首页> 外文会议>American Society for Composites technical conference;American Society for Composites >Specific Energy Absorption Improvement of Rear Crash Attenuator by Numerical Modelling for Various Angles of Impact
【24h】

Specific Energy Absorption Improvement of Rear Crash Attenuator by Numerical Modelling for Various Angles of Impact

机译:不同碰撞角度的数值模拟改善后部碰撞衰减器的比能量吸收

获取原文
获取外文期刊封面目录资料

摘要

This research* aims on developing a reliable finite element framework to investigate the Specific Energy Absorption (SEA) of the rear crash attenuator of an open-wheel type Indycar vehicle. A meshed model representing the crash structure was designed and its failure behaviour was learnt on the basis of various non-linear finite element modelling techniques to simulate a crash as per regulations from the governing body of Indycar. All the numerical analysis was performed utilizing the LS-DYNA software with the Progressive Failure Model (PFM) and Continuum Damage Model (CDM) of MAT058_LAMINATED_COMPOSITE_FABRIC card.The sandwich structure material characterization for the tuning of the material model was done by the means of a correlation with experimental data and adjusting the non-physical input parameters in the software. Post calibration, the development of the rear impact attenuator was performed with the model. A combined failure mode was observed with a gradual crushing phenomenon during the analysis on head-on impacts (0°) while in case of oblique impacts performed at 30° off axis shows the structure failing at its rear attachment points to the bulkhead.The specific energy absorption was determined at different configurations of impact of this reinforced sandwich structure by evaluating the force over a crushed displacement. The layup was adjusted, the sensitive points at the attachments were stiffened, and the core thickness was varied throughout the structure to improve the overall specific energy absorption by 27.8% with a gradual deceleration value to that of the prescribed. Finally, the results were compared to the previous Indycar structure and the rear crash attenuator was redesigned with highlights of the refreshed results.
机译:这项研究*旨在开发一种可靠的有限元框架,以研究开放轮式Indycar车辆后碰撞衰减器的比能量吸收(SEA)。设计了一个表示碰撞结构的网格模型,并根据各种非线性有限元建模技术学习了其失效行为,以根据印地车管理机构的规定对碰撞进行模拟。使用LS-DYNA软件以及MAT058_LAMINATED_COMPOSITE_FABRIC卡的渐进失效模型(PFM)和连续损伤模型(CDM)进行所有数值分析。 通过与实验数据的关联以及在软件中调整非物理输入参数的方式来完成用于材料模型调整的三明治结构材料表征。校准后,使用该模型进行后碰撞衰减器的开发。在分析正面冲击(0°)时观察到组合破坏模式,并出现逐渐破碎的现象,而在偏离轴30°的情况下发生倾斜冲击时,则表明该结构在其与舱壁的后附接点处发生了破坏。 通过评估压碎位移上的力,确定了该增强夹层结构在不同冲击构造下的比能量吸收。调整叠层,使附件处的敏感点变硬,并在整个结构中改变芯的厚度,以使总比能吸收提高27.8%,并逐渐降低至规定值。最后,将结果与以前的Indycar结构进行了比较,并重新设计了后碰撞衰减器,并着重强调了更新的结果。

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