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Mistiming identification and model updating of coating blisk based on modal test

机译:基于模态试验的包衣炸药误识别与模型更新

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Compared with a single material structure, the coating blisk contains at least two kinds of materials, thus the mistuning modeling and identification are more challenging than the usual bladed disk structure. In this study, on the basis of the component mode mistuning (CMM) and modal test, a method of mistuning identification was proposed for the coating blisk. The CMM model of the coating blisk was described firstly. Considering the mass and stiffness mistuning of the blisk substrate and coating materials simultaneously, the mistuning identification formula of the coating blisk was derived. Then, a novel method for the mistuning identification of coating blisk by measuring only two point modal coordinates of the blades was proposed. For the simplified numerical model and the relevant actual structure of coating blisk, the mistuning identifications were performed respectively, it was shown that the identification results are basically consistent with the predefined mistuning, which proved the rationality of the proposed mistuning identification method. Finally, based on the identification result of actual coating blisk, the original finite element model (FEM) of coating blisk was updated, and the simulation precision of FEM was improved. (C) 2018 Elsevier Ltd. All rights reserved.
机译:与单一材料结构相比,涂层叶盘至少包含两种材料,因此与常规的叶片盘结构相比,雾化建模和识别更具挑战性。在此基础上,基于成分模态弥散(CMM)和模态试验,提出了一种涂层泡沫的弥散识别方法。首先描述了涂层药渣的CMM模型。同时考虑了叶盘基体和涂层材料的质量和刚度模糊,得出了涂层叶盘的模糊识别公式。然后,提出了一种仅通过测量叶片的两点模态坐标来雾化涂层的方法。对于简化的数值模型和涂层叶盘的相关实际结构,分别进行了雾化识别,结果表明,识别结果与预定的雾化基本吻合,证明了所提出的雾化识别方法的合理性。最后,根据实际涂层炸药的识别结果,更新了涂层炸药的原始有限元模型(FEM),提高了有限元仿真的精度。 (C)2018 Elsevier Ltd.保留所有权利。

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