membranes, sensors and actuators as well as on shaping and cutting tools for low expense machining of ceramic components. This book summarizes the scientific papers of the 7th International Symposium "Ceramic Materials and Components for Engines". Some of the most fascinating new applications of ceramic meterials in energy, transportation and environment systems are presented. The proceedings shall lead to new ideas for interdisciplinary activities in the future.