水动力柔性主轴 (HydroFlex) 研磨涡轮叶片内部冷却通道以去除氧化物

IF 1.9 Q3 ENGINEERING, MANUFACTURING
Jack Shanks , Patrick Chernjavsky , Rohit Dey , Yinggang Tian , Yihao Zheng
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引用次数: 0

摘要

内部冷却通道对于高效发电的涡轮叶片至关重要。有效清除涡轮叶片冷却通道中的氧化铝堆积物对于翻新和延长涡轮叶片的使用寿命至关重要。传统的内抛光工艺,包括磨料流加工、化学抛光和放电加工,都无法有效去除内冷却通道内的氧化层,原因是冷却通道的几何形状复杂,长径比和直径变化较大,而且氧化层具有电绝缘性。在本案例研究中,我们研究了应用新型流体动力柔性主轴(HydroFlex)抛光工艺去除因氧化物堆积而停用的 Inconel 738 涡轮叶片内部冷却通道内的氧化层。对于 350 毫米长、内径从ϕ4 毫米过渡到ϕ2.5 毫米的冷却通道,在砂轮转速分别为 50,000 转/分钟和 30,000 转/分钟的情况下,HydroFlex 能在 12 分钟内完全去除涡轮叶片内部冷却通道壁上 14.31 微米厚的氧化层,使通道圆度提高了 54.7%,通道表面粗糙度降低了 64.3%。结果表明,HydroFlex 能有效抛光涡轮叶片复杂的内部冷却通道,去除氧化物,并有可能延长叶片的使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrodynamic Flexible Spindle (HydroFlex) Polishing of turbine blade internal cooling channels for oxide removal
Internal cooling channels are essential to turbine blades for high efficiency power generation. Effective removal of aluminum oxide build-up in turbine blade cooling channels is of critical importance to refurbishment and prolonged service life of turbine blades. Conventional internal polishing processes, including abrasive flow machining, chemical polishing, and electrical discharge machining cannot effectively remove the oxide layer within the internal cooling channels due to the complex geometry with high aspect ratio and diameter variation and the electric insulation of the oxide layer. In this case study, we investigated the application of a novel hydrodynamic flexible-spindle (HydroFlex) polishing process to remove the oxide layer within the internal cooling channels of an Inconel 738 turbine blade that was taken out of serve due to oxide build-up. For a 350 mm long cooling channel featured with an inner diameter transition from ϕ4 mm to ϕ2.5 mm, within 12 min, at the grinding wheel rotational speed of 50,000 rpm and 30,000 rpm, HydroFlex was able to completely remove the 14.31 µm thick oxide layer off from the wall of the turbine blade internal cooling channel, improve the channel circularity by 54.7 %, and decrease the channel surface roughness by up to 64.3 %. The results demonstrated the effectiveness of HydroFlex in polishing complex internal cooling channels of turbine blades for oxide removal and potential blade service life extension.
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来源期刊
Manufacturing Letters
Manufacturing Letters Engineering-Industrial and Manufacturing Engineering
CiteScore
4.20
自引率
5.10%
发文量
192
审稿时长
60 days
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