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Magnetic Shape Memory Polymers with Integrated Multifunctional Shape Manipulation

机译:具有集成多功能形状处理的磁性形状记忆聚合物

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摘要

Shape-programmable soft materials that exhibit integrated multifunctional shape manipulations, including reprogrammable, untethered, fast, and reversible shape transformation and locking, are highly desirable for a plethora of applications, including soft robotics, morphing structures, and biomedical devices. Despite recent progress, it remains challenging to achieve multiple shape manipulations in one material system. Here, a novel magnetic shape memory polymer composite is reported to achieve this. The composite consists of two types of magnetic particles in an amorphous shape memory polymer matrix. The matrix softens via magnetic inductive heating of low-coercivity particles, and high-remanence particles with reprogrammable magnetization profiles drive the rapid and reversible shape change under actuation magnetic fields. Once cooled, the actuated shape can be locked. Additionally, varying the particle loadings for heating enables sequential actuation. The integrated multifunctional shape manipulations are further exploited for applications including soft magnetic grippers with large grabbing force, reconfigurable antennas, and sequential logic for computing.
机译:对于包括软机器人,变形结构和生物医学设备在内的多种应用,非常需要具有集成多功能形状处理功能(包括可重编程,无限制,快速和可逆的形状转换和锁定)的形状可编程软材料。尽管有最新进展,但是在一种材料系统中实现多种形状操纵仍然具有挑战性。在此,报道了一种新颖的磁性形状记忆聚合物复合材料以实现此目的。该复合材料由非晶形形状记忆聚合物基体中的两种磁性颗粒组成。基体通过低矫顽力颗粒的磁感应加热而软化,具有可重编程磁化轮廓的高剩磁颗粒在驱动磁场下驱动快速且可逆的形状变化。冷却后,可锁定驱动形状。另外,改变用于加热的颗粒负载使得能够顺序地致动。集成的多功能形状处理技术进一步被开发用于包括具有大抓力的软磁性抓具,可重新配置的天线以及用于计算的顺序逻辑的应用。

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