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Modeling and Analysis of Fiber-reinforced Soft Bending Actuators

机译:纤维增强软弯曲致动器的建模与分析

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Soft bending actuators can provide larger contact forces and bending angles if designed with fiber-reinforced structure. The research of fiber-reinforced soft bending actuators mainly focuses on experimental evaluations. However, theoretical analysis and modeling of the deformation and contact force are limited. In this paper, the deformation and the contact force of fiber-reinforced soft bending actuators are studied. The relationship between the number of winded coils as well as their pitch and the actuator's bending are analyzed. A nonlinear mathematical model of the soft bending angle driven by pressurized air, and the theoretical model of its contact force are proposed. To verify these theories, the finite element analysis (FEA) and experiments are conducted. The results prove that the fiber-reinforced structure significantly improve the bending behavior and the contact force of soft bending actuators.
机译:如果设计有纤维增强结构,软弯曲致动器可以提供更大的接触力和弯曲角度。纤维增强软弯曲致动器的研究主要侧重于实验评价。然而,变形和接触力的理论分析和建模是有限的。本文研究了纤维增强软弯曲致动器的变形和接触力。分析了卷绕线圈的数量以及它们的间距和致动器的弯曲之间的关系。加压空气驱动的软弯曲角度的非线性数学模型,以及其接触力的理论模型。为了验证这些理论,进行有限元分析(FEA)和实验。结果证明,纤维增强结构显着提高了软弯曲致动器的弯曲行为和接触力。

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