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首页> 外文期刊>Composite Structures >An investigation of the strength and stiffness of weight-saving sandwich beams with CFRP face sheets and seven 3D printed cores
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An investigation of the strength and stiffness of weight-saving sandwich beams with CFRP face sheets and seven 3D printed cores

机译:CFRP面板和七三维印刷芯重量夹层梁强度和刚度研究

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摘要

Although sandwich panels are widely used in the industry, the limitations in the cores' structure designs and materials restrain their use in stiffnessor strength-critical applications without increasing the sandwich beams' dimensions. The use of additive manufacturing over conventional fabrication methods enabled us to tune the cores' design according to the stiffness and strength requirements without increasing the beams' overall dimensions. Seven core structures were 3D printed of Nylon PA12 using powder bed fusion and were tested for their strength and stiffness using three-point bending test. The novel 3D printed core structures were combined, for the first time in the literature, with thin CFRP face sheets. The small Re-entrant and Gyroid structures achieved the highest strength and stiffness values respectively, while the 3D printed conventional honeycomb structures performed the poorest among all other core structures. The stiffness and strength values were normalised using the samples weights and the gyroid structure recorded the highest specific stiffness and strength, making it ideal for supporting weight-critical applications such as motorsport and aerospace.
机译:虽然夹心板在行业中广泛应用,但核心结构设计和材料的局限性在不增加夹层光束的尺寸的情况下,核心结构设计和材料的局限性抑制了它们在刚度强度关键关键的应用中的使用。在传统的制造方法上使用添加剂制造使我们能够根据刚度和强度要求调节芯的设计,而不会增加光束的整体尺寸。使用粉床融合,七核结构是尼龙PA12的3D打印,并使用三点弯曲试验测试它们的强度和刚度。组合新型3D印刷核心结构,在文献中首次组合,具有薄的CFRP面板。小的重入体和陀螺结构分别实现了最高强度和刚度值,而3D印刷的传统蜂窝结构在所有其他核心结构中执行最贫困的态度。使用样品重量归一化刚度和强度值,并且陀螺结构记录了最高的特定刚度和强度,使其适用于支持摩托车和航空航天等重量关键应用。

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