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Amorphous and Nano Alloys Electroless Depositions Technology, Composition, Structure and Theory

Langue : Anglais

Auteur :

Couverture de l’ouvrage Amorphous and Nano Alloys Electroless Depositions
Amorphous and Nano Alloys Electroless Depositions: Technology, Theory, Structure and Property describes the whole development and the most important subjects (technology, theory, structure and property) up to date of electroless plating (EP). The author concentrates on the fundamental scientific and academic problems (principle, mechanism and theory) in EP today.
Based on the history of EP, this valuable reference describes lots of new EP processes, including electroless Fe based alloy system deposits, formation and theoretical description of electroless alloys, microscopic theory of electroless plating deposits, microscopic structures and surface morphology of electroless deposits, and weldability property of electroless deposits.

Part 1 History of electroless plating 1: History of electroless platingPart 2 Technology of electroless plating: plating bath, affecting parameters, deposition rate and stability of plating bath2: Electroless plating baths of metals, binary alloys, and poly alloys3: Composite electroless plating4: Nano electroless plating5: Electroless plating Fe based Alloys6: Affecting parameters and deposition rate7: Green Electroless PlatingPart 3 Composition, microscopic structure and surface morphology of electroless deposits8: Composition and microscopic structures g;9: Surface morphologies Part 4 Kinetics, theory and mechanism of electroless plating10: Mechanism of electroless plating11: Formation theory and formation range of electroless amorphous alloys12: Microscopic theory of electroless plating

Undergraduate and graduate students, teachers and professors, researchers and specialists in chemical, chemical engineering, materials, mechanic engineering. Technicians, engineers and managers in the surface finishing industry and other industries using electroless coatings
Dr. Zhang Bangwei has been teaching and conducting research in the field of materials physics for more than fifty years. His research work in nanomaterials and amorphous materials, electroless alloy deposits, thermodynamics of alloys, and EAM theory and its applications has been highly cited and recognized in the national and international scientific community. He has twice received the Fellowship of The Max-Planck Society and worked in the Max-Planck Institut für Plasmaphysik (IPP); He has worked as a senior scientist in the Dept. of Materials Science at the University of Virginia and is a past member of The American Physical Society and the TMS (The Minerals, Metals and Materials Society). He and his group have studied nanomaterials for more than twenty years, focusing on the various methods for synthesizing nanomaterials. He has published more than 200 research papers, including more than 100 in international English-language academic journals. He has published three professional books and four handbooks in Chinese, including Embedded-atom Method Theory and its Application in Materials Science, and Practical Manual of Non-metallic Materials.
  • Focus on the fundamental scientific and academic problems (principles, mechanisms and theory) in electroless plating
  • The book gives a very good overview of the research and development in this field and each chapter is fully referenced
  • Detailed analysis and review of the current data, logically structured for ease of use

Date de parution :

Ouvrage de 772 p.

15x22.8 cm

Disponible chez l'éditeur (délai d'approvisionnement : 14 jours).

143,27 €

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Mots-clés :

ab initio computational methods; accelerator; affecting parameters; alloying elements; amorphous and crystalline alloy deposits; bath composition; bath solution; binary alloys; binary EP amorphous alloys; brand new subject; brightener; buffer; chemical composition; Composition; crystallization activation energy; crystallization process; crystallization products; crystallization temperature; deep development and nano EP stage; deep physical meaning; deficiencies; deposition rate; discovery of EP; early stage of development; ECP; effect; electroless amorphous alloys; EP; EP Co-based alloys; EP Fe-based alloys; EP Ni-based alloys; experimental conflict phenomena; formation theory; green EN alloys; green EP Ag; green EP Au; green EP Cu; harmful to the ecosystem; intentionally insoluble particulate matter; kinds of particulate matter; kinetics; longitudinal history; manufacturing principle; metal salt; metals; Microscopic theory; multicomponent alloys; nano EP; nano features; Nanomaterials age; new chapter in EP; new path; operating condition; parameters; particulate matter stabilizer (PMS); pH regulators; plain EP; problems existed; quaternary EP amorphous alloys; rapid development of period; Reaction mechanism; recent progress; new appearance; reducing agent; representative bath solutions of ECP; RoHS; secret in EP Fe-based alloys; SEM; shortcomings; slow growth of period; stabilizer; structure; Surface morphology; systematical data; systematical research; ternary EP amorphous alloys; theoretical results; theory lags behind experiment; theory of formation range; traditional writing; various agents; wetting agent