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Micromachining using electrochemical discharge phenomenon : fundamentals and application of spark assisted chemical engraving /

Micro-machining is an advanced manufacturing technique of growing importance, and adoption of micro-machining using electrochemical discharges (Micro-ECDM) has increased steadily in recent years. Among new developments is the interest of industry in Micro-ECDM. However, the potential of the technolo...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: W�uthrich, Rolf (Autor), Ziki, Jana D. Abou (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Norwich : William Andrew, 2015.
Edición:2nd edition.
Colección:Micro & nano technologies.
Temas:
Acceso en línea:Texto completo

MARC

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100 1 |a W�uthrich, Rolf,  |e author. 
245 1 0 |a Micromachining using electrochemical discharge phenomenon :  |b fundamentals and application of spark assisted chemical engraving /  |c by Rolf Wuthrich and Jana D. Abou Ziki. 
250 |a 2nd edition. 
264 1 |a Norwich :  |b William Andrew,  |c 2015. 
300 |a 1 online resource 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
490 1 |a Micro and Nano Technologies Series 
500 |a Previous edition: 2009. 
588 0 |a CIP data; item not viewed. 
520 |a Micro-machining is an advanced manufacturing technique of growing importance, and adoption of micro-machining using electrochemical discharges (Micro-ECDM) has increased steadily in recent years. Among new developments is the interest of industry in Micro-ECDM. However, the potential of the technology is not being fully utilized and there is no comprehensive reference book available today covering it. Micromachining Using Electrochemical Discharge Phenomenon, Second Edition fills this gap. It is unique in its detailed coverage of all aspects of the Micro-ECDM process, as well as Spark Assisted Chemical Engraving (SACE). As such, it covers technologies such as chemical etching, micro-drilling, and other material removal mechanisms, high aspect ratio machining, design and construction of the machining apparatus, and a wide range of applications. The new edition compares Micro-ECDM and SACE with other micromachining technologies such as laser machining and traditional EDM. ECDM is used for machining of electrically non-conductive materials. Micro-ECDM/SACE is mainly applied to glass and the book focuses on glass, but the authors also present new results on other materials such as ceramics. In addition, techniques to modify material properties for the machining process are explained. The authors discuss machining strategies including the latest developments in micro-texturing of glass micro-channels and reports on developments in controlling and analysis aspects of machining. This book is a unique reference for engineers and industrial researchers involved in development, design and use of micromachining, chemical micro-drilling or chemical engraving techniques and equipment. 
504 |a Includes bibliographical references and index. 
505 0 |a Front Cover; Micromachining Using Electrochemical Discharge Phenomenon: Fundamentals and Application of Spark Assisted Chemical Engraving; Copyright; Contents; Preface; CHAPTER 1 -- MACHINING WITH ELECTROCHEMICAL DISCHARGES-AN OVERVIEW; 1.1 SPARK-ASSISTED CHEMICAL ENGRAVING; 1.2 SACE AS A MICROMACHINING TECHNOLOGY; 1.3 SCOPE OF THE BOOK; PART 1 ELECTROCHEMICAL DISCHARGES; CHAPTER 2 -- HISTORICAL OVERVIEW OF ELECTROCHEMICAL DISCHARGES; 2.1 DISCOVERY AND EARLY APPLICATIONS; 2.2 THE WEHNELT INTERRUPTER; 2.3 SPECTRUM OF THE ELECTROCHEMICAL DISCHARGES; 2.4 NATURE OF THE ELECTROCHEMICAL DISCHARGES 
505 8 |a 2.5 CONTACT GLOW DISCHARGE ELECTROLYSISCHAPTER 3 -- GAS-EVOLVING ELECTRODES; 3.1 INTRODUCTION TO ELECTROCHEMISTRY; 3.2 BUBBLE FORMATION DURING ELECTROLYSIS; 3.3 BUBBLE LAYER; 3.4 THE BUBBLE DIFFUSION REGION; 3.5 THE BUBBLE ADHERENCE REGION; 3.6 BUBBLE EVOLUTION ON A GAS-EVOLVING ELECTRODE; 3.7 MEAN STATIONARY CURRENT-VOLTAGE CHARACTERISTICS; CHAPTER 4 -- THE GAS FILM-A KEY ELEMENT; 4.1 FORMATION OF THE GAS FILM; 4.2 GAS FILM LIFETIME; 4.3 SHAPE OF THE GAS FILM; 4.4 DISCHARGE ACTIVITY INSIDE OF THE GAS FILM; 4.5 ACTIVE ELECTRODE TEMPERATURE; 4.6 CONTROLLING THE GAS FILM 
505 8 |a PART 2 MICROMACHINING WITH ELECTROCHEMICAL DISCHARGESCHAPTER 5 -- MATERIAL REMOVAL MECHANISM; 5.1 GENERAL CONSIDERATIONS; 5.2 MACHINING AT LOW DEPTHS; 5.3 MACHINING AT HIGH DEPTHS; 5.4 CHEMICAL CONTRIBUTIONS; 5.5 SUMMARY; CHAPTER 6 -- COMMON MACHINING STRATEGIES; 6.1 GENERAL OVERVIEW; 6.2 GRAVITY-FEED DRILLING; 6.3 CONSTANT VELOCITY-FEED DRILLING; 6.4 2D AND 3D MACHINING; 6.5 WIRE ELECTROCHEMICAL DISCHARGE MACHINING; CHAPTER 7 -- CONTROLLING THE MACHINING PROCESS; 7.1 PROCESS ANALYSIS; 7.2 PROMOTING ETCHING; 7.3 CONTROLLING THE HEAT GENERATED; 7.4 CONTROLLING THE TOOL-WORKPIECE GAP 
505 8 |a 7.5 SEARCHING FOR PROCESS CONTROL SIGNALS7.6 SUMMARY; CHAPTER 8 -- DESIGNING A SACE MICROMACHINING SET-UP; 8.1 GENERAL DESIGN RULES; 8.2 DRILLING SET-UPS; 8.3 2D MACHINING SET-UPS; 8.4 COMMERCIAL MACHINES; CHAPTER 9 -- OUTLOOK; REFERENCES; Index 
650 0 |a Electric metal-cutting. 
650 0 |a Micromachining. 
650 6 |a Usinage par �electro�erosion.  |0 (CaQQLa)201-0043122 
650 6 |a Micro-usinage.  |0 (CaQQLa)201-0292591 
650 7 |a electric metal-cutting.  |2 aat  |0 (CStmoGRI)aat300054007 
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650 7 |a Micromachining  |2 fast  |0 (OCoLC)fst01019888 
700 1 |a Ziki, Jana D. Abou,  |e author. 
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830 0 |a Micro & nano technologies. 
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