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From two-dimensional to three-dimensional structures: A superior thermal-driven actuator with switchable deformation behavior

机译:从二维到三维结构:一个具有可切换变形行为的上热驱动执行器

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摘要

Inspired by origami, 3D structures constructed from 2D structures have increasingly attracted attention, which have potential applications in many fields. Herein, a novel double-layered actuator was fabricated by adding different thermo-responsive thermal expansion microspheres, expanding at low temperature (L-TEMs) and at high temperature (H-TEMs), into different silicone rubber layers. Due to the expansion of L-TEMs and H-TEMs at 120 and 170 degrees C, respectively, the active and passive layers could exchange at different temperatures, showing switchable deformation behavior. Compared with traditional double-layered actuators, the actuator with the switchable active layers is capable of providing additional functionality. The two layers were assembled by crosslinking the silicone rubber at the interface of the two layers, which endows the good stability of the double-layered actuator. The 2D double-layered structures of the actuators could be transformed into complex 3D structures by heating. In addition, the actuation time was shortened by adding 50 phr alumina due to the enhancement of thermal conductivity and the limited increase in Young's modulus. This work could pave a way to the design and preparation to high-performance actuators with multiple functions.
机译:灵感来自折纸,由2D结构构建的3D结构越来越引起了关注,在许多领域具有潜在的应用。这里,通过添加不同的热响应热膨胀微球,在低温(L-TEM)和高温(H-TEM)中膨胀成不同的硅橡胶层来制造新的双层致动器。由于分别在120和170摄氏度下的L-TEM和H-TEM扩展,主动和无源层可以在不同的温度下交换,显示可切换变形行为。与传统的双层致动器相比,具有可切换有源层的致动器能够提供额外的功能。通过将硅橡胶交联在两层的界面上交联组装两层,这赋予双层致动器的良好稳定性。致动器的2D双层结构可以通过加热转换成复杂的3D结构。此外,由于增强导热系数和杨氏模量的有限增加,通过添加50phr氧化铝来缩短致动时间。这项工作可以铺平设计,并准备具有多种功能的高性能执行器。

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