首页> 外文期刊>Materials & design >Optimisation of energy absorbing liner for equestrian helmets. Part Ⅱ: Functionally graded foam liner
【24h】

Optimisation of energy absorbing liner for equestrian helmets. Part Ⅱ: Functionally graded foam liner

机译:优化马术头盔的能量吸收衬里。第二部分:功能梯度泡沫衬里

获取原文
获取原文并翻译 | 示例
           

摘要

The energy absorbing liner of safety helmets was optimised using finite element modelling. In this present paper, a functionally graded foam (FGF) liner was modelled, while keeping the average liner density the same as in a corresponding reference single uniform density liner model. Use of a functionally graded foam liner would eliminate issues regarding delamination and crack propagation between interfaces of different density layers which could arise in liners with discrete density variations. As in our companion Part Ⅰ paper [Forero Rueda MA, Cui L, Gilchrist MD. Optimisation of energy absorbing liner for equestrian helmets. Part Ⅰ: Layered foam liner. Mater Des [submitted for publication]], a best performing FGF liner configuration was identified for a variety of different test conditions. Similar results were found and these compare favourably against the energy absorption of uniform density foam liners. Reduction in peak accelerations is dependant of contact area, the distribution of stress along the thickness of the liner, and the dissipated plastic energy density (DPED). This suggests that it should be possible to use FGF liners instead of discrete foam layers to reduce peak linear acceleration and thereby to maximise the energy absorbing efficiency of the available space within a helmet.
机译:使用有限元建模优化了安全帽的能量吸收衬里。在本文中,对功能梯度泡沫(FGF)衬里进行了建模,同时保持平均衬里密度与相应的参考单均密度衬里模型中的相同。使用功能梯度泡沫衬里将消除有关密度分布离散的衬里中可能出现的不同密度层界面之间分层和裂纹扩展的问题。就像我们在第一部分的同伴论文中一样[Forero Rueda MA,Cui L,Gilchrist MD。优化马术头盔的能量吸收衬里。第一部分:分层泡沫衬里。 Mater Des [提交出版],针对各种不同的测试条件,确定了性能最佳的FGF衬里配置。发现了相似的结果,并且这些结果与均匀密度泡沫衬里的能量吸收相比具有优势。峰值加速度的减小取决于接触面积,沿衬套厚度的应力分布以及耗散的塑性能量密度(DPED)。这表明应该可以使用FGF衬里代替离散的泡沫层,以减少峰值线性加速度,从而最大程度地提高头盔内可用空间的能量吸收效率。

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