Advances in 3D printing & additive manufacturing technologies

"This edited volume comprises select chapters on advanced technologies for 3D printing and additive manufacturing and how these technologies have changed the face of direct, digital technologies for rapid production of models, prototypes and patterns. Because of its wide applications, 3D printi...

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Bibliographic Details
Other Authors: Wimpenny, D. I. (Editor), Pandey, Pulak M., (Editor), Kumar, L. Jyothish, (Editor)
Format: eBook
Language: English
Published: Singapore : Springer, [2016]
Subjects:
ISBN: 9789811008122
9789811008115
Physical Description: 1 online resource : illustrations

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Table of contents

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020 |a 9789811008122  |q (electronic bk.) 
020 |z 9789811008115 
035 |a (OCoLC)957464775  |z (OCoLC)957607328 
245 0 0 |a Advances in 3D printing & additive manufacturing technologies /  |c David Ian Wimpenny, Pulak M. Pandey, L. Jyothish Kumar, editors. 
246 3 |a Advances in 3D printing and additive manufacturing technologies 
264 1 |a Singapore :  |b Springer,  |c [2016] 
264 4 |c ©2017 
300 |a 1 online resource :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a počítač  |b c  |2 rdamedia 
338 |a online zdroj  |b cr  |2 rdacarrier 
504 |a Includes bibliographical references and index. 
505 0 |a Preface; Acknowledgments; Contents; Editor and Contributors; 1 Influence of Process Parameters on Tensile Strength of Additive Manufactured Polymer Parts Using Taguchi Method; Abstract; 1 Introduction; 2 Experimental Setup; 2.1 Specimen Characteristics; 2.2 Sintering Parameters; 2.3 Equipment Characteristics; 2.4 Design of Experiments; 2.5 Experimental Procedure; 3 Results and Discussion; 4 Analysis of Results; 4.1 Statistical Analysis; 4.2 ANOVA; 4.3 Response Graphs; 5 Prediction of Optimum Performance; 6 Conclusion; References. 
505 8 |a 2 Determination and Comparison of the Anisotropic Strengths of Fused Deposition Modeling P400 ABSAbstract; 1 Introduction; 2 Build Parameter Consideration; 2.1 Layer Resolution; 2.2 Model Interior; 2.3 Support Fill; 2.4 Color; 3 Experimental Setup; 3.1 Tensile Strength Test; 3.2 Compressive Strength Test; 3.3 Izod Impact Strength Test; 3.4 Rockwell Hardness Test; 4 Results; 4.1 Tensile Test; 4.2 Compressive Test; 4.3 Izod Impact Test; 4.4 Rockwell Hardness Test; 5 Conclusion and Future Work; References. 
505 8 |a 3 Estimation of the Effect of Process Parameters on Build Time and Model Material Volume for FDM Process Optimization by Response Surface Methodology and Grey Relational AnalysisAbstract; 1 Introduction; 2 RSM-Based Experimentation; 3 Measurement of Responses; 4 Grey Relational Analysis [10, 15, 16]; 4.1 Data Preprocessing; 4.2 Grey Relational Coefficient and Grey Relational Grade; 4.3 Analysis and Discussion of Experimental Results; 5 Results and Discussion; 6 Conclusions; References; 4 Current Trends of Additive Manufacturing in the Aerospace Industry; Abstract; 1 Introduction; 2 Background. 
505 8 |a 2.1 Additive Manufacturing Application for the Aerospace Industry2.1.1 GE Aviation-Leap Engine Fuel Nozzle Production Using Additive Manufacturing; 2.1.2 SAFRAN R & D Employs Additive Manufacturing for Developing Engine Components and Aircrafts; 2.1.3 NASA Creates Complex Rocket Injector Using Additive Manufacturing; 2.1.4 Additively Manufactured Titanium Component in Airbus A350 XWB; 2.1.5 Fused Deposition Modelling Reduces Tooling Cost and Lead-Time to Produce Composite Aerospace Parts; 2.1.6 Boeing Using 3D Printing Technology. 
505 8 |a 2.1.7 Lockheed Martin Space Systems Company Demonstrates Digital Production Innovations2.1.8 Rolls-Royce 3D Prints Largest Component for Trent XWB-97 Engine; 2.1.9 Pratt and Whitney Uses 3D Printing for Aero Engine Parts; 2.1.10 Airbus Defence and Space Used Additive Manufacturing to Reduce Production Time of Satellite Parts; 2.1.11 Hindustan Aeronautics Ltd., Used 3D Printing Technology for Aircraft Engine Model; 2.1.12 Research and Development on Laser Metal Deposition Technology at Hindustan Aeronautics Ltd. (HAL). 
506 |a Plný text je dostupný pouze z IP adres počítačů Univerzity Tomáše Bati ve Zlíně nebo vzdáleným přístupem pro zaměstnance a studenty 
520 8 |a "This edited volume comprises select chapters on advanced technologies for 3D printing and additive manufacturing and how these technologies have changed the face of direct, digital technologies for rapid production of models, prototypes and patterns. Because of its wide applications, 3D printing and additive manufacturing technology has become a powerful new industrial revolution in the field of manufacturing. The evolution of 3D printing and additive manufacturing technologies has changed design, engineering and manufacturing processes across industries such as consumer products, aerospace, medical devices and automotives. The objective of this book is to help designers, R & D personnel, and practicing engineers understand the state-of-the-art developments in the field of 3D Printing and Additive Manufacturing."--  |c Back cover. 
590 |a SpringerLink  |b Springer Complete eBooks 
650 0 |a Additive manufacturing. 
650 0 |a Three-dimensional printing. 
650 0 |a Rapid prototyping. 
650 0 |a Solid freeform fabrication. 
655 7 |a elektronické knihy  |7 fd186907  |2 czenas 
655 9 |a electronic books  |2 eczenas 
700 1 |a Wimpenny, D. I.  |q (David I.),  |e editor. 
700 1 |a Pandey, Pulak M.,  |e editor. 
700 1 |a Kumar, L. Jyothish,  |e editor. 
776 0 8 |i Print version:  |t Advances in 3D printing & additive manufacturing technologies.  |d Singapore : Springer, [2016]  |z 9811008116  |z 9789811008115  |w (OCoLC)940933740 
856 4 0 |u https://proxy.k.utb.cz/login?url=https://link.springer.com/10.1007/978-981-10-0812-2  |y Plný text 
992 |c NTK-SpringerENG 
999 |c 99301  |d 99301 
993 |x NEPOSILAT  |y EIZ