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Vibration Characteristics and Damping Analysis of the Blisk-Deposited Hard Coating Using the Rayleigh-Ritz Method

机译:瑞利-里兹方法在飞盘沉积硬质涂层的振动特性及阻尼分析

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For the purpose of improving the working reliability of the blisk (integrally-bladed disk) under severe environment, a passive vibration reduction method by depositing a hard coating on both sides of blades is developed and then investigated systematically. Firstly, an analytical model of the blisk-deposited hard coating is taken into account. Secondly, by using the Oberst beam theory and axial symmetry property, the composite hard-coated blade is equivalent to a special homogeneous blade possessing the equivalent material parameters. Then, energy equations of the blisk with hard-coated blades are derived by using the complex-valued modulus, and then substituted into the Lagrange equations. Additionally, eigenvalue equations of the blisk with hard-coated blades are acquired by taking advantage of Rayleigh-Ritz method, and its natural characteristics are obtained subsequently. Further, the frequency response functions of the blisk with hard-coated blades are formulated by using proportional damping to achieve its damping matrix. Finally, a stainless-steel blisk with deposited NiCoCrAlY + YSZ hard coating on both sides of the blades is chosen as the study case to conduct numerical calculations, and the results are compared with those obtained by experimental tests in terms of natural frequencies and mode shapes. The variation of natural frequencies, modal loss factors and frequency response functions of the blisk generated by hard coating are studied, respectively, and the influence of the coating thickness on the damping capacity are further discussed.
机译:为了提高叶轮(整体叶盘)在恶劣环境下的工作可靠性,开发了一种通过在叶片两侧沉积硬涂层的被动减振方法,然后进行系统研究。首先,考虑了大气泡沉积的硬涂层的分析模型。其次,利用奥伯斯特梁理论和轴向对称性,将复合硬涂层叶片等同于具有相同材料参数的特殊均质叶片。然后,使用复数值模量推导具有硬涂层叶片的叶盘的能量方程,然后将其代入拉格朗日方程。此外,利用瑞利-里兹方法获得了带有硬涂层叶片的叶盘的特征值方程,并随后获得了其自然特性。此外,带有硬涂层叶片的叶盘的频率响应函数通过使用比例阻尼来实现,以实现其阻尼矩阵。最后,选择在叶片两侧均沉积有NiCoCrAlY + YSZ硬涂层的不锈钢叶盘作为研究案例进行数值计算,并将结果与​​通过自然频率和振型进行实验测试的结果进行比较。 。分别研究了硬涂层产生的叶盘的固有频率,模态损耗因子和频率响应函数的变化,并进一步讨论了涂层厚度对阻尼能力的影响。

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