Diversion device for products
US-2022204281-A1 · Jun 30, 2022 · US
US10384876B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10384876-B2 |
| Application number | US-201615761522-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 29, 2016 |
| Priority date | Sep 21, 2015 |
| Publication date | Aug 20, 2019 |
| Grant date | Aug 20, 2019 |
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A container-guiding apparatus for guiding containers along an arcuate path includes a concave guide-region and a guide belt that forms a resting region for containers to laterally guide containers along the path. The guide belt, which is driven to endlessly circulate, applies feed forces to the containers to force them along the transport direction.
Opening claim text (preview).
Having described the invention, and a preferred embodiment thereof, what is new and secured by Letters Patent is: 1. An apparatus for guiding a container along a path, wherein said path comprises an arcuate container-transport path, wherein said apparatus comprises a guide region and a guide belt, wherein said guide region is a concave guide-region that comprises at least a concave portion of said guide belt, wherein said guide belt forms a resting region for said container in said guide region to laterally guide said container along said path, and wherein said guide belt is driven to endlessly circulate so as to apply, to said container, a feed force acting in a transport direction, wherein said guide belt comprises a base region and a resting region, wherein said base region comprises a strap, and wherein said resting region projects away from said strap. 2. The apparatus of claim 1 , further comprising means for adjusting a curvature of said concave guide-region. 3. The apparatus of claim 1 , further comprising guide clamps that define a curved guide slot that laterally guides said concave portion of said guide belt along said concave guide-region. 4. The apparatus of claim 1 , further comprising a container-handling device, wherein, within said container-handling device, said path comprises a first section, a second section, and a transitional section between said first and second sections, wherein said container-handling device comprises a guiding feeder, a rotor, and a linearly-conveying transport element, wherein said rotor is at said first section, wherein said rotor moves said container along said path, wherein said linearly-conveying transport element is at said second section, wherein said guiding feeder is disposed at said transitional section, and wherein said guiding feeder comprises said guide belt. 5. An apparatus for guiding a container along a path, wherein said path comprises an arcuate container-transport path, wherein said apparatus comprises a guide region and a guide belt, wherein said guide region is a concave guide-region that comprises at least a concave portion of said guide belt, wherein said guide belt forms a resting region for said container in said guide region to laterally guide said container along said path, and wherein said guide belt is driven to endlessly circulate so as to apply, to said container, a feed force acting in a transport direction, wherein said guide belt comprises a strap and blocks that project away from said strap. 6. The apparatus of claim 5 , wherein said guide belt comprises a resting region upon which containers rest while being guided along said path and a base region that supports said resting region, wherein said resting region is formed from a first material, wherein said base region is formed from a second material, and wherein said first material is softer than said second material. 7. The apparatus of claim 5 , further comprising a container-handling device, wherein, within said container-handling device, said path comprises a first section, a second section, and a transitional section between said first and second sections, wherein said container-handling device comprises a guiding feeder, a rotor, and a linearly-conveying transport element, wherein said rotor is at said first section, wherein said rotor moves said container along said path, wherein said linearly-conveying transport element is at said second section, wherein said guiding feeder is disposed at said transitional section, and wherein said guiding feeder comprises said guide belt. 8. The apparatus of claim 7 , wherein said guiding feeder is height adjustable. 9. The apparatus of claim 7 , wherein container-handling device has mirror symmetry for handling multiple container streams, wherein said guiding feeder has mirror symmetry, and wherein said guiding feeder is configured to bring multiple container streams together. 10. The apparatus of claim 7 , wherein said guiding feeder interacts with a transport element that lies opposite said guide belt and wherein said transport element and said guide belt are driven synchronously. 11. An apparatus for guiding a container along a path, wherein said path comprises an arcuate container-transport path, wherein said apparatus comprises a guide region and a guide belt, wherein said guide region is a concave guide-region that comprises at least a concave portion of said guide belt, wherein said guide belt forms a resting region for said container in said guide region to laterally guide said container along said path, and wherein said guide belt is driven to endlessly circulate so as to apply, to said container, a feed force acting in a transport direction, wherein said guide belt comprises a base region and a resting region, wherein as a result of a height difference between said base region and said resting region, an edge of said base region projects beyond said resting region, wherein said edge forms a guide edge. 12. The apparatus of claim 11 , further comprising guide clamps, wherein said guide clamps encompass at least sections of said guide edge. 13. The apparatus of claim 12 , wherein said guide clamps are provided in pairs, wherein, as a result of a height difference between said base region and said resting region, a first edge of said base region projects beyond said resting region in a first direction and a second edge of said base region projects beyond said resting region in a second direction, said second direction being opposite said first direction, wherein said first edge forms an upper guide-edge, wherein said second edge forms a lower guide-edge, wherein a first guide clamp of said pair grips said upper guide-edge, and wherein a second guide clamp of said pair grips said lower guide-edge. 14. The apparatus of claim 12 , wherein said guide clamps comprise two pairs of guide clamps, wherein said guide clamps form a guide-way to guide said guide belt along said concave guide-region. 15. The apparatus of claim 11 , wherein said guide clamps are adjustable in a direction at right angles to said transport direction and wherein a curvature of said guide region is adjustable by said guide clamps. 16. An apparatus for guiding a container along a path, wherein said path comprises an arcuate container-transport path, wherein said apparatus comprises a guide region and a guide belt, wherein said guide region is a concave guide-region that comprises at least a concave portion of said guide belt, wherein said guide belt forms a resting region for said container in said guide region to laterally guide said container along said path, and wherein said guide belt is driven to endlessly circulate so as to apply, to said container, a feed force acting in a transport direction, said apparatus further comprising concave guide regions, wherein each guide region comprises a guide belt that circulates, and wherein said guide regions are configured to bring together two container streams to form a third container stream that comprises two rows of containers. 17. The apparatus of claim 16 , wherein said guide belt comprises a base region and adjacent blocks, wherein said blocks are arranged in succession along a row in said transport direction, wherein said base region extends across gaps that exist between adjacent blocks. 18. The apparatus of claim 16 , wherein said guide belt comprises a resting region upon which containers rest while being guided along said path and a base region that supports said resting region, wherein said resting region is formed from an elastic polyurethane material. 19. The apparat
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