Hill Parker W, Wolbrecht Eric T, Perry Joel C
IEEE Int Conf Rehabil Robot. 2019 Jun;2019:311-316. doi: 10.1109/ICORR.2019.8779422.
Stroke is one of the leading causes of impairment in the world. Many of those who have suffered a stroke experience long-term loss of upper-limb function as a result. BLUE SABINO is an exoskeleton device being developed at the University of Idaho to help assess these patients and aid in their rehabilitation. One of the central design challenges with exoskeletons is limiting the overall weight of the device. Motors used in actuation of these devices are often oversized to allow gravity balancing of the device and user and the creation of torques to facilitate patient movements. If the torques required for gravity balancing are achieved through elastic elements, the motor and other upstream components can be lighter, potentially greatly reducing the overall weight of the device. In this paper, constant-force springs may provide an effective method of generating a constant offsetting torque to compensate for gravity. In experimental testing of multiple mounting configurations of C-shaped constant-force springs (single, back-to-back, double-wrapped), the force output fluctuated less than 8.6% over 180° of wrapping, with friction values below 2.6%, validating the viability of constant-force springs for this application. The results suggest the back-to-back configuration provides a simpler implementation with better force consistency while the double-wrapped configuration adds less friction to the system.
中风是全球导致身体机能受损的主要原因之一。因此,许多中风患者会长期丧失上肢功能。“蓝色萨比诺”是爱达荷大学正在研发的一种外骨骼装置,用于帮助评估这些患者并辅助他们进行康复治疗。外骨骼设计面临的核心挑战之一是限制装置的整体重量。这些装置在驱动时使用的电机通常尺寸过大,以便实现装置和使用者的重力平衡,并产生扭矩以促进患者运动。如果通过弹性元件实现重力平衡所需的扭矩,电机和其他上游部件就可以更轻,从而有可能大幅降低装置的整体重量。在本文中,恒力弹簧可能提供一种产生恒定抵消扭矩以补偿重力的有效方法。在对C形恒力弹簧的多种安装配置(单根、背对背、双绕)进行的实验测试中,在180°的缠绕范围内,力输出波动小于8.6%,摩擦值低于2.6%,验证了恒力弹簧在该应用中的可行性。结果表明,背对背配置提供了一种更简单的实现方式,力的一致性更好,而双绕配置给系统增加的摩擦力更小。