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Experimental and Numerical Study on Heat Transfer Characteristics of Metallic Honeycomb Core Structure in Transient Thermal Shock Environments

  • Liming Zheng
  • , Dafang Wu*
  • , Anfeng Zhou
  • , Bing Pan
  • , Yuewu Wang
  • , Jie Wang
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The metallic honeycomb core structure has important engineering applications in the aerospace and aviation fields due to several advantages, such as being lightweight, its strong resistance to deformation in high-temperature environments, and its excellent energy absorption characteristics. In the present study, a transient heating experimental system for high-speed flight vehicles was developed to study the thermal insulation characteristics of a superalloy honeycomb core structure at different thermal shock rates (5◦C.s-1 to 30 ◦C.s-1). The highest instantaneous temperature tested was 950◦C. The three-dimensional finite element method was used to numerically calculate the thermal insulation characteristics of the metallic honeycomb core structure in a high-speed thermal shock environment. The calculated results agree well with the experimental results; this agreement demonstrates that to an extent, numerical calculations are a better alternative than expensive experiments. The results of this study provide an important reference for the thermal protection design of metallic honeycomb core structures of high-speed flight vehicles.

源语言英语
页(从-至)1557-1576
页数20
期刊International Journal of Thermophysics
35
8
DOI
出版状态已出版 - 16 10月 2014

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