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Nondestructive evaluation of residual stress and TGO by using laser ultrasonic method

机译:激光超声方法对残余应力和TGO的无损评估

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Noncontact laser ultrasonic methods are provided for nondestructive characterization of surface residual stress and thermally growth oxide (TGO) in thermal barrier coating (TBC). Stress-acoustic coefficients of Rayleigh wave were used to characterize the surface residual stresses of TBC specimens which were prepared by electronic beam physical vapor deposition (EB-PVD) method. The ultrasonic testing results of TBC specimens before and after oxidation with 1 time and 50 times agree well with the corresponding Raman spectral analyses. Meanwhile, a physical mode of thin multi-layered structure is established for the case of received ultrasonic longitudinal waveform consisting of reverberant overlapping echoes. Further, the transform function of the mode was derived to evaluate the TGO in this work. The experimental transform functions of TBC specimens above shows that the amplitude decreases at high order resonant frequencies with increase of TGO thickness. The proposed methods are able to nondestructively characterize the local surface stress and TGO in TBC, and are important to practical engineering application.
机译:提供非接触激光超声波方法,用于在热阻挡涂层(TBC)中的表面残余应力和热生长氧化物(TGO)的非破坏性表征。 RAYLEIGH波的应力 - 声学系数用于表征通过电子束物理气相沉积(EB-PVD)方法制备的TBC样本的表面残余应力。氧化前后TBC样品的超声波检测结果与1次和50倍的氧化和50倍相同,相应的拉曼光谱分析很好。同时,为接收的超声波纵向波形建立了由混响重叠回波组成的情况的薄多层结构的物理模式。此外,导出模式的变换函数以评估该工作中的TGO。上述TBC样本的实验变换功能表明,随着TGO厚度的增加,幅度在高阶谐​​振频率下降低。所提出的方法能够非破坏性地表征TBC中的局部表面应力和TGO,对实际工程应用很重要。

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