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首页> 外文期刊>Polymer bulletin >Effect of cloisite 30B on the thermal and tensile behavior of poly(butylene adipate-co-terephthalate)/ poly(vinyl chloride) nanoblends
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Effect of cloisite 30B on the thermal and tensile behavior of poly(butylene adipate-co-terephthalate)/ poly(vinyl chloride) nanoblends

机译:堇青石30B对聚己二酸丁二酯-对苯二甲酸对苯二甲酸丁二醇酯/聚氯乙烯纳米共混物的热和拉伸性能的影响

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Ternary PBAT/PVC/C30B nanoblends were successfully prepared via melt blending process at 130 °C and characterized by different techniques. The properties of the elaborated PBAT/PVC/C30B nanoblends were compared with those of the nonfilled PBAT/PVC blends to examine the C30B effects on the structure and properties of PBAT/PVC/C30B nanoblends. FTIR spectra revealed the presence of specific interactions between C=0 of PBAT and acidic hydrogen of PVC, supporting the formation of miscible nanoblends. The PBAT/PVC/C30B morphology was investigated by both X-ray diffraction and transmission electron microscopy analyses. It was suggested the formation of mixed intercalated/partially exfoliated structures. Differential scanning calorimetry thermograms of PBAT/ PVC/C30B nanoblends exhibited a single T_g and a full disappearance of the PBAT melting endotherm, confirming the complete compatibilization between PVC and PBAT. It was found that the T_g of the nanoblends were higher than those of the pristine blends due to their mixed intercalated/partially exfoliated structures. PBAT and PVC chains would be confined in a same C30B gallery causing a reduction of the chain mobility. Nanoblends showed a reduction of their thermal stability compared to their pristine blends, as a result of the catalytic effect of the C30B in the thermal degradation process. Tensile measurements displayed an improvement of mechanical properties for the ternary PBAT/PVC/C30B nanoblends relative to their virgin blends due to the insertion of clay particles into composite matrix.
机译:三元PBAT / PVC / C30B纳米共混物通过130°C的熔融共混工艺成功制备,并通过不同的技术进行了表征。比较了精细的PBAT / PVC / C30B纳米共混物的性能与未填充的PBAT / PVC混合物的性能,以检验C30B对PBAT / PVC / C30B纳米共混物的结构和性能的影响。 FTIR光谱揭示了PBAT的C = 0与PVC的酸性氢之间存在特定的相互作用,从而支持了可混溶的纳米共混物的形成。通过X射线衍射和透射电子显微镜分析研究了PBAT / PVC / C30B的形态。建议形成混合的插层/部分剥离结构。 PBAT / PVC / C30B纳米共混物的差示扫描量热法热分析图显示了一个T_g和PBAT熔融吸热的完全消失,证实了PVC和PBAT之间的完全相容性。发现纳米掺合物的T_g高于原始掺合物的T_g,这是由于它们的混合的嵌入/部分剥落的结构。 PBAT和PVC链条将限制在同一C30B通道中,从而导致链条移动性降低。与原始混合物相比,纳米共混物显示出其热稳定性降低,这是由于C30B在热降解过程中的催化作用。拉伸测量结果表明,由于将粘土颗粒插入复合材料基体中,三元PBAT / PVC / C30B纳米共混物的机械性能相对于其原始混合物有所改善。

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