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A combined numerical-experimental model of air foil bearing compliant structure

机译:空气箔轴承结构的组合数值实验模型

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The paper concerns the development process of numerical-experimental model of air foil bearing compliant structure. Theoretically, static and dynamic characteristics of the foil bearing are the result of elastic combined properties of the two serially connected elements. One of them is a thin gas film of very small thickness and relatively high static and dynamic stiffness. The second elastic element is a pretensioned bump foil spring. This paper focuses on the properties of compliant foil structure and leaves aside the gas film behavior. At the beginning of the model development, the global stiffness and damping properties of compliant structure were obtained from the test stand measurements. In the next step, some assumptions concerning the model were made. The main one was the replacememy of the single bumps of the corrugated foil by the set of elastic-damping numerical elements. At last, the fine-tuning of the model was carried out. The tuning involved changing of subelements local damping and stiffness properties, which in effect influenced the global properties of foil bearing. The tuning criterion for the model was defined as follows: the bearing global stiffness and damping properties of the model should not differ from the experimentally obtained values more than 10%.
机译:本文涉及符合柔性结构的空气箔数值实验模型的开发过程。理论上,箔轴承的静态和动态特性是两个串联连接元件的弹性组合性能的结果。其中一个是非常小的厚度和相对高的静态和动态刚度的薄气膜。第二弹性元件是预张紧的凸块箔弹簧。本文侧重于柔顺箔结构的性质,留下气膜行为。在模型开发开始时,从测试台测量获得柔顺结构的全局刚度和阻尼性能。在下一步中,制作了一些关于模型的一些假设。主要的主要是通过弹性阻尼数元件组的瓦楞箔的单个凸块的替换。最后,进行了模型的微调。调谐涉及改变子元素局部阻尼和刚度性能,其影响影响了箔轴承的全局性质。该模型的调谐标准定义如下:模型的轴承全球刚度和阻尼性能与大于10%以上的实验值不同。

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