ISSN   1004-0595

CN  62-1224/O4

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许静, 彭旭东, 白少先, 孟祥铠, 李纪云. 高压干气密封扭转变形结构因素影响分析[J]. 摩擦学学报, 2014, 34(5): 543-552.
引用本文: 许静, 彭旭东, 白少先, 孟祥铠, 李纪云. 高压干气密封扭转变形结构因素影响分析[J]. 摩擦学学报, 2014, 34(5): 543-552.
XU Jing, PENG Xu-dong, BAI Shao-xian, MENG Xiang-kai, LI Ji-yun. Analysis of Structural Factor Effect on Torsion Deformation for a Dry Gas Seal at High Pressures[J]. TRIBOLOGY, 2014, 34(5): 543-552.
Citation: XU Jing, PENG Xu-dong, BAI Shao-xian, MENG Xiang-kai, LI Ji-yun. Analysis of Structural Factor Effect on Torsion Deformation for a Dry Gas Seal at High Pressures[J]. TRIBOLOGY, 2014, 34(5): 543-552.

高压干气密封扭转变形结构因素影响分析

Analysis of Structural Factor Effect on Torsion Deformation for a Dry Gas Seal at High Pressures

  • 摘要: 基于圆环理论以及气体润滑理论,以复杂截面机械密封环为研究对象,建立密封扭转变形无量纲分析模型;提出了干气密封端面膜压引起端面扭转变形的计算方法,并基于该法,采用多因素优化法研究密封环结构和辅助密封圈安放位置等因素对其扭转变形的影响规律,以期使结构影响规律化.结果表明:采用解析法与集中法计算膜压扭转变形是可行的;各结构参数对扭转变形的影响规律及程度不同;扭转角随台阶半径比π2、长度比π3、O型圈位置的长度比π5的增大而增大,随宽度比π4、内径ri的增大而减少;扭转角在π4≤3.5时随长宽比π1的增大而减小,当π4>3.5时,随π1的增大先增大后减小,在π1=2~3间形成最大值;π1值相比π2值,对扭转角影响不大;相比π1π2π3π4的影响,riπ5影响较小,相比密封结构,O型圈位置影响较小.

     

    Abstract: Taking the mechanical seals with complicated structures as the study object, the dimensionless mathematical model for the torsion deformation of the dry gas seals (DGS) at high pressure was presented based on circle theory and gas lubrication theory. The calculating method for the torsion deformation caused by the film pressure was present. The influence rules of the construction and position of secondary seals ring on the torsion deformation based on optimum method of multi-factor was studied. The results show that the analytic method and concentration method were feasible. The influence rules and degrees of various structure parameters on the torsion deformation of seal were different. The torsion angle increased with the increasing step to outer radius ratio π2、step length ratio π3、length ratio of the position of secondary seal ring π5. The torsion angle decreased with the strengthen of width ratio of step π4 and inside radius ri. When π4≤3.5, the torsion angle decreased with the increase of length-width ratio of step π1. When π4>3.5, the torsion angle increased first and then decreased, and the torsion angle was in the maximum when π1=2~3. Compared with the influence of π2, the torsion deformation was less affected by the influence of π1. Compared with the influence of π1, π2, π3, π4, ri and π5 had little influence. The influence of position of secondary sealing ring on torsion deformation had little influence compared with the influence of structure parameters.

     

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