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Structural crashworthiness analysis of a ladder frame chassis subjected to full frontal and pole side impacts

机译:饱受正面和杆侧冲击的梯架底盘的结构耐撞性分析

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Automobile chassis is a major element of structural crashworthiness in road motor vehicles. Various chassis geometry and topology research studies have been conducted to improve crash energy absorption characteristics of the chassis. In side impacts, crashworthiness of an automobile body depends not only on the chassis geometry and topology, but also on the design and reliability of other structural members such as B-pillar and side panels. This study aims to contribute to the investigations on the effects of chassis geometry over crashworthiness, particularly focusing on the structure of a ladder frame chassis subjected to full frontal and pole side collisions. Preliminary work has been conducted to evaluate the behaviour of steel beam profiles under impact loading through finite element (FE) modelling, which helps understand the mechanics of the particular beams chosen as chassis elements. Another FE model is developed utilising a previously generated mesh of a pickup truck with a ladder frame chassis. The FE model is employed to simulate full frontal and pole side crash test scenarios on the isolated chassis as well as on the whole body of the vehicle. Crash energy absorption results and reaction forces are collected for different thicknesses and beam profile cross sections of the vehicle chassis to be utilised in several proposed design improvements aiming to enhance crashworthiness. Computational results exhibit good agreement with experimental findings.
机译:汽车底盘是公路机动车辆结构耐撞性的主要元素。已经进行了各种底盘几何形状和拓扑研究,以改善底盘的碰撞能量吸收特性。在侧面碰撞中,汽车车身的耐撞性不仅取决于底盘的几何形状和拓扑,还取决于其他结构构件(例如B柱和侧面板)的设计和可靠性。这项研究旨在为研究底盘几何形状对耐撞性的影响做出贡献,尤其侧重于遭受正面和杆侧完全碰撞的梯形框架底盘的结构。通过有限元(FE)建模,已经进行了初步工作来评估钢梁轮廓在冲击载荷下的行为,这有助于了解选定为底盘构件的特定梁的力学。利用先前生成的带有梯形框架底盘的皮卡车网格开发了另一个有限元模型。 FE模型用于在隔离的底盘以及整个车辆上模拟全面的正面和杆侧碰撞测试场景。针对车辆底盘的不同厚度和梁轮廓横截面收集碰撞能量吸收结果和反作用力,以用于旨在提高耐撞性的若干建议设计改进中。计算结果与实验结果显示出良好的一致性。

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