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Structural changes in precipitated silica induced by external forces

机译:外力引起的沉淀二氧化硅的结构变化

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The morphology of pure precipitated silica, silica filled in polydimethylsiloxane rubber, and silica filled in styrene butadiene rubber was studied by means of small-angle X-ray scattering experiments. The silica at a length scale of a few nanometers consists of primary particles, which form aggregates, and clusters with aggregates as basic units. It is evidenced that the aggregate branching, represented by the mass fractal dimension, and the aggregate diameter are different if pure silica and silica in rubber are compared. Contrary, the size of the primary particles and their surface are not influenced. It is demonstrated that the change in the aggregate morphology is due to the external mechanical forces appearing during the mixing process. This is achieved by model experiments using a pistil and a mortar and a composite with different silica fractions. By that means, a systematic change in the morphology with grinding time is observed. Then, the experiments on the composite demonstrate that the major contributions to the mass fractal dimensions are due to the external mechanical forces. In order to test reproducibility and universal validity in the case of precipitated silicas, independent experiments on one silica and further silicas are performed. Several important conclusions are obtained from the study. First, it is shown that a comparison of different pure silica samples without knowing their history may be difficult or questionable. Second, it becomes evident that it is not sufficient to provide only a description of the materials, rather than the details of the sample treatment have to be reported. Therefore, solely the characterization of the morphology of the pure silica is not sufficient to be compared to the mechanical properties of the composites.
机译:通过小角X射线散射实验研究了纯沉淀二氧化硅,填充有聚二甲基硅氧烷橡胶的二氧化硅和填充有丁苯橡胶的二氧化硅的形态。长度为几纳米的二氧化硅由形成聚集体的初级颗粒和以聚集体为基本单元的团簇组成。有证据表明,如果将纯二氧化硅和橡胶中的二氧化硅进行比较,则以质量分形维数表示的聚集体支链和聚集体直径是不同的。相反,初级颗粒的大小及其表面不受影响。证明了聚集体形态的变化是由于在混合过程中出现的外部机械力。这可以通过使用雌蕊和研钵以及具有不同二氧化硅组分的复合材料进行模型实验来实现。通过这种方式,观察到形态随研磨时间的系统变化。然后,对复合材料的实验表明,对质量分形维数的主要贡献是由于外部机械力。为了测试沉淀二氧化硅的再现性和通用性,在一种二氧化硅和其他二氧化硅上进行了独立的实验。这项研究得出了几个重要的结论。首先,表明在不知道其历史的情况下对不同的纯二氧化硅样品进行比较可能是困难或可疑的。其次,很明显仅提供材料说明是不够的,而不必报告样品处理的细节。因此,仅纯二氧化硅的形态表征不足以与复合材料的机械性能进行比较。

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