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Fused Deposition Modeling Based 3D Printing

Fused Deposition Modeling Based 3D Printing

Fused Deposition Modeling Based 3D Printing
Taschenbuch 219,99
weitere Formateab 213,99
Taschenbuch
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Erscheinungstermin: 04/2022, von Harshit K. Dave, J. Paulo Davim bei Springer International Publishing

ISBN: 978-3-030-68026-8
Reihe: Materials Forming, Machining and Tribology
515 Seiten
IX, 515 p. 272 illus., 218 illus. in color.
23.5 cm x 15.5 cm

 


This book covers 3D printing activities by fused deposition modeling process. The two introductory chapters discuss the principle, types of machines and raw materials, process parameters, defects, design variations and simulation methods. Six chapters are devoted to experimental work related to process improvement, mechanical testing and characterization of the ...
Beschreibung



This book covers 3D printing activities by fused deposition modeling process. The two introductory chapters discuss the principle, types of machines and raw materials, process parameters, defects, design variations and simulation methods. Six chapters are devoted to experimental work related to process improvement, mechanical testing and characterization of the process, followed by three chapters on post-processing of 3D printed components and two chapters addressing sustainability concerns. Seven chapters discuss various applications including composites, external medical devices, drug delivery system, orthotic inserts, watertight components and 4D printing using FDM process. Finally, six chapters are dedicated to the study on modeling and optimization of FDM process using computational models, evolutionary algorithms, machine learning, metaheuristic approaches and optimization of layout and tool path.





Text der Buchrückseite

This book covers 3D printing activities by fused deposition modeling process. The two introductory chapters discuss the principle, types of machines and raw materials, process parameters, defects, design variations and simulation methods. Six chapters are devoted to experimental work related to process improvement, mechanical testing and characterization of the process, followed by three chapters on post-processing of 3D printed components and two chapters addressing sustainability concerns. Seven chapters discuss various applications including composites, external medical devices, drug delivery system, orthotic inserts, watertight components and 4D printing using FDM process. Finally, six chapters are dedicated to the study on modeling and optimization of FDM process using computational models, evolutionary algorithms, machine learning, metaheuristic approaches and optimization of layout and tool path.






Eigenschaften
Covers modeling and optimization of FDM process using computational models and machine learning Chapters on post-processing of 3D printed components Reports sustainability concerns in 3D printing

Über Harshit K. Dave, J. Paulo Davim


Dr. Harshit K. Dave is an Associate Professor in Mechanical Engineering at S. V. National Institute of Technology, Surat, India. His major research interests are advanced machining processes, micro machining processes, additive manufacturing processes, fabrication and characterization of composites, robotics and automation. He also serves as secretary of the India branch of ModTech Professional Association, Romania. 


Dr. J. Paulo Davim is a Full Professor at the University of Aveiro, Portugal. He is also distinguished as honorary professor in several universities/colleges in China, India and Spain. He received his Ph.D. degree in Mechanical Engineering in 1997, M.Sc. degree in Mechanical Engineering (materials and manufacturing processes) in 1991, Mechanical Engineering degree (5 years) in 1986, from the University of Porto (FEUP), the Aggregate title (Full Habilitation) from the University of Coimbra in 2005 and the D.Sc. (Higher Doctorate)from London Metropolitan University in 2013. He is Senior Chartered Engineer by the Portuguese Institution of Engineers with an MBA and Specialist titles in Engineering and Industrial Management as well as in Metrology. He is also Eur Ing by FEANI-Brussels and Fellow (FIET) of IET-London. He has more than 30 years of teaching and research experience in Manufacturing, Materials, Mechanical and Industrial Engineering, with special emphasis in Machining & Tribology. 






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