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首页> 外文期刊>Journal of Vinyl & Additive Technology >Investigation of the Addition of Nano-CaCO3 at Dry Mixing or Onset of Fusion on the Dispersion, Torque, and Mechanical Properties of Compounded PVC
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Investigation of the Addition of Nano-CaCO3 at Dry Mixing or Onset of Fusion on the Dispersion, Torque, and Mechanical Properties of Compounded PVC

机译:干混或熔融开始添加纳米碳酸钙对复合PVC分散,扭矩和力学性能的影响

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A Brabender torque rheometer equipped with an internal mixer was used to study the influence of compounding method on the properties of (rigid PVC)/(treated and untreated nano-CaCO3) nanocomposites. Two different methods were studied for the addition of surface treated and untreated nano-CaCO3 during the melt mixing of rigid PVC. Direct dry mixing of rigid PVC and nano-CaCO3, and addition of nano-CaCO3 at the onset of PVC fusion were investigated. Dispersion of treated and untreated nano-CaCO3 was studied by X-ray diffraction and scanning electron microscopy. Results showed that using direct dry mixing improved the dispersion of nano-CaCO3 in the PVC matrix by lowering the fusion time. The mechanical properties of the nanocomposite samples such as impact strength, tensile strength, and elongation at break were improved by using this method. The addition of treated nano-CaCO3 at the onset of fusion caused a simultaneous decrease in torque. Also, rigid PVC nanocomposites prepared with treated nano-CaCO3 showed better mechanical properties than those of nanocomposites prepared with the untreated nano-CaCO3.
机译:配备内部混合器的Brabender扭矩流变仪用于研究复合方法对(刚性PVC)/(处理过的和未处理的纳米CaCO3)纳米复合材料性能的影响。研究了两种不同的方法,用于在硬质PVC熔融混合过程中添加经表面处理和未经处理的纳米CaCO3。研究了硬质PVC和纳米CaCO3的直接干混,以及在PVC融合开始时添加纳米CaCO3的情况。通过X射线衍射和扫描电子显微镜研究了已处理和未处理的纳米CaCO3的分散度。结果表明,直接干混可通过减少熔融时间来改善纳米CaCO3在PVC基体中的分散性。通过使用这种方法,可以改善纳米复合材料样品的机械性能,如冲击强度,拉伸强度和断裂伸长率。在融合开始时添加处理过的纳米CaCO3会导致扭矩同时下降。而且,用处理过的纳米CaCO3制备的硬质PVC纳米复合材料比用未处理过的纳米CaCO3制备的纳米复合材料具有更好的机械性能。

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