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3D printable self-sensing magnetorheological elastomer
Costi, L., Georgopoulou, A., Mondal, S., Iida, F., & Clemens, F. (2024). 3D printable self-sensing magnetorheological elastomer. Macromolecular Materials and Engineering, 309(2), 2300294 (14 pp.). https://doi.org/10.1002/mame.202300294
Magnetoactive behavior and temperature rise in soft ferromagnetic and ferrimagnetic elastomeric membranes
Mondal, S., Orkisz, P., Sapiński, B., Graule, T., Spolenak, R., & Clemens, F. (2024). Magnetoactive behavior and temperature rise in soft ferromagnetic and ferrimagnetic elastomeric membranes. In C. Binetruy & F. Jacquemin (Eds.), Vol. 6. Multifunctional and smart composites. Proceedings of the 21st European conference on composite materials (pp. 340-349). European Society for Composite Materials (ESCM); Ecole Centrale de Nantes.
Soft magnetoactive morphing structures with self-sensing properties, using multi-material extrusion additive manufacturing
Mondal, S., Kwaśniowski, M., Georgopoulou, A., Sapiński, B., Graule, T., & Clemens, F. (2024). Soft magnetoactive morphing structures with self-sensing properties, using multi-material extrusion additive manufacturing. In C. Klahn, M. Meboldt, & J. Ferchow (Eds.), Springer tracts in additive manufacturing. Industrializing additive manufacturing. Proceedings of AMPA2023 (pp. 365-386). https://doi.org/10.1007/978-3-031-42983-5_25
Expanding the research capabilities of an experimental setup for testing magnetoactive materials
Orkisz, P., Mondal, S., Clemens, F., Graule, T., & Sapiński, B. (2024). Expanding the research capabilities of an experimental setup for testing magnetoactive materials. In A. Kot (Ed.), International Carpathian Control Conference (ICCC). Proceedings of the 25th International Carpathian Control Conference (ICCC) (pp. 1-5). https://doi.org/10.1109/ICCC62069.2024.10569720
Magnetorheological behavior of thermoplastic elastomeric honeycomb structures fabricated by additive manufacturing
Mondal, S., Katzschmann, R., & Clemens, F. (2023). Magnetorheological behavior of thermoplastic elastomeric honeycomb structures fabricated by additive manufacturing. Composites Part B: Engineering, 252, 110498 (12 pp.). https://doi.org/10.1016/j.compositesb.2023.110498
Case study of a rapid prototyping method for optimizing soft gripper structures with integrated piezoresistive sensors
Georgopoulou, A., Eckey, L. M., Mondal, S., & Clemens, F. (2022). Case study of a rapid prototyping method for optimizing soft gripper structures with integrated piezoresistive sensors. In 2022 IEEE 5th international conference on soft robotics (RoboSoft 2022) (pp. 539-544). https://doi.org/10.1109/RoboSoft54090.2022.9762202