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Investigation on Cryogenic Temperature-sensitive Paint Transition Detection Technique Based on Electric Heating Film

  • Lejie Yang*
  • , Jifei Wu
  • , Guoshuai Li
  • , Hui Huang
  • , Huawei Chen
  • , Da Li
  • *此作品的通讯作者
  • China Aerodynamics Research and Development Center
  • CAS - Changchun Institute of Applied Chemistry

科研成果: 期刊稿件文章同行评审

摘要

The development of efficient and accurate transition measurement techniques is crucial for enhancing aircraft performance. To address the issues of high experimental costs, significant measurement errors, and limited continuous measurement capabilities associated with the variable total incoming flow temperature method in current domestic cryogenic wind tunnel transition measurements using temperature-sensitive paint (TSP), a novel cryogenic TSP transition measurement technology based on electrically heated coatings is established. By optimizing the substrate material of the electrically heated coating, designing functional layers, and controlling the coordination mode and ligand energy level distribution of the TSP coating’s fluorescent probes, the compatibility and low-temperature resistance of both the electrically heated and TSP coatings are improved. Ground performance tests and cryogenic wind tunnel validations are conducted. Ground cryogenic test results indicate that the electrically heated coating surface remains crack-free in a wide temperature range of 110 K to 323 K, with a temperature rise time of less than 3 s and good heating efficiency upon energization. Cryogenic wind tunnel validations show that the transition positions obtained by the electrically heated method align well with those obtained by the variable total incoming flow temperature method, with a difference within 0. 5%. Compared with the traditional variable total incoming flow temperature method, the electrically heated method reduces the time required to obtain clear transition images from 30 s to less than 5 s per test state, significantly shortening the experimental cycle and reducing costs.

源语言英语
页(从-至)1102-1110
页数9
期刊Yuhang Xuebao/Journal of Astronautics
46
6
DOI
出版状态已出版 - 2025

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