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首页> 外文期刊>Fibers and Polymers >Study on Morphological, Rheological and Physico/Mechanical Behavior of SEBS/CaCO3 Nanocomposite
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Study on Morphological, Rheological and Physico/Mechanical Behavior of SEBS/CaCO3 Nanocomposite

机译:SEBS / CaCO3纳米复合材料的形态,流变和物理/力学行为的研究

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摘要

This work focuses on the modification of the mechanical properties and morphology, cure behavior and other characterization of nano CaCO3 filled SEBS (Styrene-ethylene-butadiene-styrene) elastomers. The tensile strength was increased and compression set characterization was decreased with increasing content of nCaCO3 value. The influence of the interfacial area and the volume fraction of filler were studied. Furthermore, isothermal cure characterization of neat and filled systems was performed using a torque rheometer. The most important finding base on the rheological studies was the catalytic effect of nCaCO3 on cure reaction of SEBS, leading to the shorter curing time. Moreover, the kinetic analyses of rheograms revealed a marked decrease in the activation energy of the cure process upon raising nCaCO3 content. Interestingly, MFI, Hardness, Tensile, Compression set testes showed that the hardness and tensile properties were dramatically increased and MFI and elongation decreased by the addition of nano CaCO3 into SEBS system compared to pure blend resin. It was shown that the relative increase in tensile yield stress when increasing amount of interfacial agent was added, both depends on the volume of filler and the interfacial area. The nanoparticles shape, size and dispersion state were investigate through X-ray diffraction (XRD), transmission electron microscopy (TEM) and scanning electron microscopy (SEM) method.
机译:这项工作的重点是纳米CaCO3填充的SEBS(苯乙烯-乙烯-丁二烯-苯乙烯)弹性体的机械性能和形态,固化行为及其他特性的改性。随着nCaCO3值含量的增加,拉伸强度增加,压缩永久变形特性降低。研究了界面面积和填料体积分数的影响。此外,使用扭矩流变仪对纯净系统和填充系统进行了等温固化表征。流变学研究的最重要发现是nCaCO3对SEBS固化反应的催化作用,从而缩短了固化时间。此外,流变图的动力学分析表明,随着nCaCO3含量的增加,固化过程的活化能显着降低。有趣的是,与纯共混树脂相比,通过向SEBS系统中添加纳米CaCO3,MFI,硬度,拉伸,压缩永久变形试验表明,硬度和拉伸性能显着提高,MFI和伸长率降低。结果表明,当添加界面活性剂的量增加时,拉伸屈服应力的相对增加,均取决于填料的体积和界面面积。通过X射线衍射(XRD),透射电子显微镜(TEM)和扫描电子显微镜(SEM)方法研究了纳米粒子的形状,大小和分散状态。

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