Conventional and Powder Mixed Electro-Discharge Machining (eBook, PDF)
Biomedical Applications
Redaktion: Abdul-Rani, Ahmad Majdi; Danish, Mohd; Ahmed, Anas; Rubaiee, Saeed; Rao, T V V L N; Muhammad, Masdi
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Conventional and Powder Mixed Electro-Discharge Machining (eBook, PDF)
Biomedical Applications
Redaktion: Abdul-Rani, Ahmad Majdi; Danish, Mohd; Ahmed, Anas; Rubaiee, Saeed; Rao, T V V L N; Muhammad, Masdi
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This book presents the evolution of electro-discharge machining (EDM) process from conventional EDM to powder mixed EDM with emphases on the biomedical applications. It discusses the theory behind each process and their applications in the field of biomedical applications, and background to EDM processes supported by detailed case studies.
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- Größe: 41.31MB
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- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 206
- Erscheinungstermin: 2. September 2024
- Englisch
- ISBN-13: 9781040104620
- Artikelnr.: 72271029
- Verlag: Taylor & Francis
- Seitenzahl: 206
- Erscheinungstermin: 2. September 2024
- Englisch
- ISBN-13: 9781040104620
- Artikelnr.: 72271029
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Titanium and Molybdenum Alloys. 3. Surface Analysis of Magnesium Alloy
Processed Using C-EDM and PM-EDM Method. 4. Innovative Biomimetic
Electro-Discharge Coating on Bulk Metallic Glass for Potential Orthopaedic
Application. 5. Material Transfer Rate During Electro-Discharge Process:
Modeling and Optimization. 6. Arc Discharge Method For Aluminium Oxide
Nanoparticle Synthesis. 7. Development of Electrical Discharge Machining
Servomechanism System Towards Biomedical Application. 8. Influential
Process Parameters Associated with Powder-Mixed Electric Discharge Coating
Technique Applied to 316L Steel. 9. Multi-Objective Optimization of
Hydroxyapatite-added EDM Process for 316L SS in the Context of Biomedical
Applications.
Titanium and Molybdenum Alloys. 3. Surface Analysis of Magnesium Alloy
Processed Using C-EDM and PM-EDM Method. 4. Innovative Biomimetic
Electro-Discharge Coating on Bulk Metallic Glass for Potential Orthopaedic
Application. 5. Material Transfer Rate During Electro-Discharge Process:
Modeling and Optimization. 6. Arc Discharge Method For Aluminium Oxide
Nanoparticle Synthesis. 7. Development of Electrical Discharge Machining
Servomechanism System Towards Biomedical Application. 8. Influential
Process Parameters Associated with Powder-Mixed Electric Discharge Coating
Technique Applied to 316L Steel. 9. Multi-Objective Optimization of
Hydroxyapatite-added EDM Process for 316L SS in the Context of Biomedical
Applications.