Lead-Acid Batteries: Science and Technology: A Handbook of Lead-Acid Battery Technology and Its Influence on the Product
Autor D. Pavloven Limba Engleză Hardback – 16 mar 2017
This updated edition includes new supplementary material (text and illustrations) in chapters 2, 4, 6 and 16, as well as a brand new chapter on the action of carbon as an additive to the negative active material and the utilization of the lead-carbon supercapacitor electrodes. Substantial revisions of other chapters have been made, making the book beneficial for battery researchers, engineers and technologists.
- Written by a world authority on lead-acid batteries in a comprehensive and unified manner
- Includes new chapters on lead-acid batteries operating in the HRPSoC duty for hybrid electric vehicle applications and on lead-carbon electrodes
- Presents a comprehensive overview of the theory of the technological processes of lead-acid battery manufacture and their influence on battery performance parameters
- Proposes optimum conditions for individual technological processes that would yield superior structures of the lead and lead dioxide active masses
- Discusses the processes involved in the closed oxygen cycle in VRLAB and the thermal phenomena leading to thermal runaway (TRA)
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Specificații
ISBN-13: 9780444595522
ISBN-10: 044459552X
Pagini: 720
Dimensiuni: 191 x 235 x 43 mm
Greutate: 1.44 kg
Ediția:2
Editura: ELSEVIER SCIENCE
ISBN-10: 044459552X
Pagini: 720
Dimensiuni: 191 x 235 x 43 mm
Greutate: 1.44 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Public țintă
Technologists and engineers in the battery industry, university lecturers and students as well as research scientists with interests in the field of electrochemistry and electrochemical power sourcesCuprins
Part 1. Fundamentals of Lead–Acid Batteries1. Invention and Development of the Lead–Acid Battery2. Fundamentals of Lead–Acid Batteries
Part 2. Materials Used for Lead–Acid Battery Manufacture3. H2SO4 Electrolyte—An Active Material in the Lead–Acid Cell4. Lead Alloys and Grids. Grid Design Principles5. Leady Oxide
Part 3. Processes During Paste Preparation and Curing of the Plates6. Pastes and Grid Pasting7. Additives to the Pastes for Positive and Negative Battery Plates8. Curing of Battery Plates
Part 4. Plate Formation9. Soaking of Cured Plates Before Formation10. Formation of Positive Lead–Acid Battery Plates11. Processes During Formation of Negative Battery Plates12. Technology of Formation
Part 5. Battery Storage and VRLA Batteries13. Processes After Formation of the Plates and During Battery Storage14. Valve-Regulated Lead–Acid (VRLA) Batteries15. Lead–Carbon Electrodes
Part 6. Calculation of the Active Materials in a Lead–Acid Cell16. Calculation of the Active Materials for Lead–Acid Cells
Part 2. Materials Used for Lead–Acid Battery Manufacture3. H2SO4 Electrolyte—An Active Material in the Lead–Acid Cell4. Lead Alloys and Grids. Grid Design Principles5. Leady Oxide
Part 3. Processes During Paste Preparation and Curing of the Plates6. Pastes and Grid Pasting7. Additives to the Pastes for Positive and Negative Battery Plates8. Curing of Battery Plates
Part 4. Plate Formation9. Soaking of Cured Plates Before Formation10. Formation of Positive Lead–Acid Battery Plates11. Processes During Formation of Negative Battery Plates12. Technology of Formation
Part 5. Battery Storage and VRLA Batteries13. Processes After Formation of the Plates and During Battery Storage14. Valve-Regulated Lead–Acid (VRLA) Batteries15. Lead–Carbon Electrodes
Part 6. Calculation of the Active Materials in a Lead–Acid Cell16. Calculation of the Active Materials for Lead–Acid Cells