首页> 外文会议>2011 international conference on manufacturing and industrial engineering >RESEARCH ON SEALING PERFORMANCE OF MECHANlCAL SEAL FOR EXClTATION OF ROTATING SHAFT
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RESEARCH ON SEALING PERFORMANCE OF MECHANlCAL SEAL FOR EXClTATION OF ROTATING SHAFT

机译:机械密封旋转轴密封性能的研究。

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In this study, liquid film perturbed pressure equation is derived firstly using a Tarlor Series expanding pressure formula.By linear film assumption,the axiaI stiffness and damping copfficients of the mechanical seal are derived. Then kinematical equation of the rotating shaftmechanical seal system is established.The research focus on solving response of the rotating shaft-mechanical seal system and leakage of the mechanical seal when the rotating shaft is under different frequencies excitatied or under frequency disturbed in difierent form excitatied in this paper.The analytical results show that response of the rotating shaft-mechanical seal system can finally be close to the stable state.when exeitatied frequency of the rotating shaft is disturbed iu different form. But for amplitude of the displace between the stationary ring. rotating ring and rotating shaft occurs mutation point at the time when the excitatied frequency is disturbed.meanwhile the excitatied frequency of the rotating shaft is disturbed in rectangular pulse form or in instant maximum pulse form.It will cause liquid film thickness to happen mutation until the leakage increases and mechanical seal fails at Iast.The study results show that the sealing performance of mechanical seal and exeitatied frequency of the rotating shaft has closely positive correlation.The rotating shaft-mechanical seal system can be optimization design and performance prediction based on the study of this paper.
机译:本研究首先利用塔洛尔级数膨胀压力公式推导了液膜摄动压力方程,并通过线性膜假设推导了机械密封的轴向刚度和阻尼系数。然后建立了旋转轴机械密封系统的运动方程。研究的重点是解决旋转轴在不同频率下励磁或在不同形式励磁的情况下受到扰动时机械密封的泄漏和机械密封的泄漏。分析结果表明,当旋转轴的激励频率受到不同形式的干扰时,旋转轴-机械密封系统的响应最终可以接近稳定状态。但是对于固定环之间的位移幅度。激振频率受扰时,旋转环和旋转轴发生突变点。同时,旋转轴的激振频率以矩形脉冲形式或瞬时最大脉冲形式受干扰。这将导致液膜厚度发生突变,直到研究结果表明,机械密封的密封性能与旋转轴的激励频率密切相关。旋转轴-机械密封系统可以在研究的基础上进行优化设计和性能预测。本文。

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