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Axial Collapse Characteristics of Aluminum/CFRP Compound Circular Tubes

机译:铝/ CFRP复合圆形管的轴向塌陷特性

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Aluminum or CFRP (Carbon Fiber Reinforced Plastics) tube subjected to axial loading sustains load, and absorbs energy during axial collapse. The aluminum tube absorbs energy by stable plastic deformation, while the CFRP tube with higher specific strength and stiffness than those of the aluminum tube absorbs energy by unstable brittle failure. To achieve a synergy effect by combining the two members, aluminum/CFRP compound tubes were manufactured, which are composed of aluminum tubes wrapped with CFRP outside aluminum tubes with different fiber orientation angle of CFRP and number of plies. The axial quasi-static collapse tests were performed for the tubes. The collapse characteristics of the tubes were compared with those of respective aluminum tube and CFRP circular tube. Test results showed that the collapse of the aluminum/CFRP tubes complemented unstable brittle failure of the CFRP tube due to the ductile characteristics of the inner aluminum tube. The collapse modes and the absorbed energy were influenced by the fiber orientation angle of CFRP and the number of plies. The absorbed energy per unit mass, which is in the light-weigh aspect, was higher in the aluminum/CFRP compound tube than in the aluminum tube or the CFRP tube alone.
机译:铝或CFRP(碳纤维增强塑料)管经过轴向负载持续负载,并在轴向塌陷期间吸收能量。铝管通过稳定的塑性变形吸收能量,而CFRP管具有较高的比强度和刚度比铝管的刚度,通过不稳定的脆性破坏吸收能量。为了通过组合两个构件来实现协同效果,制造铝/ CFRP复合管,其由用CFRP与CFRP的CFRP包裹的铝管组成,具有不同的CFRP和肤质的倍数。对管进行轴向准静态塌陷试验。将管的塌陷特性与各铝管和CFRP圆形管的塌陷特性进行了比较。试验结果表明,由于内铝管的延展性,铝/ CFRP管的塌陷件互补的CFRP管的脆性失效。折叠模式和吸收的能量受CFRP的纤维取向角的影响和层数。铝/ CFRP复合管中的每单位质量的吸收能量高于铝管或单独的CFRP管。

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