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Dynamic modeling of compliant constant-force compression mechanisms

机译:顺应性恒力压缩机制的动态建模

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摘要

A mathematical dynamic model is derived for compliant, constant-force compression mechanisms, based on the pseudo-rigid-body model simplification of the device. The compliant constant-force compression mechanism (CFCM) is a slider mechanism incorporating large-deflection beams, which outputs near-constant-force across the range of its designed deflection. The equation of motion is successfully calibrated with empirical data from five separate mechanisms, comprising two basic configurations of CFCMs. The dynamic equation is derived from a generalized pseudo-rigid-body model. This allows every configuration to be represented by the same model, so a separate treatment is not required for each configuration. An unexpected dynamic trait of the constant-force mechanism is discovered. There exists a range of input deflection frequencies for which the output force of the mechanism is nearer to constant-force than it is with static input deflections.
机译:基于设备的伪刚体模型简化,得出了用于顺应性,恒定力压缩机制的数学动态模型。顺应性的恒力压缩机构(CFCM)是一种结合了大挠度梁的滑块机构,可在其设计挠度范围内输出接近恒定的力。运动方程已成功地使用来自五个独立机构的经验数据进行了校准,这些机构包括CFCM的两种基本配置。该动力学方程是从广义的伪刚体模型得出的。这允许每个配置由相同的模型表示,因此不需要对每个配置进行单独的处理。发现了恒定力机制的意外动态特性。在一定范围内的输入偏转频率下,与静态输入偏转相比,该机构的输出力更接近于恒定力。

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