图书简介
Electrodissolution Processes: Fundamentals and Applications discusses the basic principles involved in high-rate anodic dissolution processes and their application in advanced machining, micromachining, and finishing operations. The fundamentals section of the book discusses the anodic dissolution behavior of different classes of metals and the influence of mass transport, current distribution, and surface film properties on the metal removal rate and surface finishing. The applications section of the book presents essential elements of electrochemical and assisted techniques for precision machining, micromachining, and polishing of advanced materials, including hard-to-machine conducting ceramic materials.FeaturesA first-of-its-kind book that provides updated scientific and engineering information related to high-rate anodic dissolution processesHighlights the importance of the understanding of basic principles required for designing and optimizing ECM/EMM/EP processesGives equal emphasis to the fundamentals and applications of electrodissolution processesDiscusses the high-rate anodic dissolution of two broad classes of materials, namely, engineering and refractory materialsPresents case studies to demonstrate the capabilities of different electrochemical and assisted machining, micromachining, and finishing operationsPresents a dedicated chapter on electrochemical planarization of copper interconnects Madhav Datta is the Chairman of Amrita Center for Industrial Research and Innovation and a Distinguished Professor in the Department of Chemical Engineering and Materials Science, Amrita University, Coimbatore, India.
1. Open-Circuit Metal Dissolution Processes
2. Anodic Behavior of Metals
3. Transpassive Films and Their Breakdown under ECM Conditions
4. Mass Transport and Current Distribution
5. High-Rate Anodic Dissolution of Fe, Ni, Cr, and Their Alloys
6. High-Rate Anodic Dissolution of Ti, W, and Their Carbides
7. Anodic Dissolution of Metals in Electropolishing Electrolytes
8. Electrochemical Machining
9. Electrochemical Micromachining: Maskless Techniques
10. Through-Mask Electrochemical Micromachining
11. Electropolishing in Practice
12. Electrochemical Planarization of Copper Interconnects
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