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首页> 外文期刊>International Journal of Solids and Structures >Steady-state dynamics of a 3D tensegrity structure: Simulations and experiments
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Steady-state dynamics of a 3D tensegrity structure: Simulations and experiments

机译:3D张力结构的稳态动力学:模拟和实验

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This paper considers a modeling and analysis approach for the investigation of the linear and nonlinear steady-state dynamics of a base excited 3D tensegrity module carrying a top mass. The tensegrity module contains three compressive members, which may buckle and six cables (tendons). First, a dynamic model of the system is derived using Lagrange's equation with constraints. The buckling modeling of the compressive members is based on the assumed-mode method with a single mode discretization. The tendons are modeled as piecewise linear springs, which can only take tensile forces. This research focusses on the dynamic stability of the tensegrity structure by defining the geometrical and material properties in such a way that the system is just below the static stability boundary. Static and linear dynamic analysis is performed. In the nonlinear steady-state analysis, frequency-amplitude plots, power spectral density plots, bifurcation point continuation diagrams, and Poincaré maps are presented. A tensegrity structure is designed and manufactured and an experimental set-up is realized in order to validate the model by comparing experimentally and numerically obtained responses. In the validation stage, the numerical results are based on an amplifier-shaker-tensegrity structure model. It can be concluded that the numerical results match partly quantitatively and partly qualitatively with the experimentally obtained responses.
机译:本文考虑了一种建模和分析方法,用于研究带有顶部质量的基本激励3D张力模块的线性和非线性稳态动力学。张力模块包含三个可弯曲的压缩构件和六个电缆(肌腱)。首先,使用带约束的拉格朗日方程推导系统的动态模型。压缩构件的屈曲建模基于具有单模式离散化的假定模式方法。筋被建模为分段线性弹簧,只能承受拉力。这项研究集中在张力结构的动态稳定性上,方法是定义几何和材料特性,使系统位于静态稳定性边界之下。进行静态和线性动态分析。在非线性稳态分析中,给出了频率-振幅图,功率谱密度图,分叉点连续图和庞加莱图。设计并制造了一个张力结构,并进行了实验设置,以通过比较实验和数值获得的响应来验证模型。在验证阶段,数值结果基于放大器-振荡器-强度结构模型。可以得出结论,数值结果部分与实验获得的响应在数量上和质量上相匹配。

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