首页> 外文会议>Congress of the International Council of the Aeronautical Sciences;International Council of the Aeronautical Sciences >RESEARCH DEVELOPMENTS IN NONDESTRUCTIVE EVALUATION AND STRUCTURAL HEALTH MONITORING FOR THE SUSTAINMENT OFCOMPOSITE AEROSPACE STRUCTURES AT NASA
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RESEARCH DEVELOPMENTS IN NONDESTRUCTIVE EVALUATION AND STRUCTURAL HEALTH MONITORING FOR THE SUSTAINMENT OFCOMPOSITE AEROSPACE STRUCTURES AT NASA

机译:可持续性非破坏性评价与结构健康监测研究进展美国航空航天局的复合航空结构

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The use of composite materials continues to increase in the aerospace community due to the potential benefits of reduced weight, increased strength, and manufacturability. Ongoing work at NASA involves the use of the large-scale composite structures for spacecraft (payload shrouds, cryotanks, crew modules, etc). NASA is also working to enable both the use and sustainment of composites in commercial aircraft structures. One key to the sustainment of these large composite structures is the rapid, in-situ characterization of a wide range of potential defects that may occur during the vehicle’s life. Additionally, in many applications it is necessary to monitor changes in these materials over their lifetime. Quantitative characterization through Nondestructive Evaluation (NDE) of defects such as reduced bond strength, microcracking, and delamination damage due to impact, are of particular interest. This paper will present an overview of NASA’s applications of NDE technologies being developed for the characterization and sustainment of advanced aerospace composites. The approaches presented include investigation of conventional, guided wave, and phase sensitive ultrasonic methods and infrared thermography techniques for NDE. Finally, the use of simulation tools for optimizing and validating these techniques will also be discussed.
机译:由于减轻重量,增加强度和可制造性的潜在好处,复合材料在航空航天界的使用继续增加。 NASA正在进行的工作包括使用大型复合结构的航天器(有效载荷罩,低温容器,乘员舱等)。 NASA还致力于使商用飞机结构中复合材料的使用和维护成为可能。维持这些大型复合材料结构的关键之一是对汽车寿命期间可能发生的各种潜在缺陷进行快速,原位表征。另外,在许多应用中,有必要监视这些材料在其整个生命周期内的变化。通过无损评估(NDE)定量表征缺陷(例如,降低的粘结强度,微裂纹和由于冲击造成的分层损坏)尤其令人关注。本文将概述NASA正在开发的NDE技术的应用,这些技术用于表征和维持先进的航空复合材料。提出的方法包括对NDE的常规,导波和相敏超声方法以及红外热成像技术的研究。最后,还将讨论使用仿真工具来优化和验证这些技术。

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