Fiber and Whisker Reinforced Ceramics for Structural Applications

Fiber and Whisker Reinforced Ceramics for Structural Applications
Author: David Belitskus
Publisher: CRC Press
Total Pages: 369
Release: 1993-07-19
Genre: Technology & Engineering
ISBN: 1482293471

Examines all important aspects of whisker and fibre reinforced ceramic science and technology, offering a balanced account of developments in the field. The work shows how to improve the strength and stiffness of ceramic composites, at very high temperatures, without brittleness.

Fiber and Whisker Reinforced Ceramics for Structural Applications

Fiber and Whisker Reinforced Ceramics for Structural Applications
Author: David Belitskus
Publisher: CRC Press
Total Pages: 376
Release: 1993-07-19
Genre: Technology & Engineering
ISBN: 9780824791117

Examines all important aspects of whisker and fibre reinforced ceramic science and technology, offering a balanced account of developments in the field. The work shows how to improve the strength and stiffness of ceramic composites, at very high temperatures, without brittleness.

Fiber Reinforced Ceramic Composites

Fiber Reinforced Ceramic Composites
Author: K.S. Mazdiyasni
Publisher: William Andrew
Total Pages: 542
Release: 1990-12-31
Genre: Science
ISBN: 9780815512332

Provides the first comprehensive treatment of continuous and discontinuous ceramic fiber and whisker reinforced ceramic composites, written by 29 authorities in the field.

Handbook of Ceramic Composites

Handbook of Ceramic Composites
Author: Narottam P. Bansal
Publisher: Springer Science & Business Media
Total Pages: 547
Release: 2006-08-25
Genre: Technology & Engineering
ISBN: 0387239863

This valuable handbook has been compiled by internationally renowned researchers in the field. Each chapter is focused on a specific composite system or a class of composites, presenting a detailed description of processing, properties, and applications.

Designing with Structural Ceramics

Designing with Structural Ceramics
Author: R.W. Davidge
Publisher: Springer
Total Pages: 360
Release: 1991-12-31
Genre: Gardening
ISBN:

The last 30 years have seen a steady development in the range of ceramic materials with potential for high temperature engineering applications: in the 60s, self-bonded silicon carbide and reaction-bonded silicon nitride; in the 70s, improved aluminas, sintered silicon carbide and silicon nitrides (including sialons); in the 80s, various toughened Zr0 materials, ceramic matrix composites reinforced with silicon 2 carbide continuous fibres or whiskers. Design methodologies were evolved in the 70s, incorporating the principles of fracture mechanics and the statistical variation and time dependence of strength. These have been used successfully to predict the engineering behaviour of ceramics in the lower range of temperature. In spite of the above, and the underlying thermodynamic arguments for operations at higher temperatures, there has been a disappointing uptake of these materials in industry for high temperature usc. Most of the successful applications are for low to moderate temperatures such as seals and bearings, and metal cutting and shaping. The reasons have been very well documented and include: • Poor predictability and reliability at high temperature. • High costs relative to competing materials. • Variable reproducibility of manufacturing processes. • Lack of sufficiently sensitive non-destructive techniques. With this as background, a Europhysics Industrial Workshop sponsored by the European Physical Society (EPS) was organised by the Netherlands Energy Research Foundation (ECN) and the Institute for Advanced Materials of the Joint Research Centre (JRC) of the EC, at Petten, North Holland, in April 1990 to consider the status of thermomechanical applications of engineering ceramics.

Ceramic Matrix Composites

Ceramic Matrix Composites
Author: Walter Krenkel
Publisher: John Wiley & Sons
Total Pages: 448
Release: 2008-06-23
Genre: Technology & Engineering
ISBN: 9783527313617

Covering an important material class for modern applications in the aerospace, automotive, energy production and creation sectors, this handbook and reference contains comprehensive data tables and field reports on successfully developed prototypes. The editor and authors are internationally renowned experts from NASA, EADS, DLR, Porsche, MT Aerospace, as well as universities and institutions in the USA, Europe and Japan, and they provide here a comprehensive overview of current R & D with an application-oriented emphasis.

Handbook of Ceramic Composites

Handbook of Ceramic Composites
Author: Narottam P. Bansal
Publisher: Springer Science & Business Media
Total Pages: 576
Release: 2004-12-08
Genre: Technology & Engineering
ISBN: 9781402081330

This valuable handbook has been compiled by internationally renowned researchers in the field. Each chapter is focused on a specific composite system or a class of composites, presenting a detailed description of processing, properties, and applications.

High Temperature Ceramic Matrix Composites

High Temperature Ceramic Matrix Composites
Author: Walter Krenkel
Publisher: Wiley-VCH
Total Pages: 1044
Release: 2001
Genre: Science
ISBN:

The extreme high temperature stability and damage tolerance of materials and components required for space, terrestrial, energetic and many other applications can only be achieved by ceramic materials. All over the world research is going on to develop ceramics with quasiductile behaviour. The materials with the highest potential for high temperature applications are fibre reinforced ceramic matrix composites (CMC). The international conference HT-CMC 4 in Munich will continue the tradition of its successful predecessor meetings held in Bordeaux (France, 1993), Santa Barbara (USA, 1995) and Osaka (Japan, 1998). This conference series has been recognized as the central meeting event in high temperature CMC science and technology and demonstrates the great interest in research and development on reinforced ceramics. The Proceedings of this conference will therefore be a valuable reference for every materials scientist or engineer involved in this field of high-tech materials development.

Handbook of Textile Fibre Structure

Handbook of Textile Fibre Structure
Author: Stephen Eichhorn
Publisher: Elsevier
Total Pages: 537
Release: 2009-10-26
Genre: Science
ISBN: 1845697316

Due to their complexity and diversity, understanding the structure of textile fibres is of key importance. This authoritative two-volume collection provides a comprehensive review of the structure of an extensive range of textile fibres. Volume 2 begins by reviewing natural fibres such as cellulosic, cotton, protein, wool and silk fibres. Part two considers regenerated cellulosic, protein, alginate, chitin and chitosan fibres. The final part of the book discusses inorganic fibres such as glass, carbon and ceramic fibres as well as specialist fibres such as thermally and chemically-resistant fibres, optical and hollow fibres. Chapters review how fibre structure contributes to key mechanical properties. A companion volume reviews the structure of manufactured polymer fibres. Edited by leading authorities on the subject and with a team of international authors, the two volumes of the Handbook of textile fibre structure is an essential reference for textile technologists, fibre scientists, textile engineers and those in academia. Discusses how fibre structure contributes to key mechanical properties Reviews natural fibres such as cellulosic, cotton and silk fibres and considers various regenerated fibres Examines inorganic fibres including glass and carbon as well as specialist fibres such as chemically-resistant and optical fibres

Structural Ceramics

Structural Ceramics
Author: John Jr. Wachtman
Publisher: Elsevier
Total Pages: 401
Release: 2012-12-02
Genre: Technology & Engineering
ISBN: 0323152201

Treatise on Materials Science and Technology, Volume 29: Structural Ceramics presents an overview of structural ceramics. This book begins with a survey of potential uses, designs, and barriers of particular types of structural ceramics. The silicon carbide family, silicon nitride and sialon family, and transformation toughened ceramics are discussed in detail, followed by an analysis of the various processing routes of each family of structural ceramics. This publication concludes with a review of the tribology of structural ceramics, considering many applications for structural ceramics in heat engines and other machinery that involve moving parts which must often resist wear or erosion. This volume is recommended for engineers, scientists, and researchers concerned with structural ceramics.