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Additively Manufactured Smart Materials and Structures: Design, Processing, Applications
Coles
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Additively Manufactured Smart Materials and Structures: Design, Processing, Applications in Grande Prairie, AB
Current price: $351.19
Original price: $438.99

Coles
Additively Manufactured Smart Materials and Structures: Design, Processing, Applications in Grande Prairie, AB
Current price: $351.19
Original price: $438.99
Loading Inventory...
Size: Kobo eBook
*Product information and pricing may vary - to confirm current pricing, availability, shipping, and return information please contact Coles. In the event of a pricing discrepancy, the retailer's price will apply.
Additively Manufactured Smart Materials and Structures: Design, Processing, and Applications provides a critical overview of the fabrication, design, processing, characterization, structure-property relationships, and applications of 3D printed smart materials. The book practically outlines design strategies and manufacturing techniques across a variety of disciplines, including membrane technology, catalysis, batteries, supercapacitors, sensing, biosensing, aerospace, automobile, construction, and biomedical. Users will find a critical evaluation of the scientific literature that has already been published to highlight the significance, the technoeconomic aspects, the major difficulties, and the benefits and drawbacks of additively built smart materials.
Advanced 3D printing techniques, including stereolithography (SLA), fused deposition modeling (FDM), selective laser sintering (SLS), electron beam melting (EBM), direct ink writing (DIW), and 3D plotting are discussed in detail. The book also offers a thorough analysis of the microstructure, mechanical, thermal, and surface properties of smart materials and structures produced using additive manufacturing.
Provides a review of recent advances, design techniques, technological challenges, and applications of additively manufactured smart materials
Discusses the microstructure, mechanical, thermal, and surface properties of additively manufactured smart materials
Covers the fundamentals of all additive manufacturing techniques, fabrication, processing, design strategies, and various properties of additively manufactured smart materials
Explores various printing issues and new challenges associated with the development of advanced functional materials and structures using AM or 3D printing techniques
Additively Manufactured Smart Materials and Structures: Design, Processing, and Applications provides a critical overview of the fabrication, design, processing, characterization, structure-property relationships, and applications of 3D printed smart materials. The book practically outlines design strategies and manufacturing techniques across a variety of disciplines, including membrane technology, catalysis, batteries, supercapacitors, sensing, biosensing, aerospace, automobile, construction, and biomedical. Users will find a critical evaluation of the scientific literature that has already been published to highlight the significance, the technoeconomic aspects, the major difficulties, and the benefits and drawbacks of additively built smart materials.
Advanced 3D printing techniques, including stereolithography (SLA), fused deposition modeling (FDM), selective laser sintering (SLS), electron beam melting (EBM), direct ink writing (DIW), and 3D plotting are discussed in detail. The book also offers a thorough analysis of the microstructure, mechanical, thermal, and surface properties of smart materials and structures produced using additive manufacturing.
Provides a review of recent advances, design techniques, technological challenges, and applications of additively manufactured smart materials
Discusses the microstructure, mechanical, thermal, and surface properties of additively manufactured smart materials
Covers the fundamentals of all additive manufacturing techniques, fabrication, processing, design strategies, and various properties of additively manufactured smart materials
Explores various printing issues and new challenges associated with the development of advanced functional materials and structures using AM or 3D printing techniques





















