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Experimental Estimation of Equivalent Damping Coefficient of Thrust Bearings

机译:推力轴承等同阻尼系数的实验估计

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A specific class of rotary machines is the high rotation turbochargers, to automotive application, wherein the shaft is continually subjected to axial forces of different magnitudes due to gas flows in the turbine and the compressor. These forces are supported by axial lubricated thrust bearings. The thrust bearings are modeled through equivalent stiffness and damping coefficients and the objective of the work is to get good estimates of these coefficients, comparing simulated results with experimental results. The stiffness coefficient is first obtained by small perturbation around the equilibrium position and used in a finite element model of the system at specific rotational speeds, and this value is compared to experimental results. Then, the damping coefficient is estimated, by running an optimization problem on this parameter, to approximate the simulated dynamic response of the system to experimental results of the turbocharger excited by an impact hammer, where both the displacement and force were measured.
机译:特定类的旋转机器是汽车应用的高旋转涡轮增压器,其中轴由于涡轮机和压缩机中的气体流动,轴不断地受到不同幅度的轴向力。这些力由轴向润滑推力轴承支撑。推力轴承通过等效刚度和阻尼系数建模,并且该工作的目的是获得这些系数的良好估计,将模拟结果与实验结果进行比较。首先通过围绕平衡位置的小扰动来获得刚度​​系数,并在系统的有限元模型中以特定的转速使用,并且将该值与实验结果进行比较。然后,通过在该参数上运行优化问题来估计阻尼系数,以将系统的模拟动态响应近似于冲击锤激发的涡轮增压器的实验结果,其中测量了位移和力。

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