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首页> 外文期刊>Oxidation of Metals >High Temperature Oxidation Stability of Aerodynamically Optimised Riblets for Blades of Aero-engine Applications
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High Temperature Oxidation Stability of Aerodynamically Optimised Riblets for Blades of Aero-engine Applications

机译:航空发动机叶片气动优化铆钉的高温氧化稳定性

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摘要

The mechanism of nature's way of friction reduction and aerodynamical optimisation is applied worldwide. There is ample literature on investigations and measurement of skin friction reduction in the boundary layer over flat plates and on turbo machinery type blades. When using a surface with riblet structures, the turbulent momentum transfer at the wall which is responsible for the skin friction is hampered. This paper deals with the oxidation and characterisation of riblets with micrometer dimensions for aerodynamically optimised high temperature turbine applications. Riblets were fabricated on EB-PVD NiCoCrAlY coatings by using a pico-second laser. The high temperature oxidation stability of the riblets was tested by conducting cyclic oxidation tests. The temperatures were selected as 900 and 1100 A degrees C and the time of oxidation was varied between 1 and 1,000 cycles. The thermocyclic tests at 900 A degrees C proved that the riblets are stable even after 1,000 cycles and at 1,100 A degrees C the stability is permitted to until only 100 cycles. With few modifications in the structuring process this stability can be further improved.
机译:大自然减少摩擦和优化空气动力学的机制已在世界范围内应用。在平板和涡轮机械型叶片的边界层中,有关减少皮肤摩擦的研究和测量方面有大量文献。当使用具有肋状结构的表面时,阻碍了皮肤摩擦的壁上的湍动量传递受到阻碍。本文针对具有空气动力学优化的高温涡轮机应用,对具有微米尺寸的肋条进行氧化和表征。通过使用皮秒激光在EB-PVD NiCoCrAlY涂层上制造了铆钉。通过进行循环氧化测试来测试肋条的高温氧化稳定性。选择温度为900和1100 A摄氏度,氧化时间在1和1,000个循环之间变化。在900 A的温度下进行的热循环测试证明,即使在1,000次循环后,肋条仍是稳定的;而在1,100 A的温度下,直到仅进行100次循环后,肋条才可以保持稳定。只需对结构化过程进行少量修改,即可进一步提高稳定性。

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