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Reasonable adjustment of the discharge particle size of the cone crusher to achieve discharge qualit

Time: 2024-11-04 10:42:05

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1. The discharge particle size becomes smaller and the output decreases:

The number of crushing times increases: In order to obtain a smaller discharge particle size, the cone crusher needs to crush the material more fully. This means that the material stays in the crushing chamber for a longer time, and the number of crushing actions such as extrusion, impact and bending increases. Each crushing requires a certain amount of energy and time, which leads to a decrease in the amount of material processed per unit time, that is, a decrease in output. For example, larger particle size materials that can pass through the crushing chamber quickly need to be repeatedly crushed in the crushing chamber when pursuing a smaller discharge particle size, which prolongs the crushing process and reduces the output accordingly.

cone crusher
cone crusher

Limited passing capacity: The smaller discharge particle size requirement means that the discharge port size of the crushing chamber needs to be reduced. When the discharge port becomes smaller, the discharge speed of the crushed material will slow down, and it is easy to form accumulation and blockage at the discharge port, affecting the smooth discharge of the material, thereby limiting the processing capacity of the crusher and reducing the output.

2. The discharge particle size becomes larger and the output increases:

Crushing time is shortened: When the discharge particle size requirement is large, the cone crusher has a relatively low degree of crushing of the material, and does not require overly fine crushing operations. The number of times the material is crushed in the crushing chamber is reduced, and the speed of passing through the crushing chamber is accelerated, so that more materials can be processed per unit time, thereby increasing the output.

Smoother discharge: A larger discharge particle size corresponds to a larger discharge port size, and the material can be discharged from the crushing chamber more quickly, reducing the blockage and accumulation at the discharge port, ensuring the continuous operation and production of the crusher, and is conducive to the increase in output.

In actual production, the discharge particle size cannot be excessively increased in pursuit of output, because this may cause the product quality to not meet the requirements; similarly, the discharge particle size cannot be excessively reduced in pursuit of too high product quality, so as to avoid problems such as low output and increased production costs. It is necessary to reasonably adjust the discharge particle size of the cone crusher according to specific production needs and process requirements to achieve a balance between output and product quality.

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