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Rheological properties of PDMS filled with CaCO3: The effect of filler particle size and concentration

机译:填充CaCO3的PDMS的流变性:填料粒径和浓度的影响

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The effects of filler particle size and concentration on the rheological properties of hydroxyl terminated polvdimethylsiloxane (HO-PDMS) filled with calcium carbor ate (CaCO3) were investigated by an advanced rheometric expansion system (ARES). The Casson model was used to describe the relationship between shear stress and shear rate for steady-state measurement. Micron-CaCO, could not afford the CaCO3/HO-PDMS suspensions obvious shear thinning behavior and a yield stress high enough, whereas nanoCaCO, could provide the suspensions with remarkable shear thinning behavior and high yield stress. Incorporation of nano-CaCO3 into HO-PDMS resulted in the transformation of HO-PDMS from a mainly viscous material to a mainly elastic material. With increasing nano-CaCO, content, shear thinning behavior of nano-CaCO,/HO-PDMS suspensions became more obvious. Remarkable yield stress was observed in nano-CaCO3/HO-PDMS suspensions with high filler content, and increased with increasing nano-CaCO3 content. The degree of thixotropy was quantitatively determined using a thixotropic loop method. It was found that nano-CaCO3 favored more the buildup of filler network structure in the suspensions than micron-CaCO, at the same weight fraction. Furthermore, increasing nano-CaCO3 content accelerated the establishment of filler network structure in the nano-CaCO3/HO-PDMS suspensions. An overshoot phenomenon was observed in the nano-CaCO,/HO-PDMS suspensions at high shear rates. (c) 2006 Wiley Periodicals, Inc.
机译:通过先进的流变膨胀系统(ARES)研究了填料粒径和浓度对填充了碳酸钙(CaCO3)的羟基封端的聚二甲基硅氧烷(HO-PDMS)的流变性能的影响。使用Casson模型描述稳态测量中剪切应力与剪切速率之间的关系。 Micron-CaCO不能使CaCO3 / HO-PDMS悬浮液具有明显的剪切稀化行为和足够高的屈服应力,而nanoCaCO可以为悬浮液提供显着的剪切稀化行为和高屈服应力。将纳米CaCO 3掺入HO-PDMS导致HO-PDMS从主要为粘性的材料转变为主要为弹性的材料。随着纳米CaCO含量的增加,纳米CaCO // HO-PDMS悬浮液的含量,剪切稀化行为变得更加明显。在具有高填料含量的纳米CaCO3 / HO-PDMS悬浮液中观察到了显着的屈服应力,并且随着纳米CaCO3含量的增加而增加。触变度使用触变环法定量确定。发现在相同的重量分数下,纳米CaCO3比微米CaCO更有利于悬浮液中填料网络结构的形成。此外,增加纳米CaCO3的含量可以加速纳米CaCO3 / HO-PDMS悬浮液中填料网络结构的建立。在高剪切速率下,在纳米CaCO / HO-PDMS悬浮液中观察到过冲现象。 (c)2006年Wiley Periodicals,Inc.

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