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Modelling a Rear Bumper of Goods Transport Vehicle Made of Glass Fiber Reinforced Polymer

机译:建模由玻璃纤维增​​强聚合物制成的货物运输车辆后部保险杠

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摘要

Due to the mass production process of the automobile industry, develop a product by reducing its cost has become an important aspect in its elaboration. This goal is to replace the higher cost material for an alternative that offers the same performance at a lower cost. The use of composite materials in the automotive industry has gradually evolved over the years. However, the use of composite materials in the structure of the automobile depends on a number of factors, such as large production scale, fast manufacturing process and economy, suiting the high demand of the automobile industry. Fiberglass composites are widely used in the market because of their good mechanical and physical properties combined with the comparatively low cost of production. Therefore, the objective of the work is to analyze the feasibility of other inputs as alternatives to the manufacture of rear bumper of transporting goods vehicle, using composite materials with satisfactory performances in this replacement. The work performs a static analysis to evaluate the behavior of equivalent stresses and deflection in glass fiber reinforced polymers (GFRP) after applying static force to the rear bumper of the truck. Rear bumper of metallic material made a comparative analysis with the GFRP and results for composite presented lower equivalent stresses than the AISI 1020 carbon steel material, showing good future prospects for a metallic material replacement.
机译:由于汽车工业的批量生产过程,通过降低其成本,开发产品已成为其阐述的重要方面。这一目标是更换更高的成本材料,以便以较低的成本提供相同的性能。多年来,在汽车工业中使用复合材料逐渐发展。然而,在汽车的结构中使用复合材料取决于许多因素,如大型生产规模,快速制造工艺和经济,适合汽车工业的高需求。由于其良好的机械和物理性质与相对低的生产成本相结合,玻璃纤维复合材料广泛应用于市场。因此,该作品的目的是分析其他投入的可行性作为制造运输货物车辆后部保险杠的替代品,在这种更换中具有令人满意的性能。该工作执行静态分析,以评估在向卡车后部保险杠施加静止后玻璃纤维增​​强聚合物(GFRP)的等效应力和偏转的行为。金属材料的后部碰盖使GFRP进行了比较分析,并且复合材料的结果比AISI 1020碳钢材料呈现较低的等效应力,显示出金属材料更换的未来未来前景。

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