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Table Feeder Electric Vibration Motors For Silo Screen Concrete Vibration Motor

Suzhou Unite Precision Technology Co., Ltd.

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Table Feeder Electric Vibration Motors For Silo Screen Concrete Vibration Motor

Country/Region china
City & Province suzhou jiangsu
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Product Details

Electric Vibratory Motor For Table Feeder Silo Screen Concrete Vibration Motor

 

 

 

 

Product Description

 

The working process of a vibration motor on a tabletop feeder can be outlined as follows:

1. Initialization: The process begins with the initialization of the tabletop feeder system. This involves ensuring that the vibration motor, along with its associated components and controls, is powered on and ready for operation.

2. Material Loading: The material to be fed is placed onto the tabletop feeder. This material can vary depending on the application and could include items like small components, granular substances, or parts for further processing.

3. Vibration Activation: The vibration motor is activated. It starts generating controlled vibrations at a specific frequency and amplitude. These vibrations are transferred to the tabletop surface, causing the material to move or flow.

4. Material Dispersion: As the vibration motor vibrates the tabletop, the material experiences a combination of lateral and vertical movements. This movement helps disperse the material across the surface of the feeder, preventing clumping or uneven distribution.

5. Flow Control: The vibration parameters, such as frequency and amplitude, can be adjusted to control the flow rate and movement characteristics of the material. Higher frequencies or amplitudes may lead to more rapid or aggressive movement.

6. Feeding Process: The material gradually moves along the tabletop's surface due to the vibrations. Depending on the setup and design, the material might flow towards an outlet, drop into a chute, or be conveyed to another processing point.

7. Monitoring and Adjustment: During the feeding process, the system can be monitored to ensure proper material flow and consistent distribution. If necessary, operators can adjust the vibration parameters to optimize the feeding performance.

8. Shutdown and Maintenance: Once the feeding process is complete or when adjustments are needed, the vibration motor can be deactivated. Regular maintenance of the vibration motor, as well as the feeder's components, might be required to ensure optimal operation and longevity.

9. Material Replenishment: If the material on the tabletop feeder gets depleted, operators can add more material for continuous feeding. The vibration motor can be reactivated to resume the feeding process.

10. End of Operation: When the desired amount of material has been fed or the process is completed, the system can be shut down. The vibration motor is turned off, and any remaining material can be removed or prepared for the next cycle.

In essence, the application of a vibration motor on a tabletop feeder enhances the efficiency, accuracy, and controlled feeding of various materials, making it a versatile tool in industries that rely on consistent material flow.

Applications:

Flexible vibration voice coil motor response time is short, high vibration frequency, good induction, good stability, but also has high efficiency, low noise, small size, provide strong vibration movement and long life characteristics. Due to its perfect structure, vibrating motors are the perfect solution for a variety of industrial applications such as vibrating feeders, conveyors and vibrating screens. It is also known as a vibrating drive motor, a vibrating motor, or a vibrating motor. Vibration Motors feature high efficiency and low noise while operating under a variety of conditions, including extreme temperatures, humid environments, and high load applications. In addition, they are characterized by their small size and are very suitable for use in small spaces. Not only that, it is also widely used, such as material processing, process control and industrial automation. It is also used in a variety of consumer products, such as game consoles, medical devices and entertainment systems. They are also able to provide high power and low current, making them ideal for selected applications.

 

 

Technical Parameters:

Product Modle

Peak Force

(N)

Continious Force

25℃(N)

Total Stroke

(mm)

Max voltage

(V)

Back EMF Constant

(V/m/S)

Weight of the coil

(g)

StatorDiameter

(mm)

Enter the length of the coil

(mm)
VCAR0001-0010-00A0.730.4214.80.62.72411.2
VCAR0006-0039-00A6.21.93.96.61.127.92017.2
VCAR0006-0050-00A6.22.6515.73.578.22518.2
VCAR0013-0072-00A134.27.226.65.7216.226.224.7
VCAR0015-0062-00A156.56.226.29.7514.83325.6
VCAR0022-0098-00A226.59.824.75.82034.135
VCAR0022-0448-00A2211.444.914.34524875.7
VCAR0032-0050-00A328.9529.37.1514041.7
VCAR0033-0099-00A3389.924.35.8723.53626.7
VCAR0033-0224-00A3313.522.426.76.8755872
VCAR0035-0105-00A3515.610.511.95955067
VCAR0044-0040-00A4416.3418.38.9455321.2
VCAR0044-0059-00A44.117.75.914.38434622
VCAR0044-0075-00A4413.77.516.87.638.631.135.9
VCAR0044-0249-00A4411.724.944.98.8865.938.151.3
VCAR0070-0149-00A7027.314.926.917.7794353.7
VCAR0087-0062-00A8721.676.234.512.745.243.134.9
VCAR0087-0563-00A8717.556.363.48.117072110
VCAR0105-0164-00A10535.416.420.111.515060.440.4
VCAR0113-0089-00A113358.93117.51307327.5
VCAR0262-0112-00A26211111.235.1412757164
VCAR0262-0249-00A26211224.928.22674066109.1
VCAR0294-0498-00A29456.849.811424.570093136.9
VCAR0436-0187-00A436147.618.740.740.764080.491
VCAR0436-0250-00A4361672531.637.277078.4110
VCAR0436-0373-00A436142.337.33829.8104076163
VCAR0980-0249-00A9806305254.914.51041390126134.5
VCAR1351-0310-00A1351376.8373.5681050110143.7

 

Our Services

 Technical indicators & specifications can be customized

 Satisfactory after-sales service

 

Company Information

 

Packaging & Shipping

 

  

Certifications

 

FAQ

voice coil motor:

 

1.Travel: effective travel, used to calculate the the total travel of value force.

 

2.The direction of movement: horizontal or vertical installation 90 degree.

 

3.Load force: constant in the reverse direction of force on the motor, such as springs, etc.

 

4.Load weight: the total quality part of movement, including the quality slider

 

5.Movement Type: 1.point to point movement; 2.the reciprocation of the rule (e.g. scanning).

 

6.Velocity curve: 1.a trapezoidal speed curve; 2.triangular speed curve; 3.sine speed curve.

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