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用于上肢假肢的介电弹性体致动器:挑战与机遇

Dielectric elastomers as actuators for upper limb prosthetics: challenges and opportunities.

作者信息

Biddiss Elaine, Chau Tom

机构信息

Bloorview Research Institute, 150 Kilgour Road, Toronto, Ont. M4G1R8, Canada.

出版信息

Med Eng Phys. 2008 May;30(4):403-18. doi: 10.1016/j.medengphy.2007.05.011. Epub 2007 Jul 13.

Abstract

Recent research has indicated that consumers of upper limb prostheses desire lighter-weight, anthropomorphic devices. The potential of dielectric elastomer (DE) actuators to better meet the design priorities of prosthesis users is explored. Current challenges are critically reviewed with respect to (1) durability, (2) precision control, (3) energy consumption, and (4) anthropomorphic implementation. The key points arising from the literature review are illustrated with empirical examples of the strain performance and durability of one of the most popular DEs, VHB 4910. Practical application of DE actuators in powered upper extremity prosthetics is at present impeded by poor durability and susceptibility to air-borne contaminants, unreliable control owing to viscoelasticity, hysteresis, stress relaxation and creep mechanisms, high voltage requirements, and insufficient stress and strain performance within the confines of anthropomorphic size, weight, and function. Our review suggests that the implementation of DE actuators in powered upper extremity prosthetics is not feasible at present but worthy of reevaluation as the materials advance.

摘要

近期研究表明,上肢假肢使用者希望使用更轻便、仿人形的设备。本文探讨了介电弹性体(DE)致动器在更好地满足假肢使用者设计优先级方面的潜力。针对(1)耐久性、(2)精确控制、(3)能量消耗和(4)仿人形实现等方面,对当前面临的挑战进行了批判性审视。通过一种最常用的DE材料VHB 4910的应变性能和耐久性的实证例子,阐述了文献综述中出现的关键点。目前,DE致动器在动力上肢假肢中的实际应用受到以下因素的阻碍:耐久性差、易受空气中污染物影响、由于粘弹性、滞后、应力松弛和蠕变机制导致的控制不可靠、高电压要求,以及在仿人形尺寸、重量和功能范围内应力和应变性能不足。我们的综述表明,目前DE致动器在动力上肢假肢中的应用不可行,但随着材料的进步值得重新评估。

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