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Windsurf-Board Sandwich Panels Under Static Indentation

机译:静态压痕下的风帆冲浪板夹层板

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摘要

In recent years composite materials have found application in several fields as sport and sea transportation, where the incidence of the cost of materials is not significant compared with the required high mechanical performances. As a matter of fact, in some sports the whole equipment is nowadays realized in composite materials (i.e. windsurf boards, snowboards). The aim of the present work is to evaluate the mechanical performance of some sandwich structures produced by vacuum bagging technology for the windsurf boards production. The behaviour of the structures is tested under static indentation conditions; different fibres materials, for the skins, and different polystyrene foams, for the core, have been taken into account. In particular both the effect of the kind of fibre (glass, carbon and kevlar fibres) and the effect of the polystyrene cells size (and its density) have been investigated. The purpose was to obtain a stiff structure able to bear localized loads. Additionally, the effects induced on the indentation resistance by both the speed and the diameter of pin have been analysed.
机译:近年来,复合材料已在体育和海上运输等多个领域中得到应用,与所需的高机械性能相比,复合材料的成本影响不大。事实上,如今在某些运动中,整个设备都是用复合材料实现的(例如,风帆板,滑雪板)。本工作的目的是评估通过用于风帆冲浪板生产的真空装袋技术生产的某些三明治结构的机械性能。在静态压痕条件下测试结构的性能;考虑了用于表皮的不同纤维材料和用于芯的不同聚苯乙烯泡沫。尤其是,已经研究了纤维种类(玻璃纤维,碳纤维和凯夫拉尔纤维)的影响以及聚苯乙烯泡孔尺寸(及其密度)的影响。目的是获得能够承受局部载荷的刚性结构。另外,已经分析了通过销的速度和直径对压痕阻力的影响。

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