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CRASHWORTHINESS CHALLENGES IN STEEL-TO-ALUMINUM FRONT END DESIGN

机译:钢对铝前端设计中的折弯挑战

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摘要

The search for weight reduction opportunities to improve corporate average fuel economy has led the auto industry to investigate light weight materials such as aluminum and magnesium. These materials can reduce vehicle weight while satisfying crash safety requirements of corporate, government, and independent insurance agencies. As a result, designs of several vehicles have been fully migrated from steel to aluminum while many other vehicles have opted to substitute lighter materials at the component and system levels. An investigation has been conducted on the front end principal crash energy absorbing rails to convert the original HSLA350 steel structural members into 5754NG aluminum. The investigation shows that while the substitution of aluminum at the right thickness can achieve lighter weight and higher specific energy, additional design parameters such as design load targets remain a major challenge. A comparison of steel versus aluminum mean crash loads, crash energy management, weight saved, specific energy, and design load target highlights some of these challenges. The results from an experimental investigation of stamped 5754NG aluminum sheet rails show the substitution of stamped 5754NG aluminum sheets for steel rails reduces the weight of each of the front rails by 3.3 (lb) and enhances the specific crash energy management efficiency by 38%. To solve the design load target challenge, the same investigation extends to higher strength 6xxx series extruded aluminum material using CAE modeling and demonstrates an increase in crash energy management efficiency of up to 80%.
机译:寻找减轻重量的机会以改善公司平均燃油经济性已导致汽车工业研究轻质材料,例如铝和镁。这些材料可以减轻车辆的重量,同时满足公司,政府和独立保险机构的碰撞安全要求。结果,几辆汽车的设计已从钢完全迁移到铝,而其他许多汽车则选择在组件和系统级别上替代更轻的材料。已对前端主要碰撞能量吸收导轨进行了研究,以将原始的HSLA350钢结构构件转换为5754NG铝。调查显示,尽管以适当的厚度替代铝可以实现更轻的重量和更高的比能,但其他设计参数(例如设计载荷目标)仍然是主要挑战。将钢与铝的平均碰撞载荷,碰撞能量管理,重量减轻,比能量和设计载荷目标进行比较,就可以看出其中一些挑战。冲压5754NG铝板导轨的实验研究结果表明,冲压5754NG铝板替代钢制导轨可使每个前轨的重量减轻3.3(lb),比碰撞能量管理效率提高38%。为了解决设计目标的挑战,相同的研究扩展到使用CAE建模的更高强度的6xxx系列挤压铝材料,并证明碰撞能量管理效率提高了80%。

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