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Simplified FE vehicle model for assessing the vulnerability of axially compressed steel columns against vehicle frontal impact

机译:简化的有限元车辆模型,用于评估轴向压缩钢柱对车辆正面冲击的脆弱性

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摘要

The main objective of this study is to present and validate a simplified numerical vehicle model that can be used to simulate the effects of vehicle frontal impact on steel columns by using the commercial finite element code ABAQUS/Explicit. The simplified numerical vehicle model treats the vehicle as a spring-mass system. This model has in fact already been exploited by other researchers in the preliminary stages of vehicle design and occupant safety assessment. The proposed model consists of three parts: an indeformable body representing the total vehicle mass; a spring or connector with nonlinear force-deformation relationship to represent the dynamic stiffness of the vehicle; and a rigid but weightless plate to generate the contact between the spring-mass system and the impacted column. The dynamic load-deformation characteristic of the spring is assumed to be bilinear: the initial linear elastic part simulating the vehicle deformation until it has reached the vehicle engine box, followed by a near rigid relationship. This concept has been validated by comparison against simulation results of steel columns under different impact velocities, axial load ratios, boundary conditions, and slenderness ratios using the full-scale vehicle model and using the proposed simplified spring-mass model. Having validated the proposed model, this study presents the derivations and validations of an equation to predict the equivalent linear stiffness of the vehicle that can be used either in a future numerical simulation model or in an energy based analytical model.
机译:这项研究的主要目的是提出并验证简化的数值车辆模型,该模型可通过使用商业有限元代码ABAQUS / Explicit来模拟车辆正面碰撞对钢柱的影响。简化的数字车辆模型将车辆视为弹簧质量系统。实际上,该模型已经在车辆设计和乘员安全评估的初期阶段就被其他研究人员所采用。所提出的模型包括三个部分:代表整个车辆质量的不变形的车身;具有非线性力-变形关系的弹簧或连接器,用以表示车辆的动态刚度;一块刚性但不失重的板,以在弹簧质量系统和受冲击的柱子之间产生接触。假设弹簧的动态载荷-变形特性是双线性的:模拟车辆变形直到到达汽车发动机箱的初始线性弹性部分,然后是接近刚性的关系。通过使用全尺寸车辆模型和拟议的简化弹簧质量模型,通过与钢柱在不同冲击速度,轴向载荷比,边界条件和细长比下的模拟结果进行比较,验证了该概念。在验证了提出的模型后,本研究提出了方程的推导和验证,以预测可在未来的数值模拟模型或基于能量的分析模型中使用的车辆的等效线性刚度。

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