
Advanced Machining and Micromachining Processes
- 589 pages
- English
- PDF
- Available on iOS & Android
Advanced Machining and Micromachining Processes
About this book
This book offers a comprehensive overview of the fundamentals, principles, and latest innovations in advanced machine and micromachining processes.
Businesses are continually seeking innovative advanced machining and micromachining techniques that optimize efficiency while reducing environmental harm. This growing competitive pressure has spurred the development of sophisticated design and production concepts. Modern machining and micromachining methods have evolved to accommodate the use of newer materials across diverse applications, while ensuring precise machining accuracy.
The primary aim of this book is to explore and analyze various approaches in modern machining and micromachining processes, with a focus on their effectiveness and application in successful product development. Consequently, the book emphasizes an industrial engineering perspective.
This book covers a range of advanced machining and micromachining processes that can be utilized by the manufacturing industry to enhance productivity and contribute to socioeconomic development. Additionally, it highlights ongoing research projects in the field and provides insights into the latest advancements in advanced machining and micromachining techniques.
The 31 chapters in the book cover the following subjects: abrasive jet machining; water jet machining; principles of electro discharge machining; wire-electro discharge machining; laser beam machining; plasma arc machining; ion beam machining; electrochemical machining; ultrasonic machining; electron beam machining; electrochemical grinding; photochemical machining process; abrasive-assisted micromachining; abrasive water jet micromachining; electro discharge machining; electrochemical micromachining; ultrasonic micromachining; laser surface modification techniques; ion beam processes; glass workpiece micromachining using electrochemical discharge machining; abrasive water jet machining; ultrasonic vibration-assisted micromachining; laser micromachining's role in improving tool wear resistance; stress; and surface roughness in high-strength alloys; abrasive flow finishing process; elastic emission machining; magnetic abrasive finishing process; genetic algorithm for multi-objective optimization in machining; machining of Titanium Grade-2 and P-20 tool steel; and wet bulk micromachining in MEMS fabrication.
Audience
The book is intended for a wide audience including mechanical, manufacturing, biomedical, and industrial engineers and R&D researchers involved in advanced machining and micromachining technology.
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Information
Table of contents
- Cover
- Series Page
- Title Page
- Copyright Page
- Contents
- Preface
- Chapter 1 Overview of Advanced Machining and Micromachining Processes
- Chapter 2 Abrasive Jet Machining
- Chapter 3 Water Jet Machining
- Chapter 4 Electric Discharge Machining
- Chapter 5 Wire-Electric Discharge Machining
- Chapter 6 Laser Beam Machining
- Chapter 7 Plasma Arc Machining
- Chapter 8 Ion Beam Machining
- Chapter 9 Electrochemical Machining
- Chapter 10 Ultrasonic Machining
- Chapter 11 Electron Beam Machining
- Chapter 12 Chemical Machining
- Chapter 13 Electrogrinding
- Chapter 14 Photochemical Machining
- Chapter 15 Abrasive-Assisted Micromachining
- Chapter 16 Abrasive Water Jet Micromachining: Pushing the Micro-Frontier Further— A Glimpse at Recent Advancements
- Chapter 17 Micro-Electrical Discharge Machining: State of Art
- Chapter 18 Electrochemical Micromachining
- Chapter 19 Ultrasonic Micromachining
- Chapter 20 Laser Surface Modification of Implant Materials: An Insight
- Chapter 21 Ion Beam Processing: A Brief Review
- Chapter 22 Parametric Optimization in Electrochemical Discharge Machining of Microchannel on Glass Using Multiple Tool Passes
- Chapter 23 Abrasive Water Jet Machining
- Chapter 24 Effect of Ultrasonic Vibration-Assisted Micromachining on the Surface Properties of Difficult-to-Machine Materials
- Chapter 25 A Significant Impact of Laser-Assisted Micromachining on Tribological Properties of High Strength Alloys
- Chapter 26 Abrasive Flow Finishing
- Chapter 27 Elastic Emission Machining
- Chapter 28 Magnetic Abrasive Finishing Process
- Chapter 29 Experimental Analysis of EDM Process While Machining Ti-VT20 Alloy
- Chapter 30 Estimation of Machining Performance and Machining Characteristics Using Artificial Neural Network in Wire Electric Discharge Machine for Titanium & P-20 Materials
- Chapter 31 Chemical-Based Bulk Machining and Fabrication of Silicon Microstructures: An Overview
- Index
- EULA