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Design for Advanced Manufacturing : Technologies, and Processes /

Detailed coverage of the latest advances in manufacturing and product design. Edited by a past president of the Society of Manufacturing Engineers, this comprehensive resource features contributions from a host of international manufacturing and design experts. You will get thorough explanations of...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Gillespie, LaRoux (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: New York, N.Y. : McGraw-Hill Education, [2017]
Edición:First edition.
Colección:McGraw-Hill's AccessEngineering.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Cover
  • Title Page
  • Copyright Page
  • Contents
  • Contributors
  • Preface
  • Introduction
  • Part 1 Manufacturing with Lasers
  • 1.1 Overview of Laser Manufacturing Processes
  • 1.2 Laser Cutting
  • 1.3 Laser Surface Texturing
  • 1.4 Laser Ablation for Cleaning, Decoating, and Surface Preparation
  • 1.5 Laser Hardening
  • 1.6 Laser Welding of Metals
  • 1.7 Laser Welding of Plastics
  • 1.8 Designing for Laser Soldering
  • 1.9 Design for Laser Cladding
  • 1.10 Laser Marking and Engraving
  • 1.11 Laser-Assisted Forming
  • 1.12 Laser Peening
  • Part 2 Manufacturing with Additive Processes
  • 2.1 Overview of Additive Manufacturing Processes
  • 2.2 Binder Jetting
  • 2.3 Directed Energy Deposition
  • 2.4 Material Extrusion
  • 2.5 Designing for Material Jetting Additive Processes
  • 2.6 Design for Powder Bed Fusion of Polymer Parts
  • 2.7 Design for Powder Bed Fusion of Metal Parts
  • 2.8 Polymer Laminate Technology
  • 2.9 Accumulative Roll Bonding
  • 2.10 Ultrasonic Lamination Technology
  • 2.11 Vat Photopolymerization: An Additive Process
  • 2.12 Hybrid Additive Process
  • Part 3 Manufacturing Micro Parts and Micro Features
  • 3.1 Micro Manufacturing: An Overview
  • 3.2 Micro Mechanical Drilling
  • 3.3 Micro Milling
  • 3.4 Designing for the Swiss Screw Machine
  • 3.5 Designing for Turning Micro Parts
  • 3.6 Design Considerations for Laser Micro Machining
  • 3.7 Micro Electrical Discharge Machining
  • 3.8 Precision Electrochemical Micro Machining
  • 3.9 Electrochemical Micro Deburring
  • 3.10 Electrochemical Discharge Machining
  • 3.11 Micro Wire Electrical Discharge Grinding
  • 3.12 Electron Beam Drilling
  • 3.13 Electron Beam Polishing
  • 3.14 Designing for Chemical Mechanical Polishing
  • 3.15 Micro Ultrasonic Machining
  • 3.16 Cylindrical Micro Grinding
  • 3.17 Grinding with Mechanical Micro Tools
  • 3.18 Micro Coining
  • 3.19 Magnetic Abrasive Finishing
  • 3.20 Designing for Micro Abrasive Waterjet Machining
  • 3.21 Photochemical Machining for Micro Parts
  • 3.22 Micro Molding Overview
  • 3.23 Micro Metal Powder?Injection Molding
  • 3.24 Micro Stamping
  • 3.25 Designing for Micro Hot Embossing
  • 3.26 Roll-to-Roll Micro Embossing
  • 3.27 Laser-Assisted Micro?Fabrication
  • 3.28 Micro Extrusion
  • 3.29 Chemical Vapor Deposition
  • 3.30 Magnetorheological Finishing
  • 3.31 Micro Wire Products
  • 3.32 Micro Electroforming
  • 3.33 Manufacturing with LIGA
  • 3.34 Deburring Micro Parts
  • 3.35 Electrospinning
  • 3.36 Designing for Resistance Welding Micro Parts
  • 3.37 Practical Guide to Laser Micro Welding
  • 3.38 Micro Electron Beam Welding
  • 3.39 Micro Welding for Assembly and Rapid Turnaround Changes
  • 3.40 Ultrasonic Micro Welding
  • 3.41 Micro Adhesive Bonding
  • 3.42 Micro Blasting
  • 3.43 Micro Part Inspection
  • 3.44 Advanced Additive Manufacturing: The MICA Freeform Process
  • 3.45 Micro Stereolithography
  • 3.46 Micro Electromechanical Systems
  • 3.47 Origami Micro Fabrication
  • 3.48 Ion Beam Machining
  • 3.49 Dip-Pen/Polymer-Pen Technology
  • 3.50 Capillary Forming
  • 3.51 Handling Micro Parts
  • 3.52 Assembly of Micro Parts
  • Index
  • A
  • B
  • C
  • D
  • E
  • F
  • G
  • H
  • I
  • K
  • L
  • M
  • N
  • O
  • P
  • Q
  • R
  • S
  • T
  • U
  • V
  • W
  • X.