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首页> 外文期刊>Polymer Engineering and Science >Quantification of the Distribution of Carbon Black in Natural Rubber/Polybutadiene Blends by Differential Scanning Calorimetry
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Quantification of the Distribution of Carbon Black in Natural Rubber/Polybutadiene Blends by Differential Scanning Calorimetry

机译:差示扫描量热法定量测定天然橡胶/聚丁二烯共混物中炭黑的分布

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摘要

The distribution of carbon black (CB) in uncured blends of natural rubber (NR) and polybutadiene (PB) can be quantified using DSC. The crystallization temperature of PB containing CB, measured during cooling from the melt, increases with the CB loading. This phenomenon was used to calculate the CB content in PB and conversely in NR in NR/PB/CB mixtures. Two different blends containing N550 CB were studied. A deeper analysis was performed over the entire composition range of NR/PB blends filled with N234 CB. Two different trends were highlighted depending on composition. Below 50 wt% of NR in the elastomer phase, the crystallization temperature of PB is higher than that of pure PB indicating that a part of the CB is dispersed in PB. Above 50 wt% of NR, the crystallization temperature of PB is lower than that of pure PB, indicating that the whole CB is in the NR phase and that fractionated crystallization of PB simultaneously occurs. Both phenomena are consistent as the dispersed phase morphology is favored by a large increase of the matrix viscosity by the filler. For both CBs, the results indicate that CB has larger affinity for NR than for PB. This tendency was confirmed by transmission electron microscopy. [PUBLICATION ABSTRACT]
机译:炭黑(CB)在天然橡胶(NR)和聚丁二烯(PB)的未固化共混物中的分布可以使用DSC进行定量。在从熔体冷却期间测得的含CB的PB的结晶温度随CB的添加量而增加。此现象用于计算PB / CB混合物中PB中的CB含量,反之则计算NR中的CB含量。研究了两种含N550 CB的共混物。在充满N234 CB的NR / PB共混物的整个组成范围内进行了更深入的分析。根据组成,突出显示了两种不同的趋势。低于弹性体相中NR的50%(重量)时,PB的结晶温度高于纯PB的结晶温度,表明一部分CB分散在PB中。高于NR的50wt%,PB的结晶温度低于纯PB的结晶温度,表明整个CB处于NR相,并且PB的分级结晶同时发生。两种现象是一致的,这是由于填料大大提高了基体粘度,有利于分散相的形貌。对于这两个CB,结果表明CB对NR的亲和力大于对PB的亲和力。这种趋势已通过透射电子显微镜证实。 [出版物摘要]

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    《Polymer Engineering and Science》 |2009年第8期|p.1544-1552|共9页
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    Julien Portal,1,2 Christian Carrot,1 Jean-Charles Majesté,1 Stéphane Cocard,2 Vincent Reüssier,2Isabelle Anselme-Bertrand31 Laboratoire de Rhéologie des Matières Plastiques, UMR CNRS 5223 Ingénierie des Matériaux Polymères,Université Jean Monnet, 23 rue du Docteur Paul Michelon, 42023 Saint-Etienne Cedex 2, France2 MFP Michelin, Centre de Technologie de Ladoux, 63040 Clermont-Ferrand Cedex 9, France3 Centre de Microscopie Electronique Stephanois, Faculté de Médecine, Université Jean Monnet,15 rue Ambroise Paré 42023 Saint Etienne Cedex 2, FranceCorrespondence to: C. Carrot, e-mail: carrot@univ-st-etienne.frDOI 10.1002/pen.21376Published online in Wiley InterScience (www.interscience.wiley.com).© 2009 Society of Plastics Engineers,;

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