首页> 外文期刊>Thin-Walled Structures >Effect of radial clearance and holes as crush initiators on the crashworthiness performance of bi-tubular profiles
【24h】

Effect of radial clearance and holes as crush initiators on the crashworthiness performance of bi-tubular profiles

机译:径向间隙和孔作为粉碎引发器对双管型材的耐火性能的影响

获取原文
获取原文并翻译 | 示例

摘要

The use of bi-tubular structures has gained importance in the design of energy absorption systems for protection of passengers in train collisions. Therefore, it is critical to improve the crashworthiness performance of bi-tubular profiles. For this purpose, the effect of cross-section, bi-tubular clearance and holes as crush initiators is evaluated using finite element simulations. To get reliable outcomes, special emphasis was set on the progressive damage modelling of aluminum 6063-T5 by a Johnson-Cook (J-C) failure model. During the cross-section study, bi-tubular arrangements based on polygonal and circular cross-section were evaluated by quasi-static compression loads. The results indicate that the circular shapes showed better crashworthiness performance or crush force efficiency (CFE) up to 12.28% respect to a square base structure. A 10.72% improvement in CFE was obtained when the non-dimensionalized clearance between profiles is increased from lambda = 20 to lambda = 40. The effect of holes on crashworthiness performance was evaluated by drilling holes at different locations both in the inner and outer profiles. The results show that the use of holes increased the crush force efficiency and energy absorption (E-a) capability even more than the effect of clearance alone. Improvements in the order of 2.50% and 12.96% for E-a and CFE respectively were computed when holes were placed at the top end of a BC-3 profile with a non-dimensional clearance of lambda = 40. Considering all effects simultaneously, an increase of 24.6% and 26.31% for E-a and CFE respectively was calculated. Finally, an application to a crash buffer in a railway transport system is considered. Likewise, its improved crashworthiness behavior is presented.
机译:双管结构的使用在培训碰撞中保护乘客的能量吸收系统方面获得了重要性。因此,改善双管型材的耐火性能至关重要。为此目的,使用有限元模拟评估横截面,双管状间隙和孔作为粉碎引发器的效果。为了获得可靠的结果,特别强调由Johnson-Cook(J-C)失败模型的铝6063-T5的渐进损伤建模。在横截面研究期间,通过准静态压缩载荷评估基于多边形和圆形横截面的双管布置。结果表明,圆形形状显示出更好的持续性能或压碎力效率(CFE),高达12.28%的方形基础结构。当曲线之间的非尺寸间隙间隙从Lambda = 20增加到Lambda = 40时,获得了CFE的10.72%。通过在内部和外部轮廓中的不同位置钻孔来评估孔对撞击性性能的影响。结果表明,使用孔的使用增加了较多的碎力效率和能量吸收(E-A)的能力,即使单独的间隙的效果也是如此。当将孔放置在BC-3轮廓的顶端时,计算EA和CFE的eA和CFE的10.96%的提高,具有λ= 40的非尺寸间隙。同时考虑所有效果,增加计算EA和CFE的24.6%和26.31%。最后,考虑了在铁路运输系统中的崩溃缓冲器的应用。同样,提出了其改善的耐火行为。

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