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SURFACE CRACKING AND INTERFACE REACTION ASSOCIATED DELAMINATION FAILURE OF THERMAL AND ENVIRONMENTAL BARRIER COATINGS

机译:热和环境障碍涂层的表面开裂和界面反应脱层失败

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摘要

In this paper, surface cracking and interface reactions of a barium-strontium-aluminosilicate (BSAS) coating and a multi-layer ZrO{sub}2-8wt%Y{sub}2O{sub}3 and mullite/BSAS/Si thermal and environmental barrier coating system on SiC/SiC ceramic matrix composites were characterized after long-term combined laser thermal gradient and furnace cyclic tests in a water vapor containing environment. The surface cracking was analyzed based on the coating thermal gradient sintering behavior and thermal expansion mismatch stress characteristics under the thermal cyclic conditions. The interface reactions, which were largely enhanced by the coating surface cracking in the water vapor environment, were investigated in detail, and the reaction phases were identified for the coating system after the long-term exposure. The accelerated coating delamination failure was attributed to the increased delamination driving force under the thermal gradient cyclic loading and the reduced interface adhesion due to the detrimental interface reactions.
机译:在本文中,钡锶铝硅酸盐(BSAS)涂层和多层ZrO {sub} 2-8wt%Y {sub} 2O {sub} 3和莫来石/ BSAS / Si的表面开裂和界面反应在包含水蒸气的环境中,经过长期的激光热梯度和炉循环试验的组合,对SiC / SiC陶瓷基复合材料的环境屏障涂层系统进行了表征。根据涂层在热循环条件下的热梯度烧结行为和热膨胀失配应力特性分析了表面裂纹。详细研究了在水蒸气环境中由于涂层表面开裂而大大增强的界面反应,并确定了长期暴露后涂层系统的反应相。涂层加速脱层的失败归因于在热梯度循环载荷下分层驱动力的增加以及由于有害的界面反应而导致的界面粘合性的降低。

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