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VARIABLE ANTAGONISTIC STIFFNESS ELEMENT USING TENSEGRITY STRUCTURE

机译:使用TenseGrity结构的可变抗拮抗刚度元素

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Tensegrity mechanisms are self-stressing mechanisms and it is known that the prestress of the elements affect the stiffness of the tensegrity. In this paper stiffness of a spatial tensegrity is studied for the purpose of the noise and vibration control and it is shown that an efficient variable stiffness element can be designed by using tensegrities. The antagonistic force and antagonistic stiffness are explained briefly and the kinematics of the tensegrity is analyzed. Also, the possible motion, the elastic stiffness, load stiffness and antagonistic stiffness formulation for the tensegrity are found symbolically. Some techniques for increasing the magnitude of the antagonistic stiffness are mentioned. The effect of the geometry on the stiffness, stiffness controllability and linearity are shown by examples. Finally, the results of this approach are verified by mechanical simulation of the designed tensegrity.
机译:静态机制是自重的机制,并且已知元素的预应力影响矩形的刚度。在该纸张中,为了噪声和振动控制的目的,研究了空间牙态的刚度,并且示出了通过使用牙态来设计有效的可变刚度元件。简要解释拮抗力和拮抗刚度,分析了牙动的运动学。而且,可能的运动,弹性刚度,负载刚度和抗拮抗刚度配方象征性地发现。提到了一种增加拮抗刚度幅度的技术。几何形状对刚度,刚度可控性和线性度的影响是通过实施例示出的。最后,通过设计的矩形的机械模拟来验证这种方法的结果。

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