西安交通大学叶轮机械研究所,西安,710049
网络首发:2010-07-10,
纸质出版:2010
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陈春新, 李军, 丰镇平. 刷式密封刷丝束与转子接触力的数值研究[J]. 西安交通大学学报, 2010,44(7):23-27.
Numerical Investigation into Bristle-Rotor Contact Force of Brush Seals[J]. 2010, 44(7): 23-27.
采用线性悬臂梁和增强的拉格朗日法建立了单根刷丝与转子的接触力模型
同时考虑了刷式密封中刷丝与转子之间的接触力以及在转子横截面内流体对刷丝的均布力
探讨了刷丝的安装角度、刷丝与转子的干涉量、转子横截面内的流体均布力对刷丝与转子之间接触力的影响特性.研究结果表明:在所计算的参数范围内
刷丝的流体均布力对接触力的影响力远大于刷丝的安装角度和刷丝与转子的干涉量的影响力.当刷丝安装角小于35°时
刷丝与转子的接触力随着刷丝安装角的增大而略微减小; 当刷丝安装角大于35°时
受转子横截面内流体对刷丝的均布力的影响
刷丝与转子的接触力随刷丝安装角的增加而增大.
The contact between the single bristle and the rotor shaft surface was modeled using the linear cantilever beam model and the augment Lagrange contact theory. The bristle-rotor contact force and flow-induced uniformly distributed bristle load in rotor cross section were considered in the present model. The influence of the bristle lay angle
interference and flow-induced uniformly distributed load in rotor cross section on the bristle-rotor contact force was numerically explored. The results show that the effect of the flow-induced uniformly distributed bristle load in rotor cross section on the rotor-bristle contact force is more significant than that of the bristle lay angle and the interference in the range of the studied parameters. The bristle-rotor contact force has a minimum value when the bristle lay angle equals 35°. In addition
the contact force decreases with the angle when the angle is below 35°. However
when the bristle lay angle varies beyond 35°
the contact force increases with the angle because of the effect of the flow-induced uniformly distributed load on the bristle in the rotor cross section.
STANGO R J, ZHAO H, SHIA C Y. Analysis of contact mechanics for rotor-bristle interference of brush seal [J]. Journal of Tribology, 2003,125(2): 414-420.
阳虹,杨建道,李军,等. 刷式密封技术及其在汽轮机优化设计中的应用 [J]. 动力工程, 2009,29(8):737-742.
YANG Hong, YANG Jiandao, LI Jun, et al. Research of brush seal technique and its application in steam turbine optimization design [J]. Journal of Power Engineering, 2009,29(8):737-742.
BAYLEY F J, LONG C A A. Combined experimental and theoretical study of flow and pressure distributions in a brush seal [J]. Journal of Engineering for Gas Turbine and Power, 1993,115(2):404-410.
AKSIT M F, TICHY J A A. A computational model of brush seal bristle deflection [C]∥32nd AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit. Reston, VA, USA: AIAA, 1996:2909.
CRUDGINGTON P F, BOWSHER A. Brush seal pack hysteresis [C]∥38th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit. Reston, VA, USA: AIAA, 2002:3794.
ZHAO H, STANGO R J. Effect of flow-induced radial load on brush/rotor contact mechanics [J]. Journal of Tribology, 2004, 126(1):208-214.
GUARDINO C, CHEW J W. Numerical simulation of three-dimensional bristle bending in brush seals [J]. Journal of Engineering for Gas Turbine and Power, 2005,127(3):583-591.
CRUDGINGTON P, BOWSHER A, LIOYD D. Bristle angle effects on brush seal contact pressures [C]∥ 45th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit. Reston, VA, USA: AIAA, 2009: 5168.
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