Mechanics of Composite, Hybrid and Multifunctional Materials, Volume 5

178 H. A. Bruck et al. Acknowledgements This work was sponsored by AFOSR grant FA9550-15-1-0350 with Dr. Byung-Lip “Les” Lee program manager. Opinions expressed are those of the authors and do not necessarily reflect opinions of the sponsors. References 1. Perez-Rosado, A., Philipps, A., Barnett, E., Roberts, L., Gerdes, J., Gupta, S.K., Bruck, H.A.: Compliant multifunctional wing structures for harvesting solar energy”, Proceedings of 19th International Conference on Composite Materials, Montreal, Canada, 1–9 (2013) 2. Perez-Rosado, A., Philipps, A., Barnett, E., Roberts, L., Gerdes, J., Gupta, S.K., Bruck, H.A.: Compliant multifunctional wing structures for flapping wing MAVs. Exp. Mech. Compos. Hybrid Multifunct. Mater. 6, 77–83 (2014) 3. Perez-Rosado, A., Greisinger, A.G.J., Bruck, H.A., Gupta, S.K.: Performance characterization of multifunctional wings with integrated solar cells for unmanned Ariel vehicles, Proceedings of the ASME 2014 International Design and Engineering Technical Conferences & Computers and Information in Engineering Conference, 1–11 (2014) 4. Perez-Rosado, A, Bruck, H.A., Gupta, S.K.: Enhancing the design of solar-powered flapping wing air vehicles using multifunctional structural components. ASME Mechanism and Robotics Conference, Boston, MA, (August 2015) 5. Perez-Rosado, A., Gelhar, R.D., Nolen, S., Gupta, S.K., Bruck, H.A.: Design, fabrication, and characterization of multifunctional wings to harvest solar energy in flapping wing air vehicles. Smart Mater. Struct. 24, 065042 (2015) 6. Perez-Rosado, A., Bruck, H.A., Gupta, S.K.: Integrating solar cells into flapping wing air vehicles for enhanced flight endurance. J. Mech. Robot. Trans. ASME. (2015). https://doi.org/10.1115/1.4032411 7. Holness, A., Steins, E., Bruck, H.A., Peckerar, M., Gupta, S.K.: Performance characterization of multifunctional wings with integrated flexible batteries for flapping wing unmanned aerial vehicles. ASME 2016 International Design Engineering Technical and Computers and Information in Engineering Conference, Charlotte, NC, 1–10 (2016) 8. Holness, A.E., Perez-Rosado, A., Bruck, H.A., Peckerar, M., Gupta, S.K.: Multifunctional wings with flexible batteries and solar cells for robotic birds. Proceedings of the 2016 SEM Annual Conference and Exposition, Orlando, FL, 1–8 (2016) 9. Holness, A.E., Bruck, H.A., Gupta, S.K.: Chapter 7. Flexible energy harvesting/storage structures for flapping wing air vehicles. In: Fracture, Fatigue, Failure and Damage Evolution Proceedings of the Society for Experimental Mechanics Series, pp. 35–45 (2017). https://doi.org/10.1007/978-3-319-62831-8_6 10. Dapino, M.J.: Smart structure integration through ultrasonic additive manufacturing. Conference: 7th Annual ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems (SMASIS), Newport, RI, ASME, New York, NY (2014) 11. Duro-Royo, J., Mogas-Soldevila, L., Oxman, N.: Flow-based fabrication: An integrated computational workflow for design and digital additive manufacturing of multifunctional heterogeneously structured objects. Comput. Aided Des. 69, 143–154 (2015) 12. Kaipa, K.N., Shriyam, S., Kumbla, N.B., Gupta, S.K.: Resolving occlusions through simple extraction motions in robotic bin picking. ASME Manufacturing Science and Engineering Conference, Blacksburg, USA, ASME, New York, NY (2016). doi:https://doi.org/10.1115/MSEC2016-8661 13. Keum, H., Kim, S.: Micro-masonry for 3D additive micromanufacturing. J. Visualized Exp. (90), Article Number: e51974 (2014) 14. Khoda, A. K. M. B., Ozbolat, I.T., Koc, B.: Spatially multi-functional porous tissue scaffold. 3rd ECCOMAS Thematic Conference on Tissue Engineering (ICTE), Leiria, Portugal (2013) 15. Kimionis, J., Isakov, M., Koh, B.S., et al.: 3D-printed origami packaging with inkjet-printed antennas for RF harvesting sensors. IEEE Trans. Microw. Theory Tech. 63(12), 4521–4532 (2015) 16. Kirleis, M.A., Simonson, D., Charipar, N.A., et al.: Laser embedding electronics on 3D printed objects. Conference on Laser 3D Manufacturing, San Francisco, CA (2014). doi: 10.1117/12.2044222 17. Li, J., Monaghan, T., Masurtschak, S., et al.: Exploring the mechanical strength of additively manufactured metal structures with embedded electrical materials. Mater. Sci. Eng. A Struct. Mater. Properties Microstructure Process. 639, 474–481 (2015) 18. Mathew, J., Havermann, D., Polyzos, D., et al.: SS316 structure fabricated by selective laser melting and integrated with strain isolated optical fiber high temperature sensor. 24th International Conference on Optical Fibre Sensors (OFS) Location: Curitiba, Brazil (2015) 19. Meisel, N.A., Elliott, A.M., Williams, C.B.: A procedure for creating actuated joints via embedding shape memory alloys in PolyJet 3D printing. J. Intell. Mater. Syst. Struct. 26(12), 1498–1512 (2015) 20. Pa, P., Larimore, Z., Parsons, P., et al.: Multi-material additive manufacturing of embedded low-profile antennas. Electron. Lett. 51(20), 1561– 1562 (2015) 21. Pal, D., Patil, N., Zeng, K., et al.: An efficient multi-scale simulation architecture for the prediction of performance metrics of parts fabricated using additive manufacturing. Metallurgical Mater. Trans. A Phys. Metallurgy Mater. Sci. 46A(9), 3852–3863 (2015) 22. Panesar, A., Brackett, D., Ashcroft, I., et al.: Design framework for multifunctional additive manufacturing: Placement and routing of threedimensional printed circuit volumes. J. Mech. Des. 137(11), Article Number: 111414 (2015) 23. Vatani, M., Lu, Y., Engeberg, E.D., et al.: Combined 3D printing technologies and material for fabrication of tactile sensors. Int. J. Precision Eng. Manufacturing. 16(7), 1375–1383 (2015) 24. Velasquez-Garcia, L.F.: SLA 3-D printed arrays of miniaturized, internally fed, polymer electrospray emitters. J. Microelectromechanical Syst. 24(6), 2117–2127 (2015) 25. Calignano, F., Tommasi, T., Manfredi, D., et al.: Additive manufacturing of a microbial fuel cell-a detailed study. Sci. Rep. 5, Article Number: 17373 (2015) 26. Cappelleri, D., Efthymiou, D., Goswami, A., et al.: Towards mobile microrobot swarms for additive micromanufacturing. Int. J. Adv. Robot. Syst. 11, 150 (2014) 27. Carrico, J.D., Traeden, N.W., Aureli, M., et al.: Fused filament 3D printing of ionic polymer-metal composites (IPMCs). Smart Mater. Struct. 24(12), 125021 (2015)

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