首页> 外文会议>International Conference on Plastics in Automotive Engineering >Development of a lightweight instrument-panel support structure - Material and production concept of the instrument-panel support tube made of long-glass-fiber-reinforced partly aromatic polyamide for the BMW M4 GTS
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Development of a lightweight instrument-panel support structure - Material and production concept of the instrument-panel support tube made of long-glass-fiber-reinforced partly aromatic polyamide for the BMW M4 GTS

机译:开发轻质仪表板支撑结构 - 仪表板支撑管的材料和生产概念由长玻璃纤维增​​强部分芳族聚酰胺制成的BMW M4 GTS

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The support structure was originally designed as the carrier for the cockpit integration module and in this main function also contributes to the structural rigidity of the body in the bulkhead area. Mounted on it are instrument panel, glove boxes, airbags, steering column, EE components, and so on. The component must exhibit a high degree of rigidity over the full temperature range in the passenger compartment and in both vehicle operation and crash situations is subjected to high static and dynamic forces. Load-bearing structures normally take the form of welded metal constructions (steel, aluminum) or magnesium die castings. As part of a preliminary development project a support structure made of long-glass-fiber-reinforced thermoplastic was developed which has been developed and industrialized up to readiness for series production for the M4 GTS special series. The use of a long-glass-fiber-reinforced thermoplastic material meant that a weight saving of approx. 1.6 kg could be saved in comparison with the series component made of steel. This paper examines not only the component requirements and material selection based on this, supported by mechanical and rheological calculations, but also production aspects.
机译:支持结构最初设计为驾驶舱集成模块的载体,在该主要功能中也有助于舱壁区域中体内的结构刚性。安装在它上是仪表板,手套箱,安全气囊,转向柱,EE组件等。该部件必须在乘客舱的全温度范围内表现出高度的刚度,并且在车辆操作中,碰撞情况进行高静态和动态力。承载结构通常采用焊接金属结构(钢,铝)或镁压铸的形式。作为初步开发项目的一部分,开发了一种由长玻璃纤维增​​强热塑性塑料制成的支撑结构,这已经开发和工业化为M4 GTS特别系列的串联生产。使用长玻璃纤维增​​强的热塑性材料意味着重量率为约。与由钢制成的系列元件相比,可以节省1.6千克。本文不仅研究了基于此的组件要求和材料选择,由机械和流变计算支持,也是生产方面。

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