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首页> 外文期刊>Recent patents on materials science >NonDestructive Evaluation of Carbon Fiber Reinforced Polymers with Ultrasonics and Infrared Thermography: An Overview on Historical Steps and Patents
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NonDestructive Evaluation of Carbon Fiber Reinforced Polymers with Ultrasonics and Infrared Thermography: An Overview on Historical Steps and Patents

机译:超声波和红外热成像技术对碳纤维增强聚合物的无损评估:历史步骤和专利概述

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摘要

The increasing use of composites in the transport industry and specifically in the aerospace field calls for non-destructive evaluation techniques for quality control during manufacturing and in service. Therefore, the availability of techniques which are effective to assess a material is free of slag inclusions, delamination and porosity is a crucial point. Of course, no technique is exhaustive alone; some are more effective for detection of surface discontinuities, others for outlining of buried shallow defects and others for detection of deeper anomalies. Then, an integration of two, or more, techniques may be the optimal solution especially for nondestructive evaluation of aerospace parts. The attention of this review is focused on two techniques: ultrasonic testing, which is commonly used, and infrared thermography, which was recently recognized amongst standards, for nondestructive testing and evaluation of composite materials in the aeronauti-cal industry. For each of the two techniques, historical steps are traced with particular attention to the patents produced. In particular, the advantages coming from an integration of infrared thermography with ultrasonics and some other tech-niques are also discussed.
机译:复合材料在运输行业,尤其​​是在航空航天领域的使用越来越多,这就要求在生产和使用过程中采用无损评估技术来进行质量控制。因此,有效评估材料的技术没有炉渣夹杂物,分层和孔隙度是关键点。当然,没有一种技术可以穷举一个人。一些方法对于检测表面不连续性更有效,另一些方法对于掩埋浅层缺陷的轮廓更清晰,而另一些方法对于检测更深的异常情况更有效。然后,两种或更多种技术的集成可能是最佳解决方案,尤其是对于航空航天零件的无损评估。这篇评论的重点集中在两种技术上:用于航空工业复合材料的无损检测和评估的常用技术是超声检测,以及最近在各种标准中被公认的红外热成像。对于这两种技术中的每一种,都应特别注意所产生的专利的历史步骤。尤其是,还将讨论红外热成像技术与超声波技术以及其他一些技术的集成所带来的优势。

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