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  • © 2019

Spark Plasma Sintering of Materials

Advances in Processing and Applications

  • Details the latest scientific advances in the production, characterization and applications of spark plasma-sintered materials
  • Emphasizes optimization of speed, mechanical and wear properties, and energy efficiency
  • Presents the myriad of potential applications of spark plasma-sintered components in disciplines such as space science and aeronautics, automation, mechanical engineering, and biomedicine

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Table of contents (26 chapters)

  1. Front Matter

    Pages i-ix
  2. Process Fundamentals

    1. Front Matter

      Pages 1-1
    2. Spark Plasma Sintering: Process Fundamentals

      • Pasquale Cavaliere, B. Sadeghi, A. Shabani
      Pages 3-20
    3. The Effect of Current Pathways on Spark Plasma Sintering

      • F. Kellogg, C. Hofmeister Mock
      Pages 61-92
    4. Sintering Mechanisms of Metals Under Electric Currents

      • Jean-Philippe Monchoux
      Pages 93-115
  3. SPS of Nanocomposites

    1. Front Matter

      Pages 117-117
    2. Surface-Modified-CNTs/Al Matrix Nanocomposites Produced via Spark Plasma Sintering: Microstructures, Properties, and Formation Mechanism

      • Farhad Saba, Faming Zhang, Seyed Abdolkarim Sajjadi, Mohsen Haddad-Sabzevar
      Pages 119-159
    3. Al-Based Nanocomposites Produced via Spark Plasma Sintering: Effect of Processing Route and Reinforcing Phases

      • Pasquale Cavaliere, B. Sadeghi, M. Shamanian, F. Ashrafizadeh
      Pages 161-190
    4. Spark Plasma Sintering of Aluminium-Based Materials

      • M. A. Awotunde, A. O. Adegbenjo, M. B. Shongwe, P. A. Olubambi
      Pages 191-218
    5. Spark Plasma Sintering Produced W-Fiber-Reinforced Tungsten Composites

      • Y. Mao, J. W. Coenen, J. Riesch, S. Sistla, C. Chen, Y. Wu et al.
      Pages 239-261
  4. SPS of Hard Metals

    1. Front Matter

      Pages 263-263
    2. Microstructural Evolution and Related Kinetics During Pulsed Electric Current Sintering of Tungsten

      • Jonathan A. Webb, Indrajit Charit, Darryl P. Butt
      Pages 265-289
    3. Spark Plasma Sintering of Metallic Glasses

      • Loïc Perrière, Yannick Champion, Frédéric Bernard
      Pages 291-335
    4. Impact of High-Energy Mechanical Activation on Sintering Kinetics and Mechanical Properties of UFG Heavy Tungsten Alloys: SPS Versus Sintering in Hydrogen

      • Aleksey Nokhrin, Vladimir Chuvil’deev, Maksim Boldin, Gleb Baranov, Vladimir Belov, Eugeniy Lantcev et al.
      Pages 337-365
  5. SPS of Ceramics and Diamond-Based Materials

    1. Front Matter

      Pages 367-367
    2. Spark Plasma Sintering of Ultrahigh Temperature Ceramics

      • T. N. Maity, N. K. Gopinath, Krishanu Biswas, Bikramjit Basu
      Pages 369-440
    3. Spark Plasma Sintering of Diamond- and Nanodiamond-Metal Composites

      • Dina V. Dudina, Boris B. Bokhonov, Arina V. Ukhina, Vyacheslav I. Mali, Alexander G. Anisimov
      Pages 441-457
    4. Spark Plasma Sintering of Fine-Grain Ceramic–Metal Composites Based on Garnet-Structure Oxide Y2.5Nd0.5Al5O12 with Mo, W, and Ni

      • L. S. Golovkina, A. I. Orlova, А. V. Nokhrin, M. S. Boldin, E. A. Lantsev, V. N. Chuvil’deev
      Pages 459-470

About this book

This book describes spark plasma sintering (SPS) in depth. It addresses fundamentals and material-specific considerations, techniques, and applications across a broad spectrum of materials. The book highlights methods used to consolidate metallic or ceramic particles in very short times. It highlights the production of complex alloys and metal matrix composites with enhanced mechanical and wear properties. Emphasis is placed on the speed of the sintering processes, uniformity in product microstructure and properties, reduced grain growth, the compaction and sintering of materials in one processing step, various materials processing, and high energy efficiency. Current and potential applications in space science and aeronautics, automation, mechanical engineering, and biomedicine are addressed throughout the book.

Editors and Affiliations

  • Department of Innovation Engineering, University of Salento, Lecce, Italy

    Pasquale Cavaliere

About the editor

Professor Pasquale Cavaliere, from the Department of Innovation Engineering of the University of Salento, received his PhD in 1999-2002 in Materials Engineering, from the University of Rome “Tor Vergata”. Following completion of his Ph.D., Dr. Cavaliere was the Marie Curie Fellow at Materials Science and Engineering Department, Massachusetts Institute of Technology, Cambridge MA. He is the author of over 250 papers in international journals and conferences, with an h-Index of 27 and over 2000 citations. He is the editor of two edited books: Ironmaking and Steelmaking Processes and Cold-Spray Coatings, both published by Springer.

Bibliographic Information

Buy it now

Buying options

eBook USD 149.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Hardcover Book USD 199.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access