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Variable Stiffness Spring Using Tensegrity Prisms

机译:使用张力棱镜的可变刚度弹簧

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摘要

A novel variable stiffness mechanism (i.e., variable spring) based on the concept of tensegrity structures is presented. Variable springs have extensive applications in noise and vibration control The proposed method builds upon the prestress stiffness in tensegrities, which occurs along infinitesimal mechanisms and is fully controllable through force control in the members. A criterion is given to select a suitable tensegrity structure and an infinitesimal mechanism to develop a variable spring. Also, a mathematical model is developed for the stiffness components in an n-gon tensegrity prism. The variable components of the stiffness are then utilized to create a translational or rotational variable spring. In order to elaborate on the feasibility of the concept, a case study is presented on the engine mount of a vehicle. Parameters of a possible design of a variable stiffness mount are given, and the characteristics are compared with those of a conventional passive mount. This is followed by a detailed discussion on the properties of such a variable spring and the effects of various parameters.
机译:提出了一种基于张力结构概念的新型变刚度机构(即可变弹簧)。可变弹簧在噪声和振动控制中具有广泛的应用。所提出的方法建立在张紧力的预应力刚度上,该刚度以极小的机制发生,并且可以通过构件中的力控制来完全控制。给出了选择合适的张力结构和产生可变弹簧的无穷机制的标准。此外,针对n角张力棱镜中的刚度分量开发了数学模型。然后利用刚度的可变分量来产生平移或旋转可变弹簧。为了详细说明该概念的可行性,在车辆的发动机支架上进行了案例研究。给出了可变刚度安装架的可能设计参数,并将其特性与常规无源安装架进行了比较。接下来是关于这种可变弹簧的特性以及各种参数的影响的详细讨论。

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