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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Development of Simulation Technology for Impact Behavior of CFRP/A1 Alloy Hybrid Beams in Side Collision of Automobiles
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Development of Simulation Technology for Impact Behavior of CFRP/A1 Alloy Hybrid Beams in Side Collision of Automobiles

机译:CFRP / A1合金混合梁在汽车侧面碰撞中的冲击行为仿真技术的开发

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摘要

Carbon fiber reinforced plastic (CFRP) laminates are used in various industrial fields because they have excellent properties in their specific strength and specific stiffness. The CFRP has a potential of weight reduction in the automotive structure, which can contribute to the improvement of mileage as well as the reduction of carbon dioxide. On the other hand, the safety issue in case of collision should be also clarified when employing the CFRP as automotive structures. In this paper, hybrid beams which consisted of an Al alloy beam and a CFRP laminate were examined by both experiments and numerical analyses as candidates to replace the conventional steel door guarder beam used inside the automotive door. The experimental relations of impact loading to the displacement for the Al beams with different thicknesses, widths and types of CFRP showed good agreement with those from numerical results. In order to increase the impact energy absorption, other hybrid beams were devised and calculations performed by using the same parameters in the same numerical method and their results also agreed with those of experiments executed after the calculation. These facts show that the numerical method developed here can be generally used for estimating the impact behavior of CFRP/A1 hybrid beams.Furthermore, a suggestion for how to install the hybrid beam to automotive doors was proposed by the numerical method. As a result, the effectiveness of our simulation technology is demonstrated here.
机译:碳纤维增强塑料(CFRP)层压板因其在比强度和比刚度方面的优异性能而被用于各种工业领域。 CFRP具有减轻汽车结构重量的潜力,这可以有助于提高行驶里程并减少二氧化碳。另一方面,当将CFRP用作汽车结构时,也应弄清碰撞时的安全问题。在本文中,通过实验和数值分析研究了由铝合金梁和CFRP层压板组成的混合梁,以替代汽车门内使用的常规钢制门护梁。不同厚度,宽度和类型的CFRP铝梁的冲击载荷与位移的实验关系与数值结果吻合良好。为了增加冲击能量的吸收,设计了其他混合梁,并在相同的数值方法中使用相同的参数进行了计算,其结果也与计算后的实验结果相吻合。这些事实表明,本文开发的数值方法可普遍用于估算CFRP / A1混合梁的冲击性能,此外,还提出了关于如何将混合梁安装到汽车门上的建议。结果,这里展示了我们的仿真技术的有效性。

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