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用于软体机器人皮肤的高拉伸和耐用导电针织面料。

Highly Stretchable and Durable Conductive Knitted Fabrics for the Skins of Soft Robots.

机构信息

College of Mechanical Engineering, Donghua University, Shanghai, China.

出版信息

Soft Robot. 2019 Dec;6(6):687-700. doi: 10.1089/soro.2018.0048. Epub 2019 Jun 19.

Abstract

Stretchability and durability are imperative features for many electronic skins of soft robots, particularly those involving high deformability, cyclic gaits, confined space traverse, rough terrain navigation, and frequent human-robot interaction. This article reports on the design, fabrication, and characterization of highly stretchable and durable interconnections based on conductive knitted fabrics for the skins of soft robots. The core-spun yarn containing an ultrafine metal wire (core diameter: 50 μm) fabricated using a newly developed vortex spinning technology is employed as the conductive trace and is integrated into rib-knitted fabrics together with two types of elastic composite yarns-an elastic filament yarn and an elastic vortex core-spun yarn, respectively. Owing to the structures and properties of the yarns and fabrics, the electrical resistance of the fabrics remains stable at a maximum strain of 425% in unidirectional tensile test and a maximum average membrane strain of 300% in three-dimensional deformation. The fabrics exhibit a fatigue life greater than 1,200,000 loading cycles at 20% tensile strain and 10,000 abrasion cycles. Application of the fabrics is demonstrated by covering an origami paper-fabric composite-based soft extension actuator with the fabric. Performance of the developed conductive knitted fabrics indicates that they have potential to find application in the electronic skins of soft robots.

摘要

拉伸性和耐用性对于许多软机器人的电子皮肤至关重要,特别是对于那些涉及高可变形性、循环步态、受限空间穿越、崎岖地形导航和频繁人机交互的电子皮肤。本文报道了一种基于导电针织织物的高度可拉伸和耐用的软机器人电子皮肤连接件的设计、制造和特性研究。采用一种新开发的旋流纺纱技术制备的含超细金属丝(芯径:50μm)的复合芯纱作为导电纱线,并与两种弹性复合纱线——弹性长丝纱线和弹性旋流复合芯纱线一起集成到罗纹针织织物中。由于纱线和织物的结构和性能,在单向拉伸测试中,织物的电阻在最大应变 425%时保持稳定,在三维变形中最大平均膜应变 300%时保持稳定。在 20%拉伸应变和 10,000 次磨损循环下,织物的疲劳寿命大于 1,200,000 次循环。通过用织物覆盖折纸纸-织物复合材料软延伸驱动器来展示织物的应用。所开发的导电针织织物的性能表明,它们具有在软机器人电子皮肤中应用的潜力。

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