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Influence Analysis of Secondary O-ring Seals in Dynamic Behavior of Spiral Groove Gas Face Seals 被引量:15
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作者 HU Songtao HUANG Weifeng +1 位作者 LIU Xiangfeng WANG Yuming 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第3期507-514,共8页
The current research on secondary O-ring seals used in mechanical seals has begun to focus on their dynamic properties. However, detailed analysis of the dynamic properties of O-ring seals in spiral groove gas face se... The current research on secondary O-ring seals used in mechanical seals has begun to focus on their dynamic properties. However, detailed analysis of the dynamic properties of O-ring seals in spiral groove gas face seals is lacking. In particular a transient study and a difference analysis of steady-state and transient performance are imperative. In this paper, a case study is performed to gauge the effect of secondary O-ring seals on the dynamic behavior(steady-state performance and transient performance) of face seals. A numerical finite element method(FEM) model is developed for the dynamic analysis of spiral groove gas face seals with a flexibly mounted stator in the axial and angular modes. The rotor tilt angle, static stator tilt angle and O-ring damping are selected to investigate the effect of O-ring seals on face seals during stable running operation. The results show that the angular factor can be ignored to save time in the simulation under small damping or undamped conditions. However, large O-ring damping has an enormous effect on the angular phase difference of mated rings, affecting the steady-state performance of face seals and largely increasing the possibility of face contact that reduces the service life of face seals. A pressure drop fluctuation is carried out to analyze the effect of O-ring seals on the transient performance of face seals. The results show that face seals could remain stable without support stiffness and O-ring damping during normal stable operation but may enter a large-leakage state when confronting instantaneous fluctuations. The oscillation-amplitude shortening effect of O-ring damping on the axial mode is much greater than that on the angular modes and O-ring damping prefers to cater for axial motion at the cost of angular motion. This research proposes a detailed dynamic-property study of O-ring seals in spiral groove gas face seals, to assist in the design of face seals. 展开更多
关键词 spiral groove gas face seal secondary O-ring seals dynamic property
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Dynamic Coupling Correlation of Gas Film in Dry Gas Seal with Spiral Groove 被引量:1
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作者 LIU Zhengxian WANG Musu +1 位作者 ZHOU Yue WU Ningning 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第4期853-859,共7页
In working state, the dynamic performance of dry gas seal, generated by the rotating end face with spiral grooves, is determined by the open force of gas film and leakage flow rate. Generally, the open force and the l... In working state, the dynamic performance of dry gas seal, generated by the rotating end face with spiral grooves, is determined by the open force of gas film and leakage flow rate. Generally, the open force and the leakage flow rate can be obtained by finite element method, computational fluid dynamics method and experimental measurement method. However, it will take much time to carry out the above measurements and calculations. In this paper, the approximate model of parallel grooves based on the narrow groove theory is used to establish the dynamic equations of the gas film for the purpose of obtaining the dynamic parameters of gas film. The nonlinear differential equations of gas film model are solved by Runge-Kutta method and shooting method. The numerical values of the pressure profiles, leakage flux and opening force on the seal surface are integrated, and then compared to experimental data for the reliability of the numerical simulation. The results show that the numerical simulation curves are in good agreement with experimental values. Furthermore, the opening force and the leakage flux are proved to be strongly correlated with the operating parameters. Then, the function-coupling method is introduced to analyze the numerical results to obtain the correlation formulae of the opening force and leakage flux respectively with the operating parameters, i.e., the inlet pressure and the rotating speed. This study intends to provide an effective way to predict the aerodynamic performance for designing and optimizing the groove styles in dry gas seal rapidly and accurately. 展开更多
关键词 dry gas seal spiral groove gas film dynamic data fitting method coupling function
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Leakage and Stiffness Characteristics of Bionic Cluster Spiral Groove Dry Gas Seal 被引量:3
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作者 Jin-Bo Jiang Xu-Dong Peng +1 位作者 Ji-Yun Li Yuan Chen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2018年第2期148-158,共11页
Spiral groove dry gas seal(S?DGS), the most widely used DGS in the world, encounters the problem of high leakage rate and inferior film stability when used in high?speed machinery equipment, which could not be well so... Spiral groove dry gas seal(S?DGS), the most widely used DGS in the world, encounters the problem of high leakage rate and inferior film stability when used in high?speed machinery equipment, which could not be well solved by optimization of geometrical parameters and molded line of spiral groove. A new type of bionic cluster spiral groove DGS(CS?DGS) is proved to have superior film stability than S?DGS at the condition of high?speed and low?pressure numerically. A bionic CS?DGS is experimentally investigated and compared with common S?DGS in order to provide evidence for theoretical study. The film thickness and leakage rate of both bionic spiral groove and common spiral groove DGS are measured and compared with each other and with theoretical values under different closing force at the condition of static pressure, high?speed and low?pressure, and the film stiffness and stiffness?leakage ratio of these two face seals are derived by the relationship between closing force and film thickness at the steady state. Experimental results agree well with the theory that the leakage and stiffness of bionic CS?DGS are superior to that of common S?DGS under the condition of high?speed and low?pressure, with the decreasing amplitude of 20% to 40% and the growth amplitude of 20%, respectively. The opening performance and stiffness characteristics of bionic CS?DGS are inferior to that of common S?DGS when rotation speed equals to 0 r/min. The proposed research provides a new method to measure the axis film stiffness of DGS, and validates the superior performance of bionic CS?DGS at the condition of high?speed and low?pressure experimentally. 展开更多
关键词 Bionic cluster spiral groove film stiffness Dry gas seal Leakage rate
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Performance comparison and parametric study on spiral groove gas film face seals 被引量:8
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作者 LIU Yuchuan, SHEN Xinmin, XU Wanfu & WANG ZhiliState Key Laboratory of Tribology, Tsinghua University, Beijing 100084, China School of Mechanical Engineering and Automation, Beijing University of Aeronautics and Astronautics, Beijing 100083, China Lubrication Technology Research Center, Shenyang Institute of Technology, Shenyang 110015, China 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2004年第z1期29-36,共8页
Several spiral groove gas film face seals (SGFS) with different layouts are compared quantitatively to analyze their merits and faults and application behaviors. In addition, a parametric study on downstream mode SGFS... Several spiral groove gas film face seals (SGFS) with different layouts are compared quantitatively to analyze their merits and faults and application behaviors. In addition, a parametric study on downstream mode SGFS is conducted to determine its optimal parameters under certain working conditions. In tne computation of gas film pressure on the face, finite element method (FEM) is applied to adapt to complicated geometrical boundary. 展开更多
关键词 spiral groove gas film face seals parameter study performance comparison FINITE ELEMENT method.
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Research on the Performance of Supercritical CO_2 Dry Gas Seal with Different Deep Spiral Groove 被引量:23
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作者 DU Qiuwan ZHANG Di 《Journal of Thermal Science》 SCIE EI CAS CSCD 2019年第3期547-558,共12页
The performance of supercritical CO_2(SCO_2) dry gas seal(DGS) with different deep spiral groove is investigated with the thermal-fluid-solid coupling method. The performance parameters of DGSs with five different kin... The performance of supercritical CO_2(SCO_2) dry gas seal(DGS) with different deep spiral groove is investigated with the thermal-fluid-solid coupling method. The performance parameters of DGSs with five different kinds of grooves are obtained. The influence of inlet temperature, inlet pressure, velocity and film thickness on performance is analyzed compared with air DGS. The average film pressure, open force and leakage decrease while the average face temperature and flow velocity increase as the spiral groove number increases. The average film pressure, average face temperature, open force and leakage of DGS with radial different deep groove are higher than those of DGS with circumferential different deep groove respectively under the same spiral groove number while the average flow velocity is the opposite. SCO_2 DGS can generate larger average film pressure, open force and leakage with lower average face temperature than air DGS. SCO_2 DGS could maintain better sealing performance despite larger leakage with the variations of inlet temperature, inlet pressure, velocity and film thickness. The variables hold a more remarkable influence on SCO_2 DGS compared with air DGS. 展开更多
关键词 SUPERCRITICAL carbon dioxide DIFFERENT DEEP spiral groove dry gas seal thermal-fluid-solid coupling method
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Optimization design of main parameters for double spiral grooves face seal 被引量:2
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作者 LIU Zhong LIU Ying LIU XiangFeng 《Science China(Technological Sciences)》 SCIE EI CAS 2007年第4期448-453,共6页
The optimization design of the parameters, such as the groove depth, groove number, ratio of the groove width to the land width, and spiral angle of a new kind of double spiral grooves face seal, which works under the... The optimization design of the parameters, such as the groove depth, groove number, ratio of the groove width to the land width, and spiral angle of a new kind of double spiral grooves face seal, which works under the condition of high velocity, high sealing pressure and ultra-low temperature, is presented under the assump-tion of fixed closure force by finite element analysis method. The results show that the stiffness of the maximum film can be obtained when the ratio of the groove width to the land width is 0.5 and the spiral angle is about 75 degrees, when the influence of the groove number on the sealing performance is not obvious. 展开更多
关键词 DOUBLE spiral groove face seal OPTIMIZATION
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A Comparative Study on the Performance of Typical Types of Bionic Groove Dry Gas Seal based on Bird Wing 被引量:16
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作者 Jinbo Jiang Xudong Peng +1 位作者 Jiyun Li Yuan Chen 《Journal of Bionic Engineering》 SCIE EI CSCD 2016年第2期324-334,共11页
A series of bionic grooves based on bird wing, such as cluster spiral groove, multi-array spiral groove and flow-split spiral groove, are introduced to improve the film stiffness and sealing properties of dry gas seal... A series of bionic grooves based on bird wing, such as cluster spiral groove, multi-array spiral groove and flow-split spiral groove, are introduced to improve the film stiffness and sealing properties of dry gas seal. A theoretical model solved with Finite Difference Method (FMD) is developed to study the static sealing performance, such as film stiffness and leakage rate of these bionic groove dry gas seals. Then, a performance comparative study between the bionic groove dry gas seals and common spiral groove dry gas seal with different groove geometry parameters such as groove depth ratio, spiral angle and micro groove number under different average linear velocity at seal ring face and seal pressure is carried out. The closing force, film thickness and leakage rate of dry gas seals with bionic grooves and common spiral groove are measured experimentally. Results show that cluster spiral groove and multi-array spiral groove dry gas seals have superiority in the film stiffness and stiffness-leakage ratio compared with common spiral groove under the condition of high-speed and low-pressure, while flow-split spiral groove dry gas seal has no obvious advantages of performance. Film stiffness of cluster spiral groove dry gas seal and stiffness-leakage ratio of multi-array spiral groove dry gas are 20% and 50% larger than that of common spiral groove dry gas seal, respectively, which are verified by the experimental results. 展开更多
关键词 bionic groove dry gas seal film stiffness performance comparison
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带内环槽的螺旋槽干式气体端面密封的静压性能 被引量:29
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作者 彭旭东 谭丽丽 +2 位作者 盛颂恩 白少先 李纪云 《摩擦学学报》 EI CAS CSCD 北大核心 2008年第6期507-511,共5页
针对现场使用的带内环槽的螺旋槽干式气体端面密封,建立了用于预测其端面气膜压力的等温可压缩流二维雷诺方程,在只考虑静压效应的条件下应用有限元法计算了端面开启力、泄漏率、气膜刚度和刚漏比等密封性能参数,并与典型螺旋槽干式气... 针对现场使用的带内环槽的螺旋槽干式气体端面密封,建立了用于预测其端面气膜压力的等温可压缩流二维雷诺方程,在只考虑静压效应的条件下应用有限元法计算了端面开启力、泄漏率、气膜刚度和刚漏比等密封性能参数,并与典型螺旋槽干式气体端面密封(S-DGS)进行了比较.结果表明:与S-DGS相比,前者具有更好的稳定性、润滑性能和开启特性.以获得最大刚漏比为优化原则,综合考虑密封的稳定性、密封性和开启特性,获得了带内环槽S-DGS在静压作用下的端面规则微槽几何参数的优选值,研究结果对有关密封的设计与选用具有指导意义. 展开更多
关键词 气体端面密封 螺旋槽 内环槽 静压分析 有限元法
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表面粗糙度对螺旋槽干式气体端面密封性能预测与结构优化的影响 被引量:37
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作者 彭旭东 李纪云 +2 位作者 盛颂恩 尹晓妮 白少先 《摩擦学学报》 EI CAS CSCD 北大核心 2007年第6期567-572,共6页
将螺旋槽干式气体端面密封(S-DGS)的粗糙表面分成软环端表面、硬环端面开槽底面与非开槽表面3个区域,建立粗糙表面S-DGS性能的有限元分析理论模型,采用该模型研究3个区域表面粗糙度对S-DGS性能参数和端面几何结构参数优化的影响.结果表... 将螺旋槽干式气体端面密封(S-DGS)的粗糙表面分成软环端表面、硬环端面开槽底面与非开槽表面3个区域,建立粗糙表面S-DGS性能的有限元分析理论模型,采用该模型研究3个区域表面粗糙度对S-DGS性能参数和端面几何结构参数优化的影响.结果表明:在相同工况和表面综合均方根差的条件下,粗糙表面S-DGS的开启力、气膜刚度和摩擦扭矩均大于光滑表面S-DGS,而泄漏量较小;在有关标准范围之内,硬环端面槽底面和软环端面的表面粗糙度对S-DGS的性能参数预测值产生较大影响,而硬环端面表面粗糙度的影响可以忽略;表面粗糙度对S-DGS端面几何结构参数的优化值没有影响.研究结果对S-DGS性能的正确预测和结构优化设计以及密封的修复工作具有重要的指导意义. 展开更多
关键词 机械端面密封 螺旋槽 气体润滑 表面粗糙度 有限元分析
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螺旋槽干气密封润滑气膜角向涡动的稳定性分析 被引量:39
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作者 丁雪兴 王悦 +2 位作者 张伟政 俞树荣 杜兆年 《北京化工大学学报(自然科学版)》 CAS CSCD 北大核心 2008年第2期82-86,共5页
螺旋槽干气密封操作的稳定性和可靠性与其槽形参数密切相关,优化槽形参数一直是该领域研究的热点。应用PH线性化方法及变分运算干气密封螺旋槽内瞬态微尺度流动场的非线性雷诺方程,得到了气膜角向涡动刚度的解析式。继而利用复数转换和... 螺旋槽干气密封操作的稳定性和可靠性与其槽形参数密切相关,优化槽形参数一直是该领域研究的热点。应用PH线性化方法及变分运算干气密封螺旋槽内瞬态微尺度流动场的非线性雷诺方程,得到了气膜角向涡动刚度的解析式。继而利用复数转换和迭代法对稳态下气膜边值问题进行求解,求得了气膜涡动刚度的近似解析解。通过动态稳定性分析,获得了不同介质粘度、压力和转速下稳定性最佳的螺旋角数值。研究结果表明:随介质压力和转速增大,气膜涡动刚度越大,稳定性越好。 展开更多
关键词 螺旋槽 干气密封 角向涡动 气膜刚度 稳定性分析
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螺旋槽端面密封脱开转速的理论及试验 被引量:24
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作者 张国渊 袁小阳 +2 位作者 赵伟刚 李治国 杨绍康 《机械工程学报》 EI CAS CSCD 北大核心 2008年第8期55-60,共6页
提出螺旋槽端面密封脱开转速的理论分析模型,并建立适合于密封端面脱开后的内外双槽结构的非接触式端面密封数学模型。理论研究一种外螺旋槽和内人字槽组合的双螺旋槽端面密封的临界脱开转速,同时讨论该类非接触端面密封开启力、流量、... 提出螺旋槽端面密封脱开转速的理论分析模型,并建立适合于密封端面脱开后的内外双槽结构的非接触式端面密封数学模型。理论研究一种外螺旋槽和内人字槽组合的双螺旋槽端面密封的临界脱开转速,同时讨论该类非接触端面密封开启力、流量、摩擦力矩等随转速和密封间隙的变化规律。试验得到了直径100 mm、槽深3μm的组合螺旋槽(外螺旋槽和内人字槽组合)端面密封在水介质(27℃)工况下的临界脱开转速,并将其与理论结果进行对比研究。研究结果表明,当密封转速超过约9 kr/min后,密封处在非接触状态,此时的密封泄漏量仅为1.2 mL/s。试验得到的端面密封脱开转速与理论结果一致(误差小于10%),从而有效地证实了端面脱开转速可作为对密封端面接触与否的判定依据。当密封转速高于脱开转速后,密封处在非接触状态,其工作寿命较长,泄漏量较小,这对于可重复使用火箭发动机涡轮泵端面密封的研制具有重要理论和试验参考价值。 展开更多
关键词 螺旋槽端面密封 脱开转速 理论及试验
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雁型槽干式气体端面密封性能的数值分析 被引量:23
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作者 彭旭东 黄莉 +2 位作者 白少先 李纪云 古通生 《化工学报》 EI CAS CSCD 北大核心 2010年第12期3193-3199,共7页
为了改善普通螺旋槽干式气体端面密封(S-DGS)的密封性能,引入了一种介于普通S-DGS和带环形槽S-DGS(即AS-DGS)两者之间的型槽轮廓类似飞行大雁的雁型槽DGS,即GS-DGS。基于气体润滑理论,建立了GS-DGS的数学分析模型,定义了GS-DGS的主要几... 为了改善普通螺旋槽干式气体端面密封(S-DGS)的密封性能,引入了一种介于普通S-DGS和带环形槽S-DGS(即AS-DGS)两者之间的型槽轮廓类似飞行大雁的雁型槽DGS,即GS-DGS。基于气体润滑理论,建立了GS-DGS的数学分析模型,定义了GS-DGS的主要几何结构参数,采用有限元方法求解Reynolds方程,获得了端面气膜压力分布,分析了这些几何参数对端面开启力、泄漏率、气膜刚度、刚漏比等密封性能参数的影响规律,并根据确保GS-DGS具有较大轴向气膜刚度的同时泄漏率较低的原则,对几何参数进行了优化分析。结果表明,当槽台宽比δ=0.8~1.2,径向开槽宽度比φ=0.4~0.8,雁颈长比ε=0.25~0.35,雁颈宽比ζ=0.2~0.4,槽深比H=2.5~4.0,槽数N=10~18且螺旋角α=10°~18°时,GS-DGS具有最佳工作性能。 展开更多
关键词 雁型槽表面 气体密封 几何结构优化 密封性能
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基于二阶滑移边界的螺旋槽干气密封气膜刚度计算与分析 被引量:21
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作者 丁雪兴 蒲军军 +2 位作者 韩明君 张伟政 俞树荣 《机械工程学报》 EI CAS CSCD 北大核心 2011年第23期119-124,共6页
应用二阶非线性滑移边界条件推导出修正的广义雷诺方程,并用PH线性化方法、迭代法对非线性雷诺方程近似求解,得到气膜推力的近似解析式,继而对其进行气膜厚度的求导,得到气膜刚度的近似解析式。并利用Maple程序计算不同转速和压力下的... 应用二阶非线性滑移边界条件推导出修正的广义雷诺方程,并用PH线性化方法、迭代法对非线性雷诺方程近似求解,得到气膜推力的近似解析式,继而对其进行气膜厚度的求导,得到气膜刚度的近似解析式。并利用Maple程序计算不同转速和压力下的气膜刚度数值,并与一阶线性滑移边界条件下的气膜刚度和试验数值进行对比。结果表明:随着气膜厚度的增加,二阶非线性滑移边界条件下的气膜刚度随之减小,且呈非线性关系;随着介质压力、转速的增加,气膜刚度也随之增加,且呈线性关系;二阶非线性滑移边界条件下的气膜刚度数值比一阶线性滑移边界条件下的气膜刚度数值更接近试验数值,其计算精度较高,特别是在低速、低压工况下更加明显。因此在低速低压釜用轴端干气密封中将应用二阶速度滑移条件下的流体力学理论来进行优化设计,指导工程应用。 展开更多
关键词 螺旋槽 干气密封 非线性滑移边界 气膜刚度 Maple程序
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基于CFD的端面空化对液膜密封稳态特性影响研究 被引量:12
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作者 李振涛 郝木明 +3 位作者 杨文静 庄媛 王选盈 孙鑫晖 《润滑与密封》 CAS CSCD 北大核心 2016年第2期26-31,共6页
基于满足质量守恒的空化模型,利用CFD FLUNET软件建立螺旋槽液膜密封端面三维模型,探讨螺旋槽结构参数对密封端面空化产生的影响规律,分析端面空化对密封端面间流体膜的开启力、液膜刚度、泵送率等的影响。结果表明:以液膜中气相体积分... 基于满足质量守恒的空化模型,利用CFD FLUNET软件建立螺旋槽液膜密封端面三维模型,探讨螺旋槽结构参数对密封端面空化产生的影响规律,分析端面空化对密封端面间流体膜的开启力、液膜刚度、泵送率等的影响。结果表明:以液膜中气相体积分数变化为判据,空化效应随槽深和槽数的增加而增强,随槽径宽径比的增加呈现先增强后减弱的趋势,但随螺旋角的增加而减弱;考虑空化效应后,液膜开启力和泵送量的数值与未考虑时有所降低,但变化趋势基本一致,而液膜刚度在一定的螺旋槽结构参数范围内波动较大,影响液膜的稳定性。因此,端面空化易导致密封失效。 展开更多
关键词 液膜密封 端面空化 稳态特性 螺旋槽
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螺旋槽气体端面密封动力学研究进展 被引量:24
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作者 曹登峰 宋鹏云 +1 位作者 李伟 赵越 《润滑与密封》 CAS CSCD 北大核心 2006年第5期178-182,191,共6页
气体端面密封属于非接触机械密封,密封操作的稳定性和可靠性与其动力学特性密切相关,螺旋槽气体端面密封动力学研究一直是该领域研究的热点和难点。综述了国内外气体端面密封动力学的理论及实验研究的发展历程、现状,指出低速气体端面... 气体端面密封属于非接触机械密封,密封操作的稳定性和可靠性与其动力学特性密切相关,螺旋槽气体端面密封动力学研究一直是该领域研究的热点和难点。综述了国内外气体端面密封动力学的理论及实验研究的发展历程、现状,指出低速气体端面密封动力学方面的理论研究和实验研究将是密封动力学研究的一个重点和方向。 展开更多
关键词 机械密封 气体端面密封 螺旋槽 动力学
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轴向微扰下干气密封螺旋槽润滑气膜的稳定性分析 被引量:32
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作者 杜兆年 丁雪兴 +1 位作者 俞树荣 张伟政 《润滑与密封》 EI CAS CSCD 北大核心 2006年第10期127-130,133,共5页
推导了干气密封螺旋槽内瞬态微尺度流动场的非线性雷诺方程,应用PH线性化方法及变分运算,得到了轴向微扰下气膜反作用力的增量,继而利用复数转换和迭代法对静态下气膜边值问题进行求解,获得了气膜轴向刚度的近似解析解,并通过动态稳定... 推导了干气密封螺旋槽内瞬态微尺度流动场的非线性雷诺方程,应用PH线性化方法及变分运算,得到了轴向微扰下气膜反作用力的增量,继而利用复数转换和迭代法对静态下气膜边值问题进行求解,获得了气膜轴向刚度的近似解析解,并通过动态稳定性分析,获得了稳定性最佳的螺旋槽几何参数值。 展开更多
关键词 干气密封 螺旋槽 轴向微扰 雷诺方程 气膜刚度 稳定性分析
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不等温下螺旋槽干气密封端面压力分布计算 被引量:11
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作者 陈侃 黄泽沛 +1 位作者 姚进 张智 《排灌机械工程学报》 EI 北大核心 2013年第7期605-610,共6页
以干气密封无限窄槽理论为基础,提出了不等温假设条件修正算法.利用机械密封端面温度分布近似算法求解干气密封端面温度分布函数,与液体介质情况不同的是,对于空气,其热传导角根据经验取为液体的3倍.为了更方便地求解Gabriel算法中的微... 以干气密封无限窄槽理论为基础,提出了不等温假设条件修正算法.利用机械密封端面温度分布近似算法求解干气密封端面温度分布函数,与液体介质情况不同的是,对于空气,其热传导角根据经验取为液体的3倍.为了更方便地求解Gabriel算法中的微分方程,采用线性曲线拟合方法获得与前面求得的温度分布函数近似的密封端面温径关系曲线T(r).将T(r)代入Gab-riel算法中代替原来的温度常量T,从而得到非等温条件下的螺旋槽干气密封端面压力分布微分方程.采用4阶龙格库塔法求解该微分方程,得到沿半径方向的端面压力分布.通过与文献结果对比发现,当膜厚分别为5.08,3.05,2.03μm时,采用非等温条件修正后的算法所得槽根处压力pg比原算法提高了6.8%,5.0%,2.7%.计算结果较好地反映了干气密封端面压力分布槽根处最高、外半径处次之、内半径处最小之一般规律.与有限元法相比,该算法应用更为便捷. 展开更多
关键词 干气密封 端面温度 螺旋槽 端面压力 无限槽
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螺旋槽端面微间隙高速气流润滑密封特性 被引量:16
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作者 马春红 白少先 +1 位作者 彭旭东 李纪云 《摩擦学学报》 EI CAS CSCD 北大核心 2015年第6期699-706,共8页
考虑入口气流压力损失和出口阻塞效应,建立了微间隙端面高速气体润滑密封分析数学模型,对螺旋槽端面微间隙高速气流润滑密封特性进行研究.重点分析了不同密封间隙、密封压力和转速等工况条件下,入口压力损失和出口阻塞效应对开启力、泄... 考虑入口气流压力损失和出口阻塞效应,建立了微间隙端面高速气体润滑密封分析数学模型,对螺旋槽端面微间隙高速气流润滑密封特性进行研究.重点分析了不同密封间隙、密封压力和转速等工况条件下,入口压力损失和出口阻塞效应对开启力、泄漏率及气膜刚度等密封特性参数的影响规律.结果表明:高速气体阻塞效应使出口压力高于环境压力,压力损失使入口气膜压力下降,导致泄漏率和气膜刚度明显下降,并使开启力增加.随着密封压力和密封间隙的增加,阻塞效应增强,导致泄漏率和气膜刚度显著降低.密封压力10 MPa时,泄漏率降低可达20%,气膜刚度的下降可达30%以上. 展开更多
关键词 螺旋槽 干气密封 高速气流 阻塞流
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螺旋槽干运行非接触气体密封的理论分析与试验 被引量:19
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作者 徐万孚 刘雨川 +2 位作者 李广宇 徐礼富 沈心敏 《机械工程学报》 EI CAS CSCD 北大核心 2003年第4期124-127,共4页
设计制造了“W ndef 288型”螺旋槽干运行非接触气体密封(线速度111,4 m/s、温度110℃),并进行了动态与稳定性分析、特别是角向半频自激振动及共振振荡的理论分析。工业模拟运行了近3 000 h(100余次起停),上万的测试数据表明了其优异的... 设计制造了“W ndef 288型”螺旋槽干运行非接触气体密封(线速度111,4 m/s、温度110℃),并进行了动态与稳定性分析、特别是角向半频自激振动及共振振荡的理论分析。工业模拟运行了近3 000 h(100余次起停),上万的测试数据表明了其优异的性能。 展开更多
关键词 螺旋槽密封 稳定性 半频自激振动 气膜振荡 非接触气体密封
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干气密封螺旋槽衍生结构演变规律与工况适用性 被引量:11
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作者 江锦波 陈源 +2 位作者 徐奇超 李纪云 彭旭东 《摩擦学学报》 EI CAS CSCD 北大核心 2018年第3期264-273,共10页
研究了高压低速和高速低压两种典型工况条件下干气密封(DGS)螺旋槽的衍生结构演变规律与工况适用性.基于气体润滑理论,建立了槽堰组合螺旋槽DGS数学模型,采用有限差分法求解稳态雷诺方程.基于完全析因设计方法,数值计算了不同槽堰组合... 研究了高压低速和高速低压两种典型工况条件下干气密封(DGS)螺旋槽的衍生结构演变规律与工况适用性.基于气体润滑理论,建立了槽堰组合螺旋槽DGS数学模型,采用有限差分法求解稳态雷诺方程.基于完全析因设计方法,数值计算了不同槽堰组合螺旋槽DGS的稳态密封性能随开槽面积比的变化规律,对比分析了槽堰组合螺旋槽DGS与螺旋槽DGS的密封性能最优值,并提出了不同工况条件下进一步提高螺旋槽DGS气膜刚度的结构改型方向.结果表明:通过基体螺旋槽与附加密封堰的组合设计有望显著提高螺旋槽DGS的气膜刚度,其中在高速低压条件下附加密封堰设在上游侧中间的双流通槽DGS的气膜刚度增幅达到20%;存在不同的最佳开槽面积比使得槽堰组合螺旋槽获得最大的开启力和气膜刚度. 展开更多
关键词 干气密封 螺旋槽 衍生结构 气膜刚度
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