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首页> 外文期刊>Journal of Applied Polymer Science >Supercritical carbon dioxide (scCO(2)) dispersion of poly( ethylene terephthalate)/clay nanocomposites: Structural, mechanical, thermal, and barrier properties
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Supercritical carbon dioxide (scCO(2)) dispersion of poly( ethylene terephthalate)/clay nanocomposites: Structural, mechanical, thermal, and barrier properties

机译:超临界二氧化碳(SCCO(2))聚(乙二醇酯)/粘土纳米复合材料的分散体:结构,机械,热和屏障性质

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摘要

Dispersed poly(ethylene terephthalate) (PET)/clay nanocomposites can lead to materials with superior barrier and mechanical properties. PET/clay nanocomposites were prepared by melting extrusion of PET with as-received or supercritical carbon dioxide (scCO(2)) predispersed Cloisite((R)) 30B (30B). The predispersion of 30B was assessed by WAXD, SEM, and TGA, and results indicated that scCO(2) processing could predisperse 30B and the surface modification of the clay was preserved after processing. The structure of PET/30B nanocomposites was investigated by WAXD and TEM confirming that PET has penetrated into the clays inter-galleries and the predispersed clays lead to improved interfacial interaction and homogenous clay dispersion. Both tensile strength and Young's modulus were improved by 12.1% and 24.9% respectively, as incorporating of 3 wt % of scCO(2) processed clay. Differential scanning calorimetry (DSC) results indicated that clay particles served as nucleation agent could increase the crystallinity whereas had no impact on melting process. In addition, with the addition of 1 wt % of predispersed clay, a significant reduction of oxygen permeation (similar to 33%) was achieved at 23 C-omicron and the maximum reduction (44%) was achieved by adding 3 wt % processed clay. Moreover, we confirmed the effect of temperature on the permeation of PET/30B nanocomposites depended both on the Arrhenius behavior of the organic phases and tortuous path effects, where improved clay dispersion resulted in a higher effective activation energy. Moreover, the transparency of PET matrix was preserved for all nanocomposites. (C) 2017 Wiley Periodicals, Inc.
机译:分散的聚(对苯二甲酸乙二醇酯)(PET)/粘土纳米复合材料可以导致具有优异的阻隔性能和机械性能的材料。 PET /粘土纳米复合材料是由PET的熔融挤出制备具有作为接收的或超临界二氧化碳(SCCO 2)预分散的Cloisite((R))30B(30B)。 30B的预分散体,通过WAXD,SEM和TGA评估,结果表明,SCCO(2)的处理可以预分散30B和粘土的表面改性处理后不变。通过WAXD和TEM确认PET已经渗入粘土间画廊和预分散的粘土导致改善界面相互作用且均匀的粘土分散PET / 30B纳米复合材料的结构进行了研究。拉伸强度和杨氏模量分别由12.1%和24.9%的提高,作为SCCO(2)处理的粘土的3重量%掺入。差示扫描量热法(DSC)结果表明充当成核剂可提高结晶度,而对熔融过程没有影响该粘土颗粒。此外,通过添加预分散的粘土的1重量%,氧渗透的显著减少(类似于33%)在23 C-OMICRON实现并获得最大降低(44%)加入3%(重量)处理的粘土。此外,我们证实了温度对PET的渗透的效果/ 30B纳米复合材料的有机相和曲折的路径的影响,其中,改进的粘土分散导致更高的有效活化能的阿列纽斯行为取决于两者。此外,PET基体的透明度保存所有的纳米复合材料。 (c)2017 Wiley期刊,Inc。

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