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首页> 外文期刊>Surface & Coatings Technology >Effect of SiC microfibers as a self-healing agent and their influence on oxidation and adhesion resistance of thermal barrier coatings exposed to cyclic thermal oxidation treatments
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Effect of SiC microfibers as a self-healing agent and their influence on oxidation and adhesion resistance of thermal barrier coatings exposed to cyclic thermal oxidation treatments

机译:SiC微纤维作为自我愈合剂的影响及其对循环热氧化处理的热阻挡涂层的氧化和粘附性的影响

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摘要

High-temperature coatings are commonly used in components working at high temperatures, such as turbine blades and combustion chambers to increase their efficiency. The durability of the high-temperature coatings is governed mainly by the growth of the thermally grown oxide (TGO) layer. In the present study, the effect of the addition of SiC microfibers on microstructural stability, adhesion and oxidation resistance of thermal barrier coatings (TBC) subjected to thermal cycles at high temperature was investigated. High-velocity oxy-fuel (HVOF) and air plasma spraying (APS) thermal spraying processes were used to produce bond coat (BC-NiCoCrAlY) and ceramic (yttria-stabilized zirconia-8YSZ) respectively. The adhesion test was determined accordingly to ASTM-C-633 Standard Test Method for Adhesion or Cohesion Strength of Thermal Spray Coatings. X-ray diffraction (XRD), scanning electron microscopy (SEM) techniques were employed to characterize the morphology, microstructure, and phases of the coatings. After 10 cycles at 25 h at 1100 degrees C, reinforced samples with 3 wt% SiC microfibers showed better oxidation resistance compared to those without the addition of SiC microfibers. Also, was noted that Si compounds were distributed along some cracks at the interface of the TGO-TBC, enhancing its adherence.
机译:高温涂层通常用于在高温下工作的部件,例如涡轮叶片和燃烧室,以提高其效率。高温涂层的耐久性主要受到热生长氧化物(TGO)层的生长。在本研究中,研究了在高温下对热循环进行热循环的热阻挡涂层(TBC)的微观结构稳定性,粘附和抗氧化性的影响。高速氧 - 燃料(HVOF)和空气等离子体喷涂(APS)热喷涂工艺分别用于产生粘合涂层(BC-NiCRODY)和陶瓷(yTTRIA稳定的氧化锆-8ASZ)。相应地测定粘合试验至ASTM-C-633标准试验方法,用于热喷涂涂层的粘附或内聚力。 X射线衍射(XRD),使用扫描电子显微镜(SEM)技术表征涂层的形态,微观结构和相。在1100℃的25小时下10次循环后,与3wt%SiC微纤维的增强样品显示出与那些没有添加SiC微纤维的抗氧化抗性。另外,注意到Si化合物沿着TGO-TBC界面处的一些裂缝分布,增强其粘附性。

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