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Cyclic high temperature oxidation of HFPD thermal sprayed CoNiCrAlY coatings under simulated gas turbine and furnace environments

机译:在模拟燃气轮机和熔炉环境下HFPD热喷涂CoNiCrAlY涂层的循环高温氧化

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摘要

CoNiCrAlY powders were thermal sprayed using the high frequency pulse detonation (HFPD) method onto AISI 310 austenitic stainless steel samples. The cyclic oxidation behaviour of these coatings at 800 and 1000°C in simulated gas turbine and standard atmosphere environments was experimentally determined. Austenitic AISI 310 was used as a reference. Composition and morphology of surface phase were evaluated using X-ray diffraction and scanning electron microscope techniques. Oxidised HFPD CoNiCrAlY coatings have always been characterised by the formation of a continuous and highly protective alumina layer. In contrast, the protection of the chromium oxide layer generated on the austenitic AISI 310 under the same operating conditions is much less effective and a degraded region near to the oxidised layer has been observed at the highest temperatures. Moreover, cracks appear in the chromium oxide layer when it is submitted to high thermal gradients, as a consequence of thermal stresses.
机译:使用高频脉冲爆震(HFPD)方法将CoNiCrAlY粉末热喷涂到AISI 310奥氏体不锈钢样品上。实验确定了这些涂层在模拟燃气轮机和标准大气环境中在800和1000°C下的循环氧化行为。奥氏体AISI 310被用作参考。使用X射线衍射和扫描电子显微镜技术评价表面相的组成和形态。氧化的HFPD CoNiCrAlY涂层始终以形成连续且高度保护性的氧化铝层为特征。相反,在相同的操作条件下对在奥氏体AISI 310上生成的氧化铬层的保护效果要差得多,并且在最高温度下已观察到靠近氧化层的退化区域。此外,由于热应力,当氧化铬层经受高的热梯度时,在氧化铬层中出现裂纹。

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