Buckling Behavior of Isogrid Composite Structures Obtained by Fused Deposition Modeling Technique

A. Forcellese, T. Mancia, M. Simoncini, L. Greco, M. Pieralisi
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Abstract

The Filament Deposition Modeling process was performed to additively manufacture different isogrid structures in reinforced polyamide with 20% in weight of short carbon fibers. Specifically, six different isogrid configurations were 3D printed by changing the rib thickness and rib width of the structures. The isogrid structures were subsequently tested under compression load in order to investigate the effect of geometric parameters on the buckling behavior, in terms of strength and specific strength. It has been observed that, depending on the geometry, isogrid structures exhibit different failure modes due to the global and local buckling. The configurations that are characterized by the highest strength are not the same of those giving the highest specific strength.
熔融沉积模拟技术获得等网格复合材料结构的屈曲行为
采用长丝沉积建模工艺,在短碳纤维重量为20%的增强聚酰胺中增材制造出不同的等网格结构。具体来说,通过改变结构的肋条厚度和肋条宽度,3D打印了六种不同的等网格结构。为了研究几何参数对结构屈曲行为的影响,在强度和比强度方面对等网格结构进行了压缩载荷试验。已经观察到,根据几何形状的不同,等网格结构由于整体和局部屈曲而表现出不同的破坏模式。具有最高强度特征的结构与具有最高比强度的结构不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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