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Energy Absorption Property of CFRP under Impact Loadings

机译:冲击载荷下CFRP的能量吸收性能

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Because of high stiffness, high strength and low density, etc., polymeric composite materials are widely used in high technology area, such as aeronautic and aerospace engineering where impact is one of the most common loadings. In this paper, impact energy absorption properties of a carbon fiber reinforced plastic (CFRP) plate, which was made through vacuum assisted resin transfer molding (VARTM) process, were tested though Charpy impact tests with single-edge notched specimens. In the experiments, the effects of impact directions and notch length on the energy absorption property were considered. The results show different impact directions lead to different Charpy impact strength and different fracture modes. When the angle between the fiber and the impact direction is large, fiber break mode dominates the break, exhibiting higher Charpy impact strength. When the impact direction-fiber angle is small, delamination is the main fracture mode, showing lower Charpy impact strength. Depending on different fracture modes, the enhancement of the resin due to a post curing process has totally opposite effects on the Charpy impact strength. For the delamination mode, the enhancement of resin increases the Charpy impact strength of the CFRP specimen. However, for the fiber break mode, it decreases the impact strength. This phenomenon can be attributed to the effect of voids. The impact strength calculated from the typical formula is also affected by the initial notch length significantly, because the fracture surface in this experiment is no longer a plane.
机译:由于高强度,高强度和低密度等,聚合物复合材料广泛用于高科技区域,例如航空和航空航天工程,其中影响是最常见的载荷之一。本文通过真空辅助树脂转移模塑(Vartm)工艺进行了碳纤维增强塑料(CFRP)板的冲击能量吸收性能,虽然用单边缘缺口样品进行了夏比冲击试验。在实验中,考虑了冲击方向和凹口长度对能量吸收性能的影响。结果显示出不同的冲击方向导致不同的夏比冲击强度和不同的裂缝模式。当光纤和碰撞方向之间的角度大,光纤断裂模式占据突破,表现出更高的夏比冲击强度。当冲击方向 - 纤维角度小时,分层是主要的骨折模式,显示出较低的夏比冲击强度。根据不同的骨折模式,由于后固化过程的树脂增强对夏比冲击强度具有完全相反的影响。对于分层模式,树脂的增强增加了CFRP样本的夏比冲击强度。但是,对于光纤断裂模式,它会降低冲击强度。这种现象可归因于空隙的影响。根据典型式计算的冲击强度也显着受初始凹口长度的影响,因为该实验中的断裂表面不再是平面。

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