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THREE-DIMENSIONAL MORPHOLOGY OF CARBON BLACK IN NR VULCANIZATES AS REVEALED BY 3D-TEM AND DIELECTRIC MEASUREMENTS

机译:3D-TEM和介电测量显示的NR硫化硫化物中碳黑的三维形态

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Usual rubber products are a composite from rubber and nano-filler (e.g. carbon black, silica, etc.), and it is believed that the good dispersion of the nano-filler is the most important issue determining the performance of rubber vulcanizates. So far, transmission electron microscopy (TEM) has been the most useful tool for evaluation of the dispersion. However, it affords images of the sample projected on an x, y-plane, and the information along the thickness (z-axis) direction is missing. Three-dimensional (3D) visualization of nanometer structure of nano-filler dispersion in a rubber matrix is what all rubber technologists have been dreaming of. This dream is at last realized, and described in this paper. Use of TEM combined with computerized tomography (abbreviated as 3D-TEM in this paper, which is sometimes called electron tomography) enabled us to reconstruct 3D images of nano-filler aggregates in rubbery matrix. The 3D-TEM results on carbon black in natural rubber were presented in this paper: The network structure formed by agglomeration of carbon black aggregates was elucidated by combining the 3D images and physical properties of the vulcanizates. Density, electrical resistivity and dielectric relaxation of carbon black loaded natural rubber as an example of physical properties, were measured, and explained by the structure elucidated by 3D-TEM. This technique will prove to be more and more important for the rational design of the nano-composites of rubbery matrix.
机译:通常的橡胶产品是由橡胶和纳米填料(例如炭黑,二氧化硅等)制成的复合材料,人们认为,纳米填料的良好分散性是决定橡胶硫化橡胶性能的最重要问题。到目前为止,透射电子显微镜(TEM)已成为评估色散最有用的工具。但是,它提供了投影在x,y平面上的样本图像,并且沿厚度(z轴)方向的信息丢失了。橡胶基质中纳米填料分散体的纳米结构的三维(3D)可视化是所有橡胶技术人员梦dream以求的。最后实现了这个梦想,并在本文中进行了描述。 TEM与计算机断层扫描(在本文中简称为3D-TEM,有时称为电子断层扫描)结合使用,使我们能够在橡胶状基质中重建纳米填料聚集体的3D图像。本文介绍了天然橡胶中炭黑的3D-TEM结果:通过结合3D图像和硫化橡胶的物理性质,阐明了炭黑团聚体形成的网络结构。测量了炭黑负载的天然橡胶的密度,电阻率和介电弛豫,作为物理性能的一个实例,并通过3D-TEM阐明的结构进行了解释。对于合理设计橡胶基纳米复合材料,该技术将越来越重要。

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