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Mechanical Properties and Microstructure of VPS and HVOF CoNiCrAlY Coatings

机译:VPS和HVOF CoNiCrAlY涂层的力学性能和显微组织

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In this study, high velocity oxy-fuel (HVOF) and vacuum plasma spraying (VPS) coatings were sprayed using a Praxair (CO-210-24) CoNiCrAlY powder. Free-standing coatings underwent vacuum annealing at different temperatures for times of up to 840 h. Feedstock powder, and as-sprayed and annealed coatings, were characterized by scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and x-ray diffraction (XRD). The hardness and Young's modulus of the as-sprayed and the annealed HVOF and VPS coatings were measured, including the determination of Young's moduli of the individual phases via nanoindentation and measurements of Young's moduli of coatings at temperatures up to 500℃. The Eshelby inclusion model was employed to investigate the effect of microstructure on the coatings' mechanical properties. The sensitivity of the mechanical properties to microstructural details was confirmed. Young's modulus was constant up to ~200℃, and then decreased with increasing measurement temperature. The annealing process increased Young's modulus because of a combination of decreased porosity and β volume fraction. Oxide stringers in the HVOF coating maintained its higher hardness than the VPS coating, even after annealing.
机译:在这项研究中,使用Praxair(CO-210-24)CoNiCrAlY粉末喷涂了高速氧燃料(HVOF)和真空等离子喷涂(VPS)涂层。独立涂层在不同温度下进行真空退火长达840小时。通过扫描电子显微镜(SEM),能量色散光谱(EDS)和X射线衍射(XRD)对原料粉末以及喷涂和退火的涂层进行表征。测量了喷涂后和退火后的HVOF和VPS涂层的硬度和杨氏模量,包括通过纳米压痕确定各个相的杨氏模量,以及在高达500℃的温度下测量了涂层的杨氏模量。采用埃舍尔比夹杂物模型研究微观结构对涂层机械性能的影响。证实了机械性能对微观结构细节的敏感性。杨氏模量在〜200℃以下保持恒定,然后随着测量温度的升高而降低。退火过程增加了杨氏模量,这是由于孔隙率降低和β体积分数降低所致。即使经过退火处理,HVOF涂层中的氧化桁条仍保持其硬度高于VPS涂层。

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