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Mechanical behavior of sandwich structure composites for helicopters

机译:三明治结构复合材料的直升机机械行为

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The visible part of the floors of a commercial aircraft has long been a standard issue for virtually every commercial aircraft, mainly due to the weight of the materials from which they were made. Floor parts must provide mechanical strength and dimensional stability, while keeping the weight of the aircraft as low as possible for maximum efficiency. The design of the 787 Dreamliner and the Airbus A380 aircraft brought new opportunities in the use of the sandwich composite structure, mainly due to their light weight and high strength-to-weight ratio. Thus, this paper investigates the mechanical behavior of sandwich composite panels composed of two sides of carbon fiber laminate and Nomex honeycomb core obtained in the autoclave and developed under the RoRCraft CompAct grant. The technical approaches of this work are mainly focused on the compression behavior and especially on the compression after impact behavior of the hybrid sandwich composite structure, for defining and obtaining an optimal structure for the floors. These mechanical tests are decisive for such materials and have been performed in accordance with international ASTM standards.
机译:商用飞机的楼层的可见部分长期以来一直是几乎每架商用飞机的标准问题,主要是由于它们的材料的重量。地板部件必须提供机械强度和尺寸稳定性,同时保持飞机的重量尽可能低,以便最高效率。 787 Dreamliner和空中客车A380飞机的设计在使用夹层复合结构时为新的机会带来了新的机会,主要是由于它们的重量轻,强度重量比。因此,本文研究了由高压釜中获得的碳纤维层压板两侧和Nomex蜂窝芯组成的夹层复合面板的力学行为,并在滚动压缩授权下开发。这项工作的技术方法主要集中在压缩行为上,特别是在混合夹层复合结构的冲击行为后的压缩,用于定义和获得地板的最佳结构。这些机械测试对这些材料具有决定性,并根据国际ASTM标准进行。

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