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首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >A test facility for the measurement of torques at the shaft to seal interface in brush seals
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A test facility for the measurement of torques at the shaft to seal interface in brush seals

机译:用于测量电刷密封件中轴与密封接口处扭矩的测试设备

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摘要

An important factor in the performance of brush seals for a wide range of gas turbine applications is the rate of wear at the seal to shaft interface, which is dependant on the contact pressure that exists between the bristles and rubbing surface. This is dependent on a variety of effects. Principally, these are the aerodynamic forces bending the bristles onto the rubbing surface, frictional effects within the bristle pack and at the backing ring that arise with the application of pressuredifferential, geometrical changes due to centrifugal and thermal growths, and transient differential movements of the rotor that develop in flight manoeuvres. In order to investigate the effect of these phenomena on contact pressure, a test facility hasbeen devised in which the torque exerted by a brush seal on a rotating shaft is used as an indirect measurement of contact pressure. This has necessitated the design of a test facility in which all system torques can be fully calibrated. Consequently, apressure balanced design has been adopted in which applied seal differential and pressure levels have a minimal effect on axial loads at the rotor bearing assembly. The primary method of torque measurement is the instantaneous deceleration of the rotor.Thus, measurements over a wide speed range are acquired with high frequency instrumentation. The means whereby small parasitic torques are evaluated and corrected is given. Results demonstrating the dependence of contact pressure on seal differential andpressure levels are presented.
机译:刷式密封件在各种燃气轮机应用中性能的一个重要因素是密封件与轴界面处的磨损率,这取决于刷毛和摩擦表面之间存在的接触压力。这取决于各种效果。主要是将刷毛弯曲到摩擦表面上的空气动力、刷毛组内和背环处的摩擦效应(随着压差的应用而产生)、由于离心和热增长引起的几何变化,以及在飞行机动中产生的转子的瞬态差动。为了研究这些现象对接触压力的影响,设计了一种测试设施,其中刷式密封件施加在旋转轴上的扭矩用作接触压力的间接测量。因此,有必要设计一个测试设施,使所有系统扭矩都可以完全校准。因此,采用了压力平衡设计,其中施加的密封差和压力水平对转子轴承组件的轴向载荷的影响最小。扭矩测量的主要方法是转子的瞬时减速。因此,使用高频仪器可以在很宽的速度范围内进行测量。给出了评估和校正小寄生扭矩的方法。结果表明了接触压力对密封差和压力水平的依赖性。

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