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An effective approach to prediction of the collapse mode in automotive seat structure

机译:一种预测汽车座椅结构塌陷模式的有效方法

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摘要

Safety is an important issue in automobile design, in which the seat structure plays a crucial part. Engineering of the seat structure has a wide range of benefits for the manufacturer in the areas of cost savings and better design techniques. The seat in an automobile must not only be comfortable for the passenger, but must also be designed to protect the occupant from a wide range of impact situations. The seat structure in our advancing automotive world must also have a simple, lightweight design to keep down material and manufacturing costs. Despite the importance of seat structure design, many manufacturers do not have the time or money to perform an in-depth analysis of multiple different designs. The nonlinear behaviour of the seat structure forces engineers to use virtual prototyping and numerical analysis in its design. Use of a complex model and the long computation time of a numerical model drive up the cost and limit the turn around time in the production and design of an automobile seat structure. This paper proposes a cost-effective analysis of a seat system to ensure the safety of the occupants in the case of a frontal impact. In order to predict the major collapse mode of a seat structure in this scenario, the strength effectiveness of each component in the seat system is examined using a self-developed experimental procedure. To be sure of shear deformation of the inner track section of the seat structure, a detailed FE simulation is carried out, leading to an effective 2-D finite element method with plastic hinge to represent the major collapse mode. The simulation results are then compared with corresponding tests in order to verify their validity.
机译:安全性是汽车设计中的重要问题,其中座椅结构起着至关重要的作用。座椅结构的工程设计在节省成本和改进设计技术方面为制造商带来了广泛的好处。汽车座椅不仅必须使乘客感到舒适,而且还必须设计成能保护乘员免受各种撞击情况的影响。在不断发展的汽车世界中,座椅结构还必须具有简单,轻巧的设计,以降低材料和制造成本。尽管座椅结构设计很重要,但许多制造商没有时间或金钱来对多种不同的设计进行深入的分析。座椅结构的非线性行为迫使工程师在其设计中使用虚拟样机和数值分析。复杂模型的使用和数值模型的长计算时间增加了成本,并限制了汽车座椅结构的生产和设计中的周转时间。本文提出了一种具有成本效益的座椅系统分析方法,以确保在发生正面碰撞时乘员的安全。为了在这种情况下预测座椅结构的主要塌陷模式,使用自行开发的实验程序检查了座椅系统中每个组件的强度有效性。为了确保座椅结构的内轨道部分发生剪切变形,进行了详细的有限元模拟,从而得出了一种有效的二维有限元方法,该方法使用塑料铰链来表示主要的塌陷模式。然后将仿真结果与相应的测试进行比较,以验证其有效性。

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