arXiv:2603.04352cs.ROcond-mat.mtrl-sci2026-03被引 1

新型硅胶材料让软体机器人在平流层极端环境运行成功。

A Soft Robotic Demonstration in the Stratosphere

  • 用紫外光催化交联硅胶,提升材料韧性与电机械性能。
  • 在-40℃至120℃及近真空下表现优于现有丙烯酸和硅胶材料。
  • 两次高空气球任务验证其在23.6公里高空自主控制抓取的可行性。

面向太空及其他极端环境的机器需兼具韧性与适应性。软体机器人虽具高适应性,但多数难以承受平流层的温压极限。介电弹性体执行器(DEA)作为固态柔性电容器,可将电能转为机械功,但其弹性体韧性限制了工作范围。本文提出一种以三甲基(甲基环戊二烯基)铂(IV)为催化剂,通过紫外光诱导氢硅烷与乙烯基反应形成碳碳键的交联机制,实现快速紫外固化,并显著提升介电弹性体执行器的电机械性能。实验表明,该材料在-40℃和120℃以及近真空条件下,性能优于当前最先进的丙烯酸与硅胶体系。基于该新型硅胶的全自主控制系统集成于高空气球载荷中,完成两次平流层任务,在23.6公里高度、<0.05 atm压力和-55℃环境下成功演示了软体机器人抓取功能。该化学体系可拓展用于解决硅胶的粘附性与增材制造等挑战。

原文摘要 · Abstract (English)

Machines designed for operation in Space, as well as other extreme environments, need to be both resilient and adaptable when mission parameters change. Soft robots offer advantages in adaptability, but most lack resilience to the pressure and temperature extremes found as close as the Stratosphere. Dielectric elastomer actuators overcome some of those limitations when built as solid state compliant capacitors capable of converting electrical energy into mechanical work, but the elastomer resilience limits the device's operating window. Here we present a crosslinking mechanism for silicone elastomers under ultraviolet light using trimethyl(methylcyclopentadienyl)platinum(IV) as a catalyst to react hydrosilane to vinyl groups. The formation of carbon-carbon bonds enables fast processing under UV light and exceptional electro-mechanical performance in dielectric elastomer actuators. The material resilience advantage is demonstrated in controlled experiments at -40° and 120° C, as well as near vacuum, in comparison with state-of-the-art acrylic and silicone chemistries. Fully autonomous systems controlling grippers made with the novel silicone were integrated into payloads for high altitude balloon testing. Two stratospheric balloon missions were carried out and demonstrated DEAs as a viable soft robotic technology under space-like conditions (as high as 23.6 km elevation, at <0.05 atm and -55° C). The combinations of chemical building blocks and catalyst can be further expanded to address other challenges for silicones, including adhesion and additive manufacturing.

软体机器人平流层介电弹性体紫外交联

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