Additive Manufacturing in Industry 4.0
Methods, Techniques, Modeling, and Nano Aspects
- 254 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Additive Manufacturing in Industry 4.0
Methods, Techniques, Modeling, and Nano Aspects
About This Book
The text covers four important areas: digital manufacturing, modern manufacturing processes, modeling and simulation in smart industry, and nanotechnology. It further presents mathematical models to represent physical phenomena and applies modern computing methods and simulations in analyzing the same. The text covers key concepts such as abrasive flow machining (AFM), abrasive water jet (AWJ) machining, and hybrid machining for micro/nanomanufacturing. It will serve as an ideal reference text for senior undergraduate, graduate students, and researchers in fields including mechanical engineering, aerospace engineering, manufacturing engineering, and production engineering.
Features
- Discusses sustainable development aspects of additive manufacturing in industry 4.0
- Studies electrochemical machining processes for micro-machining
- Presents experimental Investigation of friction factor and heat transfer rate in the laminar regime
- Examines the mechanical and microstructural characterization of titanium chips using large strain machining
- Covers hybrid approaches like electrochemical machining and magnetic abrasive flow machining
The book emphasizes linking the computer interface with the digital manufacturing process and their demonstration using commercially available software like Solid-Edge, ProE, and CATIA. It further discusses important aspects of digital manufacturing, advanced composites, artificial intelligence, and modern manufacturing processes.
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Table of contents
- Cover
- Half Title
- Series Page
- Title Page
- Copyright Page
- Dedication
- Table of Contents
- Aim and scope
- Preface
- Acknowledgments
- Editors
- Contributors
- Chapter 1 Introduction to the flexible manufacturing system in Industry 4.0
- Chapter 2 Effective energy management in smart buildings using VRV/VRF systems
- Chapter 3 Kinematic analysis, modeling, and simulation of a 7-link biped robot
- Chapter 4 Design and analysis of heavy vehicle medium duty transmission gearbox system
- Chapter 5 FEM-based design and free vibration analysis of composite plate
- Chapter 6 Static and dynamic behavior analysis of Al-6063 alloy using modified Hopkinson bar
- Chapter 7 Thermal stress analysis and parametric study of thermal barrier coated engine piston
- Chapter 8 Effect of parametric variation on surface roughness of EN-8 steel in grinding
- Chapter 9 Effect of REOs on tribological behavior of aluminum hybrid composites using ANN
- Chapter 10 Systematic study of electrochemical machining processes for micromachining
- Chapter 11 Study of mechanical and microstructural properties of titanium chips fabricated by large strain machining process
- Chapter 12 Role of ABD matrix model in the 3D study of laminate structures
- Chapter 13 RSM-based surface and subsurface characterization analysis of bioimplant material
- Chapter 14 Additive manufacturing process based EOQ model under the effect of pandemic COVID-19 on non-instantaneous deteriorating items with price dependent demand
- Index