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首页> 外文期刊>International Journal of Damage Mechanics >Multiple transverse impact damage behaviors of 3-D-braided composite beams under room and high temperatures
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Multiple transverse impact damage behaviors of 3-D-braided composite beams under room and high temperatures

机译:室内和高温下的三维编织复合梁的多个横向冲击损伤行为

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摘要

Three-dimensional braided composite materials have been widely applied to engineering structure manufacturing. It is of a great importance to characterize the impact damage of the three-dimensional braided composite under various temperatures for optimizing the engineering structure. Here we conducted transverse impact deformation and damage of three-dimensional braided composite beams with different braiding angles at room and elevated temperatures. A split Hopkinson pressure bar with a heating device combined with high-speed camera was employed to test multiple transverse impact behaviors and to record the impact deformation developments. The results indicated that failure load, initial modulus, and energy absorption decreased with the increase of temperature, whereas the deformation increased slightly with elevated temperatures. We found that the impact brittle damages occurred earlier and the local adiabatic temperature raised higher when the temperature is lower than the glass transition temperature (T-g) of epoxy resin. While above the T-g, the impact ductile damages occurred later and the local temperature raised lower. The thermal stress distribution along the braiding yarn leads to cracks propagation in yarn direction. Part of the impact energy absorptions converted into thermal energy. In addition, the beam with larger braiding angle has high damage tolerance and crack propagation resistance.
机译:三维编织复合材料已广泛应用于工程结构制造。在各种温度下表征三维编织复合材料的冲击损伤是非常重要的,以优化工程结构。在这里,我们在室内和高温下具有不同编织角的三维编织复合梁的横向影响变形和损坏。采用具有加热装置的拆分霍普金森压力棒与高速摄像机结合使用,以测试多个横向冲击行为,并记录影响变形发展。结果表明,随着温度的增加,失效负载,初始模量和能量吸收降低,而变形略微增加,温度升高。我们发现,当温度低于环氧树脂的玻璃化转变温度(T-G)时,较早发生的冲击脆性损坏和局部绝热温度升高。虽然在T-g之上,较晚发生冲击延展性损坏,局部温度升高。沿编织纱线的热应力分布导致纱线方向裂缝。撞击能量吸收的一部分转化为热能。另外,具有较大编织角的光束具有高损坏的耐受性和裂纹传播电阻。

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