The movement state of the grinding media inside the cylinder is largely determined by the rotational speed of the plastic mill. Different motion states result in different grinding effects, assuming all other conditions remain constant. When the rotational speed is low, the grinding media mainly experiences an "escaping" motion, leading to less impact and a more dominant grinding action. In this case, the mill has lower production capacity and is better suited for fine grinding.
On the other hand, when the rotational speed increases, the grinding media begins to be thrown upward, and the proportion of falling motion increases. This results in stronger impact forces, making the grinding effect primarily based on impact rather than friction or shearing. This mode is more effective for crushing larger particles and improves the overall production capacity of the mill.
Understanding the relationship between rotational speed, filling rate, and grinding efficiency is essential for optimizing the performance of the plastic mill. By adjusting these parameters appropriately, operators can enhance both the quality of the final product and the efficiency of the process. Whether the goal is fine grinding or coarse material processing, finding the right balance is key to achieving optimal results.
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