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首页> 外文期刊>Journal of Applied Polymer Science >Rheological Behaviors of Fumed Silica/Low Molecular Weight Hydroxyl Silicone Oil
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Rheological Behaviors of Fumed Silica/Low Molecular Weight Hydroxyl Silicone Oil

机译:气相法二氧化硅/低分子量羟基硅油的流变行为

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摘要

The structure and viscoelastic properties of fumed silica gels in low molecular weight hydroxyl silicone oil were investigated by means of steady and dynamic rheology. It is found that the fumed silica/hydroxyl silicone oil suspension exhibits shear-thickening under steady shear and "strain-thickening" under oscillatory shear condition. Effects of hydroxy groups on the rheological behavior of silicone oil suspension with highly dispersed hydrophilic amorphous silica were investigated by infrared, ~1H-NMR, and rheological test. The results show that the hydroxy groups on this system play an important role on the formation of shear thickening behavior of the suspension solution. At the same particle diameter and mass fraction, the amount of hydroxy groups on this system has a strong effect on increasing the viscosity of the suspension, which is likely due to multiassociation hydrogen bonding between liquid molecules and silanol groups on fumed silica surfaces (Si-OH).
机译:通过稳态和动态流变学研究了低分子量羟基硅油中气相硅胶的结构和粘弹性。发现气相二氧化硅/羟基硅油悬浮液在稳定剪切下表现出剪切增稠,在振荡剪切条件下表现出“应变增稠”。通过红外,〜1H-NMR和流变试验研究了羟基对高度分散的亲水性无定形二氧化硅硅油悬浮液的流变行为的影响。结果表明,该体系上的羟基对悬浮液剪切增稠行为的形成起着重要作用。在相同粒径和质量分数的情况下,该系统上的羟基量对增加悬浮液的粘度具有强烈影响,这很可能是由于气相二氧化硅表面上的液体分子与硅烷醇基之间存在多缔合氢键合(Si-哦)。

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