软气动折弯执行器变形机理及受力分析-有限元联合建模

S. Nikolov, Zhuo Liu, Fujun Wang, Shoufeng Liu, Kostadin Kostadinov, Evgeni V Koytchev, Yanling Tian
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摘要

我们考虑了软气动网络弯曲执行器(PneuNets)的力学行为,该执行器由一系列由弹性体材料制成的腔室组成,并固定在不可扩展的底层。采用有限元与解析相结合的方法,对自由空间中的压力诱导弯曲角以及执行器尖端与外部刚性障碍物之间的接触力进行了建模。我们提出了两种不同的自由端弯曲机制,即底层的弯曲和邻近腔室膨胀膜之间接触力的弯曲。研究发现,对总自由端弯曲角的主要贡献来自不可扩展层的弯曲,而不是完全由膜-膜相互作用引起的弯曲。还发现,致动器尖端与障碍物之间的压力感应接触力完全是由致动器自由端腔室的膜力和相关力矩引起的。将模型预测结果与有限元模拟和内部制造原型测试获得的实验数据进行了比较。
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Combined Analytical-FE Modeling of the Deformation Mechanisms and Forces in Soft PneuNets Bending Actuators
We consider the mechanical behavior of soft pneumatic network bending actuators (PneuNets) consisting of a series of chambers made of elastomeric material and fixed to an inextensible bottom layer. The pressure-induced bending angle in free space, as well as the contact force between the actuator tip and an external rigid obstacle are modeled with combined analytical-Finite Elements (FE) approach. We propose two distinct mechanisms for free-end bending, namely, bending of the bottom layer, and bending due to the contact forces between inflated membranes of neighboring chambers. It is found that the main contribution to the total free-end bending angle comes from bending of the inextensible layer, as opposed to bending entirely due to membrane-membrane interactions. It is also found that the pressure-induced contact force between the actuator tip and an obstacle is solely due to the membrane force of the chamber at the actuator's free end and the related moments. The model predictions are compared to FE simulations and experimental data obtained from testing of an in-house fabricated prototype.
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