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首页> 外文期刊>Journal of Applied Polymer Science >Nanocomposites of poly(vinyl chloride) and nanometric calcium carbonate particles: Effects of chlorinated polyethylene on mechanical properties, morphology, and rheology
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Nanocomposites of poly(vinyl chloride) and nanometric calcium carbonate particles: Effects of chlorinated polyethylene on mechanical properties, morphology, and rheology

机译:聚氯乙烯和碳酸钙纳米颗粒的纳米复合材料:氯化聚乙烯对机械性能,形态和流变性的影响

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Nanocomposites of poly(vinyl chloride) (PVC) and nano-calcium carbonate (CaCO3) particles were prepared via melt blending, and chlorinated polyethylene (CPE) as an interfacial modifier was also introduced into the nanocomposites through preparing CPEano-CaCO3 master batch. The mechanical properties, morphology, and rheology were studied. A moderate toughening effect was observed for PVCano-CaCO3 binary nanocomposites. The elongation at break and Young's modulus also increased with increasing the nano-CaCO3 concentration. Transmission electron microscopy (TEM) study demonstrated that the nano-CaCO3 particles were dispersed in a PVC matrix uniformly, and a few nanoparticles agglomeration was found. The toughening effect of the nano-CaCO3 particles on PVC could be attributed to the cavitation of the matrix, which consumed tremendous fracture energy. The notched Izod impact strength achieved a significant improvement by incorporating CPE into the nanocomposites, and obtained the high value of 745 J/m. Morphology investigation indicated that the nano-CaCO3 particles in the PVC matrix was encapsulated with a CPE layer through preparing the CPEano-CaCO3 master batch. The evaluation of rheological properties revealed that the introduction of nano-CaCO3 particles into PVC resulted in a remarkable increase in the melt viscosity. However, the viscosity decreased with addition of CPE, especially at high shear rates; thus, the processability of the ternary nanocomposites was improved. (C) 2004 Wiley Periodicals, Inc. [References: 49]
机译:通过熔融共混制备聚氯乙烯(PVC)和纳米碳酸钙(CaCO3)颗粒的纳米复合材料,并通过制备CPE /纳米CaCO3母料将作为界面改性剂的氯化聚乙烯(CPE)引入纳米复合材料中。 。研究了机械性能,形态和流变性。对于PVC /纳米CaCO3二元纳米复合材料,观察到中等的增韧效果。随着纳米CaCO 3浓度的增加,断裂伸长率和杨氏模量也增加。透射电子显微镜(TEM)研究表明,纳米CaCO3颗粒均匀地分散在PVC基质中,并且发现了一些纳米颗粒团聚。纳米CaCO3颗粒对PVC的增韧作用可归因于基质的空化,这消耗了大量的断裂能。通过将CPE掺入纳米复合材料中,缺口悬臂梁式冲击强度得到了显着改善,并获得了745 J / m的高值。形态学研究表明,通过制备CPE /纳米CaCO3母料,PVC基质中的纳米CaCO3颗粒被CPE层包裹。流变性能的评估表明,将纳米CaCO3颗粒引入PVC导致熔体粘度显着增加。但是,粘度随着CPE的添加而降低,特别是在高剪切速率下。因此,提高了三元纳米复合材料的可加工性。 (C)2004 Wiley Periodicals,Inc. [参考:49]

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