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Sintering: Densification, Grain Growth and Microstructure

Autor Suk-Joong L. Kang
en Limba Engleză Hardback – 26 noi 2004
Sintering is the process of forming materials and components from a powder under the action of thermal energy. It is a key materials science subject: most ceramic materials and many specialist metal powder products for use in key industries such as electronics, automotive and aerospace are formed this way. Written by one of the leading experts in the field, this book offers an unrivalled introduction to sintering and sintering processes for students of materials science and engineering, and practicing engineers in industry. The book is unique in providing a complete grounding in the principles of sintering and equal coverage of the three key sintering processes: densification, grain growth and microstructure. Students and professional engineers alike will be attracted by the emphasis on developing a detailed understanding of the theory and practical processes of sintering, the balanced coverage of ceramic and metal sintering, and the accompanying examination questions with selected solutions.

  • Delivering unrivalled depth of coverage on the basis of sintering, science, including thermodynamics and polycrystalline microstructure.
  • Unique in its balanced coverage of the three key sintering elements - densification, grain growth and microstructure.
  • A key reference for students and engineers in materials science and engineering, accompanied by examination questions and selected solutions.
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Specificații

ISBN-13: 9780750663854
ISBN-10: 0750663855
Pagini: 280
Ilustrații: Approx. 100 illustrations
Dimensiuni: 156 x 234 x 21 mm
Greutate: 0.55 kg
Ediția:New.
Editura: ELSEVIER SCIENCE

Public țintă

Senior undergraduate students, taught postgraduates, research students, professional researchers, engineers and materials scientists in industry and laboratories in the ceramics and metals industries

Cuprins

Basis of Sintering Science; Solid State Sintering Models and Densification; Grain Growth; Microstructure Development; Sintering of Ionic Compounds; Liquid Phase Sintering