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首页> 外文期刊>International journal of non-linear mechanics >Theoretical analysis of the dynamic behavior of hysteresis elements in mechanical systems
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Theoretical analysis of the dynamic behavior of hysteresis elements in mechanical systems

机译:机械系统中磁滞元件动力学行为的理论分析

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Many machine elements in common engineering use exhibit the characteristic of "hysteresis springs". Plain and rolling element bearings that are widely used in motion guidance of machine tools are typical examples. The study of the non-linear dynamics caused by such elements becomes imperative if we wish to achieve accurate control of such machines. This paper outlines the properties of rate-independent hysteresis and shows that the calculation of the free response of a single-degree-of-freedom (SDOF) mass-hysteresis-spring system is amenable to an exact solution. The more important issue of forced response is not so, requiring other methods of treatment. We consider the approximate describing function method and compare its results with exact numerical simulations. Agreement is good for small excitation amplitudes, where the system approximates to a linear mass-spring-damper system, and for very large amplitudes, where some sort of mass-line is approached. Intermediate values however, show high sensitivity to amplitude variations, and no regular solution is obtained by either approach. This appears thus to be an inherent property of the system pointing to the need for developing further analysis methods.
机译:普通工程中使用的许多机械元件都具有“磁滞弹簧”的特性。广泛用于机床运动引导的滑动轴承和滚动轴承就是典型的例子。如果我们希望实现对此类机器的精确控制,那么研究由此类元素引起的非线性动力学就势在必行。本文概述了与速率无关的磁滞特性,并表明单自由度(SDOF)质量磁滞弹簧系统的自由响应的计算适合于精确解。强迫反应的更重要的问题并非如此,需要其他治疗方法。我们考虑近似描述函数方法,并将其结果与精确的数值模拟进行比较。对于系统接近线性质量弹簧-阻尼器系统的小激励振幅,以及对于接近某种质量线的非常大的振幅,一致性是好的。但是,中间值显示出对幅度变化的高度敏感性,并且两种方法都无法获得规则的解。因此,这似乎是系统的固有属性,表明需要开发其他分析方法。

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