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Vibration behaviours of single/multi-debonded curved composite sandwich structures

机译:单/多分离弯曲复合夹层结构的振动特性

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摘要

Sandwich structures, which are light but have high strength, are extensively used in automobile, marine and aircraft structures. However, core/facesheet debonding can occur and reduce the stiffness of the structures and hence result in the failure of the structures, whilst affecting the vibration behaviours. Hammer impact tests and finite element simulations were conducted on flat and curved sandwich structures, which were composed of carbon fibre reinforced polymer (CFRP) facesheets and epoxy cores, to analyse how the vibration behaviours were affected by debonding and other factors. The 15 degrees- and 30 degrees-curved structures showed only slight differences in the natural frequencies of bending and torsional modes. However, significant difference in the lateral modes were found as the mode shape merged with torsional movement and hence the natural frequencies increase. Debonding resulted in the reduction in the natural frequencies, an 80 mm debonded region reduced the natural frequency of the flat and 30 degrees-curved structures by 57.0% and 56.6%, respectively. Change of natural frequencies can make a structure resonate and lead to failure, therefore how the debonded regions affect the vibration of sandwich structures is important for applications.
机译:重量轻但强度高的三明治结构广泛用于汽车,船舶和飞机结构。然而,芯/面板的剥离会发生并降低结构的刚度,并因此导致结构的破坏,同时影响振动性能。在由碳纤维增强聚合物(CFRP)面板和环氧树脂芯组成的扁平和弯曲夹心结构上进行了锤击试验和有限元模拟,以分析振动性能如何受到脱胶和其他因素的影响。 15度和30度弯曲的结构在弯曲和扭转模态的固有频率中仅显示出微小的差异。然而,在横向模态中发现了显着差异,因为模态形状与扭转运动合并,因此固有频率增加。剥离导致固有频率降低,一个80毫米的剥离区域使扁平结构和30度弯曲结构的固有频率分别降低了57.0%和56.6%。固有频率的变化会使结构产生共振并导致破坏,因此,脱胶区域如何影响夹层结构的振动对于应用而言很重要。

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