首页> 外文会议>56th International Astronautical Congress 2005 vol.6 >MECHANICALLLY STRONG LIGHTWEIGHT MATERIALS FOR AEROSPACE APPLICATIONS (X-AEROGELS)
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MECHANICALLLY STRONG LIGHTWEIGHT MATERIALS FOR AEROSPACE APPLICATIONS (X-AEROGELS)

机译:航空航天应用的机械强度高的轻质材料(X航空)

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The X-Aerogel is a new NASA-developed strong lightweight material made by reacting the mesoporous surfaces of 3-D networks of inorganic nanoparticles with polymeric crosslinkers. Since the relative amount of the crosslinker and the backbone are comparable, X-Aerogels can be viewed either as aerogels modified by templated accumulation of polymer on the skeletal nanoparticles, or as nanoporous polymers made by templated casting of polymeric precursors on a nanostructured framework. The most striking feature of X-Aerogels is that for a nominal 3-fold increase in density (still a ultralightweight material), the mechanical strength can be up to 300 times higher than the strength of the underlying native aerogel. Thus, X-Aerogels combine a multiple of the specific compressive strength of steel, with the thermal conductivity of styrofoam. X-Aerogels have been demonstrated with several polymers such as polyurethanes/polyureas, epoxies and polyolefins, while crosslinking of ~35 different oxide aerogels yields a wide variety of dimensionally stable, porous lightweight materials with interesting structural, magnetic and optical properties. X-Aerogels are evaluated for cryogenic rocket fuel storage tanks and for Advanced EVA suits, where they will play the dual role of the thermal insulator/structural material. Along the same lines, major impact is also expected by the use of X-Aerogels in structural components/thermal protection for small satellites, spacecrafts, planetary vehicles and habitats.
机译:X-Aerogel是NASA新开发的一种坚固的轻质材料,通过使无机纳米粒子的3-D网络的介孔表面与聚合物交联剂反应而制成。由于交联剂和主链的相对含量是可比的,因此X-气凝胶既可以看作是通过模板聚合物在骨架纳米颗粒上的模板积聚而改性的气凝胶,也可以看作是通过模板化将聚合物前体浇铸在纳米结构框架上而制成的纳米多孔聚合物。 X-气凝胶的最显着特征是密度名义上增加了3倍(仍是超轻质材料),其机械强度可以比其基础天然气凝胶的强度高300倍。因此,X-气凝胶将钢的特定抗压强度与泡沫聚苯乙烯的导热性结合在一起。 X-气凝胶已被证明可以与多种聚合物一起使用,例如聚氨酯/聚脲,环氧树脂和聚烯烃,而〜35种不同的氧化物气凝胶的交联则产生了多种尺寸稳定,多孔的轻质材料,具有令人感兴趣的结构,磁性和光学特性。 X-气凝胶已被评估用于低温火箭燃料储存箱和高级EVA服,它们将在其中发挥绝热/结构材料的双重作用。同样,在小型卫星,航天器,行星飞行器和栖息地的结构部件/热保护中使用X-气凝胶也有望产生重大影响。

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