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Thermal Simulation and Testing of Expanded Metal Foils Used for Lightning Protection of Composite Aircraft Structures

机译:复合飞机结构雷电保护膨胀金属箔的热仿真和测试

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摘要

Since the 1960's, lightning protection of aircraft has been an important design aspect, a concern for the flying public, aircraft manufacturers and the Federal Aviation Administration (FAA). With the implementation of major aircraft structures fabricated from carbon fiber reinforced plastic (CFRP) materials, lightning protection has become a more complicated issue to solve. One widely used material for lightning strike protection of CFRP structures within the aerospace industry is expanded metal foil (EMF). EMF is currently used in both military and commercial passenger aircraft. An issue that has historically been an area of concern with EMF is micro cracking of paint on the composite structure which can result in corrosion of the metal foil and subsequent loss of conductivity. This paper addresses the issues of stress and displacement in the composite structure layup which contribute to paint cracking caused by aircraft thermal cycling. The analysis of EMF by computer modeling is made using commercially available COMSOL Multiphysics software that is supported by data from limited experimental testing. Variables that are explored include width, height, mesh aspect ratio, weight, composition and surface layup structure. Horizontal displacement profiles parallel to the surface are utilized for performance comparisons.
机译:自1960年代以来,飞机的防雷是一个重要的设计方面,是飞行公共,飞机制造商和联邦航空管理局(FAA)的关注。随着由碳纤维增强塑料(CFRP)材料制造的主要飞机结构的实施,雷电保护已成为一个更复杂的解决问题。用于在航空航天工业内CFRP结构的雷击保护的一种广泛使用的材料是膨胀金属箔(EMF)。 EMF目前用于军事和商业客车。历史上一直是EMF关注领域的问题是复合结构上的涂料的微裂纹,这可能导致金属箔的腐蚀和随后的导电性丧失。本文涉及复合结构汇总中的应力和位移问题,这有助于飞机热循环引起的油漆裂纹。通过计算机建模对EMF进行分析,使用来自有限的实验测试的数据支持的商用COMSOL多体学软件进行。探索的变量包括宽度,高度,网格宽高比,重量,组成和表面上叠层结构。平行于表面的水平位移型材用于性能比较。

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