基于微观接触力学的旋塞阀密封性能数值研究

Junjie Lu, Chen Wu, Q. An
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引用次数: 2

摘要

本文以旋塞阀为研究对象,通过对旋塞阀的结构和力学分析,建立了螺杆与旋塞之间的变形耦合模型。通过对旋塞阀密封接触面接触应力的分析,建立了旋塞阀密封面泄漏识别算法。以iso -2标准旋塞阀F-2为研究对象,数值研究了旋塞阀安装过程中密封面接触应力随紧定螺杆拧紧次数变化的变化规律,进而数值研究了旋塞阀的密封性能。数值研究结果表明,随着紧定螺杆拧紧次数的增加,密封面的接触面积增大,而泄漏通道面积逐渐减小,密封面在初始密封阶段的最大接触应力随着密封面粗糙度的增大而增大。随着旋塞阀管内流体压力的增大,在初始密封接触阶段,最小拧紧循环次数、旋塞压缩力和密封面最大接触应力均增大。该研究为旋塞阀密封的研究和应用提供了一种新的方法。
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Numerical Research on the Sealing Performance of Plug Valve Based on Microscopic Contact Mechanics
In this paper, taking the plug valve as the research object, the deformation coupling model between the set screw and the cock is established by analyzing the structure and the mechanics of the plug valve. A leakage identification algorithm for the plug valve's sealing surface is established by analyzing contact stress of the plug valve's sealing contact surfaces which are constructed by auto-correlation function. Taking plug valve F-2 ISO-STANDARD as the research object, the variation of contact stress of the sealing surfaces is numerically studied with change of the number of tightening cycles of the set screw in the installing process, and then the sealing performance of the plug valve is studied numerically. Results of numerical study show that with the increase of the number of tightening cycles of the set screw, the contact area of the sealing surfaces increases, while the area of the leakage path gradually decreases, and the maximum contact stress of sealing surfaces increases at the stage of the initial sealing with the increase of sealing surfaces' roughness. With the increase of the fluid pressure in the plug valve pipe, the minimum cycle number of tightening, cock compression force and the maximum contact stress of the sealing surface increase at the stage of the initial seal contact. This research provides a new method for the study and application of the plug valve sealing.
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