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Design and analysis of automotive carbon fiber composite bumper beam based on finite element analysis:

机译:基于有限元分析的汽车碳纤维复合保险杠设计与分析:

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In this article, the most important part of the automotive front bumper system, namely, the bumper beam, is studied by changing the material and thickness to improve the crashworthiness performance in low-velocity impact. According to the low-speed standard of automotives stated in E.C.E. United Nations Agreement, Regulation no. 42, the low-velocity impact simulation based on finite element analysis is carried out. Lightweight is the main purpose of this article. First, the bumper beam analysis is accomplished for carbon fiber composite and steel material to analyze their deformation, weight, impact force, energy absorption, and the acceleration of the impactor. As a consequence, the bumper beam made by carbon fiber composite achieves better impact behavior. Second, on the purpose of lightweight, the bumper beams of different thickness including 5.4, 6, 6.6, and 7.2?mm are investigated. The results show that the 5.4?mm bumper beam is the best selection without sacrificing the impact performance. Third, ac...
机译:在本文中,汽车前保险杠系统的最重要部分,即保险杠横梁,通过更改材料和厚度来研究,以改善低速碰撞时的耐撞性能。根据E.C.E.中所述的汽车低速标准。联合国协定,条例编号参照图42,进行了基于有限元分析的低速冲击仿真。轻量级是本文的主要目的。首先,对碳纤维复合材料和钢材进行了保险杠梁分析,以分析它们的变形,重量,冲击力,能量吸收和冲击器的加速度。结果,由碳纤维复合材料制成的保险杠具有更好的冲击性能。其次,以轻量化为目的,研究了包括5.4、6、6.6和7.2?mm在内的不同厚度的保险杠横梁。结果表明,在不牺牲冲击性能的前提下,5.4mm的保险杠梁是最佳选择。第三,...

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