OPTIMIZATION OF A MODULAR COCKPIT CROSS CAR BEAM FOR CRASHWORTHINESS. IN: AUTOMOTIVE CRASH RESEARCH: SIDE IMPACT, ROLLOVER, AND VEHICLE AGGRESSIVITY

M. S. Hamid
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引用次数: 4

Abstract

This paper presents a numerical optimization o a cross car beam of a modular cockpit. The optimization study was performed using LS-OPT code and LS-DTNA solver code. The optimization was based on component load levels that resulted from FMVSS214 dynamic side impacts. The component load conditions were derived from a full vehicle simulation and the beam was subjected to axial load alone and to both axial and bending loads simultaneously. The beam was minimized for lower mass for a selected diameter and a given peak force to occur within 5mm axial deformation and optimal thickness of the beam for minimal effective plastic strain peak for a given resultant deformation.
模块化座舱跨车梁的耐撞性优化。在:汽车碰撞研究:侧面碰撞,侧翻和车辆侵略性
本文对模块化座舱的跨车梁进行了数值优化。利用LS-OPT代码和LS-DTNA求解器代码进行优化研究。该优化基于FMVSS214动态侧碰撞导致的组件负载水平。通过整车模拟得到构件载荷条件,梁单独承受轴向载荷,同时承受轴向和弯曲载荷。对于选定的直径和给定的峰值力,在5mm的轴向变形和最小有效塑性应变峰值的梁的最佳厚度范围内,梁的最小质量被最小化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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