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Rubber Toughened and Optically Transparent Blends of Cyclic Olefin Copolymers

机译:环状烯烃共聚物的橡胶增韧和光学透明共混物

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A study is presented of increasing the toughness of Cyclic Olefin Copolymer (COC) while maintaining its optical transparency. The COC consists of a random copolymer of ethylene and norbornene, and the impact modifiers consist of thermoplastic elastomers. It its shown that several requirements must be satisfied, namely: for toughening there is an optimum finite particle size, but in order to minimize light scattering the particles have to be as small as possible. In addition, the refractive index of the elastomer must be closely matched to COC over the visible wavelength range and use temperature. Also for toughening, there are additional requirements of the adhesion of the elastomer to COC and high molecular weight. It is found that styrene butadiene systeme (SBS) is the most effective elastomer in toughening COC while maintaining optical transparency. It is also found that the addition of an index matched styrene-ethylene-butylene-styrene (SEBS) copolymer as a compatibilizer ot the SBS elastomer is beneficial in increasing the toughness and lowering the optical haza. Finally, light scattering calculations are presented based on the Rayleigh Debye model to calculate the optical haze and transmission of these blends. These calculations take into account the refractive index of COC and the elastomer, the particle size distribution and volume fraction of the elastomer. It is shown that there is reasonable agreement between calculation and experimental results. It is possible to increase the toughness of COC to greater than 50 J/ (Notched Izod) while keeping the optical haze to below 5% with an elastomer loading of 5% (w/w). We also identify opaque blends COC with a toughness of greater than 500 J/m with an elastomer loading of 20 % (w/w).
机译:进行了一项研究,旨在提高环烯烃共聚物(COC)的韧性,同时保持其光学透明性。 COC由乙烯和降冰片烯的无规共聚物组成,抗冲改性剂由热塑性弹性体组成。它表明必须满足几个要求,即:为了增韧,存在最佳的有限颗粒尺寸,但是为了使光散射最小化,颗粒必须尽可能小。此外,在可见光波长范围和使用温度下,弹性体的折射率必须与COC紧密匹配。同样对于增韧,还存在弹性体对COC的粘附性和高分子量的附加要求。发现苯乙烯丁二烯系统(SBS)是在增韧COC的同时保持光学透明度最有效的弹性体。还发现添加折射率匹配的苯乙烯-乙烯-丁烯-苯乙烯(SEBS)共聚物作为SBS弹性体的增容剂有利于增加韧性并降低光学雾度。最后,基于瑞利德拜模型提出了光散射计算,以计算这些混合物的光雾度和透射率。这些计算考虑了COC和弹性体的折射率,弹性体的粒径分布和体积分数。结果表明,计算结果与实验结果具有合理的一致性。可以将COC的韧性提高到50 J /(缺口Izod)以上,同时以5%(w / w)的弹性体负载将光学雾度保持在5%以下。我们还发现韧性大于500 J / m,弹性体负载量为20%(w / w)的不透明共混物COC。

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