外骨骼
攀登
离合器
机制(生物学)
与踏步机
膝关节
接头(建筑物)
扭矩
工作(物理)
楼梯
工程类
力矩(物理)
模拟
计算机科学
结构工程
汽车工程
物理医学与康复
机械工程
经典力学
热力学
认识论
物理
哲学
外科
医学
作者
Jianfeng Ma,Decheng Sun
标识
DOI:10.1177/09544119221140752
摘要
In this paper, a passive exoskeleton is developed to strengthen the motion ability of the knee joint bearing four times the body weight during climbing mountains or stairs. With the novel design, an inverted cam mechanism is designed to transform foot-strike energy to joint positive work of the knee joint, a type-selection mechanism for spring steel bars, and further their application model based on the linear elastic theory of metal materials are established, and to attach the exoskeleton assistance torque to the energy consumption characteristics of the knee joint, the moment-arm variation and the cam profile of the inverted cam mechanism are investigated. In addition, this paper proposes the potential link between the utilization of foot-strike energy and discrete power assistance for the knee joint, which creates simplifying conditions for exoskeleton designs with clutch mechanisms. Finally, to verify the effectiveness of the exoskeleton design, two exoskeleton prototypes were used for respiratory metabolism tests, in which 75% of the test results obtained an average power-assistant efficiency of 14.15%.
科研通智能强力驱动
Strongly Powered by AbleSci AI