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Poly(1,3-butylene adipate) Plasticized Polyflactic acid)/Carbon Black as Electrical Conductive Polymer Composites

机译:聚(1,3-丁烯己二酸酯)增塑聚乳酸)/炭黑作为导电聚合物复合材料

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摘要

Poly(1,3-butylene adipate) (PBA) as the plasticizer for poly(lactic acid) (PLA) and carbon black (CB) as conductive filler, electrically conductive polymer composites (CPC) with different CB and PBA contents were prepared. Fourier transform infrared revealed that the interaction existed between PLA/PBA matrix and CB filler, and PBA could improve this interaction. The rhe-ology showed that CB could obviously improve the apparent viscosity and decrease the fluidity of the composites, but just the reverse for PBA. PLA/PBA/CB composites exhibited the low electrical percolation thresholds of 0.516, 1.20, 2.46, and 2.74 vol% CB at 30, 20, 10, and 0 wt% PBA. The conductivity of the composite containing 3.98 vol% CB and 30 wt% PBA reached 1.67 S/cm. Scanning electron microscopy revealed that the addition of PBA facilitated the dispersion of PLA/CB composites. PBA could dramatically increase the elongation at break of plasticized PLA. But high-PBA content caused the lowering of tensile strength. With the increasing of CB contents, the enforcement effect on the plasticized PLA became more Obvious.
机译:制备了聚(1,3-丁烯己二酸酯)(PBA)作为聚乳酸(PLA)的增塑剂,炭黑(CB)作为导电填料,制备了具有不同CB和PBA含量的导电聚合物复合材料(CPC)。傅立叶变换红外光谱表明,PLA / PBA基质与CB填料之间存在相互作用,而PBA可以改善这种相互作用。流变学表明,CB可以明显提高复合材料的表观粘度并降低其流动性,而PBA则相反。 PLA / PBA / CB复合材料在30、20、10和0 wt%的PBA下显示出0.516、1.20、2.46和2.74 vol%的CB的低电渗阈值。包含3.98体积%CB和30重量%PBA的复合材料的电导率达到1.67 S / cm。扫描电子显微镜显示,PBA的加入促进了PLA / CB复合材料的分散。 PBA可以显着增加塑化PLA的断裂伸长率。但是,高PBA含量导致拉伸强度降低。随着CB含量的增加,对塑化PLA的强制作用变得更加明显。

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