Detailed Introduction
A cyclone dust collector is a dust removal device. The dust removal mechanism is to use centrifugal force to separate dust particles from the airflow and capture them onto the equipment wall, and then use gravity to drop the dust particles into the ash hopper. Determine the size ratio of each component of the cyclone dust collector, and changes in the proportional relationship will affect the efficiency and pressure loss of the cyclone dust collector, among which the diameter of the dust collector, the size of the air inlet, and the diameter of the exhaust pipe are the main influencing factors. When using, be careful not to exceed the limit, as favorable factors can also be transformed into unfavorable factors. In addition, some factors are beneficial for good dust removal efficiency, but they can increase pressure loss, so adjustments to various factors need to be considered.
The inlet of a cyclone dust collector is a key component that forms a rotating airflow and is the main factor affecting dust removal efficiency and pressure loss. The purchasing area has a significant impact on the dust collector. Compared with a small cylinder cross-section, the airflow entering the dust collector has a higher cutting speed, which is beneficial for dust separation.
Technical requirements for cyclone dust collector:
1. Pay attention to changes in easily worn parts such as the inner wall of the outer cylinder.
2. When the temperature of dusty gas changes or the humidity decreases, pay attention to the adhesion, blockage, and corrosion of dust.
3. Pay attention to changes in pressure differential and smoke emissions. The dust collector is perforated due to wear and corrosion, reducing dust removal efficiency, worsening smoke emission color, and changing pressure difference.
4. Pay attention to the airtightness of each part of the cyclone dust collector, and check the changes in cyclone gas flow rate and dust removal concentration.
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