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Additive Manufacturing for Plastic Recycling: Efforts in Boosting a Circular Economy

Object category:
Elektronische Ressource
Providing institution:
Forschungsbibliothek Gotha
Publisher:
Taylor & Francis Group
Ort:
Milton
Date:
2022
Language:
Englisch
Abstract:
Intro -- Half Title -- Series Page -- Title Page -- Copyright Page -- Contents -- Preface -- Editors -- Contributors -- 1. Introduction to Circular Economy and Recycling Plastics -- 1.1 Introduction -- 1.2 Plastic and its Waste -- 1.3 Pathways from Waste to Materials: Ways of Recycling -- 1.3.1 Mechanical Recycling -- 1.3.1.1 Industrial Approaches for Mechanical Recycling of Plastic -- 1.3.2 Chemical Recycling -- 1.3.2.1 Industrial Approaches for Chemical Recycling of Plastic -- 1.3.3 Organic Recycling -- 1.3.4 Energy Recovery/Incineration -- 1.4 Implementation of Circular Economy for Plastic Waste: Challenges and Opportunities -- 1.5 Practices Towards the Circular Economy Approach -- 1.6 Future Prospective -- 1.7 Summary -- References -- 2. Additive Manufacturing for Circular Economy of Recycled Plastic -- 2.1 Introduction to Plastic Wastage -- 2.2 Recycling of Plastics -- 2.3 Processing Steps for Plastics Recycling -- 2.4 Types of Plastics -- 2.5 Circular Economy -- 2.6 Future Challenges and Scope of the Circular Economy -- 2.7 Case Study -- 2.7.1 Melt Flow Testing of ABS with Single, Double, and Triple Particle Size of Copper Particles -- 2.7.2 Manufacturing of Feedstock Filament for 3D Printing with Twin-Screw Extruder Machine -- 2.8 Thermal and Electrical Properties Analyzed -- 2.9 Thermal and Electrical Properties Analyzed -- References -- 3. Hybrid Mechanical and Chemical Recycling of Plastics -- 3.1 Introduction -- 3.1.1 4D Printing -- 3.2 Experimentation -- 3.2.1 Materials and Methods -- 3.2.2 Preparation of Feedstock Filament -- 3.3 Results and Discussions -- 3.3.1 Mechanical Characterization -- 3.3.2 Process Capability Analysis -- 3.4 Conclusions -- Acknowledgement -- References -- 4. Primary and Secondary Melt Processing for Plastics -- 4.1 Introduction -- 4.2 Experimentation -- 4.2.1 Material Selection -- 4.2.2 Material Processing.
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Created:
2023-04-12
Last changed:
2022-08-23
Added to portal:
2023-04-12