Investigation of cooling hole blockage in the plasma spraying of thermal barrier coatings on super-alloy

Zhuang Liu, Changshui Gao, Zhongyu Wang, Xiaoyu Yu
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引用次数: 1

Abstract

ABSTRACT Ceramic materials will get deposited inside pre-drilled cooling holes and partially or completely block during thermal barrier coating (TBC). In this study, the hole blockage produced by atmosphere plasma spraying (APS) was investigated using industrial computed tomography. The results show that the geometric features of the blockage owing to APS coating are significantly affected by the inclination angle of the pre-drilled holes. The coating deposition in the vertical holes is rotationally symmetric and mainly concentrates at the entrance. For the inclined holes, the deposition on the trailing edge is much more than that on the leading edge. The deposition height and length on the trailing edge increase with the inclination angle; however, they are little disturbed by the hole size. Therefore, the blockage ratio decreases with the increase of the hole size. In addition, greater TBC thickness causes larger deposition height and length and subsequently results in a larger blockage ratio.
高温合金热障涂层等离子喷涂冷却孔堵塞的研究
在热障涂层(TBC)过程中,陶瓷材料会沉积在预钻的冷却孔内,并部分或完全阻塞。本研究利用工业计算机断层扫描技术研究了大气等离子体喷涂(APS)产生的孔洞堵塞。结果表明,预钻孔倾角对APS涂层堵塞的几何特征有显著影响。垂直孔内的涂层沉积是旋转对称的,主要集中在入口处。对于斜孔,尾缘的沉积量远大于前缘。尾缘沉积高度和长度随倾角增大而增大;然而,它们很少受到孔大小的干扰。因此,堵塞比随着孔尺寸的增大而减小。此外,TBC厚度越大,沉积高度和长度也越大,堵塞比也越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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