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Design and Development of Truck Rear Underrun Protection Device

机译:卡车后部欠压保护装置的设计与开发

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Underride truck crashes occur when a.passenger car rides under the rear of a large truck.These kinds of accidents are especially dangerous because of the size difference between trucks and passenger cars.Therefore,it is necessary to install the Rear Underrun Protection Device(RUPD)at the rear of trucks for safety enhancement.The aim of this research is to design an effective RUPD which is strong enough to prevent a passenger car falling under the rear of the truck and able to absorb large amount of crash energy to minimize accident severity.The novel RUPD design,equipped with energy absorption guard and proper support structure is proposed in this paper.The study on the angle and separation distance of support structures is performed to find the proper design for the support structure of RUPD.The internal energy and displacement of various design of support structures are investigated by performing Finite element crash simulation in LS-Dyna.The FMVSS 223 standard is utilized as reference for the standard design of RUPD.The result shows that the support structure angle of 20 degree yields optimal displacement and energy absorption.Moreover,the new proposed RUPD is able to avoid the A-pillar deformation and eliminates underride altogether.
机译:当A.Passenger汽车在一辆大型卡车的后方骑行时,发生了底线卡车崩溃。由于卡车和乘用车之间的大小差异,各种事故尤其危险。因此,有必要安装后部欠压保护装置(RUPD )在卡车后部进行安全提升。本研究的目的是设计一种有效的RUPD,它足以防止乘用车落在卡车后方并吸收大量的碰撞能量,以最大限度地减少事故严重程度。本文提出了具有能量吸收防护装置和适当的支撑结构的新型Rupd设计。对支撑结构的角度和分离距离进行研究,以找到Rupd的支持结构的适当设计。内部能量和通过在LS-DYNA中执行有限元碰撞模拟来研究各种支持结构设计的位移。FMVS 223标准用作参考CE用于RUPD的标准设计。结果表明,20度的支撑结构角度产生最佳位移和能量吸收.Orese,新的建议Rupd能够避免A柱变形并完全消除欠级。

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