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Composite Materials Inspection Methods, Equipment Selection

机译:复合材料检测方法,设备选择

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Tremendous research and development effort was put forth in the past to find suitable structural materials for aircraft designs. Several stages of development were encountered. Different materials were tested and applied, at the various stages, to meet specific design requirements - wood, steel, aluminum, titanium, etc. The latest development in aircraft and aerospace structures is composite materials, which provide high strength, high stiffness, corrosion resistance, ease of fabrication, lower weight and eventual fuel savings. The strength/stiffness-to-weight ratio of composite materials has been proved higher than metals. Along with the development of materials, a very essential aspect is their maintenance and inspection. NASA, Boeing and other aircraft manufacturers have carried out a lot of research in the field. Only a few equipments are available at this time to enable effective inspection of composite material failures - delamination, disbonding, water ingestion, fiber fretting, etc., which are quite different from metal failures. Airline carriers face various problems caused by changes in concepts, material processes and systems in maintenance whenever new materials are introduced. The introduction of composite materials has brought with it new concepts of inspection and maintenance procedures unknown when metals were used. Many air carriers, in collaboration with aircraft manufacturers, were forced to upgrade their maintenance philosophies in order to cope with the latest developments. Non-destructive examination (NDE) is a major technique in composite aircraft structural materials inspection. Carefully evaluated and tested equipment for this purpose saves the airlines, especially small-to-medium sized, a lot of cost in terms of man-hours and acquisition and provides the best possible performance. Thermography is one of the best techniques developed. However, the cost of the equipment for this technique is high at this time. Equipment selection for NDE of composite materials is the major theme of the presentation. It suggests that development in the field needs more effort to make further studies to arrive at appropriate equipment choices for airlines and aircraft maintenance facilities. The main considerations in equipment selection are: purpose of inspection, equipment capability, cost of acquisition of the equipment, safety considerations, reliability, equipment commonality, and training requirements. Discussion proceeds from the above considerations. Data collection and equipment manufacturing firms as well as experience-related issues are raised. The necessity for physical evaluation tests and financial constraints are emphasized for final recommendation and decision.
机译:过去提出了巨大的研发努力,为飞机设计找到合适的结构材料。遇到了几个发展阶段。在各个阶段进行测试和应用不同的材料,以满足特定的设计要求 - 木材,钢,铝,钛等。飞机和航空航天结构的最新发展是复合材料,可提供高强度,高刚度,耐腐蚀性,易于制造,重量低,最终的燃料节省。已证明复合材料的强度/刚度至重量比率高于金属。随着材料的发展,非常重要的方面是他们的维护和检查。美国宇航局,波音和其他飞机制造商在该领域进行了大量研究。目前只有少数设备可以进行有效检查复合材料故障 - 分层,脱粘,水摄入,纤维烦恼等,这与金属故障相比。每当介绍新材料时,航空公司运营商面临由维护中的概念,材料工艺和系统的变化引起的各种问题。复合材料的引入带来了它在使用金属时未知的检验和维护程序的新概念。许多航空公司与飞机制造商合作,被迫升级其维护哲学,以应对最新的发展。非破坏性检查(NDE)是复合飞机结构材料检验中的主要技术。为此目的仔细评估和测试的设备可节省航空公司,特别是中小型的内部大小,在人间和收购方面的大量成本,并提供了最佳性能。热成像是开发的最佳技术之一。但是,此时该技术的设备的成本很高。复合材料NDE的设备选择是演示文稿的主要主题。它表明,该领域的发展需要更多的努力来进一步研究,以获得适当的航空公司和飞机维护设施的设备选择。设备选择的主要考虑因素是:检验,设备能力,收购设备成本,安全考虑,可靠性,设备共性和培训要求。讨论从上述考虑中获得。提出了数据收集和设备制造公司以及与经验相关的问题。强调了物理评估测试和财务限制的必要性,以获得最终的建议和决定。

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