首页> 外文会议>IEEE Aerospace Conference >Developments in elastic memory composite materials for spacecraft deployable structures
【24h】

Developments in elastic memory composite materials for spacecraft deployable structures

机译:用于航天器可展开结构的弹性存储器复合材料的开发

获取原文

摘要

Near-term and future spacecraft and satellites will require large ultra-lightweight structures and components that must be efficiently packaged for launch and reliably deployed on orbit. A new material technology called Elastic Memory Composite (EMC) materials, shows promise in meeting these needs. The EMC polymer matrix materials enable a fully cured composite structure or component to be deformed or folded for efficient packaging into a spacecraft or launch vehicle, then regain its original shape with no degradation or loss in mechanical or physical properties. A component using EMC materials is fabricated in its deployed, on orbit shape using conventional composite manufacturing processes. Then by heating the material and applying force this fully cured composite material can be folded or deformed for packaging. When cooled, it will retain the packaged shape indefinitely. When reheated the structure will regain its original shape with little or no external force. This packaging/deployment cycle is reversible. This paper reviews new developments in EMC materials technology including material properties, analytical and designs tools, testing and evaluation protocols, and new applications.
机译:近期和未来的航天器和卫星将需要大量的超轻量级结构和组件,必须有效地打包,并可靠地部署在轨道上。一种称为弹性内存复合材料(EMC)材料的新材料技术,显示了满足这些需求的承诺。 EMC聚合物基质材料使得能够变形或折叠的完全固化的复合结构或部件,以便高效包装到航天器或发射车辆中,然后重新获得其原始形状,没有机械或物理性质的降解或损失。使用EMC材料的组件在其展开的轨道形状中制造,使用常规复合制造工艺。然后通过加热材料和施加力,这种完全固化的复合材料可以折叠或变形以用于包装。冷却时,它将无限期地保持包装的形状。当重新加热时,该结构将重新获得其原始形状,几乎没有外力。该包装/部署周期是可逆的。本文介绍了EMC材料技术的新开发,包括材料特性,分析和设计工具,测试和评估协议以及新应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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