FAQ
How to improve the quality of cooling fan from the root cause?
We know that all kinds of equipment are used in industrial production. These equipment will get hot and hot when working for a long time. At this time, a cooling fan needs to be used to cool down and maintain the equipment in good working condition. If the temperature cannot be lowered in time, it may cause damage to internal parts and affect the production work. It can be seen that the importance of cooling fans in industrial production. Therefore, a high-performance, good-quality cooling fan is what every company pursues. So how can the quality of the cooling fan be improved from the root?
1. Equipment parts
Generally, the cooling fan is mainly assembled from the four major parts of the rotor, stator, frame, motor (motor) and other small parts. The quality of these equipment parts directly determines whether the cooling fan can operate normally. Therefore, to improve the quality of the cooling fan, we must first start from these parts. The parts with excellent quality can make the cooling fan have a longer service life and better heat dissipation.
2. Departmental R & D
Usually, a cooling fan must be carefully designed and tested by the department before it is produced, to ensure that all aspects of it meet the production requirements and adapt to market needs. For example, when the internal structure parts and wind pressure speed of the two cooling fans are completely the same, the outer frame with different shapes is used for testing. The very well designed outer frame can improve the performance of the fan by 20% compared to the fan of the general outer frame. Or consider and test the resistance and auxiliary force of various frame shapes to ventilation, how to minimize the bearing friction in the fan, and how to do the chip to maximize the performance of the auxiliary fan and ensure the safety of the fan. This shows how important a product development is.
3. Production Department
After the design of the cooling fan is completed, it can be put into production. A good production department can improve the quality of the entire product by about 40%, and a good production department can increase the speed of shipment and save production costs. For example, soldering, a skilled solderer can often largely avoid the defect rate of the fan and improve the stability of the fan.
1. Equipment parts
Generally, the cooling fan is mainly assembled from the four major parts of the rotor, stator, frame, motor (motor) and other small parts. The quality of these equipment parts directly determines whether the cooling fan can operate normally. Therefore, to improve the quality of the cooling fan, we must first start from these parts. The parts with excellent quality can make the cooling fan have a longer service life and better heat dissipation.
2. Departmental R & D
Usually, a cooling fan must be carefully designed and tested by the department before it is produced, to ensure that all aspects of it meet the production requirements and adapt to market needs. For example, when the internal structure parts and wind pressure speed of the two cooling fans are completely the same, the outer frame with different shapes is used for testing. The very well designed outer frame can improve the performance of the fan by 20% compared to the fan of the general outer frame. Or consider and test the resistance and auxiliary force of various frame shapes to ventilation, how to minimize the bearing friction in the fan, and how to do the chip to maximize the performance of the auxiliary fan and ensure the safety of the fan. This shows how important a product development is.
3. Production Department
After the design of the cooling fan is completed, it can be put into production. A good production department can improve the quality of the entire product by about 40%, and a good production department can increase the speed of shipment and save production costs. For example, soldering, a skilled solderer can often largely avoid the defect rate of the fan and improve the stability of the fan.
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