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Parametric study of automotive composite bumper beams subjected to low-velocity impacts

机译:汽车复合保险杠横梁在低速冲击下的参数研究

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摘要

Fuel efficiency and emission gas regulations are the main causes for reducing the weight of passenger cars by using composite structures. Bumper beams are one of the main structures of passenger cars that protect them from front and rear collisions. In this paper, a commercial front bumper beam made of glass mat thermoplastic (GMT) is studied and characterized by impact modeling using LS-DYNA ANSYS 5.7 according to the E.C.E. UNITED NATIONS AGREEMENT [UNITED NATIONS AGREEMENT, Uniform Provisions concerning the Approval of Vehicles with regards to their Front and Rear Protective Devices (Bumpers, etc.), E.C.E., 1994]. Three main design factors for this structure: shape, material and impact conditions are studied and the results are compared with conventional metals like steel and aluminum. Finally the aforementioned factors are characterized by proposing a high strength SMC [Composite and metallic crash performance, Hawaii University, 1999, Available from: http:// www.eng.hawaii.edu/~nejhad/BUMPER/bumper.html] (sheet molding compound) bumper instead of the current GMT. The advantages of the proposed model: equal strength and rigidity of the structure, reduction of material, ease of manufacturing by simplifying geometrical shape and reduction of production cost are studied and proved.
机译:燃油效率和废气法规是使用复合结构减轻乘用车重量的主要原因。保险杠横梁是乘用车的主要结构之一,可以保护它们免遭前后碰撞。在本文中,研究了一种由玻璃纤维毡热塑性塑料(GMT)制成的商用前保险杠横梁,并根据E.C.E.使用LS-DYNA ANSYS 5.7进行了冲击建模,并对其进行了表征。联合国协议[联合国协议,关于批准车辆前后保护装置(保险杠等)的统一规定,E.C.E.,1994年]。研究了这种结构的三个主要设计因素:形状,材料和冲击条件,并将结果与​​常规金属(如钢和铝)进行了比较。最后,上述因素的特征在于提出了一种高强度SMC [复合材料和金属碰撞性能,夏威夷大学,1999年,可从以下网站获得:http://www.eng.hawaii.edu/~nejhad/BUMPER/bumper.html](工作表塑封)保险杠,而不是当前的格林尼治标准时间。研究并证明了该模型的优点:结构强度和刚度相等,材料减少,通过简化几何形状简化了制造并降低了生产成本。

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