首页> 外文会议>International Conference on Engineering, Technology, and Industrial Application >Hollow Glass Microsphere-Epoxy Composite Material for Helmet Application to Reduce Impact energy due to Collision
【24h】

Hollow Glass Microsphere-Epoxy Composite Material for Helmet Application to Reduce Impact energy due to Collision

机译:用于头盔应用的中空玻璃微球 - 环氧树脂复合材料,以减少由于碰撞而导致的冲击能量

获取原文

摘要

Helmet is used as a safety gear to prevent the impact energy from a collision, due to a motorcycle accident, from injuring the rider's head. Manufacturing of a light weighted helmet with a high absorption of impact energy, is much expected because it could increase the rider's safety and mobility. Meanwhile there are composites, which are made from two or more materials that have different characteristics, that will give a better mechanical properties compared to its original constituent material. In this research, a particular composite which is consist of 84% epoxy as its matrix and 16% Hollow Glass Microsphere (HGM) as its reinforce, is simulated by finite element method. The threedimensional open-faced helmet model has an initial thickness of 4 mm, diameter of 87.57 mm, height 114 mm and foam thickness 20 mm. The experiment simulation is conducted according to the SNI 1811 -2007 (Standar Nasional Indonesia) regulations. The penetration and absorption test instruments model are prepared also referring to the stated regulations, which are a three-dimensional head piece as the helmet holder, a 3 kg sharp pendulum, a 5 kg helmet weigh and a runway. The simulation concluded that the helmet with an 8 mm thickness has fulfilled the SNI 1811 - 2007 provisions, which stated that penetration should not happen on the lid of the helmet and the impact absorption forwarded by the helmet to the rider's head should not exceed 2000 kgf. The maximum stress and deformation are 15.44 Mpa and 8.28E-4 mm respectively. As for the impact energy forwarded by the helmet is only 460 kgf.
机译:头盔用作安全齿轮,以防止由于摩托车事故而碰撞的冲击能量,从骑车的头部受伤。具有高吸收冲击能量的轻量级头盔的制造需要很多预期,因为它可以提高骑车者的安全性和移动性。同时,有复合材料,其由两种或更多种具有不同特性的材料制成,与其原始组成材料相比,这将提供更好的机械性能。在该研究中,通过有限元方法模拟了由84%环氧作为其基质和16%中空玻璃微球(HGM)组成的特定复合材料。三维开孔头盔型号的初始厚度为4毫米,直径为87.57毫米,高度114 mm,泡沫厚度为20mm。实验仿真根据SNI 1811 -2007(Starear Nasional Indonesia)法规进行。渗透和吸收测试仪器模型也参考说明的规定,这是一个三维头部作为头盔支架,3公斤锋利的摆锤,一个5kg头盔的重量和跑道。仿真总结说,8毫米厚度的头盔实现了SNI 1811-2007的规定,该规定表示,佩戴的渗透性不应发生在头盔的盖子上,并且由头盔转发的撞击吸收到骑手的头部不应超过2000 kgf 。最大应力和变形分别为15.44MPa和8.28e-4mm。至于头盔转发的冲击能量仅为460 kgf。

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