Novel Structured Metallic and Inorganic Materials (eBook, PDF)
Redaktion: Setsuhara, Yuichi; Yamaura, Shin-Ichi; Kamiya, Toshio
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Novel Structured Metallic and Inorganic Materials (eBook, PDF)
Redaktion: Setsuhara, Yuichi; Yamaura, Shin-Ichi; Kamiya, Toshio
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Brings together original, cutting-edge research based on the joint research project "Advanced Materials Development and Integration of Novel Structured Metallic and Inorganic Materials"
Makes front-line research from fundamentals to applications understandable to undergraduate students
Represents the cooperative work of six leading representative materials institutes in Japan
- Geräte: PC
- ohne Kopierschutz
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- Größe: 32.99MB
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Brings together original, cutting-edge research based on the joint research project "Advanced Materials Development and Integration of Novel Structured Metallic and Inorganic Materials"
Makes front-line research from fundamentals to applications understandable to undergraduate students
Represents the cooperative work of six leading representative materials institutes in Japan
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Springer Nature Singapore
- Seitenzahl: 620
- Erscheinungstermin: 1. Juli 2019
- Englisch
- ISBN-13: 9789811376115
- Artikelnr.: 57088638
- Verlag: Springer Nature Singapore
- Seitenzahl: 620
- Erscheinungstermin: 1. Juli 2019
- Englisch
- ISBN-13: 9789811376115
- Artikelnr.: 57088638
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Prof. Yuichi Setsuhara Joining and Welding Research Institute (JWRI) Osaka University Prof. Toshio Kamiya Laboratory for Materials & Structures Institute of Innovative Research Tokyo Institute of Technology Prof. Shin-ichi Yamaura Construction Metal Works Unit Laboratory Fundamental VET Faculty of Human Resources Development Polytechnic University
1. Introduction to Amorphous Alloys and Metallic Glasses.- 2. Applications of Amorphous Alloy / Metallic Glass for Environmental and Energy Engineering, Electronics Engineering and Biomedical Engineering Fields.- 3. Ti-based Biomedical Alloys.- 4. Mn-Based Ferromagnetic Alloys.- 5. Functional Materials Developed in IMR.- 6. Exotic Crystal Structures and Electronic Structures in Novel Structured Inorganic Materials.- 7. Interface Related Magnetic Phenomena in Novel Heterostructures.- 8. Microstructure Design for Oxide/Non-oxide Ceramics for Structural Applications.- 9. Gas Tungsten Arc Welding.- 10. Laser Welding.- 11. Friction Stir Welding.- 12. Soldering Process.- 13. Metallurgical Characterization of Joined Materials.- 14. Plasma Processes for Functionalization and Control of Materials Surface.- 15. Laser-Induced Processes for Functionalization of Materials Surface.- 16. Powder Metallurgy Processes for Composite-Materials Integration.- 17. Dry Nanoparticle Processes for FunctionalMaterials Integration.- 18. Three-Dimensional Printing Process.- 19. Current and Future Nano-structured Metals.- 20. Amorphous Alloy Membranes for Hydrogen Separation and Purification.- 21. Syntheses of Composite Porous Materials for Solid Oxide Fuel Cells.- 22. Hybrid Membrane Type Fuel Cells for Intermediate Temperatures.- 23. Synthesis of Nanomaterials using Solution Plasma Process.- 24. Metal Oxide Materials for Automotive Catalysts.- 25. Current and Future Hard Materials for Bio-Medical Field.- 26. Mechanical Property of Bio-Medical Materials.- 27. Chemical Properties of Bio-Medical Materials.- 28. Biological Properties of Bio-Medical Materials.- 29. Metallic Glasses for Bio-Medical Applications.- 30. Low-Young's-Modulus Materials for Bio-Medical Applications.- 31. Electret Ceramics for Bio-Medical Applications.- 32. Surface Modification with Femtosecond Laser.- 33. Surface Modification with Hydrothermal-Electrochemical Technique.- 34. Surface Modification with Hydrophilization.-35. Surface Modification with Micro-arc Oxidation.- 36. Spin Electronics.- 37. Biosensors based on field-effect transistors.- 38. Amorphous Oxide Semiconductor Thin-Film Transistors.- 39. Electrode Formation Using Electrodeposition and Direct Bonding for 3D Integration.- 40. Carbon Nanotube Forests on SiC: Structural and Electrical Properties
1. Introduction to Amorphous Alloys and Metallic Glasses.- 2. Applications of Amorphous Alloy / Metallic Glass for Environmental and Energy Engineering, Electronics Engineering and Biomedical Engineering Fields.- 3. Ti-based Biomedical Alloys.- 4. Mn-Based Ferromagnetic Alloys.- 5. Functional Materials Developed in IMR.- 6. Exotic Crystal Structures and Electronic Structures in Novel Structured Inorganic Materials.- 7. Interface Related Magnetic Phenomena in Novel Heterostructures.- 8. Microstructure Design for Oxide/Non-oxide Ceramics for Structural Applications.- 9. Gas Tungsten Arc Welding.- 10. Laser Welding.- 11. Friction Stir Welding.- 12. Soldering Process.- 13. Metallurgical Characterization of Joined Materials.- 14. Plasma Processes for Functionalization and Control of Materials Surface.- 15. Laser-Induced Processes for Functionalization of Materials Surface.- 16. Powder Metallurgy Processes for Composite-Materials Integration.- 17. Dry Nanoparticle Processes for FunctionalMaterials Integration.- 18. Three-Dimensional Printing Process.- 19. Current and Future Nano-structured Metals.- 20. Amorphous Alloy Membranes for Hydrogen Separation and Purification.- 21. Syntheses of Composite Porous Materials for Solid Oxide Fuel Cells.- 22. Hybrid Membrane Type Fuel Cells for Intermediate Temperatures.- 23. Synthesis of Nanomaterials using Solution Plasma Process.- 24. Metal Oxide Materials for Automotive Catalysts.- 25. Current and Future Hard Materials for Bio-Medical Field.- 26. Mechanical Property of Bio-Medical Materials.- 27. Chemical Properties of Bio-Medical Materials.- 28. Biological Properties of Bio-Medical Materials.- 29. Metallic Glasses for Bio-Medical Applications.- 30. Low-Young's-Modulus Materials for Bio-Medical Applications.- 31. Electret Ceramics for Bio-Medical Applications.- 32. Surface Modification with Femtosecond Laser.- 33. Surface Modification with Hydrothermal-Electrochemical Technique.- 34. Surface Modification with Hydrophilization.-35. Surface Modification with Micro-arc Oxidation.- 36. Spin Electronics.- 37. Biosensors based on field-effect transistors.- 38. Amorphous Oxide Semiconductor Thin-Film Transistors.- 39. Electrode Formation Using Electrodeposition and Direct Bonding for 3D Integration.- 40. Carbon Nanotube Forests on SiC: Structural and Electrical Properties







