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Coupled magneto-mechanical growth in hyperelastic materials: Surface patterns modulation and shape control in bio-inspired structures (2025)
Journal Article
Li, Z., Wang, Y., Wang, Z., Kadapa, C., Hossain, M., Yao, X., & Wang, J. (2025). Coupled magneto-mechanical growth in hyperelastic materials: Surface patterns modulation and shape control in bio-inspired structures. Journal of the Mechanics and Physics of Solids, 200, Article 106089. https://doi.org/10.1016/j.jmps.2025.106089

Magneto-mechanical coupling in the growth of soft materials presents challenges due to the complex interactions between magnetic fields, mechanical forces, and growth-induced deformations. While growth modeling has been extensively studied, integrati... Read More about Coupled magneto-mechanical growth in hyperelastic materials: Surface patterns modulation and shape control in bio-inspired structures.

Recent advances in magneto-active polymers: Experiments, modelling and simulations (2025)
Book Chapter
Hossain, M., Bastola, A., Moreno-Mateos, M., Gonzalez, D., & Kadapa, C. (2025). Recent advances in magneto-active polymers: Experiments, modelling and simulations. In Constitutive Models for Rubbers XIII (25-27). CRC Press. https://doi.org/10.1201/9781003516880-3

The last decade has witnessed the emergence of magneto-active polymers (MAPs) as one of the most advanced multi-functional soft composites. An MAP consists of a soft elastomeric matrix filled with micron- or nano-sized magnetisable rigid particles. T... Read More about Recent advances in magneto-active polymers: Experiments, modelling and simulations.