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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Measurement of impact force for triboluminescent-enhanced composites by modified impulse method
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Measurement of impact force for triboluminescent-enhanced composites by modified impulse method

机译:改进脉冲法测量摩擦致发光复合材料的冲击力

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Barely visible impact damage in composites can result in hidden damage such as delamination and cracking. Triboluminescence is currently being looked at as a way of inundating composites with a sensory level mechanism for impact events. ZnS:Mn doped resin sensing plates are embedded within glass fiber-reinforced composites and are impacted at low velocities (3.45-3.51m/s). The damage created by the impact can be seen under black light analysis and allows for quick visual inspection of the composite. The striker during impact registers a bounce which can be used to determine final impact velocity, which in turn defines the force at impact. By measuring the amount of time between consecutive impacts, an indirect estimation of impact force was made using the temporal occurrence of triboluminescence. Triboluminescent emissions occurred for impacts greater than 300N. The measured impact energy averaged 36.79J (+/- 0.48). The calculated impact force and impact energy corresponded to the amount of damage area found on the composite, showing that triboluminescent crystal inclusion into composites can provide damage sensing capability to woven fiber composites.
机译:复合材料中几乎看不见的冲击损伤会导致隐藏的损伤,例如分层和破裂。目前正在考虑使用三聚光致发光,以一种具有撞击事件感官水平机制的复合材料淹没方式。 ZnS:Mn掺杂的树脂感测板嵌入玻璃纤维增​​强的复合材料中,并在低速(3.45-3.51m / s)时受到冲击。撞击产生的损坏可以在黑光分析下看到,并可以快速目视检查复合材料。撞击过程中的撞针会记录一个弹跳,该弹跳可用于确定最终的撞击速度,从而确定最终的撞击力。通过测量连续撞击之间的时间量,使用瞬时发光来间接估计撞击力。发生大于300N的撞击时会产生摩擦发光。测得的冲击能量平均为36.79J(+/- 0.48)。计算得出的冲击力和冲击能量与在复合材料上发现的损伤面积相对应,这表明复合材料中包含的摩擦发光晶体可以为机织纤维复合材料提供损伤感测能力。

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