首页> 外文期刊>Thin-Walled Structures >Bionic design and multi-objective optimization for variable wall thickness tube inspired bamboo structures
【24h】

Bionic design and multi-objective optimization for variable wall thickness tube inspired bamboo structures

机译:壁厚可变的竹结构仿生设计和多目标优化

获取原文
获取原文并翻译 | 示例

摘要

This study introduces an energy absorbing structure called a variable thickness structure (VTS) inspired by the gradient of thickness and the inter-nodal distance along the growth direction of bamboo. A series of VTSs under axial impact load were investigated to study the influence of the bionic factors on the energy absorption through a simulation analysis. It was determined that the wall thickness ratio and inter-nodal length ratio of a VTS have a significant effect on the crashworthiness of the structure. In order to obtain an optimal VTS, these factors were optimized through a multi-objective optimization method and polynomial regression (PR) meta-model. We found that the crashworthiness of some VTSs are better than that of a circular tube. In addition, a VTS with an inter-nodal length ratio of 1/2/1 and wall thickness of 3/2.47/1.78 mm was shown to be the optimal structure. A comparison between the optimal VTS and circular tube showed that the specific energy absorption of the VTS increased by 6.2%, whereas the peak crushing force showed a 28.23% decrease. Moreover, the crushing force efficiency increased by 7.48%, the mass decreased by 19.3%, and the VTS deformed more stably in terms of the overall crashing behaviours or collapse modes.
机译:这项研究引入了一种称为可变厚度结构(VTS)的能量吸收结构,该结构受厚度梯度和沿竹子生长方向的节间距离的启发。研究了一系列轴向冲击载荷下的VTS,通过模拟分析研究了仿生因子对能量吸收的影响。已经确定,VTS的壁厚比和节点间长度比对结构的耐撞性具有显着影响。为了获得最佳的VTS,通过多目标优化方法和多项式回归(PR)元模型对这些因素进行了优化。我们发现某些VTS的耐撞性比圆管更好。另外,节点间长度比为1/2/1,壁厚为3 / 2.47 / 1.78 mm的VTS被证明是最佳结构。最佳VTS和圆管之间的比较表明,VTS的比能量吸收增加了6.2%,而峰值压碎力则降低了28.23%。此外,在整体碰撞行为或崩溃模式方面,破碎力效率提高了7.48%,质量降低了19.3%,VTS变形更加稳定。

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