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Mechanical milling of tronoh silica sand nanoparticles using low speed ball milling process

机译:低速球铣削工艺机械研磨替代硅砂纳米粒子

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Silica sand nanoparticles are widely used as filler, coating and reinforcer to increase materials strength and durability. The objective of the research is to design a new technique of converting Tronoh silica sand to silica sand nanoparticles by using ingenious combination of milling process and heating mechanism. Raw Tronoh silica sand was milled for 10 hours with heating process after every 2 hours of milling. The optimum parameters were first identified using Taguchi method of orthogonal array. By using the optimum parameters obtained, a lab-scale production has been done to test the ability for repetitive production of silica sand nanoparticles. Results from the lab-scale production were analyzed using particle size analyzer to obtain the particles size and size distribution. Particles size of less than 100 nm has been repeatedly achieved in this research. Findings from this research provide a simple and low cost alternative method of producing silica sand nanoparticles.
机译:二氧化硅砂纳米粒子广泛用作填料,涂层和增强剂,以提高材料强度和耐久性。该研究的目的是通过使用铣削过程和加热机理的巧妙组合来设计一种将Tronoh二氧化硅砂与二氧化硅砂纳米颗粒转换为二氧化硅砂纳米颗粒的新技术。在每2小时铣削后,将原料Tronoh二氧化硅砂研磨10小时,加热过程。首先使用正交阵列的Taguchi方法识别最佳参数。通过使用获得的最佳参数,已经进行了实验室规模的生产以测试二氧化硅砂纳米粒子的重复生产能力。使用粒度分析仪分析实验室规模生产的结果,以获得颗粒尺寸和尺寸分布。在该研究中,已经反复实现小于100nm的颗粒尺寸。本研究的发现提供了一种简单而低成本的制造硅砂纳米粒子的替代方法。

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