首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >INVESTIGATION OF HEAVY TRUCK RESTRAINT SYSTEM EFFECTIVENESS THROUGH FINITE ELEMENT COMPUTER SIMULATIONS IN FRONTAL CRASHES
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INVESTIGATION OF HEAVY TRUCK RESTRAINT SYSTEM EFFECTIVENESS THROUGH FINITE ELEMENT COMPUTER SIMULATIONS IN FRONTAL CRASHES

机译:通过额外撞车的有限元计算机模拟对重型卡车约束系统有效性的研究

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Computer finite element simulations play an important role in reducing the cost and time taken for prediction of a crash scenario. While interior crash protection has received adequate attention for automobiles, very little is known for commercial vehicle such as heavy trucks. The understanding of injury types for heavy trucks occupants in relation to different crash scenarios would help mitigation of the injury severity. Finite element computer models of the heavy truck cabin structure, interior cabin components, anthropomorphic test device (ATD) (also called dummy) and passive restraint systems were developed and assembled to simulate head-on crash of a heavy truck into a rigid barrier. The researchers developed a computer simulation parametric evaluation with respect to specific seat belt restraint system parameters for a speed impact of 56.3 km/h (35 mph). Restraint parameter variations within this research study are seat belt load limiting characteristics, inclusion of seat belt pretensioner, and variation of seat belt D-ring location. Additionally an airbag was included to investigate another restraint system. For each simulated impact characteristic and restraint system variation, the occupant kinematics were observed and occupant risks were assessed. Within the approximations and assumptions included in this study, the results presented in this paper should be considered as preliminary guidance on the effectiveness of the use of seat belt as occupant injury mitigation system.
机译:计算机有限元模拟在降低预测碰撞方案的成本和时间方面起着重要作用。虽然室内碰撞保护已充分关注汽车,但对于诸如重型卡车等商用车而言,众所周知。对不同碰撞情景相关的重型卡车占用者的伤害类型将有助于减轻伤害严重程度。开发并组装了重型卡车舱结构,内部舱元件,拟人拟合试验装置(ATD)和被动约束系统(也称为虚拟)和被动克制系统的电脑型号,以模拟重型卡车的头部撞车。研究人员在特定的座椅安全带约束系统参数方面开发了一种电脑仿真参数评估,用于速度冲击为56.3 km / h(35英里/小时)。该研究中的克制参数变化研究是安全带载荷限制特性,插入安全带预置剂的载体,以及安全带D形位置的变化。此外,包括一个安全气囊来调查另一个克制系统。对于每个模拟的影响特征和约束系统变化,观察到乘员运动学,并评估乘员风险。在本研究中包含的近似和假设中,本文提出的结果应被视为关于使用安全带作为乘员损伤缓解系统的有效性的初步指导。

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