一种测定单晶合金稳态蠕变特性的方法

M. Tkach, S. Kulishov, V. Polischuk, Yurii Halynkin, A. Proskurin, Vladimir Kluchnyk
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摘要

给出了一种基于漫射参考波和分离分支的数字散斑干涉仪的台架描述,该台架可以实时确定物体的固有频率和振动模式。频率范围是100…4000Hz,对某燃气涡轮发动机涡轮转子叶片的振动特性进行了实验研究,对叶片杉树部分进行了刚性紧固,将叶片固定在锁紧装置中,再将叶片固定在夹紧装置中。在100 ~ 4000 Hz的频率范围内,确定了9种叶片振动模态。研究对象为燃气涡轮发动机的涡轮转子叶片,尾缘高度为288 mm,中部弦长为88.5 mm。基于三维扫描得到的多面体,建立了转子叶片的固态几何模型。关于频率范围100…4000Hz时,利用ANSYS Workbench软件包,采用有限元法对叶片的谐振频率进行了一系列计算。得到了多种振动模态,并对实验数据和计算数据进行了比较。对叶片固有振动频率的频谱分析表明,在相同模态下,得到的结果偏差的均方根值为5.5%。为了验证软件计算,使用固定在锁中的叶片的三维模型重新计算了共振频率的值。为了确定固定燃气轮机叶片的边界条件对其振动特性的影响,对在不同高度切断部分叶片的叶片模型进行了一系列的共振频率和振动模态计算。结果表明,在对固定边界条件进行建模时,将叶根的杉树部分切除,可以简化所研究叶片三维模型的几何结构,从而简化计算过程,同时使计算精度损失最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A method for determining the characteristics of the steady creep of a single crystal alloy
A description of the stand based on a digital speckle interferometer with a diffuse reference wave and separated branches is given, which allows determining the natural frequencies and vibration modes of objects in real time. In the frequency range 100...4000 Hz, an experimental study of the vibration characteristics of a turbine rotor blade of a gas turbine engine was carried out, with rigid fastening of the blade fir tree part, which was achieved by fixing the blade in the lock and then fixing it in the clamping device. In the frequency range from 100 to 4000 Hz, 9 blade vibration modes were identified. The object of the study is the turbine rotor blade of a gas turbine engine with a height along the trailing edge of 288 mm and a chord in the middle section of 88.5 mm. A solid-state geometric model of a rotor blade based on a faceted body obtained from 3D scanning has been created. Concerning the frequency range 100...4000 Hz, using the ANSYS Workbench software package, a series of calculations of the resonant frequencies of the blade by the finite element method was carried out. Many vibration modes have been obtained, and the data obtained from experiments and calculations have been compared. The analysis of the spectrum of the natural vibration frequencies of the blade showed that the root-mean-square value of the deviations between the results obtained is 5.5% for the same modes. To verify the software calculation, the values of the resonance frequencies were recalculated using a three-dimensional model of the blade fixed in the lock. To determine the influence of the boundary conditions for fixing a gas turbine blade on its vibration characteristics, a series of calculations of the resonance frequencies and vibration modes of the blade model with cutting off a part of the blade at different heights was carried out. It is shown that cutting off the fir tree part of the blade root when modeling the boundary conditions of fixing makes it possible to simplify the calculation process by simplifying the geometry of the three-dimensional model of the blade under study, with a minimum loss of calculation accuracy.
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