一个连续生产过程为涂层体积被开发金属性的电线上的金属性的眼镜出现。包括绘画速度和涂层温度,处理参数的效果在涂层厚度上被调查。涂层厚度随拉速度的增加增加,但是随涂层温度的增加减少,这被发现。液体机械模型被开发确定在各种各样的处理下面的涂层厚度调节。由使用这个理论模型,涂层厚度被计算,并且计算的值在对试验性的数据的好同意。
A continuous production process was developed for coating bulk metallic glasses on the metallic wire surface. The effects of processing parameters, including the drawing velocity and coating temperature, on the coating thickness were investigated. It is found that the coating thickness increases with the increase in drawing velocity but decreases with the increase in coating temperature. A fluid mechanical model was developed to quantify the coating thickness under various processing conditions. By using this theoretical model, the coating thickness was calculated, and the calculated values are in good agreement with the experimental data.