首页> 外文会议>Conference on Active and Passive Smart Structures and Integrated Systems >Passive Self Repairing and Active Self Sensing in Multifunctional Polymer Composites
【24h】

Passive Self Repairing and Active Self Sensing in Multifunctional Polymer Composites

机译:多功能聚合物复合材料的被动自修复和主动自传感

获取原文
获取外文期刊封面目录资料

摘要

The goal of the research since the early 1990s has been to develop self-repairing and self sensing composites. Our revolutionary approach involves the autonomous release of repair chemicals from within the composite matrix itself and the active sensing to assess that action utilizing the same tube structure. The repair agents are contained in hollow, structural fibers that are embedded within the matrix. Under stress, the composite senses external environmental factors and reacts by releasing the repair agents from within the hollow vessels. This passive autonomous response occurs wherever and whenever cracking, debonding or other matrix damage transpires. Superior performance over the life of the composite is achieved through this self-repairing mechanism.The active sensing measures volume of voided repair chemical and location of voiding reveals the location and amount of damage to the laminate. This health monitoring of composites is important for their widespread use in life safety applications such as structures. The focus of the research being the implementation of active sensors and passive actuators which by using the same structure of glass tubes provide large area coverage without adding much parasitic weight. The development is a novel, voiding based sensor for damage detection with composite structures. This consists of a inspection guide produced from glass reinforcing fibers which release repair chemical when damaged.. The sensor was shown to be sensitive to very low impact energies, but also capable of revealing more extensive damage caused by high energy impacts.This unique combination of active sensing and passive repair serves as an example of combination for autonomous systems that can consist of various approaches in one integrated system.
机译:自1990年代初以来,这项研究的目标一直是开发自修复和自感应复合材料。我们的革命性方法涉及从复合基质自身内部自动释放修复化学物质,并采用相同的管结构主动感应以评估该作用。修复剂包含在嵌入基质中的空心结构纤维中。在应力作用下,复合材料会感测外部环境因素,并通过从中空容器内部释放修复剂来做出反应。无论何时何地破裂,脱胶或其他基质损坏,都会发生这种被动的自主响应。通过这种自我修复机制,可以在复合材料的整个使用寿命中实现卓越的性能。主动感应可以测量空隙中的修补化学物质的量,而空隙的位置则可以显示出层压板的位置和损坏程度。复合材料的这种健康监测对于它们在诸如结构的生命安全应用中的广泛使用非常重要。研究的重点是有源传感器和无源执行器的实现,它们通过使用相同的玻璃管结构提供大面积覆盖而不会增加很多寄生重量。该开发是一种新颖的基于空隙的传感器,用于复合结构的损伤检测。它由玻璃增强纤维制成的检查指南组成,当损坏时会释放出修复化学物质。该传感器对非常低的冲击能量敏感,但也能够揭示由于高能量冲击而造成的更大范围的损坏。主动感应和被动修复是自治系统组合的一个示例,该系统可以由一个集成系统中的各种方法组成。

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