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Performance Metrics and Experimental Testing of Erosion-Resistant Compressor Blade Coatings

机译:耐蚀压缩机叶片涂层的性能指标和实验测试

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摘要

A durability test rig for erosion-resistant gas turbine engine compressor blade coatings was designed and commissioned. Bare and coated 17-4PH steel modified NACA 6505-profile blades were spun at an average speed of 10,860 rpm and exposed to garnet sand-laden air for 5 hat an average sand concentration of 2.5 g/(m~3 of air) and a blade leading edge (LE) Mach number of 0.50. The rig was designed to represent a first stage axial compressor. Two 16 μm-thick coatings were tested: Titanium nitride (TiN) and chromium-aluminum-titanium nitride (CrAlTiN), both applied using an arc physical vapor deposition (PVD) technique. A composite scale, defined as the Leithead-Allan-Zhao (LAZ) score, was devised to compare the durability performance of bare and coated blades based on mass-loss and blade dimension changes. The bare blades' LAZ score was set as a benchmark of 1.00, with the TiN-coated and CrAlTiN-coated blades obtaining respective scores of 0.69 and 0.41. A lower score identified a more erosion-resistant coating. Major locations of blade wear included: trailing edge (TE), LE, and rear suction surface (SS). TE thickness was reduced, the LE became blunt, and the rear SS was scrubbed by overtip and recirculation zone vortices. The erosion effects of secondary flows were found to be significant. Erosion damage due to reflected particles was absent due to a low blade solidity of 0.7. The rig is best suited for durability evaluation of erosion-resistant coatings after (AF) being proven worthy of consideration for gas turbine engines through ASTM standardized testing.
机译:设计并调试了耐腐蚀燃气轮机压缩机叶片涂层的耐久性试验台。以10,860 rpm的平均速度旋转裸机和带涂层的17-4PH钢改性NACA 6505型叶片,并将其暴露于石榴石含沙空气中5顶,平均砂浓度为2.5 g /(m〜3空气)和刀片前缘(LE)马赫数为0.50。钻机的设计代表了一级轴流式压缩机。测试了两个厚度为16μm的涂层:氮化钛(TiN)和铬铝钛氮化物(CrAlTiN),两者均使用电弧物理气相沉积(PVD)技术进行涂覆。设计了一种综合量表,定义为Leithead-Allan-Zhao(LAZ)分数,用于根据质量损失和叶片尺寸变化来比较裸露和涂层叶片的耐久性能。裸刀片的LAZ分数设置为1.00的基准,而TiN涂层和CrAlTiN涂层的刀片分别获得0.69和0.41的分数。较低的分数表示更耐腐蚀的涂层。叶片磨损的主要位置包括:后缘(TE),LE和后吸力面(SS)。 TE厚度减小,LE变钝,后部SS被尖端和回流区涡旋擦洗。发现二次流的侵蚀作用是显着的。由于叶片硬度低至0.7,因此没有由于反射颗粒而引起的侵蚀损坏。该钻机最适合用于评估(AF)耐腐蚀涂层的耐久性,经过ASTM标准化测试证明该钻机值得燃气涡轮发动机考虑。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2015年第5期|052101.1-052101.11|共11页
  • 作者单位

    Department of Mechanical and Aerospace Engineering, Royal Military College of Canada, Kingston, ON K7K 7B4, Canada;

    Department of Mechanical and Aerospace Engineering, Royal Military College of Canada, Kingston, ON K7K 7B4, Canada;

    Institute for Aerospace Research, National Research Council of Canada, Ottawa, ON K1A 0R6, Canada;

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