首页> 外文会议>Asia-Pacific Congress on Sports Technology >User Centred Design Customisation of Bicycle Helmets Liner for Improved Dynamic Stability and Fit
【24h】

User Centred Design Customisation of Bicycle Helmets Liner for Improved Dynamic Stability and Fit

机译:用户居中设计自行车头盔衬里的设计,可提高动态稳定性和适合

获取原文

摘要

In order for bicycle helmets to maintain sufficient coverage and protection of riders, the helmets must be adequately positioned and secured on the head. This research investigates helmet's dynamic stability parameters in order to determine whether a customised liner can improve the retention and therefore safety. A specialist 3D scanner was used to scan a total of 17 male participants who volunteered for this study. Through 3D scanning the shape and depth of each section of a participant's head and facial structure was captured. All the heads scanned were orientated with respect to the same co-ordinates based on the Australian and New Zealand Standards in order to customize the liner design to fit the user's heads. The dynamic stability of the commercially available helmets and the customized helmet were assessed using relevant video and goniometer techniques. The results indicate that for frontal roll-off, the customised helmet liner passed in all simulations of the 160mm drop height. It consistently performed better in the lateral roll-off at height of 40mm and 80mm compared with the commercially available helmets. While the dynamic stability measurements and the design strategies offer the potential to improve fit for different user's head, further studies should take into consideration a larger population size to draw more accurate conclusions.
机译:为了使自行车头盔保持足够的覆盖和保护骑手,必须充分定位并固定在头部。该研究调查了头盔的动态稳定性参数,以确定定制衬里是否可以提高保留和因此安全。专家3D扫描仪用于扫描共有17名男性参与者,为这项研究志愿进行。通过3D扫描参与者头部和面部结构的每个部分的形状和深度被捕获。扫描的所有头部都是基于澳大利亚和新西兰标准的相同协调旨在定制衬里设计以适应用户的头部。使用相关的视频和测辐射计技术评估市售头盔和定制头盔的动态稳定性。结果表明,对于前轧机,定制的头盔衬里通过了160mm跌幅高度的所有模拟。与商业上可用的头盔相比,它在40mm和80mm的高度的高度的横向折衷中始终如一。虽然动态稳定性测量和设计策略提供了改善适合不同用户的头部的潜力,但进一步的研究应该考虑更大的人口大小以得出更准确的结论。

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