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GE 在着手改善行人的安全:公司的 XENOY* 树脂帮助重新定义行人碰撞保护系统
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《广东塑料》 2005年第6期5-5,共1页
GE高新材料汽车部已开发出新型行人碰撞保护材料和创新设计方案,可帮助汽车制造商和各级供应商设计前端安全系统。在GE这种新型前端安全概念中,由公司的XENOY树脂制成的能量缓冲装置直接置于车辆前保险杠横梁的前面,以缓冲可能产生... GE高新材料汽车部已开发出新型行人碰撞保护材料和创新设计方案,可帮助汽车制造商和各级供应商设计前端安全系统。在GE这种新型前端安全概念中,由公司的XENOY树脂制成的能量缓冲装置直接置于车辆前保险杠横梁的前面,以缓冲可能产生的冲击力。GE开发的这一概念旨在帮助满足于2005年生效的新版欧盟(European Union)行人保护法规的要求。 展开更多
关键词 GE高新材料 能量缓冲装置 保险杠横梁 汽车 行人 碰撞保护系统
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GE着手改善行人安全:XENOY^* 树脂帮助重新定义行人碰撞保护系统
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《汽车制造业》 2005年第8期14-14,共1页
2005年5月20日,GE高新材料汽车部宣布已开发出新型行人碰撞保护材料和创新设计方案,可帮助汽车制造商和各级供应商设计前端安全系统。在GE这种新型前端安全概念中,由公司的XENOY^*树爱莫能助脂制成的能量缓冲装置直接置于车辆前保险... 2005年5月20日,GE高新材料汽车部宣布已开发出新型行人碰撞保护材料和创新设计方案,可帮助汽车制造商和各级供应商设计前端安全系统。在GE这种新型前端安全概念中,由公司的XENOY^*树爱莫能助脂制成的能量缓冲装置直接置于车辆前保险杠横梁的前面,以缓冲可能产生的冲击力。 展开更多
关键词 GE高新材料汽车部 行人安全 安全系统 树脂 行人碰撞保护系统 能量缓冲装置
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Structure realization method for collapse threshold of plastic deformation in train collision condition 被引量:1
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作者 田红旗 高广军 +2 位作者 姚松 许平 刘辉 《Journal of Central South University》 SCIE EI CAS 2011年第1期244-249,共6页
To protect passengers, absorb enough kinetic energy and meet the special requirements for trains which are different from the other means of transportation, a method is presented to realize the plastic deformation thr... To protect passengers, absorb enough kinetic energy and meet the special requirements for trains which are different from the other means of transportation, a method is presented to realize the plastic deformation threshold based on three main aspects of train connection structure, crashworthy vehicle structure, energy-absorbing component. In practical engineering, trains need enough strength and stiffness to transfer longitudinal force under the normal operation condition, and have to produce controllable large plastic dcfbrmation to absorb energy shortly under the collision condition. To realize the structural damage threshold of connecting structure in terminal end, two control methods are also proposed which can be divided as the parametric method based on 'extrusion' and 'cutting' theories; the method which can cut the connecting components between coupler-buffer devices and train bodies and separate them away when the damage thresholds of coupler-buffer devices are more than the pre-supposed damage thresholds. The damage thresholds can be realized based on changing the parameters of the number of shearing bolts, material parameters, etc. To realize the collision threshold of energy-absorbing components of trains, a control method is presented based on the ways of setting plastic deformation induced structure, local hole and pre-deformation structure. To realize the threshold of the controllable plastic structure of energy-absorbing vehicles, a control method is proposed for the multi-level longitudinal stiffness of train terminal structures. 展开更多
关键词 damage threshold train crashworthiness plastic deformation energy-absorbing structure
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