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Grain Boundary Engineering of Austenitic Alloys: Focus on Nuclear Materials with 3D Characterization

by Tingguang Liu
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Current price ₹14,411.00
Original price ₹22,170.00
Original price ₹22,170.00
Original price ₹22,170.00
(-35%)
₹14,411.00
Current price ₹14,411.00

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Book cover type: Hardcover
  • ISBN13: 9789819576135
  • Binding: Hardcover
  • Subject: N/A
  • Publisher: Springer
  • Publisher Imprint: Springer
  • Publication Date:
  • Pages: 288
  • Original Price: EUR 196.19
  • Language: English
  • Edition: N/A
  • Item Weight: 508 grams
  • BISAC Subject(s): Materials Science / Metals & Alloys

This book systematically elucidates the latest breakthroughs in Grain Boundary Engineering (GBE) technology for addressing the critical industry challenge of intergranular stress corrosion cracking in key components of nuclear power plants. Focusing on austenitic stainless steels and nickel-based alloys, it provides an in-depth exploration of how precise grain boundary design and control fundamentally enhance material service performance and longevity under extreme operating conditions.
A distinctive feature of this work is its application of advanced 3D microstructural characterization, which clearly reveal the mechanisms behind grain boundary network evolution and performance optimization. Furthermore, it introduces innovative processing methodologies applicable to large-scale engineering components, effectively bridging the gap between GBE theory and industrial practice.
This volume serves as an essential reference for researchers and engineers in materials science and nuclear engineering, as well as for graduate students and faculty in related disciplines.

Tingguang Liu, Ph.D., is an Associate Research Professor at the University of Science and Technology Beijing, having earned his doctorate from Shanghai University. He made significant contributions to the completion of the national major science and technology infrastructure project, the " Materials Service Safety Assessment Facilities". He played a pivotal role in systematically establishing a suite of world-leading large-scale test facilities dedicated to the service safety assessment and research of structural materials for nuclear and thermal power plants. His current research focuses on grain boundary engineering, environmentally assisted cracking, and lifetime prediction of nuclear materials. He has authored over 70 scholarly publications in these fields.

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