Kim Choong Sun, Oh Ock Kyun, Choi Hyeongdo, Kim Yong Jun, Lee Gyu Soup, Kim Hyun Jung, Majidi Carmel, Kim Seung-Won, Cho Byung Jin
School of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Republic of Korea.
Tegway Co. Ltd., Daejeon, Republic of Korea.
Soft Robot. 2021 Dec;8(6):662-672. doi: 10.1089/soro.2020.0080. Epub 2020 Oct 23.
Dynamic stiffness tuning is a promising approach for shape reconfigurable systems that must adapt their flexibility in response to changing operational requirements. Among stiffness tuning technologies, phase change materials are particularly promising because they are size scalable and can be powered using portable electronics. However, the long transition time required for phase change is a great limitation for most applications. In this study, we address this by introducing a rapidly responsive variable rigidity module with a low melting point material and flexible thermoelectric device (f-TED). The f-TED can conduct bidirectional temperature control; thereby, both heating and cooling were accomplished in a single device. By performing local cooling, the phase transition time from liquid to solid is reduced by 77%. The module in its rigid state shows 14.7 × higher bending stiffness than in the soft state. The results can contribute to greatly widening the application of phase transition materials for variable rigidity.
动态刚度调谐是形状可重构系统的一种很有前景的方法,这类系统必须根据不断变化的运行要求来调整其灵活性。在刚度调谐技术中,相变材料尤其具有前景,因为它们尺寸可扩展,并且可以使用便携式电子设备供电。然而,相变所需的较长转变时间对大多数应用来说是一个很大的限制。在本研究中,我们通过引入一种具有低熔点材料和柔性热电器件(f-TED)的快速响应可变刚度模块来解决这一问题。f-TED可以进行双向温度控制;因此,加热和冷却都可以在单个器件中完成。通过进行局部冷却,从液体到固体的相变时间减少了77%。该模块在刚性状态下的弯曲刚度比在柔软状态下高14.7倍。这些结果有助于极大地拓宽相变材料在可变刚度方面的应用。