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ROTORDYNAMIC FORCE COEFFICIENTS OF A HYBRID BRUSH SEAL: MEASUREMENTS AND PREDICTIONS

机译:混合刷密封的转子动力力系数:测量和预测

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Brash seals effectively control leakage in air breathing engines, albeit only applied for relatively low-pressure differentials. Hybrid brush seals (HBS) are an alternative to resolve poor reliability resulting from bristle tip wear while also allowing for reverse shaft rotation operation. A HBS incorporates pads contacting the shaft on assembly; and which under rotor spinning, lift off due to the generation of a hydrodynamic pressure. The ensuing gas film prevents intermittent contact, reducing wear and thermal distortions. The paper presents rotordynamic measurements conducted on a test rig for evaluation of HBS technology. Single frequency shaker loads are exerted on a test rotor holding a hybrid brush seal and measurements of rotor displacements follow for operating conditions with increasing gas supply pressures and two rotor speeds. A frequency domain identification method delivers the test system stiffness and damping coefficients. The HBS stiffness coefficients are not affected by rotor speed though the seal viscous damping shows a strong frequency dependency. The identified HBS direct stiffness decreases -15% as the supply/discharge pressure increases P_r= 1.7 to 2.4. The HBS cross-coupled stiffnesses are insignificant, at least one order of magnitude smaller than the direct stiffnesses. A structural loss factor (γ) and dry friction coefficient (μ) represent the energy dissipated in a HBS by the bristle-to-bristle and bristle-to-pads interactions. Predictions of HBS stiffness and damping coefficients correlate well with the test derived parameters. Both model predictions and test results show the dramatic reduction of the seal equivalent viscous damping coefficients as the excitation whirl frequency increases.
机译:Brash密封件有效地控制空气呼吸发动机的泄漏,尽管仅适用于相对低压差分。混合刷密封件(HBS)是解决刷毛尖端磨损导致的可靠性差的替代方案,同时还允许反向轴旋转操作。 HBS包括接合轴在组装上的焊盘;在转子旋转下,由于产生流体动力学压力,抬起。随后的气体膜防止间歇接触,减少磨损和热扭曲。本文介绍了在试镜上进行的旋转动力测量,用于评估HBS技术。单频振动器负载施加在保持混合刷密封和转子位移的测量转子上,遵循用于运行条件,随着气体供应压力和两个转子速度的运行条件。频域识别方法提供测试系统刚度和阻尼系数。 HBS刚度系数不受转子速度的影响,尽管密封粘性阻尼显示出强的频率依赖性。所识别的HBS直接刚度降低-15%,因为电源/放电压力增加P_R = 1.7至2.4。 HBS交叉耦合刚度是微不足道的,比直接刚度小一个数量级。结构损失因子(γ)和干摩擦系数(μ)代表刷毛与刷毛和刷毛与焊盘相互作用在HBS中散发的能量。 HBS刚度和阻尼系数的预测与测试衍生参数良好相关。模型预测和测试结果均显示出密封等效粘性阻尼系数的显着降低,因为激发旋转频率增加。

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