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Elastomeric Composites Based on Ethylene-Propylene-Diene Monomer Rubber and Conducting Polymer-Modified Carbon Black

机译:乙烯-丙烯-二烯单体橡胶与导电聚合物改性炭黑的弹性体复合材料

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Thermally stable elastomeric composites based on ethylene-propylene-diene monomer (EPDM) and conducting polymer-modified carbon black (CPMCB) additives were produced by casting and crosslinked by compression molding. CPMCB represent a novel thermally stable conductive compound made via "in situ" deposition of intrinsically conducting polymers (ICP) such as polyaniline or polypyrrole on carbon black particles. Thermogravimetric analysis showed that the composites are thermally stable with no appreciable degradation at ca. 300°C. Incorporating CPMCB has been found to be advantageous to the processing of composites, as the presence of ICP lead to a better distribution of the filler within the rubber matrix, as confirmed by morphological analysis. These materials have a percolation threshold range of 5-10 phr depending on the formulation and electrical dc conductivity values in the range of 1 × 10~(-3) to 1 × 10~(-2) S cm~(-1) above the percolation threshold. A less pronounced reinforcing effect was observed in composites produced with ICP-modified additives in relation to those produced only with carbon black. The results obtained in this study show the feasibility of this method for producing stable, electrically conducting composites with elastomeric characteristics.
机译:通过浇铸生产基于乙烯-丙烯-二烯单体(EPDM)和导电聚合物改性的炭黑(CPMCB)添加剂的热稳定弹性体复合材料,并通过压缩模塑使其交联。 CPMCB代表一种新型的热稳定导电化合物,它是通过在炭黑颗粒上“原位”沉积固有导电聚合物(ICP)(例如聚苯胺或聚吡咯)制成的。热重分析表明,该复合材料是热稳定的,在约200℃下没有明显的降解。 300℃。已经发现掺入CPMCB对复合材料的加工是有利的,因为通过形态学分析证实,ICP的存在导致填料在橡胶基质内的更好分布。这些材料的渗透阈值范围为5-10 phr,具体取决于配方和直流电导率值,范围为上述1×10〜(-3)至1×10〜(-2)S cm〜(-1)渗滤阈值。与仅用炭黑生产的复合材料相比,在用ICP改性的添加剂生产的复合材料中观察到了不太明显的增强作用。在这项研究中获得的结果表明,该方法可用于生产具有弹性特征的稳定的导电复合材料。

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