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THE EFFECT OF NONLINEAR SPRINGS IN JUMPING MECHANISMS

机译:非线性弹簧在跳跃机理中的作用

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This research investigates the potential effects of utilizing nonlinear springs on the performance of robotic jumping mechanisms. As a theoretical example, we study dynamic characteristics of a jumping mechanism consisting of two masses connected by a generic nonlinear spring, which is characterized by a piecewise linear function. The goal of this study is to understand how the nonlinearity in spring stiffness can impact the jumping performance. To this end, non-dimensional equations of motion of the jumping mechanism are derived and then used extensively for both analytical and numerical investigations. The nonlinear force-displacement curve of the spring is divided into two sections: compression and tension. We examine the influences of these two sections of spring stiffness on the overall performance of the jumping mechanism. It is found that compression section of the nonlinear spring can significantly increase energy storage and thus enhance the jumping capabilities dramatically. We also found that the tension section of the nonlinear force-displacement curve does not affect the jumping performance of the center of gravity, however, it has a significant impact on the internal oscillations of the mechanism. Results of this study can unfold the underlying principles of harnessing nonlinear springs in jumping mechanisms and may lead to the emergence of more efficient hopping and jumping systems and robots in the future.
机译:这项研究调查了利用非线性弹簧对机器人跳跃机构性能的潜在影响。作为一个理论示例,我们研究了由两个质量组成的跳跃机构的动力学特性,这些质量由一个通用的非线性弹簧连接,该弹簧的特征是分段线性函数。这项研究的目的是了解弹簧刚度的非线性如何影响跳跃性能。为此,推导了跳跃机构的无量纲运动方程,然后将其广泛用于分析和数值研究。弹簧的非线性力-位移曲线分为两部分:压缩和拉伸。我们研究了弹簧刚度的这两部分对跳跃机构整体性能的影响。发现非线性弹簧的压缩段可以显着增加能量存储,从而显着提高跳跃能力。我们还发现,非线性力-位移曲线的张力部分不会影响重心的跳跃性能,但是,它对机构的内部振荡有重大影响。这项研究的结果可以揭示在跳跃机构中利用非线性弹簧的基本原理,并可能导致将来出现更有效的跳跃和跳跃系统及机器人。

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