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Research and application of improved thin-layer element method of aero-engine bolted joints

机译:航空发动机螺栓连接的改进薄层单元法的研究与应用

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摘要

A new dynamic modeling method called the improved thin-layer element method is proposed to apply to the aero-engine bolted joints. The thin-layer elements are partitioned based on the interface contact stress distribution. In addition, the material parameters of the partitioned thin-layer elements are determined by the bolted joints stiffness technique and the fractal contact theory without the experimental results, which allows the engineer to estimate the dynamic characteristics of whole structure before the physical prototype is available. First, the modeling principles of the improved thin-layer element method are studied and the bolted joints stiffness is analyzed. Next, the material parameters of the partitioned thin-layer elements are determined on the basis of the interface contact stress distribution characteristics of the bolted joints. Finally, this method is applied to the simulative casing bolted joints structure and the results are compared with the experimental results in order to verify the proposed method. The results indicate that the improved thin-layer element method is more accurate than the thin-layer elements method, and the material parameters of the partitioned thin-layer elements can be expressed by the structural parameters of the aero-engine bolted joints without updating based on the experiment.
机译:提出了一种新的动态建模方法,称为改进的薄层单元法,用于航空发动机螺栓连接。薄层元件根据界面接触应力分布进行分区。另外,通过螺栓连接的刚度技术和分形接触理论来确定分隔的薄层单元的材料参数,而没有实验结果,这使工程师可以在物理样机可用之前估计整个结构的动力特性。首先,研究了改进的薄层单元法的建模原理,并分析了螺栓连接的刚度。接下来,基于螺栓接头的界面接触应力分布特性来确定分隔的薄层元件的材料参数。最后,将该方法应用于模拟套管螺栓连接结构,并与实验结果进行了比较,以验证该方法的有效性。结果表明,改进后的薄层单元法比薄层单元法更为准确,所划分的薄层单元的材料参数可以通过航空发动机螺栓连接的结构参数来表示,而无需进行更新。在实验上。

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