首页> 外文期刊>Advances in Mechanical Engineering >A lightweight shoulder prosthesis with antagonistic impact-absorbing hybrid actuation for bimanual activities of daily living:
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A lightweight shoulder prosthesis with antagonistic impact-absorbing hybrid actuation for bimanual activities of daily living:

机译:轻巧的肩关节假体,具有对抗性冲击吸收混合致动,可用于日常生活的双手活动:

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In developing a shoulder prosthesis, in addition to appropriate payload and range of motion under the constraints of weight and shape, impact absorption is very important for safe use. Hybridization of two different actuators (pneumatic elastic actuators with the features of lightness and intrinsic visco-elasticity, and servo motors that have stable torque and a large range of motion in combination with an antagonistic mechanism) was employed to achieve the development of the shoulder prosthesis. A two-link, two-degree-of-freedom arm was used to test the different hybridization configurations in order to investigate the impact absorption. A dynamic simulation platform based on four bimanual activities of daily living was established to obtain the required range of motion and torque for joints of a two-link, four-degree-of-freedom arm. The number of pneumatic elastic actuators required and the dimension of the antagonistic mechanism mechanical structures were optimized using the dynamic simulation platform...
机译:在开发肩部假体时,除了在重量和形状的约束下适当的有效载荷和运动范围外,冲击吸收对于安全使用也非常重要。两种不同的执行器(具有轻便和固有粘弹性的气动弹性执行器,以及具有稳定扭矩和大运动范围的伺服电机以及对抗性机械装置)的混合使用实现了肩部假体的发展。为了研究冲击吸收,使用了两连杆,两自由度的臂来测试不同的杂交构型。建立了基于四个日常双手活动的动态仿真平台,以获得两连杆四自由度手臂关节所需的运动和扭矩范围。使用动态仿真平台优化了所需的气动弹性执行器的数量和对立机构机械结构的尺寸...

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