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A hybrid floating brush seal (HFBS) for improved sealing and wear performance in turbomachinery applications.

机译:一种混合浮动刷式密封件(HFBS),可改善涡轮机械应用中的密封和磨损性能。

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A conceptually new type of seal has been developed for gas turbine applications which dramatically reduces wear and leakage associated with current labyrinth and brush seal technologies.; The Hybrid Floating Brush Seal (HFBS) combines brush seal and film riding face seal technologies to create a hybrid seal that allows both axial and radial excursions of the sealed shaft, while simultaneously eliminating interface surface speeds (friction and heat) between the rotor and the brush material that characterize standard brush seal technology.; A simple test rig was designed to evaluate feasibility of the HFBS under relatively low pressures and rotational speeds (50psig, 5krpm). A second test stand was created to study the effects of centrifugal force on bristle deflection. A third test facility was constructed for prototype development and extensive room temperature testing at moderate pressures and fairly high rotational speeds (100psig, 40krpm). This test rig also allowed the evaluation of the HFBS during axial movement of a rotating shaft.; An analytical model to predict the effects of centrifugal force on the bristles of a rotating brush seal was developed.; Room temperature analysis of the HFBS proved successful for relatively high operating rotational velocities at moderate pressures with very acceptable leakage rates for gas turbine engines. Brush seals were able to track rotor speeds up to 24krpm while maintaining sealing integrity. The HFBS's ability to function under axial shaft displacement and synchronous dynamic radial loading was also proven successful. Hydrodynamic performance of the face seal was proven to provide adequate stiffness and load carrying capacity to keep the brush seal from contacting the face seal at pressure drops across the brush of up to 100psi. Leakage performance over standard brush seal and labyrinth technology was quite dramatic. The HFBS showed its sealing advantage using much higher radial interference between the rotor and the bristle bore over standard brush seal designs. Experimental results of the HFBS showed leakage reductions of 6 to 7 times that of a standard brush seal at the same operating pressure ratios and rotational speed and an order of magnitude less than numerical predictions of a standard labyrinth seal. (Abstract shortened by UMI.)
机译:已经为燃气轮机应用开发了一种概念上新颖的密封件,可显着减少与当前迷宫式和刷式密封技术有关的磨损和泄漏。混合浮动刷式密封(HFBS)结合了刷式密封和薄膜骑乘式面密封技术,创建了一种混合密封,可实现密封轴的轴向和径向偏移,同时消除了转子与转子之间的界面表面速度(摩擦和热量)。具有标准电刷密封技术特征的电刷材料。设计了一个简单的试验台,以评估HFBS在相对较低的压力和转速(50psig,5krpm)下的可行性。创建了第二个试验台,以研究离心力对刷毛偏转的影响。建造了第三个测试设施,用于在中等压力和相当高的转速(100psig,40krpm)下进行原型开发和广泛的室温测试。该测试台还允许在旋转轴轴向运动期间评估HFBS。建立了一个分析模型来预测离心力对旋转刷式密封件的刷毛的影响。事实证明,HFBS的室温分析可在中等压力下以相对较高的运行转速取得成功,并且燃气轮机的泄漏率非常可接受。电刷密封件能够在保持密封完整性的同时跟踪高达24krpm的转子速度。 HFBS在轴向轴位移和同步动态径向载荷下的功能也被证明是成功的。事实证明,面部密封件的流体力学性能可提供足够的刚度和承载能力,以防止在最高100psi的整个刷子压降下,刷子密封件不接触面部密封件。与标准电刷密封和迷宫技术相比,泄漏性能非常好。相比于标准的电刷密封设计,HFBS通过在转子和刷毛孔之间产生更高的径向干涉来显示其密封优势。 HFBS的实验结果表明,在相同的工作压力比和转速下,泄漏量减少了标准刷式密封件的6到7倍,并且比标准迷宫式密封件的数值预测小了一个数量级。 (摘要由UMI缩短。)

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