Additive, Subtractive, and Hybrid Technologies : Recent Innovations in Manufacturing (Mechanical Engineering Series)

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Additive, Subtractive, and Hybrid Technologies : Recent Innovations in Manufacturing (Mechanical Engineering Series)

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  • 製本 Hardcover:ハードカバー版/ページ数 190 p.
  • 商品コード 9783030995683

Full Description

This book provides readers with the comprehensive insights of the recent research breakthroughs in additive, subtractive, and hybrid technologies. Further, the book examines incomparable design and manufacturing independences, as well as strategies to upgrade the product performance characteristics through collaborating additive and subtractive technologies. Indeed, the intrinsic benefits and limitations of both additive and subtractive manufacturing technologies could be merged to obtain appreciable hybridizations. The editorial team members and contributors to Additive, Subtractive, and Hybrid Technologies are highly motivated experts committed to and the advance of hybrid manufacturing technologies.

 

Contents

Experimental study on machinability of AISI 4340 steel during hard turning by CBN tool.- An experimental study on major process parameters effecting the type of burrs in drilling operation for Mild Steel ASTM A-36.- Investigations on mechanical properties of reinforced secondary recycled ABS as filament for 3D printing applications.- Mechanical and morphological properties correlation of PLA-PVC-wood powder-Fe3O4 composite matrix for 3D printing.- Analysis of Machining Parameters in Drilling of Biocompatible Composite: HAp-HDPE and HAp-UHMWPE.- A Framework for Magnetic Field Assisted Electrical Discharge Machining (MFA-EDM) of Inconel-625 using Bio-oils Dielectric.- Investigation of Mechanical Properties in Friction Stir Welded Mg AZ 31 Alloy Workpieces.- Correlation of Mechanical and Rheological Properties of Al-Al2O3-Nylon 6 Composite Feedstock Filament for Rapid Tooling.- A Framework on Electrochemical Machining of ABS - 15% Al Composite.- Cost-Effective Design of Soft Robotic Prosthetic Arm based on 3D Printing.- Macro-Mechanical Modeling of 3D Printed Material.- Exploration on Doped TiO2 Nanostructures for Application in Optoelectronics and Additive Manufacturing of Functional Prototypes.- Welding based additive manufacturing for biomedical applications: From concept to technology.

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