How do spreader Vibratory Conveyors work?

Spreader vibratory conveyors work by incorporating a long scarfed edge which discharges onto the downstream process feed at an angle of 90 degrees. This clever geometry causes product which starts out at a deep bed depth to singulate into a mono layer.

This type of machine is ideal for cereal infeed into the drier. Other equipment which is perfect for conveying breakfast cereal includes covered vibratory conveyors, spigot discharge vibratory conveyors and tubular vibratory conveyors.

It is also used for vegetable infeed into a freezer. Other KMG equipment which is designed for vegetables and frozen food includes grading vibratory conveyors, dewatering vibratory conveyors and laning vibratory conveyors.

FAQs about Spreader Vibratory Conveyor

What applications is the Spreader Vibratory Conveyor suitable for?
It works well with baked snacks, biscuits, breakfast cereals, confectionery, dried fruit, dry pasta, petfood, extruded products, fabricated chips, fruit and vegetables, IQF‑frozen food, nuts and seeds, packets, pellet snacks, popcorn, popped chips, potato and kettle style chips, rice, RTE cereals, salads, tea and coffee, tortilla chips and whole potatoes.
How does the Spreader Vibratory Conveyor transform deep beds into single layers?
It uses a long scarfed edge that discharges product at a 90‑degree angle onto downstream equipment. That geometry causes product from a deep bed to singulate into a mono layer for more uniform feeding into freezers, driers or similar equipment.
What additional features can improve the performance of this conveyor?
Optional features include dewatering screens or fines removal to improve product quality. The conveyor is also bespoke to suit your application and downstream process.
How is the conveyor designed for hygiene and maintenance?
It is built to be easy to clean, safe to use, and easy to maintain. Construction is robust and dependable, intended for a long lifetime.
What energy and reliability benefits does this design deliver?
It uses ultra low power and is engineered to be reliable and robust. That helps reduce operating costs and ensures consistent performance over time.

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