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A method for dispersing dry nano-sized particles in a liquid using carrier particles

机译:使用载体颗粒将干燥的纳米级颗粒分散在液体中的方法

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A method for dispersing dry particles in a liquid is described. The method involves coating large carrier particles with fine particles. When two types of particles having different sizes are mixed in dry conditions, the particles adhere to one another, and the large particles become coated with small particles. When the large core particles are coated with a mono-layer of small particles, further agglomeration is inhibited. Because the single small particles generated by the disruption adhere to the core particles, we presumed that, if the small particles that are adhered to large particles could be separated from the large particles by a sonication in a liquid, the dry fine particles could be dispersed in a liquid. The dispersion experiments conducted using spherical silica particles having a count median diameter D_(p50) of 74 ran as small particles and spherical glass beads as large particles. In this situation, the large particles carry the small particles from a dry condition into a liquid. We refer to the large particles as carrier particles. The experiments revealed that the proposed dispersion procedure results in a superior product, compared to sonication only. The effect of carrier size on dispersion performance is also investigated. The findings indicate and an optimum carrier size exists. Observations of the carrier particle surfaces after dry mixing indicate that the optimum condition is the condition at which a mono-layer of Silica particles is formed.
机译:描述了一种用于将干燥颗粒分散在液体中的方法。该方法包括用细颗粒涂覆大的载体颗粒。当在干燥条件下混合具有不同尺寸的两种类型的颗粒时,颗粒彼此粘附,并且大颗粒被小颗粒覆盖。当大芯颗粒被小颗粒的单层覆盖时,进一步的团聚被抑制。因为由破坏产生的单个小颗粒粘附在核心颗粒上,所以我们推测,如果可以通过在液体中进行超声处理将粘附在大颗粒上的小颗粒与大颗粒分离,那么干燥的细颗粒可以分散在液体中。使用计数中值直径D_(p50)为74的球形二氧化硅颗粒进行的分散实验为小颗粒,而球形玻璃珠为大颗粒。在这种情况下,大颗粒将小颗粒从干燥状态运送到液体中。我们将大颗粒称为载体颗粒。实验表明,与仅超声处理相比,拟议的分散程序可产生更好的产品。还研究了载体尺寸对分散性能的影响。结果表明,存在最佳的载流子尺寸。干混合后对载体颗粒表面的观察表明,最佳条件是形成二氧化硅颗粒单层的条件。

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