Advances in Pre- and Post-Additive Manufacturing Processes (eBook, PDF)
Innovations and Applications
Redaktion: Tripathi, Naveen Mani; Sharma, Ankit
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Advances in Pre- and Post-Additive Manufacturing Processes (eBook, PDF)
Innovations and Applications
Redaktion: Tripathi, Naveen Mani; Sharma, Ankit
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This book provides knowledge about creating and designing products based on an Industry 4.0 setting. Discussing the fundamentals of Additive Manufacturing, technologies, process parameters, advantages, limitations, recent developments, recent post-additive manufacturing process advancements, surface quality defects, and challenges.
- Geräte: PC
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- Größe: 38.81MB
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This book provides knowledge about creating and designing products based on an Industry 4.0 setting. Discussing the fundamentals of Additive Manufacturing, technologies, process parameters, advantages, limitations, recent developments, recent post-additive manufacturing process advancements, surface quality defects, and challenges.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 254
- Erscheinungstermin: 18. Juni 2024
- Englisch
- ISBN-13: 9781040047644
- Artikelnr.: 70545870
- Verlag: Taylor & Francis
- Seitenzahl: 254
- Erscheinungstermin: 18. Juni 2024
- Englisch
- ISBN-13: 9781040047644
- Artikelnr.: 70545870
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Dr. Naveen Mani Tripathi is currently working as an Assistant Professor at Assam Energy Institute, A Centre of RGIPT, MoPNG, Gov. of India. He completed his Ph.D. from the BGU, Israel. After his Ph.D., he worked as Particle Scientist in the GranuTools sprl, Belgium. His post-doctoral research is from the Technical University of Munich, Germany and he has been awarded many fellowships, such as GATE, GRE, Kriteman, TUFF, and Alexander von Humboldt Fellowship. Dr. Tripathi's areas of research are Material Characterization, Additive Manufacturing, Thermo-Fluid, and Multiphase Flow. He has three granted national and international patents and more than 45 journals/conference publications to his credit and is an editorial board member and review editor for more than 20 different journals. Dr. Ankit Sharma is currently working as an Assistant Professor in the Mechanical Engineering-Research and Innovation Network (CURIN) Department of Chitkara University, Punjab, India. He completed his doctoral from Thapar University, India. He has authored numerous national and international publications in SCI/Scopus journals and has filed/published 30 plus national and international patents. Dr. Sharma's research interests include Sustainable Manufacturing, 3D printing, modern machining, and Tissue Engineering. He is the book series editor for the 'Innovations in Smart Manufacturing for Long-Term Development and Growth' series with CRC Press of the Taylor and Francis Group and is the editor of three CRC Press books related to manufacturing processes.
1. A Review on Additive Manufacturing in Industrial Environment. 2.
Integrating Titanium Coating with 3D-Printed GFRP Panels: An Innovative
Approach to Harnessing Composite Strengths in Engineering Applications. 3.
Advanced Characteristics of Materials used in additive manufacturing: A
State-Of-The-Art Review and Future Applications. 4. Investigations on the
Mechanical Characterization of Additively Manufactured Polymer Composite
Materials Fabricated Via MEX. 5. Investigations on Die-Swell Behaviour in
Screw Extrusion-Based Processing of Thermoplastic ABS. 6. A Prospective
View of Biomaterials: 3D Printing of Biomedical Applications. 7. Biomedical
Innovations with 3D Printing and Biomaterials: Current and Future
Applications. 8. Effect of Interlayer Temperatures and Heat Inputs on
Porosity and Hydrogen Solubility in Wire Arc Additive Manufactured AA2618
Aluminium: A Comparative Study between Pulsed-MIG and CMT Methods. 9. A
Comprehensive Review on the Machining Process: Unconventional as an
Alternative of Conventional Machining. 10. Future trends and challenges in
Super-finishing processes: Post Metal additive manufacturing process. 11.
Additive Manufacturing in the Age of Industry 4.0 and Beyond.
Integrating Titanium Coating with 3D-Printed GFRP Panels: An Innovative
Approach to Harnessing Composite Strengths in Engineering Applications. 3.
Advanced Characteristics of Materials used in additive manufacturing: A
State-Of-The-Art Review and Future Applications. 4. Investigations on the
Mechanical Characterization of Additively Manufactured Polymer Composite
Materials Fabricated Via MEX. 5. Investigations on Die-Swell Behaviour in
Screw Extrusion-Based Processing of Thermoplastic ABS. 6. A Prospective
View of Biomaterials: 3D Printing of Biomedical Applications. 7. Biomedical
Innovations with 3D Printing and Biomaterials: Current and Future
Applications. 8. Effect of Interlayer Temperatures and Heat Inputs on
Porosity and Hydrogen Solubility in Wire Arc Additive Manufactured AA2618
Aluminium: A Comparative Study between Pulsed-MIG and CMT Methods. 9. A
Comprehensive Review on the Machining Process: Unconventional as an
Alternative of Conventional Machining. 10. Future trends and challenges in
Super-finishing processes: Post Metal additive manufacturing process. 11.
Additive Manufacturing in the Age of Industry 4.0 and Beyond.
1. A Review on Additive Manufacturing in Industrial Environment. 2.
Integrating Titanium Coating with 3D-Printed GFRP Panels: An Innovative
Approach to Harnessing Composite Strengths in Engineering Applications. 3.
Advanced Characteristics of Materials used in additive manufacturing: A
State-Of-The-Art Review and Future Applications. 4. Investigations on the
Mechanical Characterization of Additively Manufactured Polymer Composite
Materials Fabricated Via MEX. 5. Investigations on Die-Swell Behaviour in
Screw Extrusion-Based Processing of Thermoplastic ABS. 6. A Prospective
View of Biomaterials: 3D Printing of Biomedical Applications. 7. Biomedical
Innovations with 3D Printing and Biomaterials: Current and Future
Applications. 8. Effect of Interlayer Temperatures and Heat Inputs on
Porosity and Hydrogen Solubility in Wire Arc Additive Manufactured AA2618
Aluminium: A Comparative Study between Pulsed-MIG and CMT Methods. 9. A
Comprehensive Review on the Machining Process: Unconventional as an
Alternative of Conventional Machining. 10. Future trends and challenges in
Super-finishing processes: Post Metal additive manufacturing process. 11.
Additive Manufacturing in the Age of Industry 4.0 and Beyond.
Integrating Titanium Coating with 3D-Printed GFRP Panels: An Innovative
Approach to Harnessing Composite Strengths in Engineering Applications. 3.
Advanced Characteristics of Materials used in additive manufacturing: A
State-Of-The-Art Review and Future Applications. 4. Investigations on the
Mechanical Characterization of Additively Manufactured Polymer Composite
Materials Fabricated Via MEX. 5. Investigations on Die-Swell Behaviour in
Screw Extrusion-Based Processing of Thermoplastic ABS. 6. A Prospective
View of Biomaterials: 3D Printing of Biomedical Applications. 7. Biomedical
Innovations with 3D Printing and Biomaterials: Current and Future
Applications. 8. Effect of Interlayer Temperatures and Heat Inputs on
Porosity and Hydrogen Solubility in Wire Arc Additive Manufactured AA2618
Aluminium: A Comparative Study between Pulsed-MIG and CMT Methods. 9. A
Comprehensive Review on the Machining Process: Unconventional as an
Alternative of Conventional Machining. 10. Future trends and challenges in
Super-finishing processes: Post Metal additive manufacturing process. 11.
Additive Manufacturing in the Age of Industry 4.0 and Beyond.