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Record Nr. |
UNINA9910139029903321 |
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Titolo |
Micro cutting [[electronic resource] ] : fundamentals and applications / / Kai Cheng, Dehong Huo, editors |
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Pubbl/distr/stampa |
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Chichester, West Sussex, United Kingdom ; ; New York, : John Wiley & Sons Inc., 2013 |
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ISBN |
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1-118-53661-4 |
1-118-53660-6 |
1-118-53662-2 |
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Descrizione fisica |
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1 online resource (368 p.) |
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Collana |
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Wiley Microsystem and nanotechnology series (ME20) |
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Altri autori (Persone) |
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Disciplina |
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Soggetti |
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Micromachining |
Micromechanics |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Micro-Cutting: Fundamentals and Applications; Copyright; Contents; List of Contributors; Series Preface; Preface; Part One Fundamentals; 1 Overview of Micro Cutting; 1.1 Background and Scope; 1.2 Materials in Micro Cutting; 1.3 Micro Cutting Processes; 1.4 Micro Cutting Framework; References; 2 Micro Cutting Mechanics; 2.1 Introduction; 2.2 Characterization of Micro Cutting; 2.3 Micro Cutting Mechanics; 2.4 Micro Machinability Issues and the Scientific Approaches; 2.5 Summary; References; 3 Micro Tooling Design and Manufacturing; 3.1 Tool Size and Machining Scale |
3.2 Manufacturing Methods for Solid Shank Micro Tools3.3 Coatings and Coated Solid Shank Micro Tools; 3.4 Importance of Coated Micro Tools; 3.5 Diamond Micro Cutting Tools; 3.6 Micro Cutting Tool Wear; 3.7 Smart Cutting Tools; References; 4 Ultraprecision and Micro Machine Tools for Micro Cutting; 4.1 Introduction; 4.2 Components of High Precision Machine Tools; 4.3 Diamond Turning Machines and Components; 4.4 Precision Milling Machines; References; 5 Engineering Materials for Micro Cutting; 5.1 Introduction; 5.2 'Size' Effects; 5.3 Strain and Stress in Cutting |
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5.4 Elastic and Plastic Behaviours at the Micro-scale5.5 Fracture; 5.6 Metals, Brittle Materials and Others; 5.7 Summary; References; 6 Modelling and Simulation of Micro Cutting; 6.1 FE Modelling and Analysis; 6.2 Molecular Dynamics (MD) Modelling and Analysis; 6.3 Multiscale Modelling and Analysis; 6.4 Summary; References; Part Two Applications; 7 Diamond Turning and Micro Turning; 7.1 Introduction; 7.2 Ultra-precision Diamond Turning; 7.3 Micro Turning; 7.4 Challenges Arising from Micro Turning; References; 8 Micro Milling: The State-of-the-art Approach Towards Applications |
8.1 Introduction8.2 Fundamental Elements in Micro Milling; 8.3 Micro Milling Mechanics; 8.4 Modelling of the Micro Milling Process; 8.5 Metrology and Instrumentation; 8.6 Scientific and Technological Challenges; 8.7 Application Perspectives; 8.8 Concluding Remarks; References; 9 Micro Drilling Applications; 9.1 Chapter Overview; 9.2 Investigation of Chatter in Mesoscale Drilling; 9.3 Investigation of Chatter in Micro Drilling; 9.4 Case Study: Micro Drilling Medical Polymer Materials and Composites; 9.5 Conclusions; Acknowledgements; References; 10 Micro Grinding Applications |
10.1 Introduction10.2 Principles and Methodologies; 10.3 Implementation Perspectives; 10.4 Application Cases; Acknowledgements; References; 11 In-Process Micro/Nano Measurement for Micro Cutting; 11.1 Introduction; 11.2 The Hybrid Instrument for Micro Cutting and In-process Measurement; 11.3 In-process Measurement of Micro Cutting Force; 11.4 In-process Measurement of Micro Wear of Cutting Tool; 11.5 In-process Measurement of Micro Surface Form; 11.6 Summary; References; Index |
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Sommario/riassunto |
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Micro-Cutting: Fundamentals and Applications comprehensively covers the state of the art research and engineering practice in micro/nano cutting: an area which is becoming increasingly important, especially in modern micro-manufacturing, ultraprecision manufacturing and high value manufacturing. This book provides basic theory, design and analysis of micro-toolings and machines, modelling methods and techniques, and integrated approaches for micro-cutting. The fundamental characteristics, modelling, simulation and optimization of micro/nano cutting processes are emphasized with |
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