This paper presents the design and assessment of a fabric-based soft pneumatic actuator with low pressurization requirements for actuation making it suitable for upper extremity assistive devices for infants. The goal is to support shoulder abduction and adduction without prohibiting motion in other planes or obstructing elbow joint motion. First, the performance of a family of actuator designs with internal air cells is explored via simulation. The actuators are parameterized by the number of cells and their width. Physically viable actuator variants identified through the simulation are further tested via hardware experiments. Two designs are selected and tested on a custom-built physical model based on an infant's body anthropometrics. Comparisons between force exerted to lift the arm, movement smoothness, path length and maximum shoulder angle reached inform which design is better suited for its use as an actuator for pediatric wearable assistive devices, along with other insights for future work.
翻译:本文介绍一个基于织物的软气动动动器的设计和评估,该软气动动动器的加压要求低,使其适合婴儿的上外部辅助装置,目的是支持肩部绑架和上吊,不禁止在其他飞机上运动或阻碍肘部联合运动。首先,通过模拟探索一个带有内部空气电池的活动器设计家庭的表现,根据细胞数量和宽度进行参数参数测量。通过模拟确定的实际可行的动动能变异器通过硬件试验进一步测试。选择了两个设计,并用一个基于婴儿身体人体测量的定制物理模型进行了测试。比较了为提升手臂、运动平滑性、路径长度和所达到的最大肩角而施加的强度,这些设计更适合用作可耗氧性辅助装置的动器,以及未来工作的其他见解。