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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Study on angular displacement characteristics on topological optimum design problem of hydrodynamic thrust air bearing
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Study on angular displacement characteristics on topological optimum design problem of hydrodynamic thrust air bearing

机译:水力推力空气轴承拓扑优化设计问题的角位移特性研究。

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The purpose of this research is to find the optimum groove geometry to enhance the stiffness against the axial and angular direction of thrust bearing simultaneously. In order to fulfill the requirement of miniaturization and thinning of many devices, the topological optimization is conducted to maximize the axial and angular stiffness of thrust air bearing. Applying the boundary fitted coordinate system and spline interpolation function make it possible to change the shape of bearing groove freely, and then the static and dynamic characteristics of the bearings are calculated numerically by using the divergence formulation method. The spring and damping coefficients against the axial and angular fluctuations are obtained by applying the assumption of the micro vibration of bearing clearance and pressure to the numerical method. Based on the numerical calculation method, topological optimization is conducted. As a result, a new groove shape having two curved portions is obtained. In case of the optimized bearing, positive pressure in the outer circumference on the bearing surface and negative pressure in the inner circumference are simultaneously generated. Comparing the maximum pressure, it was found that the optimized bearing is superior to spiral-grooved bearing. Moreover, drastically improvements in the axial and angular stiffness of the optimized bearing are shown.
机译:这项研究的目的是找到最佳的凹槽几何形状,以同时增强对推力轴承的轴向和角向方向的刚度。为了满足许多设备的小型化和薄型化的要求,进行了拓扑优化,以使推力空气轴承的轴向刚度和角刚度最大化。应用边界拟合坐标系和样条插值函数可以自由改变轴承凹槽的形状,然后使用散度公式化方法对轴承的静态和动态特性进行数值计算。通过将轴承间隙和压力的微振动假设应用于数值方法,可以获得针对轴向和角度波动的弹簧系数和阻尼系数。基于数值计算方法,进行了拓扑优化。结果,获得具有两个弯曲部分的新的凹槽形状。在优化轴承的情况下,轴承表面的外圆周正压力和内圆周的负压力会同时产生。比较最大压力,发现优化的轴承优于螺旋槽轴承。此外,还显示了优化轴承的轴向和角刚度的显着改善。

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