玻璃钢/复合材料 ›› 2019, Vol. 0 ›› Issue (6): 85-89.

• 应用研究 • 上一篇    下一篇

纤维混织梯度织物/酚醛树脂斜叠防热材料研究

李盼盼, 刘漪涛, 秦蓉蓉, 王猛   

  1. 北京航天新风机械设备有限责任公司,北京100854
  • 收稿日期:2018-08-20 出版日期:2019-06-25 发布日期:2019-06-28
  • 作者简介:李盼盼(1986-),女,硕士,高级工程师,主要从事防热涂层及防热复合材料方面的研究,287875082@qq.com。

RESEARCH OF THE MIXED-WEAVING GRADIENT FABRIC REINFORCED PHENOLIC RESIN OBLIQUE MATERIALS FOR HEAT-RESISTANCE

LI Pan-pan, LIU Yi-tao, QIN Rong-rong, WANG Meng   

  1. Beijing Aerospace Fresh Air Machinery Equipment Co., Ltd., Beijing 100854, China
  • Received:2018-08-20 Online:2019-06-25 Published:2019-06-28

摘要: 针对超高速飞行器防热材料需求,提出了一种混织梯度织物/酚醛树脂斜叠防热材料,该防热材料是一种梯度功能材料,材料功能从外层向内层逐步由抗烧蚀向隔热过渡,从而实现防隔热一体化。抗烧蚀和隔热两个功能层之间不存在明显的界面,两个功能层采用相同的耐高温树脂基体,但是抗烧蚀层增强纤维以耐烧蚀纤维为主体,隔热层增强纤维以耐高温纤维为主体。功能层及功能梯度由抗烧蚀纤维和隔热纤维混织带实现。该防热材料采用倾斜层叠结构,铺层与飞行器航向呈一定夹角,以提高其抗冲刷性能。所得材料在高温超音速燃气流发动机上的考核结果表明,可以抵抗最高表面温度为1750 ℃,热流密度为2000 kW/m2,长达40 s的燃气流烧蚀冲刷,单位面积质量损失率小于40 g/100 cm2,背温低于270 ℃。

关键词: 防热材料, 酚醛树脂, 增强纤维, 混织

Abstract: This article addresses the demand for the heat-resistant materials of aerocraft, the structural of mixed-weaving gradient fabric reinforced phenolic resin oblique materials were introduced. The heat-resistant material is a gradient functional material, and the function of the material gradually transform from the outer layer to the inner layer from ablation to heat insulation, achieving integration of heat insulation. The two functional layers use the same high temperature resin matrix with thereby no obvious interface. The anti-ablative layer reinforcing fiber is mainly composed of ablation resistant fiber, and the heat insulating layer reinforcing fiber is mainly composed of high temperature resistant fiber. The functional layer and gradient effects are achieved by ablative fiber-heat insulation fiber of woven faber, shaping by oblique winding. To improve the materials anti-scour performance, the ply direction of woven faber presents a certain angle with the aerocraft′s heading. The obtained materials (mounted on the tooling bottom plate) is evaluated on a high-temperature supersonic gas flow engine, which can withstand the heat flow density of 1750 ℃, 2000 kW/m2 , scouring up to 40 s. The result shows that the rate is less than 40 g/100 cm2 and the back temperature is below 270 ℃.

Key words: heat-resistant materials, phenolic resin, reinforcing fiber, mixed-weaving

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