首页> 外文期刊>Journal of Thermal Spray Technology >Anisotropic Elasticity of APS and HVOF CoNiCrAlY Coatings Studied by Resonant Ultrasound Spectroscopy with Laser Doppler Interferometry
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Anisotropic Elasticity of APS and HVOF CoNiCrAlY Coatings Studied by Resonant Ultrasound Spectroscopy with Laser Doppler Interferometry

机译:具有激光多普勒干涉测量的共振超声波光谱研究的APS和HVOF同胞涂层的各向异性弹性

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The splat-based layered structure of thermal spray coatings leads to elastic anisotropy; however, elucidating the anisotropic elastic properties of such coatings is a challenging subject because of the limited sample size and microstructural factors such as high defect level. The objective of this study is to investigate the anisotropic elasticity of the as-sprayed and heat-treated CoNiCrAlY coatings prepared by atmospheric plasma spraying (APS) and high-velocity oxygen fuel (HVOF) spraying. For this purpose, we measure all five elastic constants accurately using resonant ultrasound spectroscopy with laser Doppler interferometry. This approach realizes the correct mode identification of the measured resonance frequencies, even for coatings with high internal friction by comparing the measured and calculated displacement distributions, providing a precise determination of the elastic constants with inverse calculation. We determined that an oriented array of defects causes a significantly low Young's modulus along the spraying direction in both the as-sprayed coatings. Our measurements on the heat-treated coatings revealed that thermal treatment makes the APS coating stiffer than the HVOF coating, whereas the stiffness anisotropy of the APS coating remains stronger compared to the HVOF coating, even after heating. This phenomenon is consistently explained by focusing on the oxides in the coatings.
机译:基于Splat的热喷涂涂层的层状结构导致弹性各向异性;然而,阐明这种涂层的各向异性弹性性质是一种具有挑战性的受试者,因为样品大小和微观结构因子如高缺陷水平。本研究的目的是研究通过大气等离子体喷涂(APS)和高速氧气燃料(HVOF)喷涂制备的喷涂和热处理的聚焦涂层的各向异性弹性。为此目的,我们使用激光多普勒干涉测量法准确地测量所有五个弹性常数。该方法实现了通过比较测量和计算的位移分布的具有高内部摩擦的涂层来实现测量的谐振频率的正确模式识别,从而提供具有逆计算的弹性常数的精确确定。我们确定导向的缺陷阵列导致沿着喷涂方向的显着低的杨氏模量在两个喷涂的涂层中。我们对热处理涂层的测量表明,热处理使APS涂层比HVOF涂层更硬,而APS涂层的刚度各向异性与HVOF涂层相比,即使在加热之后也保持较强。通过聚焦涂层中的氧化物来始终解释这种现象。

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