1. Suspension Device
2. Vibration-isolating spring
3. Vibration Motor
4. Balancing Rack
5. Main Vibration Spring
6. Tank Body
The XZG series dual-mass vibrating feeder is widely used in industries such as metallurgy, building materials, coal, chemical engineering, and light industry for feeding systems handling lump, granular, and powdered materials, enabling continuous, uniform, and automated material supply.
The XZG series dual-mass vibrating feeder is widely used in industries such as metallurgy, building materials, coal, chemical engineering, and light industry for feeding systems handling lump, granular, and powdered materials, enabling continuous, uniform, and automated material supply.
This machine operates in a near-resonant state, with a shear-type rubber spring as the primary vibration spring. Its characteristics are:
1. Low impact force, smooth operation, and stable amplitude.
2. Compared with domestically produced feeders of the same capacity, it consumes less energy, allowing the motor rating to be reduced by one-third.
3. Both the trough inclination angle and the excitation force can be adjusted via the adjustment mechanism.
4. Excellent adaptability and wide application scope. It can handle the conveyance of powdered materials or materials with a particle size less than 500 mm, and is suitable for both continuous operation and frequent intermittent operation.
5. Rapid start-up and shutdown; no material leakage during vibratory feeding.
6. Compared with other feeders, maintenance requirements can be reduced by more than 50%.
7. Productivity can be automatically controlled via weighing and a variable-frequency drive system.
The XZG series dual-mass vibratory feeder features a novel design, rational structure, reliable performance, and significant economic benefits, making it widely adopted across various industries. Some of its products are exported.
The vibration motor mounted on the balancing frame is connected to the trough via the primary vibration spring. This spring restrains the inertial forces generated during operation between the excitation assembly’s balancing frame and the trough, enabling the feeder to vibrate in a near-resonant condition with low excitation force. As a result, the trough is spared from excessive dynamic stresses and the transmission assembly from excessive loading, leading to extended service life, reduced energy consumption, lower noise levels, and rapid, smooth start-up and shutdown. Moreover, the empty feeder runs smoothly, eliminating concerns about motor burnout caused by hopper emptying or ore blockage.
Keywords:
Dual-Mass Vibratory Feeder
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Application Fields
Chemical industry
Steel industry
Hydropower industry
Thermal Power Industry
Coal industry
Cement industry