首页> 外文OA文献 >Heat Rejection Systems Utilizing Composites and Heat Pipes: Design and Performance Testing
【2h】

Heat Rejection Systems Utilizing Composites and Heat Pipes: Design and Performance Testing

机译:利用复合材料和热管的排热系统:设计和性能测试

摘要

Polymer matrix composites offer the promise of reducing the mass and increasing the performance of future heat rejection systems. With lifetimes for heat rejection systems reaching a decade or more in a micrometeoroid environment, use of multiple heat pipes for fault tolerant design is compelling. The combination of polymer matrix composites and heat pipes is of particular interest for heat rejection systems operating on the lunar surface. A technology development effort is under way to study the performance of two radiator demonstration units manufactured with different polymer matrix composite face sheet resin and bonding adhesives, along with different titanium-water heat pipe designs. Common to the two radiator demonstration units is the use of high thermal conductivity fibers in the face sheets and high thermal conductivity graphite saddles within a light weight aluminum honeycomb core. Testing of the radiator demonstration units included thermal vacuum exposure and thermal vacuum exposure with a simulated heat pipe failure. Steady state performance data were obtained at different operating temperatures to identify heat transfer and thermal resistance characteristics. Heat pipe failure was simulated by removing the input power from an individual heat pipe in order to identify the diminished performance characteristics of the entire panel after a micrometeoroid strike. Freeze-thaw performance was also of interest. This paper presents a summary of the two radiator demonstration units manufactured to support this technology development effort along with the thermal performance characteristics obtained to date. Future work will also be discussed.
机译:聚合物基复合材料有望减少未来的散热系统的质量并提高其性能。随着散热系统在微流线型环境中的使用寿命达到十年或更长时间,使用多根热管进行容错设计势在必行。聚合物基复合材料和热管的结合对于在月球表面运行的排热系统尤为重要。目前正在进行一项技术开发工作,以研究由两种不同的聚合物基复合面板树脂和粘合剂制成的散热器演示单元的性能,以及不同的钛水热管设计。这两个散热器演示单元的共同点是,在面板中使用了高导热率的纤维,在轻巧的铝蜂窝芯中使用了高导热率的石墨鞍座。散热器演示单元的测试包括热真空暴露和热真空暴露以及模拟的热管故障。在不同的工作温度下获得稳态性能数据,以确定传热和热阻特性。通过去除单个热管的输入功率来模拟热管故障,以识别微流线型撞击后整个面板的性能下降。冻融性能也很有趣。本文总结了为支持该技术开发而制造的两个散热器演示单元,以及迄今为止获得的热性能特征。还将讨论将来的工作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号