首页> 外文期刊>Fibers and Polymers >Crashworthy and Performance-cost Characteristics of Aluminum-CFRP Hybrid Tubes under Quasi-static Axial Loading
【24h】

Crashworthy and Performance-cost Characteristics of Aluminum-CFRP Hybrid Tubes under Quasi-static Axial Loading

机译:铝-CFRP杂交管的耐火性和性能成本特性在准静态轴向载荷下

获取原文
获取原文并翻译 | 示例
           

摘要

Metal/composite hybrid thin-walled structures combine the low cost of metallic materials and the high strength-toweight ratio of composites and thus have the potential to be utilized as cost-effective energy absorbers for vehicle applications. This study aimed to examine the crushing behaviors and performance-to-cost ratio of aluminum/carbon fiberreinforced plastic (CFRP) hybrid tubes under quasi-static axial loading. First, a single aluminum tube, a single CFRP tube and an aluminum/CFRP hybrid tube were tested to validate numerical models. The experimental results showed that the total energy absorption (EA) of the aluminum/CFRP hybrid tube was 32.46 % higher than the sum of that of the individual parts, and the special energy absorption (SEA) of the hybrid tube was improved by 105.26 % compared with that of the single aluminum tube. Then, the effects of the orientation angles ([+/- 15 degrees](n), [+/- 45 degrees](n), [+/- 75 degrees](n), [+/- 90 degrees](n), [90 degrees/0 degrees](n), n=2, 4, 6) and thicknesses of the CFRP tube wall (4-ply, 8-ply, 12-ply) on the crashworthiness of the hybrid tube were studied through validated numerical models. The numerical results showed that as the orientation angle increased, SEA, EA and the mean crushing force (F-mean) decreased first and then increased; in addition, the hybrid tubes with orientation angles of [+/- 45 degrees](n) and [90 degrees/0 degrees](n) (n=2, 4, 6) consistently exhibited the worst and best crashworthiness, respectively. Furthermore, the SEA, EA, and F-mean of the hybrid tube increased with increasing thickness of the CFRP tube wall. Finally, the performance-to-cost ratio (SEA/cost) of the hybrid tube was analyzed, and the results show that aluminum/CFRP hybrid tubes with a smaller wall thickness of the CFRP tube exhibits superior potential in terms of both cost and performance for automotive applications.
机译:金属/复合混合薄壁结构结合了金属材料的低成本和复合材料的高强度 - 毛动率,因此具有用于车辆应用的成本效益的能量吸收剂的可能性。本研究旨在在准静态轴向载荷下检测铝/碳纤维塑料塑料(CFRP)杂交管的破碎行为和性能与成本比。首先,测试单个铝管,单个CFRP管和铝/ CFRP混合管以验证数值模型。实验结果表明,铝/ CFRP杂交管的总能量吸收(EA)高于各个部件的总和32.46%,杂交管的特殊能量吸收(海)提高了105.26%与单铝管的相比。然后,取向角的影响([+/- 15度](n),[+/- 45度](n),[+/- 75度](n),[+/- 90度]( n),[90度/ 0度](n),n = 2,4,6)和CFRP管壁(4-PLY,8-PLY,12-PLY)的厚度在杂交管的耐火材料上是通过经过验证的数值模型研究。数值结果表明,随着方向角度的增加,海,EA和平均破碎力(F均值)首先降低,然后增加;另外,具有[+/- 45度](n)和[90度/ 0度](n)(n = 2,4,6)的取向角的杂合管始终表现出最差和最佳的耐架。此外,杂交管的海,EA和F均值随着CFRP管壁的厚度的增加而增加。最后,分析了杂交管的性能与成本比(海/成本),结果表明,具有较小壁厚的CFRP管壁厚的铝/ CFRP杂合管在成本和性能方面具有卓越的潜力用于汽车应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号