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首页> 外文期刊>Polymer Composites >Preparation, Microstructure, and Property of Silicon Rubber/Organically Modified Montmorillonite Nanocomposites and Silicon Rubber/OMMT/Fumed Silica Ternary Nanocomposites
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Preparation, Microstructure, and Property of Silicon Rubber/Organically Modified Montmorillonite Nanocomposites and Silicon Rubber/OMMT/Fumed Silica Ternary Nanocomposites

机译:硅橡胶/有机改性蒙脱土纳米复合材料和硅橡胶/ OMMT /烟熏二氧化硅三元纳米复合材料的制备,微观结构和性能

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摘要

Five different types of organically modified montmoril-lonites (OMMT), including Nanomor? 1.30P, 1.44P, 1.24TL, 1.34TCN, and 1.31PS, were incorporated into silicone rubber (SiR), respectively, by using a melt-blending method. The intercalation structure and spatial dispersion of OMMT in the obtained composites were characterized with wide-angle X-ray diffraction and transmission electron microscopy. The results revealed that the high-polar organic intercalants or silane-cou-pling agent might play the negative roles in the melt intercalation of SiR into OMMT, and the higher the initial interlayer spacing of the OMMT, the easier the intercalation. The intercalated structure in the SiR/1.44P OMMT nanocomposite has the largest interlayer spacing, and the spatial dispersion of OMMT is also the best. When OMMT loading is low (i.e., less than 10 phr), the dispersion of OMMT is poor. The dispersion of OMMT improves with increasing OMMT dosage, when the loading does not exceed 30 phr. The gas barrier property and the mechanical properties of the SiR are obviously improved by the incorporation of OMMT. The nitrogen gas permeability coefficient of the SiR nanocomposite containing 30 phr OMMT (1.44P) is lower than that of net SiR by 31 %. To further improve the dispersion of OMMT in SiR, 20 phr fumed silica (FS) was added to the compound before mixing OMMT for increasing viscosity of the compound and mechanical shearing force during compounding OMMT. The result- ant SiR/OMMT/FS ternary nanocomposites exhibit improved dispersion of OMMT and better gas barrier property than the binary counterparts.
机译:五种不同类型的有机改性蒙脱土-隆石(OMMT),包括Nanomor?通过熔融共混法将1.30P,1.44P,1.24TL,1.34TCN和1.31PS分别掺入硅橡胶(SiR)中。用广角X射线衍射和透射电镜对所得复合材料中OMMT的插层结构和空间色散进行了表征。结果表明,高极性有机嵌入剂或硅烷偶联剂可能在SiR熔融插入OMMT中起负作用,并且OMMT的初始层间距越大,插入越容易。 SiR / 1.44P OMMT纳米复合材料中的插层结构具有最大的层间距,并且OMMT的空间色散也是最好的。当OMMT负载低(即小于10phr)时,OMMT的分散性差。当负载量不超过30 phr时,OMMT的分散度随OMMT剂量的增加而改善。通过加入OMMT,SiR的阻气性和机械性能得到明显改善。含有30 phr OMMT(1.44P)的SiR纳米复合材料的氮气渗透系数比净SiR低31%。为了进一步改善OMMT在SiR中的分散性,在混合OMMT之前将20 phr气相二氧化硅(FS)添加到化合物中,以增加化合物的粘度和在OMMT混合过程中的机械剪切力。所得的SiR / OMMT / FS三元纳米复合材料比二元对应物具有更好的OMMT分散性和更好的阻气性。

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