Smart Materials in Additive Manufacturing, Volume 1 provides readers with an overview of the current smart materials widely in use and the techniques for additively manufacturing them. It demonstrates the principles developed for 4D printing in a way that is useful for students, early career researchers, and professionals. Topics covered include modeling and fabrication of 4D printed materials such as dielectric elastomer soft robots, low-voltage electroactive polymers, and stimuli-responsive hydrogels. 4D printing of light-responsive structures, gels and soft materials, and natural fiber composites are also discussed, as is origami-inspired 4D printing, 4D microprinting, and reversible 4D printing. 4D bioprinting and related biomedical applications are outlined as well as functionalized 4D printed sensor systems.
Key Features: * Discusses 4D printed shape memory polymers, shape memory alloys, natural fibers, and hydrogels * Covers various types of stimuli, fabrication techniques, multi-physics modeling, and control strategies for 4D printing * Explores 4D printing of dielectric elastomers, liquid crystal elastomers, and electroactive polymers
Please Note: This is an On Demand product, delivery may take up to 11 working days after payment has been received.
Table of Contents
1. 4D printing principles and manufacturing 2. 4D-printed dielectric elastomer soft robots: Modeling and fabrications 3. 4D-printed light-responsive structures 4. 4D-printed low-voltage electroactive polymers modeling and fabrication 5. 4D-printed stimuli-responsive hydrogels modeling and fabrication 6. 4D bioprinting: Fabrication approaches and biomedical applications 7. 4D Microprinting 8. 4D printing of gels and soft materials 9. 4D printing of natural fiber composite 10. Functionalized 4D-printed sensor systems 11. Origami-inspired 4D printing 12. Reversible 4D printing 13. Roadmapping 4D printing through disruptive ideas