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Hybrid carbon fiber-textile compliant force sensors for high-load sensing in soft exosuits

机译:符合碳纤维纺织标准的混合力传感器,用于软外套的高负荷传感

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Wearable robotic systems which aid or enhance human performance are the subject of substantial ongoing research efforts. Soft exosuits to assist with walking represent one class of system that leverage textiles and apparel to provide a lightweight and nonrestrictive means to interface to the lower extremity and apply assistive joint torques via a cable that applies a force across a biological joint. Current embodiments of the soft exosuit use off-the-shelf load cells attached to the distal end of a Bowden cable to measure and control the delivered force. As these systems evolve, we envision replacing all rigid components with compliant, textile-based components. Here we present a new force sensing concept suitable for exosuit applications. The approach is based on micro-machined carbon fiber composite structures encapsulated in elastomer materials as the transducer element, and high-strength, stiff textiles as the load bearing element. The transduction mechanism uses the Poisson effect in the encapsulating elastomer to create electrical contact between the carbon fiber structures. This method allows the sensor to be sensitive in tension while remaining insensitive to bending deformation. We fabricate a prototype sensor capable of detected forces up to 300 N, yet weighing just 2.15 g. The compliant nature of the materials used in fabrication allow the sensor to be flexible. The sensor output is qualitatively very repeatable, yet exhibits moderate drift at peak load. However this drift begins to stabilize over the test duration. These preliminary results demonstrate the promising potential of this sensor technology for soft exosuit systems.
机译:辅助或增强人类性能的可穿戴机器人系统是正在进行的大量研究工作的主题。柔软的外衣可以辅助行走,这是一类系统,该系统利用纺织品和服装提供轻巧且不受限制的方式来与下肢对接,并通过在生物关节上施加力的电缆施加辅助关节扭矩。软外套的当前实施例使用附接到鲍登缆线的远端的现成的测力传感器来测量和控制所传递的力。随着这些系统的发展,我们设想将所有刚性组件替换为柔顺的,基于纺织品的组件。在这里,我们提出了一种适合外装应用的新型力感测概念。该方法基于封装在弹性体材料中的微加工碳纤维复合结构作为换能器元件,以及高强度,坚硬的纺织品作为承载元件。转导机制在包封的弹性体中使用泊松效应,以在碳纤维结构之间建立电接触。这种方法使传感器对张力敏感,而对弯曲变形不敏感。我们制造了一个原型传感器,能够检测最大300 N的力,而重量仅为2.15 g。用于制造的材料的顺应性使传感器变得灵活。从本质上讲,传感器的输出具有很高的可重复性,但在峰值负载下仍表现出中等的漂移。但是,此漂移在测试期间开始趋于稳定。这些初步结果证明了该传感器技术在软外衣系统中的潜在潜力。

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