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Rheological Behavior of Gel-Filled Raw Natural Rubber and Styrene-Butadiene Rubber with Reference to Gel-Matrix Intermixing

机译:凝胶填充的天然生胶和苯乙烯丁苯橡胶的流变行为

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摘要

Natural rubber (NR) and styrene-butadiene rubber (SBR) latex gels were prepared by sulfur prevulcanization technique with varying amounts of curing agent and accelerator systems to generate grathent in crosslink density. These gels were characterized by solvent swelling, dynamic light scattering, atomic force microscopy, and mechanical properties. Crosslinked NR gels were intermixed with neat SBR matrix and vice versa. Rheological behavior of chemically crosslinked gel-filled NR and SBR was studied by capillary rheometry. Intermixing of crosslinked gels in the rubber matrices resulted in a considerable reduction in apparent shear viscosity and die swell values. This behavior was found to be dependent on several factors like gel concentration in the matrix, crosslink density of the gels, their size, and distribution. The effect of temperature on viscosity was studied extensively following the Arrhenious-Eyring model. A shear rate-temperature superposition mastercurve was constructed to predict the melt viscosities of the systems as a function of temperature. The change in die swell values was related to the change in first normal stress difference. The scanning electron photomicrographs of the extrudates revealed that presence of gels markedly improved the surface roughness of the raw rubbers. [PUBLICATION ABSTRACT]
机译:天然橡胶(NR)和丁苯橡胶(SBR)胶乳是通过硫磺预硫化技术制备的,其中使用了不同数量的固化剂和促进剂体系以产生交联密度的胶体。这些凝胶的特征在于溶剂溶胀,动态光散射,原子力显微镜和机械性能。将交联的NR凝胶与纯SBR基质混合,反之亦然。通过毛细管流变法研究了化学交联的填充了凝胶的NR和SBR的流变行为。橡胶基质中交联凝胶的混合导致表观剪切粘度和模头溶胀值大大降低。发现这种行为取决于多种因素,例如基质中的凝胶浓度,凝胶的交联密度,其大小和分布。根据Arrhenious-Eyring模型广泛研究了温度对粘度的影响。构造了剪切速率-温度叠加主曲线,以预测系统的熔体粘度随温度的变化。模头膨胀值的变化与第一法向应力差的变化有关。挤出物的扫描电子显微照片显示,凝胶的存在显着改善了生橡胶的表面粗糙度。 [出版物摘要]

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    《Polymer Engineering and Science》 |2009年第6期|p.1050-1062|共13页
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    Suman Mitra,1 Santanu Chattopadhyay,1 Sunil Sabharwal,2 Anil K. Bhowmick11 Rubber Technology Centre, Indian Institute of Technology, Kharagpur 721302, India2 RTDS, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, IndiaCorrespondence to: Anil K. Bhowmick, e-mail: anilkb@rtc.iitkgp.ernet.inContract grant sponsor: DAE, BRNS, Mumbai, contract grant number: 2005/35/4/BRNS/516.DOI 10.1002/pen.21348Published online in Wiley InterScience (www.interscience.wiley.com).© 2009 Society of Plastics Engineers,;

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