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Non-destructive testing of polyethylene composite by terahertz radiation

机译:通过太赫兹辐射的聚乙烯复合材料的非破坏性测试

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We report on the terahertz time-of-flight analysis of an internal structure of an ultra-high molecular weight polyethylene (UHMWPE) composite material, which is based on the BT10-tape from Dyneema. This type of composite is very hard and resistant and therefore it is often used to manufacture personal armors such as bulletproof vests and helmets. The multilayer structure of the UHMWPE composite was investigated by means of a raster scanning time domain spectroscopy technique in a reflection configuration. The mechanism of the formation of many shifted in time THz pulses (reflected from the internal layers of the sample) originates from the periodic modulation of the refractive index along the propagation of the radiation. This modulation is connected with alternate layers of fibers, each having different direction (perpendicular to each other one). As a result, the detailed three dimensional profile of the 20-mm-thick sample was obtained. Moreover, it is also possible to identify internal defects i.e. delaminations in the internal structure of this composite material.
机译:我们报告了超高分子量聚乙烯(UHMWPE)复合材料的内部结构的Terahtz飞行时间分析,其基于来自Dyneema的BT10-胶带。这种类型的复合材料非常耐用,因此通常用于制造个人装甲,例如防弹背心和头盔。通过反射配置中的光栅扫描时域光谱技术研究了UHMWPE复合材料的多层结构。在时间THz脉冲中形成许多偏移的机制(从样品的内层反射)起源于沿着辐射的传播的折射率的周期性调节。该调制与偏光层的替代层连接,每个层具有不同的方向(彼此垂直)。结果,获得了20mm厚的样品的详细三维轮廓。此外,还可以识别内部缺陷即该复合材料的内部结构中的分层。

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