Automatic Feeding Machine SUS304 Stainless Steel Circular Part Vibratory Bowl Feeder
1 . Descriptions:
Vibratory bowl feeders can provide a cost-effective alternative to manual labor and optimize production processes. Vibratory bowl feeders are used in a variety of industries including pharmaceutical, medical, food, automotive and consumer products.
Vibratory bowl feeders use vibration to orient and convey parts of varying shapes and weights, such as screws, nuts, washers, etc., increasing productivity and reducing the probability of human error.
In automated production lines, Vibratory bowl feeders are often used in conjunction with other production equipment, such as automatic filling and packaging machines. To further improve productivity, pick-up mechanisms, cameras and other devices are added to the vibrating bowl feeder.
2 . Specifications:
Product name | Vibratory Bowl Feeder |
Material | Aluminum(AL7075), Stainless Steel(SUS304) or Based on Customers' Requirements |
Controller | CUH,Sanki,Sinfonia,REO,Afag |
Voltage | 220V 50HZ/110V 60Hz or Based on Customers' Requirements |
Power | 300W/500W/1000W/1500W/2000W |
Color | Green or Based on Customers' Requirement |
After-sales Service | Spare Parts and Technology Support |
Warranty | 2 Years |
Certification | CE, ISO9001, ROHS |
Lead Time | 3 Working Weeks |
3 . Transfer Parts with A Vibratory Bowl Feeder:
A manufacturer of hardware products sent us an inquiry to design a vibratory bowl feeder that would convey nails to a packaging machine. The customer produces many different sizes of nails, and for each size of nails we designed a different size of vibratory bowl feeder to convey the corresponding nails.
The customer wants to adjust the number of nails to be fed into the packaging machine, so the engineers added a PLC intelligent control system, when the customer inputs the number of nails on the panel, the vibrating bowl feeder will convey the corresponding number of nails.
Vibratory bowl feeder plays an important role in conveying small parts like nails to improve production efficiency and reduce the probability of operational errors.
4 . More Pictures: