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Micro-damage Evolution and Residual Stress in Thermally Grown Oxides of Detonation Gun Sprayed Thermal Barrier Coatings

机译:爆轰喷枪喷射热屏蔽涂层热生长氧化物中的微损伤演化和残余应力

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Thermal barrier coatings (TBCs) were prepared by the recently-developed detonation gun spray process. The oxide scale formation and micro-damage evolution of these coatings during oxidation in air at 1100 °C were investigated. It was found that duplex oxide scales, the upper oxide mixture scale and α-Al_2O_3 subscale, form at the interface between bond coat (BC) and top coat (TC) during the oxidation. Microcracks usually nucleate within the porous oxide mixture layer. With the increase of oxidation time, some microcracks coalesce to form a long crack. Residual stress in the thermally grown oxides (TGO) was measured using photo-stimulated luminescence spectroscopy. It was found that compressive residual stress exhibits a fast increase at the beginning of oxidation up to maximum value for about 10h. Then, the compressive stress begins to decline up to 100h. Local stress distribution showed that the micro-damage in the TGO causes a remarkable decrease in the magnitude of compressive residual stress.
机译:热障涂层(热障涂层)由最近开发的爆炸喷枪喷涂工艺制备。在1100℃下氧化皮形成和这些涂层的微损伤演化在空气氧化过程中进行了研究。据发现,双工氧化皮,上部氧化物混合物比例和α-Al_2O_3的分量表,表格在氧化过程中粘结涂层(BC)和顶涂层(TC)之间的接口。微裂纹通常核多孔氧化物混合物层内。随着氧化时间的增加,一些微裂纹聚结以形成长的裂缝。在热生长氧化物的残余应力(TGO)使用光激励发光光谱测量。据发现,压缩残余应力表现出氧化之初快速增加至最大值约10小时。然后,压应力开始下降高达100H。局部应力分布表明,在TGO微损伤导致压缩残余应力的大小的显着降低。

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