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  1. 1

    3D printing and additive manufacturing : principles and applications / by Chua, Chee Kai

    Published World Scientific, 2015.
    Book
  2. 2

    Additive manufacturing technologies : 3D printing, rapid prototyping and direct digital manufacturing / by Gibson, Ian

    Published Springer, 2015.
    Book
  3. 3

    3D Printing and Additive Manufacturing Technologies

    Published Springer Nature Singapore : Imprint: Springer, 2019.
    Table of Contents: “…Chapter 1: Finite Element Analysis of Melt Pool Characteristics in Selective Laser Spot Melting on a Powder Layer -- Chapter 2: Thermal Transport Phenomena in Multi-Layer Deposition using Arc Welding Process -- Chapter 3: Comparison of Bonding strength of Ti-6Al-4V alloy deposit and substrate processed by laser metal deposition -- Chapter 4: Study on Rayleigh-Bénard convection in Laser Melting process -- Chapter 5: ENHANCING SURFACE FINISH OF FUSED DEPOSITION MODELLING PARTS -- Chapter 6: Development and Analysis of Accurate and Adaptive FDM Post Finishing Approach -- Chapter 7: Toolpath Generation for Additive Manufacturing using CNC Milling Machine -- Chapter 8: Modelling of Heat Transfer in Powder Bed Based Additive Manufacturing Process using Lattice Boltzmann Method -- Chapter 9: Effect of process parameters on mechanical properties of solidified PLA parts fabricated by 3D Printing process -- Chapter 10: Metal Powder Based Additive Manufacturing Technologies - Business Forecast.…”
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  4. 4

    Advances in 3D Printing & Additive Manufacturing Technologies

    Published Springer Nature Singapore : Imprint: Springer, 2017.
    Table of Contents: “…Influence of Process Parameters on Tensile Strength of Additive Manufactured Polymer Parts using Taguchi Method -- Determination and Comparison of the Anisotropic Strengths of Fused Deposition Modeling P400 ABS -- Estimating the Effect of Process Parameters on Build Time and Model Material Volume for FDM Process Optimization by Response Surface Methodology and Grey Relational Analysis -- Current Trends of Additive Manufacturing in the Aerospace Industry -- Influence of Oxygen Partial Pressure on Hydroxyapatite Coating of Additive Manufactured component by Pulsed Laser Deposition -- Electro Discharge Machining of Ti-alloy(Ti6Al4V) and 316LStainless Steel and Optimization of Process Parameters by Grey Relational Analysis (GRA) Method -- Multi-Objective Optimization of Mechanical Properties of Aluminium 7075 Based Hybrid Metal Matrix Composite using Genetic Algorithm -- A Review on Status of Research in Metal Additive Manufacturing -- Multi Response Optimization of Nd: YAG Laser for Micro Drilling of 304Stainless Steel using Grey Relational Analysis -- Additive Manufacturing at French Space Agency with Industry Partnership -- Wear Characterization of Direct Steel -H20 Specimens Produced by Additive Manufacturing Techniques -- Rapid Manufacturing of Customized Surgical Cutting Guide for the Accurate Resection of Malignant Tumor in the Mandible -- Implant Analysis on the Lumbar-Sacrum Vertebrae using Finite Element Method -- An Automated Acupressure Glove For Stress & Pain Relief Using 3D Printing -- Development and Optimization of Dental Crown using Rapid Prototyping Integrated with CAD.…”
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  5. 5

    Modeling and Simulation of Functionalized Materials for Additive Manufacturing and 3D Printing: Continuous and Discrete Media Continuum and Discrete Element Methods / by Zohdi, Tarek I.

    Published Springer International Publishing : Imprint: Springer, 2018.
    Table of Contents: “…From the Content: Introduction: Additive/3D Printing Materials-filaments, Functionalized-inks and Powders.- PART I-Continuum Methods (CM) : Basic Continuum Mechanics -- CM Approaches: Characterization of Particle-functionalized Materials -- CM Approaches: Estimation and Optimization of the Effective Properties of Mixtures.- CM Approaches: Numerical thermo-mechanical Formulations.…”
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  6. 6

    Additive Manufacturing of Metals From Fundamental Technology to Rocket Nozzles, Medical Implants, and Custom Jewelry / by Milewski, John O.

    Published Springer International Publishing : Imprint: Springer, 2017.
    Table of Contents: “…Preface -- Acknowledgements -- List of Acronyms -- About the Author -- AM Road Map and Hitchhiker's Guide -- Chapter 1: Envision -- Chapter 2: Additive Manufacturing Metal, The Art of the Possible -- Chapter 3: On the Road to AM -- Chapter 4: Understanding Metal for Additive Manufacturing -- Chapter 5: Lasers, Electron Beams, Plasma Arcs -- Chapter 6: Computers, Solid Models, and Robots -- Chapter 7: Origins of 3D Metal Printing -- Chapter 8: Current System Configurations -- Chapter 9: Inspiration to 3D Design -- Chapter 10: Process Development -- Chapter 11: Building, Post Processing, and Inspecting -- Chapter 12: Trends in AM, Government, Industry, Research, Business -- Professional Society and Organization Links -- Glossary -- Bibliography -- AM Machine and Service Resource Links -- Appendix A: Safety in Configuring a 3D Metal Printing Shop -- Appendix B: Exercises in Metal Fusion -- Appendix C: OpenSCAD Programming Example -- Appendix D: 3D Printer Control Code Example -- Appendix E: Building an Arc-Based3D Shape Welding System -- Appendix F: Exercises in 3D Printing -- Appendix G: Score Chart of AM Skills -- Index.…”
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  7. 7

    The Management of Additive Manufacturing Enhancing Business Value / by Khorram Niaki, Mojtaba, Nonino, Fabio

    Published Springer International Publishing : Imprint: Springer, 2018.
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  8. 8

    3D Printing and Biofabrication

    Published Springer International Publishing : Imprint: Springer, 2018.
    Table of Contents: “…Part I (3D Printing) -- 3D Printing: Introduction -- Additive Manufacturing Technologies for Fabrication of Scaffolds -- Characterization of Additive Manufactured Scaffolds -- Computational Methods for the Predictive Design of Tissue Engineering Materials -- Materials, Methods and Current Progress of 3D Printing for TE Applications -- Mathematical Modelling of 3D Tissue Engineering Constructs -- Medical Imaging for 3D CAD Models -- Trends in Additive Manufacturing for TE Applications -- Use of Ceramics in Musculoskeletal Regenerative Medicine -- Vascularization of 3D Printed and Engineered Tissues. …”
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  9. 9

    Additive Manufacturing of Emerging Materials

    Published Springer International Publishing : Imprint: Springer, 2019.
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  10. 10

    Chemistry and Hygiene of Food Additives by Laganà, Pasqualina, Avventuroso, Emanuela, Romano, Giovanni, Gioffré, Maria Eufemia, Patanè, Paolo, Parisi, Salvatore, Moscato, Umberto, Delia, Santi

    Published Springer International Publishing : Imprint: Springer, 2017.
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  11. 11

    Industrializing Additive Manufacturing - Proceedings of Additive Manufacturing in Products and Applications - AMPA2017

    Published Springer International Publishing : Imprint: Springer, 2018.
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  12. 12

    3D industrial printing with polymers / by Fink, Johannes Karl

    Published Wiley-Scrivener, 2019.
    Table of Contents: “…Methods of 3D Printing -- History -- Recently Developed Materials for 3D Printing -- Shrinkage Compensation -- Basic Principles -- 3D Printing -- Uses and Applications -- Heat Exchangers -- 3D Plastic Model -- Gradient Refractive Index Lenses -- Photoformable Composition -- Comb Polymers -- Post-Processing Infiltration -- Sensors and Biosensors -- Magnetic Separation -- Rapid Prototyping -- Variants of Rapid Prototyping -- 3D Microfluidic Channel Systems -- Aluminum and Magnesium Cores -- Cellular Composites -- Powder Compositions -- Organopolysiloxane Compositions -- Thermoplastic Powder Material -- Plasticizer-Assisted Sintering -- Radiation-Curable Resin Composition -- Solution Mask Liquid Lithography -- Vat Polymerization -- Poly(dimethyl siloxane)-Based Photopolymer -- Hot Lithography -- Ambient Reactive Extrusion -- Micromanufacturing Engineering -- Analytical Uses -- Gas Sensors -- Chemical Engineering -- Gas Separation -- Hierarchical Monoliths for Carbon Monoxide Methanation -- Rotating Spinnerets -- Objects with Surface Microstructures -- Lightweight Cellular Composites -- Textiles -- 3D Printed Polymers Combined with Textiles -- Mechanical and Electrical Contacting -- Soft Electronic Textiles -- 3D Textiles Polymers -- Polymer Matrix Composites -- Biocomposite Filaments -- Nanocomposites -- Nanowires -- Fiber Reinforced Polymers -- Carbon Fiber Polymer Composites -- FDM Printing -- Powder Bed and Inkjet Head 3D Printing -- Stereolithography -- Selective Laser Sintering -- Sequential Interpenetrating Polymer Network -- 3D Printable Diamond Polymer Composite -- Adhesives for 3D Printing -- Voronoi-Based Composite Structures -- Graphene Oxide Reinforced Complex Architectures -- Multiwalled Carbon Nanotube Composites -- Multifunctional Polymer Nanocomposites -- Additive Manufacturing -- Thermosetting Polymers -- UV Curable Materials -- (Meth)acrylate Monomers -- Thiol-ene and Thiol-yne Systems -- Epoxides -- Visible Light-Curable and Visible Wavelength-Transparent Resin -- Poly(ether ether ketone) -- Lasers -- Ultra-High MolecularWeight PE -- Production of PP Polymer Powders -- Acrylate-Based Compositions -- Dimensionally Stable Acrylic Alloys -- Oligoester Acrylates -- Standards -- Biomedical Applications -- Color -- Particle-Free Emulsions -- Shape Memory Polymers -- Synthesis with Stereolithography -- Flexible Electronics -- Magnetically Responsive Shape Memory Polymer -- Sequential Self-Folding Structures -- Multi-shape Active Composites -- Radiation Sensitizers -- Shape Memory Alloy Actuating Wire -- Metal Electrode Fabrication -- 3D Printing -- Water-Soluble Polymer -- Water-Washable Resin Formulations -- Extremely Viscous Materials -- Tunable Ionic Control of Polymeric Films -- Photopolymer Compositions -- Mechanical Properties of UV Curable Materials -- High-Performance Photopolymer with Low-Volume Shrinkage -- Dual Initiation Wavelengths for 3D Printing -- Crosslinked Polymers -- Recycled Plastics -- 3D Printed Fiber Reinforced Portland Cement Paste -- Polymer-Derived Ceramics -- Photocurable Ceramic/Polymer Composites -- Ceramic Matrix Composite Structures -- Selective Laser Melting -- Stereolithography Resin for Rapid Prototyping of Ceramics and Metals Airplanes and Cars -- Airplanes -- Material Testing Standards -- Lightweight Aircraft Components -- Aircraft Spare Parts -- Polymer Laser Sintering -- Composites Part Production -- DeployableWing Designs -- Additive Manufacturing for Aerospace -- Fiber Reinforced Polymeric Components -- Manufacturing of Aircraft Parts -- Multirotor Vehicles -- Flame Retardant Aircraft Carpet -- Aircraft Cabins -- Additive Manufacturing of Solid Rocket Propellant Grains -- High Temperature Heating System -- Aerospace Propulsion Components -- Antenna RF Boxes -- Cyanate Ester Clay Nanocomposites -- Bionic Lightweight Design -- Cars -- Laser Sintering -- Automotive Repair Systems -- Improving Aerodynamic Shapes -- Common Automotive Applications -- Thermomechanical Pulp Fibers -- Polyamic Acid Salts -- Recycled Tempered Glass from the Automotive Industry Electric and Magnetic Uses -- Electric Uses -- Conductive Microstructures -- Modular Supercapacitors -- Active Electronic Materials -- Piezoelectric Materials -- Holographic Metasurface Antenna -- Waveguide -- Fuel Cell -- Batteries -- Magnetic Uses -- Polymer-Based Permanent Magnets -- Bonded Magnets -- Strontium Ferrite -- Soft-Magnetic Composite -- Discontinuous Fiber Composites by 3D Magnetic Printing Medical Applications -- Basic Procedures -- Image Acquisition -- 3D Printing -- Microvalve-Based Bioprinting -- 3D Printed Organ Models for Surgical Applications -- Organ Bioprinting -- Materials -- Liver -- Heart -- Cartilage -- Bionic Ears -- Skin -- Scaffolds -- Personalized Implants -- Neural Tissue Models -- Bioinks -- Cytocompatible Bioink -- Hydrogel Bioinks -- Dentin-Derived Hydrogel Bioink -- Decellularized Extracellular Matrix Materials -- Silk-Based Bioink -- Nanoengineered Ionic-Covalent Entanglement Bioinks -- Living Skin Constructs -- Cell-Laden Scaffolds -- Patient-Specific Bioinks -- Presurgical Simulation -- Models with Integrated Soft Tactile Sensors -- Dental Applications -- Prosthetics -- Fluidic Devices -- 3D Bioprinting of Tissues and Organs -- 3D Bioprinting Techniques -- Pigmented Human Skin Constructs -- Strategies for Tissue Engineering -- Bone Tissue -- Neuroregenerative Treatment -- 3D Tissues/Organs Combined with Microfl uidics -- 3D Microfi brous Constructs -- Biosynthetic Cellulose Implants -- Polysaccharides -- Corneal Transplants -- Hydrogels from Collagen -- Dissolved Cellulose -- Hydrogels from Hyaluronic Acid and Methylcellulose -- Stem Cells -- Autografts -- Drug-Eluting Coronary Stents -- Biomedical Devices -- Soft Somatosensitive Actuators Pharmaceutical Uses -- Drug Release -- Pharmaceutical 3D Printing -- Pharmaceutically Acceptable Amorphous Polymers -- Paracetamol Oral Tablets -- Patient-Specific Liquid Capsules -- Thermolabile Drugs -- Composite Tablets -- Transdermal Drug Delivery -- Chip Platforms for Microarray -- 3D Bioprinting -- Index --Acronyms --Chemicals --General Index.…”
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  13. 13

    Document Image Processing for Scanning and Printing by Safonov, Ilia V., Kurilin, Ilya V., Rychagov, Michael N., Tolstaya, Ekaterina V.

    Published Springer International Publishing : Imprint: Springer, 2019.
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  14. 14

    Additive Manufacturing - Developments in Training and Education

    Published Springer International Publishing : Imprint: Springer, 2019.
    Table of Contents: “…-The use and background for terms and definitions in additive manufacturing -- Professional Training of AM at the European Level -- Case Studies of Using Additive Manufacturing for Prototyping in Design -- Knowledge transfer and standards needs in Additive Manufacturing -- What you need to take into account during your design for Additive Manufacturing -- Continuing education and part-time training on Additive Manufacturing for people in employment -- Additive Manufacturing through Problem Based Learning -- Additive Manufacturing: Instrumental Systems in Research, Education and Service -- Introducing state-of-the-art AM research in Education -- XIII: Measuring the cost of Additive Manufacturing -- Training and Teaching Strategies for Medical Applications of Additive Manufacturing Systems -- IPRs and 3D Printing -- AM validation methods, technology transfer based on case studies -- FoFAM and AM-Motion Initiatives: A strategic framework for additive manufacturing deployment in Europe.…”
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  15. 15

    Mechanics of Additive and Advanced Manufacturing, Volume 8 Proceedings of the 2018 Annual Conference on Experimental and Applied Mechanics /

    Published Springer International Publishing : Imprint: Springer, 2019.
    Table of Contents: “…Chapter1: Structure/Property Behavior of Additively Manufactured (AM) Materials: Opportunities & Challenges -- Chapter2: Fatigue Characterization of 3D-printed Maraging Steel by Infrared Thermography -- Chapter3: Quasi-Static and Dynamic Fracture of Additively Printed ABS Studied using DIC: Role of Build Architecture and Loading Rate -- Chapter4: Compression and Shear Response of 3D Printed Foam Pads -- Chapter5: Mechanical Structure-Property Relationships for 2D Polymers Comprised of Nodes and Bridge Units -- Chapter6: Mechanical Behavior of Additively Manufactured Ti-6Al-4V Following a New Heat Treatment -- Chapter7: Dynamic Thermal Softening Behavior of Additive Materials for Hybrid Manufacturing -- Chapter8: Correlation between Process Parameters and Mechanical Properties in Parts Printed By the Fused Deposition Modeling Process -- Chapter9: Mechanical Characterization of Cellulose Nanofibril Materials made by Additive Manufacturing -- Chapter10: Shock Propagation and Deformation of Additively-Manufactured Polymer Foams with Engineered Porosity -- Chapter11: Mechanical Characterization of Fused Filament Fabrication Polyvinylidene Fluoride Printed (PVDF) Composites -- Chapter12: Influence of an Extreme Environment on the Tensile Mechanical Properties of a 3D Printed Thermoplastic Polymer -- Chapter13: A Framework for Estimating of Mold Performance Using Experimental and Numerical Analysis of Injection Mold Tooling Prototypes -- Chapter14: Effect of Processing Parameters on Interlayer Fracture Toughness of Fused Filament Fabrication Thermoplastic Materials -- Chapter15: Forced-Response Verification of Unique Additive Manufactured Vibration Suppressed Specimens -- Chapter16: Computational and Experimental Characterization of 3D Printed Components by Fused Deposition Modeling -- Chapter17: Linking Thermal History to Mechanical Behavior in Directed Energy Deposited Materials. .…”
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  16. 16

    Mechanics of Additive and Advanced Manufacturing, Volume 9 Proceedings of the 2017 Annual Conference on Experimental and Applied Mechanics /

    Published Springer International Publishing : Imprint: Springer, 2018.
    Table of Contents: “…Chapter 1.Fracture Properties of Additively Manufactured Acrylonitrile-Butadiene-Styrene Materials -- Chapter 2.Complex Modulus Variation by Manipulation of Mechanical Test Method and Print Direction -- Chapter 3.Piezoelectric Inkjet Printing as a Method for the Selective Deposition of Energetic Material -- Chapter 4.A New Heat Transfer Simulation Model for Selective Laser Melting to Estimate the Geometry of Cross Section of Melt Pool -- Chapter 5.Heat Conduction and Geometry Topology Optimization of Support Structure in Laser-based Additive Manufacturing -- Chapter 6.Strain Energy Dissipation Mechanisms in Carbon Nanotube Composites Fabricated by Additive Manufacturing -- Chapter 7.Mechanical Properties of 3-D LENS and PBF Printed Stainless Steel 316L Prototypes -- Chapter 8.Effect of Heat Treatment on Friction Stir Welded Dissimilar Titanium Alloys -- Chapter 9.Effect of Porosity on Thermal Performance of Plastic Injection Molds Based on Experimental and Numerically Derived Material Properties -- Chapter 10.ODS Coating Development Using DED Additive Manufacturing for High Temperature Turbine Components -- Chapter 11.Processing and Characterization of Ti64/AZ31 Multilayered Structure by Roll Bonding -- Chapter 12.Vibration Characteristics of Unit Cell Structures fabricated by Multi-Material Additive Manufacturing -- Chapter 13.Defects, Process Parameters and Signatures for Online Monitoring and Control in Powder-based Additive Manufacturing -- Chapter 14.The Effect of the 3-D Printing Process on the Mechanical Properties of Materials -- Chapter 15.Tool Wear Mechanisms of Phyisical Vapor Deposition (PVD) TiAlN Coated Tools Under Vegetable Oil Based Lubrication.…”
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  17. 17

    A Practical Guide to Design for Additive Manufacturing by Diegel, Olaf, Nordin, Axel, Motte, Damien

    Published Springer Nature Singapore : Imprint: Springer, 2019.
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  18. 18

    Additive Manufacturing of Metals: The Technology, Materials, Design and Production by Yang, Li, Hsu, Keng, Baughman, Brian, Godfrey, Donald, Medina, Francisco, Menon, Mamballykalathil, Wiener, Soeren

    Published Springer International Publishing : Imprint: Springer, 2017.
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  19. 19

    Nutraceutical and Functional Food Processing Technology. by Boye, Joyce I.

    Published Wiley, 2014.
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  20. 20

    Report of the Workshop Predictive Theoretical, Computational and Experimental Approaches for Additive Manufacturing (WAM 2016) by Guo, Xu, Cheng, Gengdong, Liu, Wing-Kam

    Published Springer International Publishing : Imprint: Springer, 2018.
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