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Numerical modelling and experimental validation of a McKibben pneumatic muscle actuator

机译:McKibben气动肌肉执行器的数值建模和实验验证

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摘要

The McKibben muscle belongs to the type of muscles known as braided muscles. It is made of an inner hyper-elastic tube, surrounded by a braided shell made of inextensible threads; both ends provide mechanical and pneumatic seal. A finite element model of a McKibben pneumatic muscle was built and experimentally validated. The model is based on characteristic parameters of McKibben muscles. It takes into account the non-linearity of the constitutive material of the inner tube. It does not simulate backslashes between the tube and the shell at rest condition, but it models threads and rubber that are always connected. However, it does not consider friction among threads. In order to build and to validate the proposed numerical model, an experimental prototype of the muscle was designed and built. Both isotonic and isometric tests were carried out. Same tests were simulated in the finite element environment. The model validation was performed by comparison between experimental and numerical results.
机译:McKibben肌肉属于称为编织肌的肌肉类型。它是由一个内部超弹性管制成,周围是由无法延伸的线制成的编织壳。两端提供机械和气动密封。建立了McKibben气动肌肉的有限元模型,并进行了实验验证。该模型基于McKibben肌肉的特征参数。它考虑了内管的本构材料的非线性。它不会在静止状态下模拟管和壳体之间的反斜线,但会模拟始终连接的螺纹和橡胶。但是,它没有考虑螺纹间的摩擦。为了构建和验证所提出的数值模型,设计并构建了肌肉的实验原型。等渗和等距测试都进行了。在有限元环境中模拟了相同的测试。通过对实验结果和数值结果进行比较来进行模型验证。

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