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Lightweight design of automotive front side rails with TWB concept

机译:采用TWB概念的汽车前围栏的轻量化设计

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摘要

Due to the continuous tightening of various regulations for conserving energy and protecting the environment, the weight reduction of and automobile body becomes an increasingly important issue. In order to reduce the weight of an automobile, we have brought forward a method of replacing the simple structure with the tailor-welded blank (TWB), in which a design process is appropriately defined for a front side rail. Focusing on the thickness determination of TWB, we have deduced the constraint inequalities of strength, bending stiffness, and torsion stiffness to prevent the thickness from decreasing unboundedly due to the lightweight requirement, thus reducing the weight of the front side rail satisfying the design demands of these three factors. The full-width frontal impact simulation of the whole car after redesign in the front side rails has been performed to verify vital performances such as deformation mode, energy absorption, and acceleration.
机译:由于为了节约能源和保护环境而不断严格的各种法规,减轻车身重量成为越来越重要的问题。为了减轻汽车的重量,我们提出了一种用手工焊接的毛坯(TWB)代替简单结构的方法,其中适当地定义了前侧导轨的设计过程。着眼于TWB的厚度确定,我们推导出了强度,弯曲刚度和扭转刚度的约束不等式,以防止由于轻量级要求而导致厚度无限制地减小,从而减轻了满足设计要求的前侧轨的重量这三个因素。重新设计了前侧围栏后,对整辆汽车进行了全幅正面碰撞仿真,以验证诸如变形模式,能量吸收和加速等重要性能。

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