Design and biomechanical analysis of a self-force source power-assisted knee orthotics actuated by liquid spring

A micro silicone oil liquid spring was designed and manufactured in this article. The performance of the liquid spring was studied by simulation analysis and mechanical test. A self-force source power-assisted knee orthosis was designed based on the liquid spring. This power-assisted knee orthosis c...

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Veröffentlicht in:Sheng wu yi xue gong cheng xue za zhi 2022-12, Vol.39 (6), p.1199
Hauptverfasser: Zhang, Xuan, Feng, Shuo, Chen, Zhenxian, Zhang, Jing, Jin, Zhongmin
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Sprache:chi
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Zusammenfassung:A micro silicone oil liquid spring was designed and manufactured in this article. The performance of the liquid spring was studied by simulation analysis and mechanical test. A self-force source power-assisted knee orthosis was designed based on the liquid spring. This power-assisted knee orthosis can convert the kinetic energy of knee flexion into the elastic potential energy of liquid spring for storage, and release elastic potential energy to generate assisted torque which drives the knee joint for extension. The results showed that the average maximum reset force of the liquid spring was 1 240 N, and the average maximum assisted torque for the knee joint was 29.8 N·m. A musculoskeletal multibody dynamic model was used to analyze the biomechanical effect of the knee orthosis on the joint during knee bending (90°knee flexion). The results showed that the power-assisted knee orthosis could effectively reduce the biomechanical load of the knee joint for the user with a body weight of 80 kg. The maximum forces
ISSN:1001-5515
DOI:10.7507/1001-5515.202206021