Workpiece transport system
US-9499344-B2 · Nov 22, 2016 · US
US10549918B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10549918-B2 |
| Application number | US-201615562869-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 7, 2016 |
| Priority date | Apr 2, 2015 |
| Publication date | Feb 4, 2020 |
| Grant date | Feb 4, 2020 |
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The invention relates to a trough conveyor, which is designed and configured for transporting fish transversely to the longitudinal extent thereof in the transport direction T M , comprising a transport chain which can be rotationally driven and is formed from chain links and has a transport run, which defines the transport plane E 1 , and a return run, wherein the continuous transport chain is guided about at least two deflection elements, which can be rotated about an axis of rotation D u , for driving and guiding the transport chain, and the transport chain has arranged thereon troughs each intended to receive one fish, which trough conveyor is distinguished in that each trough is arranged on the transport chain so as to be pivotable about an axis of rotation D M extending transversely to the transport direction T M and comprises at least one guide body, and in that at least one guide rail for receiving the guide body and for guiding the same is arranged at least in the transition region Ü from the transport run to the return run, wherein the course of the or of each guide rail in the transition region Ü around the deflection element at least partially differs from the course of the transport chain around the deflection element. The invention further relates to an arrangement and a method for transferring the fish from such a trough conveyor to a downstream transport means.
Opening claim text (preview).
The invention claimed is: 1. A trough conveyor, which is designed and configured for transporting fish transversely to a longitudinal extent of the trough conveyor in a transport direction T M , comprising a transport chain which can be rotationally driven and is formed from chain links and has a transport run, which defines the transport plane E 1 , and a return run, wherein the transport chain is guided about at least two deflection elements and the transport plane E 1 extends in a substantially horizontal plane between a first and a second of the at least two deflection elements, with at least the first of the at least two deflection elements being rotatable about a first axis of rotation D U for driving and guiding the transport chain, and the transport chain having arranged thereon a plurality of troughs, with each trough arranged transversely to the longitudinal extent of the trough conveyor and each trough being configured to receive one fish transversely to the longitudinal extent of the trough conveyor, wherein each trough is arranged on the transport chain so as to be pivotable about an axis of rotation D M extending transversely to the transport direction T M and comprises at least one guide body, wherein at least one guide rail for receiving the guide body and for guiding the same is arranged at least in a transition region Ü around a portion of the first of the at least two deflection elements, wherein a course of the at least one guide rail in the transition region Ü around the first of the at least two deflection elements at least partially differs from a course of the transport chain around the first of the at least two deflection elements, wherein the transport chain is guided in the transition region Ü around the first of the at least two deflection elements, arranged in the transition region Ü from the transport run to the return run, on a path of movement B T of the transport chain with a constant radius r T relating to the axis of rotation D U while the at least one guide rail directs a path of movement B F for the guide body with a variable radius r F relating to the first axis of rotation D U , and wherein the path of movement B F of the guide body intersects the path of movement B T of the transport chain at least twice, such that when each trough moves through the transition region Ü at the first of the at least two deflection elements and when each trough comprises the one fish, each trough controllably tilts to slide the one fish out of the trough conveyor. 2. The trough conveyor according to claim 1 , wherein each guide body comprises a cylindrical sliding member whose central axis M is oriented parallel to the axis of rotation D M . 3. The trough conveyor according to claim 1 , wherein a guiding groove of the at least one guide rail is approximately U-shaped, wherein each guiding groove oriented radially relative to the axis of rotation D U is limited downwards and upwards. 4. The trough conveyor according to claim 1 , wherein each guide body is arranged in the transport direction T M trailing in relation to the axis of rotation D M of an associated trough. 5. The trough conveyor according to claim 1 , wherein each trough on a preceding side in the transport direction T M are designed to be open in such a manner that when the one fish is disposed therein, the one fish drops out of each trough in the transition region Ü from the transport run to the return run. 6. The trough conveyor according to claim 1 , wherein the each trough comprises a trough body, which is approximately L-shaped in cross-section, said trough body, at least in a portion of the transport run, having a support surface oriented substantially parallel to the transport plane E 1 and a contact surface oriented perpendicular to the support surface, and wherein the contact surface of the each trough is arranged on the trailing side, in transport direction T M , of the support surface. 7. An arrangement, comprising a first transport means for feeding fish into a transfer region Ü for transferring the fish to a second transport means, the second transport means for discharging the fish taken over from the first transport means, the first transport means comprising a trough conveyor which is designed and configured to transport the fish transversely to a longitudinal extent the trough conveyor in a transport direction T M , wherein the trough conveyor is designed and configured according to claim 1 . 8. The arrangement according to claim 7 , wherein the second transport means comprises a transport conveyor which is designed and configured for transporting the fish along a longitudinal axis, wherein a transport plane E 2 of the transport conveyor is situated below a transport plane E 1 of the trough conveyor and a transport direction T T of the transport conveyor is oriented transversely to the transport direction T M of the trough conveyor. 9. A method for transferring fish from a first transport means to a second transport means, comprising the steps: feeding the fish transversely to a longitudinal extent of the first transport means by means of a trough conveyor in a transport direction T M into a transfer region Ü for transferring the fish to the second transport means, the trough conveyor having a plurality of troughs that are each arranged transversely to the longitudinal extent of the first transport means and each configured to receive one fish transversely to the longitudinal extent of the first transport means, discharging the fish from the troughs in the transfer region Ü by guiding the troughs on a transport chain about a first deflection element such that the fish drop onto the second transport means during transition from a transport run to a return run of said transport chain, and transporting the fish away by means of the second transport means, characterized in that the troughs of the trough conveyor are guided at least in the transfer region Ü along a course differing from a course of the transport chain. 10. The method according to claim 9 , wherein the troughs in the transfer region Ü initially remain in a position substantially corresponding to a position which the troughs have during transport on the transport run, while the transport chain already follows a deflection around the first deflection element. 11. The method according to claim 9 , wherein the troughs in the transfer region Ü move on a different path of movement than the transport chain, in that the troughs follow their guide bodies guided in guide rails on a path of movement B F with a variable radius r F , while the transport chain follows a path of movement B T with a constant radius r T . 12. The method according to claim 9 , wherein the fish are fed into the transition region Ü by means of the trough conveyor which is designed and configured for transporting fish transversely to the longitudinal extent of the first transport means in the transport direction T M , comprising the transport chain which can be rotationally driven and is formed from chain links and has the transport run, which defines a transport plane E 1 , and the return run, wherein the transport chain is guided about at least two deflection elements, which can be rotated about a first axis of rotation D u , for driving and guiding the transport chain, and the transport chain has arranged thereon the troughs each intended to receive one fish, characterized in that each trough is arranged on the transport chain so as to be pivotable about a second axis of rotation D M extending transversely to the transport direction T M and comprises at least one guide body, and in that at least one guide rail for receiving the guide body and for guiding
Devices for transferring articles or materials between conveyors i.e. discharging or feeding devices (loading or unloading by means not incorporated in, or not operatively associated with, conveyors B65G65/00; transfer of workpieces during metal rolling B21B41/00) · CPC title
Attaching load carriers to traction elements · CPC title
having concave surfaces, e.g. buckets · CPC title
and move in contact with a guiding surface · CPC title
comprising a series of individual load-carriers fixed, or normally fixed, relative to traction element · CPC title
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