Jang Sung-Hwan, Na Seon-Hong, Park Yong-Lae
Robotics Institute, School of Computer Science, Carnegie Mellon University, Pittsburgh, PA 14213, USA.
Novel Aerospace Materials, Faculty of Aerospace Engineering, Delft University of Technology, Kluyverweg 1, Delft 2629 HS, The Netherlands.
Materials (Basel). 2017 Jun 12;10(6):646. doi: 10.3390/ma10060646.
This article presents a soft pneumatic bending actuator using a magnetically assisted bilayer composite composed of silicone polymer and ferromagnetic particles. Bilayer composites were fabricated by mixing ferromagnetic particles to a prepolymer state of silicone in a mold and asymmetrically distributed them by applying a strong non-uniform magnetic field to one side of the mold during the curing process. The biased magnetic field induces sedimentation of the ferromagnetic particles toward one side of the structure. The nonhomogeneous distribution of the particles induces bending of the structure when inflated, as a result of asymmetric stiffness of the composite. The bilayer composites were then characterized with a scanning electron microscopy and thermogravimetric analysis. The bending performance and the axial expansion of the actuator were discussed for manipulation applications in soft robotics and bioengineering. The magnetically assisted manufacturing process for the soft bending actuator is a promising technique for various applications in soft robotics.
本文介绍了一种软质气动弯曲致动器,它使用了由硅聚合物和铁磁颗粒组成的磁辅助双层复合材料。双层复合材料是通过将铁磁颗粒混入硅酮的预聚物状态并在模具中进行混合,然后在固化过程中对模具的一侧施加强非均匀磁场,使铁磁颗粒不对称分布而制成的。偏置磁场会导致铁磁颗粒向结构的一侧沉降。当复合材料充气时,颗粒的不均匀分布会由于复合材料的不对称刚度而导致结构弯曲。然后,通过扫描电子显微镜和热重分析对双层复合材料进行了表征。讨论了该致动器在软机器人技术和生物工程中的操作应用中的弯曲性能和轴向膨胀。软弯曲致动器的磁辅助制造工艺是一种在软机器人技术中具有多种应用前景的技术。