首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Influence of Manufacturing Variation on the Dynamic and Tribological Performance of Tilting Pad Journal Bearings
【24h】

Influence of Manufacturing Variation on the Dynamic and Tribological Performance of Tilting Pad Journal Bearings

机译:制造变异对倾斜垫轴颈轴承动态和摩擦学性能的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A robust approach to investigate a tilting pad journal bearing (TPJB) as a whole tolerance stack-up assembly is presented. Normal component variation within actual design tolerances is considered. The vector loop is expanded via Taylor series for sensitive analysis. The bearing shell and tilting pad machined radiuses for each pad are found to be the more influential dimensional characteristics on the assembled clearance and preload. A leading edge relief (LER) was used to avoid unloaded pads fluttering, while maintaining a satisfactory bearing assembled clearance in the loaded pads throughout the resultant preload variation. Pivot flexibility and preload loss due to pad wear in service life were included in the preload variation assessment. Surface response multivariate multi-response models were built for a 4-pad TPJB under load between pad (LBP) and load on pad (LOP) configurations. Desirability functions rendered the maximum and minimum rotordynamic coefficient and tribological parameter responses across speed. The LOP configuration showed more variation in the direct rotordynamic coefficients, while the LBP configuration indicated more sensitive cross-coupled coefficients with very strong sign change in some cases. Among the tribological performance parameters, the eccentricity and pad maximum pressure were more affected, followed by the minimum film thickness, and weakly by the power loss, and oil film temperature. The dispersion of the tribology parameters under normal manufacturing variation is found of importance. Four, and seven extreme geometrical state cases were identified for the LBP, and LOP bearing configurations, respectively.
机译:提出了一种稳健的方法来研究作为整个公差堆叠组件的倾斜垫轴承(TPJB)。考虑实际设计公差内的正常分量变化。矢量环通过泰勒序列扩展以进行敏感分析。每个垫的轴承壳和倾斜垫加工半径被发现是组装间隙和预载的更有影响力的尺寸特性。用于避免卸载焊盘浮动的前缘浮雕(LER),同时在整个所得的预载变化中保持载荷垫中的令人满意的轴承组装间隙。在预加载变化评估中包括焊盘磨损引起的焊盘磨损引起的枢轴灵活性和预载损失。表面响应多变量多元响应模型是为焊盘(LBP)之间的负载下的4垫TPJB而构建的,并在焊盘上的负载(循环)配置中。期望功能呈现跨速度的最大和最小旋转动力系数和摩擦学参数响应。 LOP配置在直接旋转动力系数方面显示出更多的变化,而LBP配置在某些情况下表明了具有非常强烈的符号变化的敏感的交叉耦合系数。在摩擦学性能参数中,偏心率和焊盘最大压力更大,接着是最小膜厚度,并且电力损耗弱,油膜温度弱。摩擦学参数在正常制造变化下的分散是重要的。为LBP和LOP轴承配置鉴定了四个和七种极端几何状态壳体。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号