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Development of a Novel Composite Based on Thermoplastic Polymers and Low Melting Point Thermoplastic Chalcogenide Glasses

机译:基于热塑性聚合物和低熔点热塑性硫属化物玻璃的新型复合材料的开发

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摘要

A novel composite material has been developed based on thermoplastic polymers on one hand and thermoplastic chalcogenide glass on the other hand. Extrusion technique and pressing allowed the production of very different structures of the composite, ranging from fibrous to "sandwich" structures. Also obtained were highly homogenous compositions that contain perfectly spherical glass particles of 1-6 #mu#m in diameter dispersed into a polymer matrix. Optical properties o the composite have been studied thoroughly. It was established that extrusion allows the obtaining of composites, which are highly transparent in the 2-25#mu#m wavelength band when the concentration of the chalcogenide glass does not exceed 33%. When the concentration of chalcogenide glass was as great as 40%, dramatic changes in the transmission spectrum were observed. The extruded films are opaque not only in the visible band but in the near and middle IR as well, while being transparent in the far IR band. Such composite films are suitable as far IR filters. Pressing permits the production of "sandwiches" which are opaque in visible light and highly transparent in the near and middle IR. "Sandwich" composites could be used as effective flexible near-IR filters. Oriented composites can be applied as IR waveguides.
机译:一方面基于热塑性聚合物并且另一方面基于热塑性硫属化物玻璃,已经开发了一种新颖的复合材料。挤出技术和压制使得能够生产非常不同的复合材料结构,从纤维到“三明治”结构。还获得高度均匀的组合物,其包含分散在聚合物基质中的直径为1-6#μm的完全球形的玻璃颗粒。复合材料的光学性能已被深入研究。已经确定,挤出可以得到复合物,当硫族化物玻璃的浓度不超过33%时,该复合物在2-25μm的波长带中是高度透明的。当硫属化物玻璃的浓度高达40%时,观察到透射光谱的急剧变化。挤出的膜不仅在可见光带而且在近红外和中红外也是不透明的,而在远红外带是透明的。这种复合膜适合作为远红外滤光片。压制允许产生“三明治”,其在可见光下是不透明的,而在近红外和中红外下是高度透明的。 “三明治”复合材料可用作有效的柔性近红外滤波器。定向的复合材料可用作红外波导。

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