High-Performance Metallic Composites Fabricated by Advanced Rolling Techniques
Wiley-VCH (Publisher)
1st Edition
Will be published approx. 2030
Book
Hardback
978-3-527-35421-4 (ISBN)
Description
Summarizes and discusses advanced rolling technologies for metallic composites. Compared with other techniques, this technique has more advantages in preparing metal laminates.
More details
Language
English
Place of publication
Weinheim
Germany
Publishing group
WILEY-VCH
ISBN-13
978-3-527-35421-4 (9783527354214)
Schweitzer Classification
Persons
Hailiang Yu, Professor of Central South University, PhD supervisor, National Overseas High-Level Talent Young Talent, has been engaged in non-ferrous metal forming and processing. He has published 230 papers in mainstream academic journals in this field, and has published one monograph, two edited books and two chapters of English monographs in Science Press, Tsinghua University Press and Elsevier.
Haitao Gao, a lecturer at Central South University specializing in the research fields of metal matrix composites and advanced forming technologies for new energy vehicles. He has been awarded the Second Prize of the China Nonferrous Metal Industry Science and Technology Award.
Zhou Li, Associate Professor and Master Supervisor of Central South University, recipient of Hunan Provincial Natural Science Foundation-Outstanding Youth Foundation, Ph.D. and Research fellow of University of Wollongong, Australia. His research interests include automotive body new materials and advanced forming technology, new energy pure electric vehicle gearbox design and manufacturing.
Haitao Gao, a lecturer at Central South University specializing in the research fields of metal matrix composites and advanced forming technologies for new energy vehicles. He has been awarded the Second Prize of the China Nonferrous Metal Industry Science and Technology Award.
Zhou Li, Associate Professor and Master Supervisor of Central South University, recipient of Hunan Provincial Natural Science Foundation-Outstanding Youth Foundation, Ph.D. and Research fellow of University of Wollongong, Australia. His research interests include automotive body new materials and advanced forming technology, new energy pure electric vehicle gearbox design and manufacturing.
Content
INTRODUCTION OF METALLIC COMPOSITES
FABRICATED LAMINATE COMPOSITES VIA HOT ROLL BONDING TECHNIQUES
Influence of heating temperature
Influence of reduction ratio
Influence of number of deformation passes
Influence of strain rate
Influence of holding time
FABRICATED LAMINATE COMPOSITES VIA COLD ROLL BONDING TECHNIQUES
Al/Ti/Al laminate
Cu/Ti/Cu laminate
Cu/Al/Cu laminate
FABRICATED LAMINATE COMPOSITES VIA ACCUMULATIVE ROLL BONDING
Cu/Al laminate
Al/particle composites
FABRICATED LAMINATE COMPOSITES VIA CRYOROLLING
Al-based laminate
Al/Ti/Al laminate
Al/Mg/Al laminate
Cu/Al/Cu laminate
Cu/Nb laminates
Cu/brass laminates
FABRICATED AL/PARTICLE COMPOSITES VIA CRYOROLLING
Fabrication of Al/particle composites
Strengthening mechanism of Al/particles composites
Mechanical properties of cryorolled Al/particles composites
7 FUTURE APPLICATIONS OF HIGH-PERFORMANCE METALLIC COMPOSITES
FABRICATED LAMINATE COMPOSITES VIA HOT ROLL BONDING TECHNIQUES
Influence of heating temperature
Influence of reduction ratio
Influence of number of deformation passes
Influence of strain rate
Influence of holding time
FABRICATED LAMINATE COMPOSITES VIA COLD ROLL BONDING TECHNIQUES
Al/Ti/Al laminate
Cu/Ti/Cu laminate
Cu/Al/Cu laminate
FABRICATED LAMINATE COMPOSITES VIA ACCUMULATIVE ROLL BONDING
Cu/Al laminate
Al/particle composites
FABRICATED LAMINATE COMPOSITES VIA CRYOROLLING
Al-based laminate
Al/Ti/Al laminate
Al/Mg/Al laminate
Cu/Al/Cu laminate
Cu/Nb laminates
Cu/brass laminates
FABRICATED AL/PARTICLE COMPOSITES VIA CRYOROLLING
Fabrication of Al/particle composites
Strengthening mechanism of Al/particles composites
Mechanical properties of cryorolled Al/particles composites
7 FUTURE APPLICATIONS OF HIGH-PERFORMANCE METALLIC COMPOSITES