使用非线性振动吸收器减少振动冲击锤模型的手部振动

Oreoluwa Alabi, S. K. Gupta, Oumar Barry
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引用次数: 0

摘要

本研究探讨了一种被动振动控制装置的有效性,该装置可将手持式冲击机(HHIM)传递到手臂系统的振动幅度降至最低。为此,我们采用了一个简化的 HHIM 和手臂系统的叠加参数模型,该模型由叠加质量、弹簧和粘性阻尼器组成。为了更好地理解系统动力学,我们使用振动冲击模型来更准确地表示 HHIM 与地面的相互作用。然后,我们通过对系统进行非线性分岔分析,研究立方非线性振动吸收器在最小化这些不良振动方面的有效性。对系统分岔数值分析的参数研究揭示了所建议的非线性振动吸收器的不同设计参数对系统动力学的关键作用。我们的研究结果表明,吸收器参数的适当选择可以显著改变传递到手部的振动幅度和周期。此外,我们还观察到,在吸收器和操作参数给定值的情况下,系统中存在周期-2、周期-4 和混沌吸引子等复杂运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hand Vibration Reduction Using Nonlinear Vibration Absorber for the Vibro-Impact Hammer Model
This work investigates the effectiveness of a passive vibration control device to minimize the amplitude of vibrations from a handheld impact machine (HHIM) transmitted to a hand-arm system. For this purpose, we employ a simplified lumped parameter model of an HHIM and the hand-arm system consisting of lumped masses, springs, and viscous dampers. For a better understanding of the system dynamics, we use a vibro-impact model for a more accurate representation of HHIM-ground interactions. We then examine the effectiveness of a cubic nonlinear vibration absorber in minimizing these undesirable vibrations via a nonlinear bifurcation analysis of the system. A parametric study on the numerical bifurcation analysis of the system reveals the criticality of different design parameters of the proposed nonlinear vibration absorber on the system dynamics. Our findings demonstrate that an appropriate selection of absorber parameters could significantly change the amplitude and the periodicity of vibrations transmitted to the hand. Furthermore, we observe the existence of complex motions such as period-2, period-4, and chaotic attractors in the system for the given values of the absorber and operating parameters.
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