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Axial and Pressure Thrust Stiffness of Metal Bellows for Vibration Isolators

机译:隔振器金属波纹管的轴向和压力推力刚度

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Metal bellows are used as a spring element and simultaneously as a container (shell) for a damping medium in vibration isolators, especially in applications where any leakage is inadmissible. Dynamic behaviour of these isolators is affected by axial stiffness of bellows and by a resistance against axial deformation of bellows filled with fluid, which is in this article called pressure thrust stiffness. A method of the pressure thrust stiffness determination is discussed in this study. The method uses FEM model, which has been verified by stiffness measurement of a chosen bellows. Consequently, the sensitivity analysis of bellows dimensions to axial and pressure thrust stiffness was performed to find a dimension parameter of bellows which allows to adjust the ratio between axial and pressure thrust stiffness. Sensitivity analysis shows that the stiffness ratio of metal bellows can be adjusted by two dimensional parameters - mean diameter of bellows and corrugation width.
机译:金属波纹管既用作弹簧元件,又用作隔振器中阻尼介质的容器(壳体),尤其是在不允许泄漏的应用中。这些隔离器的动态性能会受到波纹管的轴向刚度和对充满流体的波纹管的轴向变形的抵抗力的影响,在本文中称为压力推力刚度。本文讨论了一种确定压力推力刚度的方法。该方法使用FEM模型,该模型已通过选定波纹管的刚度测量得到验证。因此,进行了波纹管尺寸对轴向和压力推力刚度的敏感性分析,以找到波纹管的尺寸参数,该参数允许调整轴向和压力推力刚度之间的比率。敏感性分析表明,金属波纹管的刚度比可以通过二维参数进行调整-波纹管的平均直径和波纹宽度。

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