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Influence of Stress Concentration Factor on the Evolution of the Strain Energy Release Rate at High Temperature in Highly Ductile Carbon Fibers Reinforced Thermoplastic Structures

机译:应力浓度因子对高温高温菌株碳纤维增强热塑性结构的菌株能量释放速率演化的影响

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This work was aimed at investigating the influence of stress concentration factor on the evolution of the strain energy release rate J in 5-harness satin weave carbon fabrics reinforced Polyphenylene sulphide (PPS) structures at 120°C (higher than the transition temperature T_g). The studied angle-ply (AP) laminates are characterized by a highly ductile behavior. For this purpose, the load separation method, as well as the compliance method, are applied in order to determine the strain energy release rate J for different crack length over specimen width ratios a/W. A fractographic analysis was conducted to understand the chronology of damage mechanisms which significantly depends on the enhanced PPS matrix ductility and toughness at T > Tg. An acoustic emission (AE) technique was used to investigate the correlation between the energy released during translaminar cracking and the cumulative AE energy/events for different stress concentration factors. Fibers breakage appears to be not very energetic from the AE standpoint. Finally, blunting is instrumental in increasing the strain energy release rate in specimens with low-stress concentration factors, due to large plastic deformations at the crack tip.
机译:这项工作旨在研究应力集中因子在120℃(高于转变温度T_G)的5线束缎面编织碳织物增强聚苯硫化物(PPS)结构中的应变能释放速率J的变化的影响。所研究的角度(AP)层压材料的特征在于高延展性。为此目的,施加负载分离方法,以及合规方法,以确定菌株能量释放速率J,用于不同裂缝长度A / W的不同裂缝长度。进行了抗损伤机制的年代学,以了解损伤机制的年代,这显着取决于T> TG的增强的PPS基质延展性和韧性。使用声学发射(AE)技术来研究在转差裂解期间释放的能量与用于不同应力集中因子的累积AE能量/事件之间的能量之间的相关性。纤维破裂似乎不是来自AE的角度的精力量。最后,由于裂纹尖端处于大的塑性变形,钝化在增加具有低应力集中因子的试样中的应变能量释放速率时。

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