预压蜂窝夹层结构冲击分析

Chris Fischer, Falk Hähnel, Klaus Wolf, Johannes Markmiller
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引用次数: 0

摘要

由酚醛树脂浸渍纸制成的蜂窝芯广泛应用于飞机夹层结构。由于芯材相当薄弱,这种夹层在运行过程中容易受到冲击载荷的影响而产生一系列的损伤。在飞机上使用时,这些结构必须具有损伤容忍度。这意味着在结构设计过程中必须考虑几乎看不见的损坏。在飞机结构容损的标准设计过程中,必须考虑冲击的影响,但主要研究的是卸载夹层构件。然而,即使飞机处于停车位置,飞机结构也不是完全没有应力的。至少结构重量会造成永久的静态预紧力。在文献中,只有很少的研究处理预加载蜂窝夹层结构的冲击行为。总的来说,对复合材料结构的研究表明,拉伸预紧力可以提高结构的抗冲击能力,而压缩预紧力会降低结构的冲击强度和刚度等力学性能。由于这个原因,压缩预载荷被认为是更关键的载荷情况。为了评估静压缩预载荷的影响,对五种不同的蜂窝夹层结构进行了实验研究。试验研究表明,较低的预紧力会导致较大的结构损伤面积,从而导致较低的结构残余强度。结果表明,在飞机结构设计过程中考虑结构压缩预载荷是可取的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact analysis of compression preloaded honeycomb sandwich structures
Honeycomb cores made of phenol resin impregnated paper are widely used in sandwich structures of aircraft. Owing to the rather weak core material, this kind of sandwich is prone to a range of damages as a result of impact loading which may accidentally occur during operation. When employed in aircraft these structures have to be damage tolerant. This means barely visible damages have to be considered in the structural design process. In the standard design process for damage tolerant aircraft structures especially the effect of impacts has to be considered but is mostly investigated on unloaded sandwich components. However, aircraft structures are not completely stress free, even when the aircraft is in parking position. At least the structural weight will cause a permanent static preload. In the literature there are only few investigations dealing with the impact behaviour of preloaded honeycomb sandwich structures. In general, studies on composite structures have shown that tension preloads lead to higher structural impact resistance, while prestressing in compression reduces mechanical properties such as impact strength and stiffness of the structure. For this reason, a compression preload is considered as the more critical load case. In order to evaluate the effect of static compression preloads an experimental study on five different honeycomb sandwich configurations was conducted. The experimental investigations showed that even low preloads cause a higher structural damage area, which results in a lower residual strength of the structure. The results indicated that it is recommendable to consider structural compression preloads in the aircraft structural design process.
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