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Structural polyurethane foam: testing and modelling for automotive applications

机译:结构性聚氨酯泡沫:汽车应用的测试和建模

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摘要

The reengineering of the product development process in the automotive industry can be fulfilled by designing the automotive components virtually to reduce the necessary cost and time-consuming tests. The prerequisites for this are the numerical methods, which allow carrying out concept decisions based on calculation results. In presence of growing requirements related to the safety of occupants and pedestrians, this method is also being developed, giving possibility to perform the virtual design of interior components and simulate impact events. The process of simulations includes especially simulation of the complex behaviour of the materials used in the car interior. The present study is performed for energy-absorbing polyurethane foam of higher densities, which is increasingly used in the automotive industry not only for traditional applications but also in instrument panels, as a 'headliner' material and in side impact protection systems. Extensive study of energy-absorbing behaviour and modelling of this material are very important for further improvements in impact simulations. The paper enlightens the experimental study with respect to energy absorption ability of the high-density polyurethane foam and its modelling in finite element code PAM Crash for further impact simulations of real automotive components.
机译:汽车工业中产品开发过程的重新设计可以通过虚拟设计汽车零部件以减少必要的成本和费时的测试来完成。前提条件是数值方法,它允许根据计算结果执行概念决策。在与乘员和行人安全有关的需求不断增长的情况下,这种方法也正在开发中,从而有可能执行内部组件的虚拟设计并模拟撞击事件。模拟过程尤其包括模拟汽车内部使用的材料的复杂行为。本研究针对高密度的吸能聚氨酯泡沫进行的,该泡沫不仅在汽车工业中不仅用于传统应用,而且在仪表板中也越来越多地用作“顶篷”材料和侧面碰撞保护系统。能量吸收行为的广泛研究和这种材料的建模对于进一步改进冲击模拟非常重要。本文对高密度聚氨酯泡沫的能量吸收能力及其在有限元代码PAM Crash中的建模进行了启发性的实验研究,以进一步模拟真实的汽车零部件。

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