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Experimental investigation and evaluation of numerical modeling approaches for hybrid-FRP-steel sections under impact loading for the application in automotive crash-structures

机译:冲击载荷下FRP混合型钢截面数值模拟方法的实验研究与评价

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A large body of work has studied the energy absorption of metallic and composite tubes undergoing crushing. Similarly, reinforcements of metallic structures with composites have also been studied. By contrast, composite tubes with metallic reinforcements (composite-intensive) have not been investigated, although they may offer benefits in terms of robustness or cost over both composite as well as metallic tubes. Here, composite materials with metallic reinforcements were tested under dynamic axial loading in order to study the effects of major design parameters on the energy absorption and load uniformity behavior. Significant benefits could be identified, particularly when considering cost aspects. Two numerical approaches for modeling the adhesive interface between the two discrete material phases were evaluated in terms of accuracy and efficiency in crash simulations. The simplified modeling technique comprising two layers of shell elements rigidly tied at the interface proved to be generally applicable to the evaluation of structural concepts in an early vehicle development stage. (C) 2017 Elsevier Ltd. All rights reserved.
机译:大量的工作研究了经受破碎的金属管和复合管的能量吸收。类似地,还研究了用复合材料增强金属结构。相比之下,具有金属增强材料(复合材料密集型)的复合管虽然没有在复合材料和金属管上的坚固性或成本方面有所优势,但尚未进行过研究。在这里,具有金属增强材料的复合材料在动态轴向载荷下进行了测试,以研究主要设计参数对能量吸收和载荷均匀性的影响。可以发现明显的好处,特别是在考虑成本方面时。就碰撞模拟中的准确性和效率而言,评估了两种用于模拟两个离散材料相之间的胶粘剂界面的数值方法。事实证明,简化的建模技术包括在界面处牢固绑紧的两层壳单元,通常可用于车辆早期开发阶段的结构概念评估。 (C)2017 Elsevier Ltd.保留所有权利。

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