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Preparation and properties of styrene-butadiene rubber/clay nanocomposites by using liquid rubber/clay master batches

机译:液态橡胶/粘土母料制备丁苯橡胶/粘土纳米复合材料及其性能

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Rubber/clay nanocomposites (RCNs) have many applications because of their improved properties. The dispersion of clay in a rubber matrix, which plays an important role in the properties of RCNs, is a challenge. In this article, a solvent-free approach to produce the styrene butadiene rubber (SBR)/clay nanocomposites by using liquid rubber/clay master batches was introduced. The liquid/rubber master batches were first prepared using a high-speed centrifugal mixer and then compounded with neat SBR using conventional rubber compounding equipment. Compared with the composites prepared by melt mixing, this approach resulted in a better dispersion of the clay in the rubber matrix and improvements in tensile strength (4.98 MPa at 10 phr clay loading) and elongation at break (>1000% at 10 phr clay loading). The improved dispersion was confirmed by X-ray diffraction. The effect of clay loading on the tensile properties, dynamic mechanical properties, and the Payne effect was also investigated. The increase in clay loading resulted in a steady increase in the tensile properties up to a loading of 15 phr. The reinforcement in the RCN modulus using clay was compared with five models, including the Guth and Halpin-Tsai equations. This solvent-free approach offers benefits in dispersion of clay for industrial applications of rubber nanocomposites.
机译:橡胶/粘土纳米复合材料(RCN)由于其改善的性能而具有许多应用。粘土在橡胶基体中的分散是一项挑战,它对RCN的性能起着重要作用。本文介绍了一种无溶剂方法,该方法通过使用液态橡胶/粘土母料生产丁苯橡胶(SBR)/粘土纳米复合材料。首先使用高速离心混合机制备液体/橡胶母料,然后使用常规的橡胶混合设备将其与纯SBR混合。与通过熔融混合制备的复合材料相比,此方法可将粘土更好地分散在橡胶基质中,并提高抗张强度(在10 phr粘土载荷下为4.98 MPa)和断裂伸长率(在10 phr粘土载荷下为1000%以上) )。通过X射线衍射确认了改善的分散性。还研究了粘土加载量对拉伸性能,动态力学性能和佩恩效应的影响。粘土负荷的增加导致拉伸性能稳定提高,直至15 phr的负荷。将使用粘土对RCN模量的增强与包括Guth和Halpin-Tsai方程在内的五个模型进行了比较。这种无溶剂的方法在将粘土分散到橡胶纳米复合材料的工业应用中提供了好处。

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