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Modified Zener Theory to Accurately Predict Impact Force Histories for Soft Impactors Employing Spiral Sensing

机译:改进的齐纳理论,准确预测采用螺旋传感的软撞击力的冲击力历史

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摘要

While predicting the impact force histories from the Zener impact model with different material properties of impactors, several discrepancies were observed and reported in this article. To overcome these discrepancies, a modified Zener model is proposed to accurately calculate impact force histories. In the original Zener theory, nonlinear Hertzian contact law was used, and it was assumed that impact forces are transmitted through natural intensity factors depending on coupled physical properties of the plate and the impactor. However, when the force histories were predicted, a diverging trend appeared for softer materials with elastic moduli below 20 GPa. It is hypothesized that the primary reasons for this divergence are due to the contact time delay and the viscoelastic dissipation of energy, which are not considered in current Zener models. Several modifications of the model have been proposed since its inception, but it has been found that they are not independently sufficient to accurately predict impact force histories. In this article, a modified Zener theory is proposed introducing two new parameters in the governing differential equation derived from the sensor phase lag index and the dominant frequency band through a set of experiments employing a spiral sensing mechanism followed by an optimization process. The spiral lag index shows an unexpected peculiar trend with soft impactors (< 20 GPa), which are distinctly different from hard impactors and are judicially incorporated in the model. Furthermore, the force histories are accurately reconstructed with the proposed modifications.
机译:在预测具有不同材料特性的齐纳冲击模型中预测冲击力历史,在本文中观察到了几种差异并报告。为了克服这些差异,提出了一种改进的齐纳模型来准确地计算冲击力历史。在原始的齐纳理论中,使用非线性赫兹联系法,假设根据板和撞击器的耦合物理性质,通过自然强度因子传播冲击力。然而,当预测力历史时,出现发散趋势对于具有低于20GPa以下的弹性模量的柔软材料。假设该发散的主要原因是由于电气接触时间延迟和能量的粘弹性耗散,这在当前齐纳模型中不考虑。自成立以来已经提出了几种修改模型,但已经发现它们没有独立地足以准确地预测冲击力历史。在本文中,提出了一种改进的齐纳理论,在通过采用螺旋传感机制的一组实验之后,在传感器相位滞后指数和主导频带中引入两个新参数,其通过采用螺旋传感机制之后的一组实验。螺旋滞后指数显示出具有柔软撞击器(<20GPa)的意外的特殊趋势,其与硬撞击仪明显不同,并且司法在模型中。此外,用所提出的修改精确地重建力历史。

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