Power-efficient low-temperature woven coiled fibre actuator for wearable applications
نویسندگان
چکیده
A fibre actuator that generates a large strain with high specific power represents a promising strategy to develop novel wearable devices and robotics. We propose a new coiled-fibre actuator based on highly drawn, hard linear low-density polyethylene (LLDPE) fibres. Driven by resistance heating, the actuator can be operated at temperatures as low as 60 °C and uses only 20% of the power consumed by previously coiled fibre actuators when generating 20 MPa of stress at 10% strain. In this temperature range, 1600 W kg-1 of specific work (8 times that of a skeletal muscle) at 69 MPa of tensile stress (230 times that of a skeletal muscle) with a work efficiency of 2% is achieved. The actuator generates strain as high as 23% at 90 °C. Given the low driving temperature, the actuator can be combined with common fabrics or stretchable conductive elastomers without thermal degradation, allowing for easy use in wearable systems. Nanostructural analysis implies that the lamellar crystals in drawn LLDPE fibres are weakly bridged with each other, which allows for easy deformation into compact helical shapes via twisting and the generation of large strain with high work efficiency.
منابع مشابه
An Actuator Control Unit for Safety-Critical Mechatronic Applications with Embedded Energy Storage Backup
This paper presents an actuator control unit (ACU) with a 450-J embedded energy storage backup to face safety critical mechatronic applications. The idea is to ensure full operation of electric actuators, even in the case of battery failure, by using supercapacitors as a local energy tank. Thanks to integrated switching converter circuitry, the supercapacitors provide the required voltage and c...
متن کاملWearable Wireless Networks for Internet of Humans: Trends and Challenges
Copyright: © 2015 Mahtab Alam M, et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Interconnected internet of humans (IoH) is a new paradigm in which wearable wireless networks (WWN) are emerging as a key...
متن کاملDetecting Hazardous Gases in Emergency Disaster Scenarios using Wearable Sensors
This research arose through involvement in a joint European Union-funded FP6 project called Proetex (www.proetex.org). The aim of the project is to develop textileand fibre-based integrated wearable sensor systems. Such systems will improve the safety and efficiency of emergency personnel by monitoring the health status of the operator and the surrounding environment for potential risk sources....
متن کاملMonitoring of Vital Signs with Flexible and Wearable Medical Devices.
Advances in wireless technologies, low-power electronics, the internet of things, and in the domain of connected health are driving innovations in wearable medical devices at a tremendous pace. Wearable sensor systems composed of flexible and stretchable materials have the potential to better interface to the human skin, whereas silicon-based electronics are extremely efficient in sensor data p...
متن کاملCharacterization of Flexible Copolymer Optical Fibers for Force Sensing Applications
In this paper, different polymer optical fibres for applications in force sensing systems in textile fabrics are reported. The proposed method is based on the deflection of the light in fibre waveguides. Applying a force on the fibre changes the geometry and affects the wave guiding properties and hence induces light loss in the optical fibre. Fibres out of three different elastic and transpare...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره 6 شماره
صفحات -
تاریخ انتشار 2016