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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Optimization of variables in grinding brass particles for paint and pigment industry
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Optimization of variables in grinding brass particles for paint and pigment industry

机译:油漆和颜料行业的黄铜颗粒研磨变量的优化

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摘要

Flaky metal powders commonly used as paint and pigments, are generally produced by grinding in ball mills or vibration mills. The key to good quality powder production is to optimize the processing parameters. In the present work grinding of brass particles is studied in detail in a laboratory size ball mill to determine the optimal levels of the ball to material ratio, type and amount of additives, mill speed, ball load, etc. The quality of the powder is assessed on the basis of water coverage, degree of flattening and luster by visual inspection. Preliminary results in a 35 cm diameter ball mill with 30% ball load show that a material to ball ratio of 0.067 with a 0.1% dosage of stearic acid is required for good quality powder. For determining optimal mill speed and ball size a 22 factorial design of experiment has been followed. It has been determined that to achieve best powder quality the mill must run at 70% critical speed and the ball size must not exceed 20 mm. The quality of the powder assessed through SEM study for surface morphology and particle size analysis compares very well with the industrial samples.
机译:通常用作油漆和颜料的片状金属粉末通常通过在球磨机或振动磨机中研磨而生产。高质量粉末生产的关键是优化工艺参数。在目前的工作中,在实验室规模的球磨机中对黄铜颗粒的研磨进行了详细研究,以确定球与物料的最佳比例,添加剂的类型和数量,研磨速度,球负荷等。通过目视检查,根据水覆盖率,平坦度和光泽度进行评估。直径为35厘米,球负荷为30%的球磨机的初步结果表明,高质量粉末需要材料与球之比为0.067,硬脂酸的剂量为0.1%。为了确定最佳轧机速度和球尺寸,采用了22个因子设计的实验。已经确定,要获得最佳的粉末质量,轧机必须以70%的临界速度运行,球的尺寸不得超过20毫米。通过SEM研究评估的粉末质量用于表面形态和粒度分析,与工业样品相比非常好。

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