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Sommerfeld effect in a single-DOF system with base excitation from motor driven mechanism

机译:来自电动机驱动机构的基础激励的单DOF系统中的Sommerfeld效果

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Sommerfeld effect is a nonlinear phenomenon observed in rotating machinery driven by a non-ideal source. It is characterised by capture at resonance for a finite range of drive power followed by a sudden release. This paper investigates the dynamics of a direct current (DC) motor driven mechanism which excites the base of a vibrating structure. A slotted cam follower mechanism and a scotch yoke mechanism are chosen for the base excitations of a single degree of freedom oscillator. It is shown that the Sommerfeld effect leads to capture-and-escape (jump) through multiple resonance zones, and as a result, some intermediate speed ranges are missed. The critical power/voltage input to escape through all the resonances may exceed that required to escape the primary resonance. Moreover, while increased structural damping makes it easier to escape resonance capture, it reduces the system efficiency at super-critical operating speeds. These are important design considerations for sizing the motor drives of these mechanisms. Analytical predictions for jumps are obtained from a steady-state power balance whereas the transient analysis is performed with the help of Bond Graph (BG) models and MSC-ADAMS software. The transient responses from the numerical models are used to verify the analytical results. (C) 2020 Elsevier Ltd. All rights reserved.
机译:Sommerfeld效果是由非理想源驱动的旋转机械中观察到的非线性现象。其特征在于,在突出释放后的有限范围的驱动力范围内捕获。本文研究了激发振动结构底部的直流(DC)电机驱动机构的动态。选择开槽凸轮从动机构和苏格兰轭机构,用于单一自由度振荡器的基础激发。结果表明,Sommerfeld效果导致通过多个谐振区域捕获和逃逸(跳跃),结果,错过了一些中间速度范围。通过所有谐振逸出的临界功率/电压输入可能超过偏移初级谐振所需的电压。此外,虽然增加的结构阻尼使得更容易逃脱共振捕获,但它以超重的操作速度降低了系统效率。这些是用于施加这些机制的电机驱动器的重要设计考虑因素。跳跃的分析预测是从稳态功率平衡获得的,而暂态分析是在键盘图(BG)模型和MSC-ADAMS软件的帮助下执行的。来自数值模型的瞬态响应用于验证分析结果。 (c)2020 elestvier有限公司保留所有权利。

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