(1) Hammer pieces, aging, screen mesh holes are closed, broken, and the water content of the crushed material is too high, which will cause the universal crusher to block. The broken and severely aged hammers should be regularly updated to keep the pulverizer in good working condition, and the screen should be inspected regularly. The moisture content of the pulverized material should be less than 14%, which can improve the production efficiency and prevent the universal pulverizer from clogging. To enhance the reliability of the work of the crusher.
(2) The feed rate is too fast, the load is increased, causing blockage. During the feeding process, always pay attention to the large deflection angle of the ammeter pointer. If the rated current is exceeded, it indicates that the motor is overloaded and overloaded for a long time, which will burn the motor. In this case, the door should be immediately reduced or closed, and the way of feeding can be changed. The feeder is controlled to increase the amount of feed. There are two types of feeders: manual and automatic. Users should select the appropriate feeder according to the actual situation. Because the universal shredder has high speed and load, and the load is highly volatile. Therefore, the current when the pulverizer is working is generally controlled at about 85% of the rated current.
(3) If the discharge pipe is not smooth or the feed is too fast, the air vent of the universal crusher will be blocked; improper matching with the conveying equipment will cause the wind of the discharge pipe to be weakened or blocked after no wind. After the fault is detected, the conveying equipment whose delivery port is not matched should be cleared first, and the feeding amount should be adjusted to make the equipment operate normally.
Hot-dip galvanization is a form of galvanization. It is the process of coating iron and steel with zinc, which alloys with the surface of the base metal when immersing the metal in a bath of molten zinc at a temperature of around 840 °F (449 °C). When exposed to the atmosphere, the pure zinc (Zn) reacts with oxygen (O2) to form zinc oxide (ZnO), which further reacts with carbon dioxide (CO2) to form zinc carbonate (ZnCO3), a usually dull grey, fairly strong material that protects the steel underneath from further corrosion in many circumstances. Galvanized steel is widely used in applications where corrosion resistance is needed without the cost of stainless steel, and is considered superior in terms of cost and life-cycle.
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