Thermal protection effect of heat-pipe-cooled thermal protection structures with embedded high thermal conductivity C/C materials
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摘要: 本文建立了內置高導C/C材料的疏導式熱防護結構原理模型,通過實驗的方法給出了高導C/C材料與耐熱三維編織C/C材料間的接觸熱阻,并利用數值仿真針對影響結構熱防護效果的若干關鍵參數進行了參數影響研究.研究結果表明:減小耐熱層厚度是一種降低駐點溫度的有效方法,但是必須同時考慮由此引起的強度問題;界面接觸熱阻對熱防護效果影響很大,必須通過工藝處理降低界面熱阻才能實現有效的熱防護.Abstract: Heat-pipe-cooled thermal protection is an effective thermal protection method with embedded high heat transfer capacity materials or structures. A numerical model of a heat-pipe-cooled thermal protection structure with an embedded high thermal conduc-tivity C/C material was proposed in the present paper. Contact thermal resistance was tested between the high thermal conductivity C/C material and the heat-resisting three-dimensional braid C/C material. The effects of several key parameters on the thermal protection results were also numerically investigated. The results show that it is an effective method to decrease the stagnation temperature by reducing the thickness of the heat-resisting material, but the resulting strength problem should also be taken into account. Interface contact thermal resistance has a significant influence on the thermal protection effect, and in order to achieve effective thermal protection the interface contact thermal resistance should be lowered through fabrication processing.
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