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Dynamic stiffness and damping characteristics of a high-temperature air foil journal bearing

机译:高温空气箔轴颈轴承的动态刚度和阻尼特性

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Using a high-temperature optically based displacement measurement system, a foil air bearing's stiffness and damping characteristics were experimentally determined. Results were obtained over a range of modified Sommerfeld Number from 1.5E6 to 1.5E7, and at temperatures from 25°to 538℃. An Experimental procedure was developed comparing the error in two curve fitting functions to reveal different modes of physical behavior throughout the operating domain. The maximum change in dimensionless stiffness was 3.0E-2 to 6.5E-2 over the Sommerfeld Number range tested. Stiffness decreased with temperature by as much as a factor of two from 25° to 538℃. Dimensionless damping was a stronger function of Sommerfeld Number ranging from 20 to 300. As the temperature is increased, the damping shifts from a viscous type to a frictional type.
机译:使用基于光学的高温位移测量系统,通过实验确定了箔式空气轴承的刚度和阻尼特性。在修正的Sommerfeld数从1.5E6到1.5E7的范围内以及25°C至538℃的温度下获得了结果。开发了一个实验程序,比较了两个曲线拟合函数中的误差,以揭示整个操作域中不同的物理行为模式。在测试的Sommerfeld数范围内,无因次刚度的最大变化为3.0E-2至6.5E-2。刚度随温度从25°降低到538℃降低了两倍。无量纲阻尼是Sommerfeld数(从20到300)的更强函数。随着温度的升高,阻尼从粘滞型转变为摩擦型。

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