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AN INVESTIGATION OF HEAT GENERATION CHARACTERISTICS OF BRUSH SEALS

机译:刷子密封的传热特性研究

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摘要

Brush seals are considered as a category of compliant seals, which tolerate a great high level of interference between the seal and the rotor or shaft. Their superior leakage characteristics have opened many application fields in the turbo-machinery world, ranging from industrial steam turbines to jet engines. However, brush seal designers have to find a trade-off between the lower parasitic leakage but higher heat generation properties of brush seals for given operation conditions. As brush seals can maintain contact with the rotor for a wide range of operating conditions, the contact force/pressure generated at the seal-rotor interface becomes an important design parameter for sustained seal performance and longevity of its service life. Furthermore, due to this contact force at the interface, frictional heat generation is inevitable and must be evaluated for various design and operating conditions. In this paper, frictional heat generation at the seal-rotor interface is studied. To capture temperature rise at the interface, a thermal image of the seal and rotor is taken with an infrared camera under various operating conditions. The temperature map of the rotor is compared to results from thermal finite element analysis of the rotor to back calculate the heat flux to the rotor. A closed form equation for frictional heat generation is suggested as a function of seal design parameters, material properties, friction coefficient and empirical factors from testing.
机译:电刷密封被认为是顺应性密封的一种,它可以承受密封与转子或轴之间的高度干涉。它们出色的泄漏特性在涡轮机械领域开辟了许多应用领域,从工业蒸汽轮机到喷气发动机。然而,对于给定的操作条件,电刷密封件设计者必须在较低的寄生泄漏与较高的发热特性之间找到一个折衷。由于电刷密封件可以在很宽的工作条件范围内保持与转子的接触,因此,在密封件-转子界面处产生的接触力/压力成为保持密封件性能和延长使用寿命的重要设计参数。此外,由于在界面处的这种接触力,摩擦热的产生是不可避免的,必须针对各种设计和操作条件进行评估。本文研究了密封-转子界面处的摩擦生热。为了捕获界面处的温度升高,在各种操作条件下,用红外热像仪拍摄密封件和转子的热图像。将转子的温度图与转子热有限元分析的结果进行比较,以反算到转子的热通量。提出了一个封闭的摩擦生热方程,它是密封设计参数,材料特性,摩擦系数和试验经验因素的函数。

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