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首页> 外文期刊>Journal of Computational Methods in Sciences and Engineering >Mathematical formulation of the film thickness in a multi-pad externally adjustable hydrodynamic bearing using the transformation technique
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Mathematical formulation of the film thickness in a multi-pad externally adjustable hydrodynamic bearing using the transformation technique

机译:使用变换技术的多垫外部可调节流体动力学轴承膜厚度的数学制定

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摘要

Instability problem of a hydrodynamic plain journal bearing at higher speeds is conventionally resolved by using the non-circular bearings. High speed precision rotating shafts demands accurate positioning of the journal centres. A multi-pad adjustable bearing is a non-circular bearing, provides a fine-tuning option of the journal centre by continuously changing the bearing profile. In the present study, the bearing has a configuration of four bearing pads that are adjustable both in the radial and tilt directions. The fluid film thickness profile is conventionally obtained using the trigonometric relations, which has computational limitations, especially in multi-pad adjustable bearings. In this investigation, the film thickness profile of a multi-pad adjustable bearing is mathematically formulated using the transformation technique. The results obtained are compared with those available in the literature for a similar bearing. The observation shows that transformation technique eliminates the projection approximation error present in the conventional technique.
机译:通常通过使用非圆形轴承来解决处于更高速度时的流体动力学平版轴颈轴承的不稳定问题。高速精密旋转轴要求准确定位期刊中心。多垫可调轴承是非圆形轴承,通过连续改变轴承轮廓来提供期刊中心的微调选项。在本研究中,轴承具有四个轴承衬垫的结构,其在径向和倾斜方向上可调节。通常使用具有计算限制的三角关系来获得流体膜厚度曲线,特别是在多垫可调节轴承中。在该研究中,使用变换技术在数学上配制多垫可调轴承的膜厚度。获得的结果与文献中可用的结果进行比较。观察结果表明,转换技术消除了传统技术中存在的投影近似误差。

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