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首页> 外文期刊>Journal of Tribology >A Parametric Analysis of the Transient Forced Response of Noncontacting Coned-Face Gas Seals
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A Parametric Analysis of the Transient Forced Response of Noncontacting Coned-Face Gas Seals

机译:非接触圆锥面气封瞬态受力响应的参数分析

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摘要

A properly designed mechanical face seal must satisfy two requirements: (1) the seal must be stable, and (2) the seal forced response must be such that the stator tracks the misaligned rotor with the smallest clearance possible, with the smallest relative tilt, and with the largest minimum film thickness. The stability issue was investigated in a previous paper. Here a numerical solution is presented for the transient response of a noncontacting gas lubricated face seal that is subjected to stator and rotor forcing misalignments. The seal dynamic response is obtained in axial and angular modes of motion in a coupled analysis where the Reynolds equation and the equations of motion are solved simultaneously. The steady-state response is first identified for a reference case. Subsequently a parametric study is performed to gauge the influence of the various seal effects, such as speeds, inner to outer radii ratios, face coning heights, pressure drops, support stiffness and damping, and forcing misalignments. The transient responses to static stator misalignment and rotor runout are given, showing that properly designed coned face seals can operate in a stable mode with the stator tracking dynamically a misaligned rotor.
机译:正确设计的机械端面密封必须满足两个要求:(1)密封必须稳定,(2)密封的强制响应必须使定子以最小的间隙,最小的相对倾斜来跟踪未对准的转子,并具有最大的最小薄膜厚度。在先前的论文中对稳定性问题进行了研究。在此,提出了一种非接触式气体润滑面密封件瞬态响应的数值解决方案,该密封件受到定子和转子强迫失准的影响。在耦合分析中,在轴向和角运动模式下获得了密封件动态响应,其中同时解决了雷诺方程和运动方程。首先确定参考案例的稳态响应。随后进行参数研究,以评估各种密封效果的影响,例如速度,内外半径比,端面锥高,压降,支撑刚度和阻尼,以及强迫失准。给出了对静态定子未对准和转子跳动的瞬态响应,表明正确设计的锥面密封件可以在稳定模式下运行,并且定子动态跟踪未对准的转子。

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