HCBBS Forum (English)
Submit Chemical Projects / Find Solutions
Amplify Your Requirements on a Broader Chemical Platform *Engineering · Technology · Equipment · Solutions*
Submit Request

Analyze the reasons for motor overheating in belt conveyors

2020-06-17View Original

Thread Content

Conveyor belts are primarily used for the continuous operation of food conveying equipment, for the cooling and transportation of castings, for the cooling and transportation of workpieces from extruders, in the subsequent processing stages of heat treatment furnaces, as well as for the transfer printing, drying, and transportation of springs and hardware tools. Customized according to customer requirements. A mesh belt conveyor is primarily composed of a stainless steel mesh belt, drive chain, motor, sprockets, and related accessories. Among these components, the motor is the one that tends to get damaged easily; motor overheating is a common issue. Below, mesh belt conveyor manufacturers list 21 reasons for motor overheating. 1. The operating temperature of the motor for the belt conveyor is too high. 2. Poor heat dissipation of the motor for the belt conveyor. 3. Overload of the motor for the belt conveyor. 4. Overvoltage, undervoltage, or voltage imbalance in the motor of the belt conveyor. 5. The motor of the belt conveyor starts and stops frequently, or rotates forward and backward frequently. 6. Motor phase loss. 7. The motor fan is damaged or the air inlets and outlets are blocked. 8. The bearings of the belt conveyor are lacking oil. 9. Mechanical jamming and stall of the belt conveyor. 10. The motor of the belt conveyor has an excessive rotational inertia, resulting in a long start-up time. 11. Inter-turn short circuit in the belt conveyor. 12. The internal wiring of the new motor is incorrect. 13. The star-delta wiring of the motor is incorrect. 14. Star-delta or autotransformer starting results in a long restart time for heavy loads, or the transition does not occur properly due to faults. 15. The motor of the belt conveyor is damp. 16. Rotor bar breakage in squirrel-cage asynchronous motors. 17. Breakage in the rotor windings or imbalance in resistance of the wound-rotor asynchronous motor. 18. Rotor sweeping the furnace wall. 19. Excessive power supply harmonics, for example, due to the presence of large-scale rectification equipment or high-frequency devices in the vicinity. 20. The magnetic flux of the motor core decreases after multiple repairs. 21. The winding process of the motors in some belt conveyors is poor.

Submit a Project

**Looking for Chemical Technology, Equipment & Solutions?** No Registration Required Broader Platform Exposure | Global Chemical Service Provider Connections

Submit Request — Free Consultation

Disclaimer

This is an automated machine translation of the original thread. Some technical terms may have inaccuracies; the original text shall prevail. Click "View Original" at the top right to access the source page, which supports IP-based automatic real-time language translation. Please watch out for contact details and sales inducements to prevent fraud. All content and translations are for reference only, representing solely the poster's personal views. For enquiries, email service@hcbbs.com.