Vibration during the production of crushers must be kept within a reasonable range to avoid excessive noise and environmental pollution. Moreover, significant vibrations can affect the machine's production, such as a decrease in output. Therefore, how to reduce vibration during the operation of this machine is an urgent issue to address. Here, we analyze three measures that can reduce the vibration of crushers.
Measure 1: Ensure a robust installation foundation
To achieve this, the crusher must be installed on a hard and level surface. Otherwise, after long-term operation, the base may sink, causing vibration. Additionally, during the installation process, it is essential to follow a scientific and reasonable procedure. When securing the crusher, a solid foundation must be established, and during subsequent use, the foundation should be checked periodically for loosening. If any looseness is detected, it should be reinforced promptly.
Measure Two: Inspection During Production
This primarily involves checking the bolts, screws, and other fasteners on the crushers for looseness; if any are found to be loose, they should be tightened promptly. Additionally, during production, if there is a deviation in the position of the flywheel, it should be corrected immediately. Beyond these points, it is also necessary to regularly inspect the bearing gaps during the crusher production process. Proper lubrication of the bearings should be ensured to minimize vibration caused by bearing damage.
Measure Three: Precautions During Production
By adjusting the spacing and size of the cushion pads and using belts of the same dimensions as the cushion pads for buffering, the swing pressure is reduced and vibrations are weakened within a certain range. To prevent the adjustment pads of the crusher from jumping, it is also necessary to weld two pressure plates onto the adjustment pads. Additionally, during production, if the main shaft of the crusher is not evenly loaded or if it operates under excessive load for a prolonged period, it may result in severe bending and deformation of the main shaft, leading to equipment vibration. In such cases, the solution is to promptly correct the main shaft; if correction is not possible, a new main shaft must be replaced promptly.





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