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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Environmental Barrier Coating Oxidation and Adhesion Strength
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Environmental Barrier Coating Oxidation and Adhesion Strength

机译:环境屏障涂布氧化和粘合强度

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Plasma spray-physical vapor deposition (PS-PVD) environmental barrier coatings (EBCs) of Yb_2Si_2O_7 were deposited on SiC and exposed in a steam environment (90% H_2O/O_2) at 1426°C to form a thermally grown oxide (TGO) layer between the substrate and EBC. In advanced ceramic material systems such as coated ceramic matrix composites (CMCs), the TGO layer is the weak interface and directly influences component lifetimes. The effects of surface roughness and TGO thickness on the adhesion strength were evaluated by mechanical testing of the coatings after exposure. Morphology and oxide layer thickness were analyzed with electron microscopy while the composition and crystal structure were tracked with X-ray diffraction. The strength of the system is evaluated with respect to oxidation rate to give a qualitative understanding of coating durability.
机译:在SiC上沉积γ2SI_2O_7的等离子体喷雾物理气相沉积(PS-PVD)环境阻隔涂层(EBCS)并在1426℃下在蒸汽环境(90%H_2O / O_2)中暴露,形成热生长的氧化物(TGO)层在基板和EBC之间。在诸如涂覆陶瓷基复合材料(CMC)之类的先进陶瓷材料系统中,TGO层是弱界面,直接影响成分寿命。通过在暴露后的涂层的机械测试评估表面粗糙度和TGO厚度对粘合强度的影响。用电子显微镜分析形态和氧化物层厚度,同时用X射线衍射跟踪组合物和晶体结构。基于氧化速率评价系统的强度,以提供对涂层耐久性的定性理解。

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