System and method for processing back halves of slaughtered poultry carcasses

The spine rotation device inverts the spine portion while minimizing pulling forces on the legs, reducing damage and enhancing leg meat quality and yield in poultry carcass processing.

JP7770404B2Active Publication Date: 2025-11-14MAREL STORK POULTRY PROCESSING
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Patent Information

Application Number
JP2023535343
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-12-18
Filing Date
2021-12-10
Publication Date
2025-11-14
Estimated Expiration
2041-12-10

AI Technical Summary

Technical Problem

Existing methods for processing poultry carcasses result in damage to leg meat and reduce leg yield due to high pulling forces during the rotation of the back portion, leading to suboptimal product quality.

Method used

A system and method involving a spine rotation device that inverts the spine portion while the legs remain free from tensile forces, using a receiving element to guide and rotate the spine, followed by a separating device to separate the legs from the inverted spine.

Benefits of technology

Reduces damage to leg meat and improves leg yield by minimizing pulling forces during the rotation process, resulting in higher quality leg meat.

✦ Generated by Eureka AI based on patent content.

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Abstract

A system and method are provided for processing back halves of slaughtered poultry carcasses, the back halves including a back portion and a leg, which are suspended and transported by a conveyor. The system includes a back rotation device having a stationary frame, a receiving element movably connected to the stationary frame and configured to receive at least a portion of the back portion and to be moved in a conveying direction with at least a portion of the back portion received in the receiving element during continued movement of the back halves to invert the back portion, and a separating device for separating the leg from the back portion while the back portion is inverted.
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Description

[Technical Field]

[0001] SYSTEM AND METHOD FOR PROCESSING THE BACKHALF OF A SLAUGHTERED POULTRY CARCASS FIELD OF THE INVENTION The backhalve is the portion of a slaughtered poultry carcass consisting of the back portion and the legs attached thereto. [Background technology]

[0002] WO 93 / 05660 A1 relates to a method and apparatus for separating legs from backs of poultry carcasses. The apparatus has an upright curved bar arranged to engage and prevent forward movement of the leading edge of the back portion of the carcass as the carcass moves along a processing path. As a result, the legs lift the trailing edge of the back and rotate the back past the stopped leading edge. The back is then separated from the legs.

[0003] US6,322,438B1 discloses a device similar in structure to that of WO93 / 05660A1, including a pair of deflector bars. While suspended from a shackle, the carcass' front back engages the deflector bars and rotates forward, bringing the tail over the back. The legs are then separated from the back.

[0004] A problem with the above cited device is that the product quality, especially of the legs, can be improved. A problem with the above mentioned device is that the leg meat can be damaged during processing. Also, the leg yield can be improved. Summary of the Invention

[0005] It is an object of the present invention to provide an improved system and method for processing back halves, in which one or more of the above-mentioned disadvantages are overcome or at least alleviated. Another object of the present invention is to provide a system and method for processing back halves that reduces damage to the leg meat. Yet another object of the present invention is to provide a system and method for processing back halves that increases leg yield.

[0006] One or more of the above objects are achieved by a system and method according to the present invention. In a first aspect of the present invention, there is provided a system for processing back halves of slaughtered poultry carcasses, the back halves comprising a back portion and legs connected thereto, the back halves being transported in a suspended manner in a conveyor in a conveying direction in use of the system with the legs hanging down from the conveyor, the system comprising: a spine rotation device having a stationary frame and a receiving element movably connected to the stationary frame, the receiving element configured to receive at least a portion of the spine portion therein and further configured to move in the conveying direction with at least a portion of the spine portion received in the receiving element during continuous movement of the back half in the conveying direction during use, and to invert the spine portion as a result of the movement of the receiving element; and a separating device arranged downstream of the spine rotating device in the conveying direction and configured to separate the legs from the spine portion when the spine portion is in an upside-down orientation.

[0007] The advantage of providing a back rotation device is that the turning is done in a more controlled way. The tension on the leg meat, or at least the force pulling on the leg, is reduced during the rotation of the back part, which reduces damage to the leg meat and improves the quality of the leg meat. Another advantage is that more meat reaches the leg from the crotch part after separation. This improves leg yield.

[0008] This is in contrast to the prior art devices and methods described above, where the rotation of the back portion results in undesirable high pulling forces on the leg and its muscles during the rotation process, causing damage to the leg meat.

[0009] In this manner, the system and method of the present invention allows the back portion to be inverted by applying a force directly to the back portion, while the legs remain free, or at least to a substantially greater extent free, from the tensile forces, i.e., pulling forces, resulting from the rotation of the back portion.

[0010] In one embodiment, the receiving element is configured to retain the spine portion therein by engaging with the spine portion at least on an outer (ie, skin) side of the spine portion and an opposite inner side of the spine portion.

[0011] In one embodiment, the receiving element has at least two elongated extension elements defining a receiving space therebetween for receiving at least a portion of the spine portion of the back halve in the receiving space. Each elongated extension element, in an embodiment, can preferably have one or more, preferably two, parallel fingers defining a width such that the receiving element can receive the spine portion having at least one-quarter of its width within the receiving space. Alternatively, each elongated extension element can be a single piece defining a width.

[0012] In one embodiment, the receiving element may be funnel-shaped at its free end, which allows easier and more reliable entrance of the spine portion in the receiving space. To this end, the system may comprise a feed conveyor upstream of the spine rotating device, which supports the spine portion of the back half on it while it is transported by the conveyor towards the spine rotating device.

[0013] During the rotation of the spine portion, the receiving element may be configured to move from an upstream position where the spine portion enters the receiving element, for example a position where it connects to a supply conveyor such that the spine portion is guided by the supply conveyor into the receiving element, to a downstream position where the inverted spine portion exits the receiving element and is further transported by the conveyor.

[0014] In one embodiment, the receiving element is configured to lift the spine portion during movement of the receiving element in the conveying direction. Lifting the spine portion during movement, and thus during the upside-down rotation of the spine portion, results in a slight loosening of the leg's suspension from the conveyor. In this case, the inversion further reduces or eliminates the pulling force on the leg. Lifting the spine portion also lifts the hip joint, allowing more freedom of movement of the meat near the hip joint. Therefore, lifting the receiving element during movement further contributes to reducing damage to the leg meat and thus improving the quality of the leg.

[0015] In one embodiment, the movement of the receiving element in the conveying direction includes at least a rotational movement, which results in the spine portion being turned upside down. A rotational movement is a very convenient movement for turning the spine portion upside down. A rotational movement in a vertical plane is very suitable for providing lifting during the rotational movement when an upper arc portion is used for the rotational movement.

[0016] In one embodiment, the receiving element is rotatably coupled to the frame about a rotation axis extending transverse to the conveying direction. In one embodiment, movement of the receiving element in the conveying direction comprises rotation in a vertical plane about the rotation axis. The rotation angle used for inversion may be in the range of 90 to 180 degrees, preferably in the range of 100 to 150 degrees. In one embodiment, since the poultry carcass moves through the back rotator at a level higher than the rotation axis during use, the upper arc portion of the rotation of the receiving element is used to rotate the back portion. The back rotator may be arranged to completely rotate the receiving element during use. That is, the receiving element may rotate fully about the rotation axis during use, in which case a portion of the full rotation is used to rotate the back. Alternatively, the back rotator may be arranged to rotate the receiving element forward and backward between an upstream position and a downstream position, for example, through an angle in the range of 100 to 150 degrees, for the purpose of rotating the back. Such forward and backward rotations through an angle are also referred to as forward and backward pivoting movements.

[0017] Alternatively, the movement may consist of a translational as well as a rotational movement, for example in a paternoster-like manner, and / or may consist of a rotational movement, for example about an axis of rotation extending in the conveying direction.

[0018] In one embodiment, the back rotation device comprises a plurality of receiving elements, each of which may be rotatable about the axis of rotation in an embodiment in which the receiving elements are rotatably connected to the frame about an axis of rotation, preferably transverse to the conveying direction.

[0019] In one embodiment, the plurality of receiving elements is two, three, or four, preferably three, receiving elements, each fixed to a central base portion defining the rotation axis and extending radially therefrom. The plurality of receiving elements is preferably regularly spaced on the base portion; i.e., if there are three such elements, they are spaced 120 degrees apart on the base portion. Providing such a plurality of receiving elements allows for increased conveying speeds and makes the back-turn device easier to operate. The central base portion may be comprised of the receiving elements.

[0020] In one embodiment, the receiving element is configured to move the spine portion in the conveying direction while received by the receiving element so that the upstream end of the spine portion moves in the conveying direction between and beyond the legs, or at least the hip joints thereof.

[0021] In one embodiment, the back rotator comprises a drive unit operably connected to the receiving element for moving the receiving element in the conveying direction. The drive unit may be an electric motor connected to a rotary shaft for providing the rotary motion, or may comprise, for example, a cam follower or a pneumatic actuator. The drive unit may be configured, for example, to move the receiving element at a constant speed. Alternatively, the drive unit may be configured to adapt the movement speed of the receiving element during use, for example, based on a feedback signal, such as a current, a force-related signal, or a position-related signal. The drive unit may also be configured to adapt the timing of the movement of the receiving element during use, such as the timing of the movement depending on the movement of the conveyor in the conveying direction. In the case of an embodiment of the back rotator having a single receiving element, the drive unit may be configured to provide the mentioned rotational movement forward and backward in the conveying direction.

[0022] In one embodiment, the system further comprises a stationary guide for retaining at least a portion of the back portion of the back halve within the receiving element during rotation of the back portion by the back rotation device, thereby improving the reliability of the rotation operation.

[0023] In one embodiment, the system further comprises a cutting device upstream of the dorsal rotation device for severing connections that may include tendons and / or cartilage at least near the hip joint, thereby facilitating subsequent inversion of the dorsal portion.

[0024] In one embodiment, the separating device includes a separating conveyor that supports the spine portion in an inverted orientation downstream of the spine rotating device. The separating conveyor may be configured to move at a speed different from the speed of the conveyor so that the spine portion is pulled away from the leg to separate the leg from the spine portion, and / or may be configured to move away from the conveyor so that the spine portion is pulled away from the leg to separate the leg from the spine portion. Alternatively or additionally, the system may include a leg cutting device along the separating conveyor for separating the spine portion from the leg. An additional fixed guide may extend along and above the separating conveyor to help maintain the spine portion in an upside-down position during transport by the separating conveyor. The additional guide may further help peel the spine portion from the leg during movement of the separating conveyor, in a direction away from the conveyor that is the means of its transport path.

[0025] Corresponding embodiments are also applicable to the below described method according to the second aspect of the invention. A system according to the first aspect of the invention may be arranged to carry out a method according to the second aspect of the invention.

[0026] In a second aspect, the present invention provides a method of processing a back halve of a slaughtered poultry carcass, the back halve comprising a dorsal portion and a leg connected thereto, the method comprising: -Transporting the back halves suspended in the conveyor in the direction of transport, with the legs hanging down from the conveyor; - receiving at least a part of the spine portion in a receiving element of the spine rotating device, the receiving element being movably connected to a fixed frame of the spine rotating device; - during the continuous movement of the bag halves in the conveying direction, moving the receiving element in the conveying direction, thereby rotating the bag halves upside down while at least a portion of the bag halves is received in the receiving element; and - separating the legs from the back portion while the back portion is in an upside down position.

[0027] In one embodiment, the system according to the first aspect is used in the method according to the second aspect.

[0028] In one embodiment, due to the pivoting step, the spine portion is lifted during the movement of the receiving element in the conveying direction and is therefore lifted during the pivoting of the spine portion.

[0029] In one embodiment, the movement of the receiving element in the conveying direction comprises at least a rotational movement, which rotational movement results in the spine portion being turned upside down.

[0030] In one embodiment, the receiving element is rotatably connected to the frame about a rotation axis transverse to the conveying direction, and in order to turn the spine part upside down, the receiving element rotates in a vertical plane about the rotation axis.

[0031] In one embodiment, with at least a portion of the spine portion received in the receiving element, the upstream end of the spine portion is moved in the conveying direction between and beyond the legs, or at least the hip joints thereof, while the receiving element moves in the conveying direction.

[0032] Corresponding embodiments are also applicable to the above-described system according to the first aspect of the invention.The advantages of the method according to the invention are similar to those of the system according to the invention described above.

[0033] Generally, the present invention relates to a system and method for processing back portions of slaughtered poultry carcasses, the back portion including a back portion and a leg, which are suspendedly transported by a conveyor. The system includes a back rotation device having a stationary frame, a receiving element movably connected to the stationary frame and configured to receive at least a portion of the back portion and move in a conveying direction while receiving at least a portion of the back portion during continued movement of the back half to invert the back portion, and a separating device for separating the leg from the back portion while the back portion is inverted. [Brief explanation of the drawings]

[0034] The invention will now be described with reference to the accompanying schematic drawings in which embodiments of the invention are shown below and in which like reference numbers indicate the same or similar elements.

[0035] [Figure 1] 1 is a front view of one embodiment of a system for processing back halves of slaughtered poultry carcasses in accordance with the present invention; FIG. [Figure 2] FIG. 2 is a cross-sectional view taken along the line II-II in FIG. DETAILED DESCRIPTION OF THE INVENTION

[0036] Figure 1 shows a system 1 for processing back halves 2 of slaughtered poultry carcasses. The back halves 2 consist of a back portion 3 and legs 4 connected thereto. In use, the back halves 2 are continuously conveyed in a conveying direction 8 by a conveyor 6 with the legs 4 suspended from the conveyor 6, more particularly with each leg 4 suspended from a carrier 10 of the conveyor 6.

[0037] The system 1 comprises a spine rotator 12 having a fixed frame 14 (shown very diagrammatically in FIG. 2 ) and a receiving element 16 movably coupled to the frame 14. The movement of the receiving element 16 in the conveying direction 8 includes at least a rotational movement, which results in the spine portion 3 being inverted. More specifically, in this embodiment, the spine rotator 12 includes three such receiving elements 16, each rotatably coupled to the frame 14 about a rotation axis 18 transverse to the conveying direction 8, such that the movement of the receiving elements 16 in the conveying direction includes rotation in a vertical plane about the rotation axis 18. Each of the three receiving elements 16 is fixed to and extends radially from a central base 19, which defines the rotation axis 18 with its central axis. As FIG. 1 shows, the three receiving elements 16 are spaced 120 degrees apart from each other relative to the rotation axis 18. During use, the back halves 2 move beyond the spine rotator 12 at a level higher than the rotation axis 18. This means that during the upper arc of the receiving element's rotation, the receiving element 16 can receive the spine 3 and move in the conveying direction from the upstream position to the downstream position. During the rotation of the receiving element 16 and as the receiving element moves along its arc, the spine 3 is temporarily lifted by the receiving element. This slightly loosens the leg's suspension from the conveyor 6, further reducing or eliminating the pulling force on the leg 4. As shown, when one receiving element is in the upstream position, another receiving element is in the downstream position. Thus, when one spine enters the receiving space of the first-mentioned receiving element, the inverted spine of the directly downstream back half can exit the last-mentioned receiving element. The lower arc, i.e., the lower part of the axis 18, is used to rotate the receiving element in the conveying direction, i.e., from the downstream position back to the upstream position.

[0038] Each receiving element 16 is configured to receive at least a portion of the spine portion 3 of the back halves 2 therein and is further configured to move in the conveying direction 8 with at least a portion of the spine portion received in the receiving element 16 during continuous movement of the back halves 2 in the conveying direction 8 during use, thereby inverting the spine portion 3 as a result of the movement of the receiving element 16. For this purpose, the receiving element 16 has two elongated extension elements 20, 22 that define a receiving space 24 therebetween for receiving at least a portion of the spine portion 3 of the back halves 2 in the receiving space 24. As shown in the combination of FIGS. 1 and 2, each extension element 20 or 22 has two fingers arranged side by side, i.e., laterally. Alternatively, two pairs of elongated extension elements can be provided, defining a receiving space between the pairs. As shown in FIG. 1, most of one spine portion 3 is just received in the receiving space 24 and thereby received by the receiving element, which can be considered to be in an upstream position. This means that the orientation of the spine portion 3 relative to the receiving element 16 is at least substantially fixed while it is in the receiving element 16 .

[0039] The back rotator 12 has a drive unit 28 operatively connected to the receiving element 16 for moving the receiving element 16 in the conveying direction, i.e., for rotating the receiving element 16 about an axis 18 in the rotation direction 13. The axis 18 is the central axis of a drive shaft connected to the drive unit 28. As a result of the rotation of the receiving element 16, the receiving element 16 receives the back portion 3 supplied to the back rotator by the conveyor 6, and as a result of the rotation in the direction 13, the receiving element 16 moves together with the back halves 2, thereby temporarily lifting and rotating the back portion 3 upside down, after which the back portion can again be released from the receiving element as a result of continued movement in the conveying direction 8. In FIG. 1 , one back halves 2 is shown immediately to the left of the back rotator 12, with its back portion 3 upside down. Each receiving element 16 is configured to move in the conveying direction 8 with the back portion 3 received by the receiving element 16 so that the upstream end 3a of the back portion 3 passes between the legs 4, or at least the hip joints 26, and moves in the conveying direction 8.

[0040] The system further includes a guide 30 for retaining at least a portion of the back portion 3 of the poultry carcass 2 within the receiving element 16 during rotation of the back portion 3 by the back rotator 12. That is, the guide 30 effectively prevents the back portion 3 from prematurely detaching from the receiving element for any reason. The system 1 also includes a cutting device 32 (shown very diagrammatically) provided upstream of the back rotator 12 for severing the joint, which may include tendons and / or cartilage, at or at least in the vicinity of the hip joint 26. The cutting device 32 is provided directly above the supply conveyor 38.

[0041] During transport away from the spine rotator 12, the spine 3 in its upside-down position is supported by a separating conveyor 34 of a separating device 40 located downstream of the spine rotator 12 in the transport direction 8. As shown in FIG. 1, the conveyor 34 bends downward while the conveyor 6 continues its horizontal movement. Furthermore, the conveyor 34 may run at a speed slower or faster than the conveyor 6. The path of the conveyor 34 follows a guide 36, receiving the spine 3 between the conveyor 34 and the guide, thereby separating the legs 4 from the spine 3 in its upside-down position. This is shown for the leftmost back half 2, or at least for the spine 3 separated from the legs 4 of the back half 2. The separating conveyor 34 for separating the legs 4 from the spine 3 is therefore configured to move away from the conveyor 6.

[0042] As is already clear from the above description of the embodiment of the system according to the present invention, the method for processing the back halves of slaughtered poultry carcasses using such a system 1 comprises the steps of: - conveying the back halves 2 suspended in a conveying direction 8 by the conveyor 6 with the legs 4 suspended from the conveyor 6; receiving at least a portion of the spine portion 3 in a receiving element 16 of the spine rotation device 12, the receiving element 16 being movably connected to a fixed frame 14 of the spine rotation device 12; - during the continued movement of the poultry carcass in the conveying direction 8, while at least a part of the back portion 3 is received in the receiving element 16, turning the back portion 3 upside down by moving the receiving element 16 in the conveying direction 8, this movement consisting of a rotational movement; and - separating the legs 4 from the back portion 3 while the back portion 3 is in an upside down position.

[0043] For the rotating step, the spine portion 3 may be lifted during the movement of the receiving element 16 in the conveying direction 8 .

[0044] Other variations to the disclosed embodiments can be understood and effected by those skilled in the art in practicing the claimed invention, from a study of the drawings, the disclosure, and the appended claims. The foregoing description provides embodiments of the invention by way of example only. The scope of the invention is defined by the appended claims. One or more objects of the invention are achieved by the appended claims.

Claims

1. A system for processing back halves of slaughtered poultry carcasses, the back halves including a back portion and legs connected thereto, the back halves being conveyed in a conveying direction by a conveyor in a suspended state with the legs hanging down from the conveyor when the system is in use, a spine rotation device having a stationary frame and a receiving element movably connected to the stationary frame, the receiving element being configured to receive at least a portion of the spine portion therein and configured to move in the conveying direction with at least a portion of the spine portion received in the receiving element during continuous movement of the back half in the conveying direction during use, and to invert the spine portion as a result of the movement of the receiving element; and a separating device, which is provided downstream of the spine rotating device in the conveying direction and which is adapted to separate the legs from the spine part when the spine part is in an upside-down position; A system including:

2. 10. The system of claim 1, wherein the receiving element comprises at least two elongated extension elements defining a receiving space therebetween for receiving at least a portion of the spine portion of the back halve within the receiving space.

3. 3. The system according to claim 1 or 2, wherein the receiving element is configured to lift the spine portion during movement of the receiving element in the conveying direction.

4. The system according to any one of claims 1 to 3, wherein the movement of the receiving element in the conveying direction includes at least a rotational movement, and the rotational movement results in the spine portion being turned upside down.

5. 5. The system of claim 4, wherein the receiving element is rotatably connected to the frame about an axis of rotation transverse to the conveying direction, and movement of the receiving element in the conveying direction comprises rotation in a plane perpendicular to the axis of rotation.

6. The system of claim 5 , wherein the rotation device includes a plurality of receiving elements, each of which is rotatable about an axis of rotation.

7. 7. The system of claim 6, wherein the plurality of receiving elements is two, three or four, preferably three, receiving elements, each receiving element being fixed to and extending radially from a central base portion defining an axis of rotation.

8. The system according to any one of claims 1 to 7, wherein the receiving element is configured to move in the conveying direction together with the back portion received in the receiving element, and an upstream end of the back portion moves in the conveying direction between and beyond the legs or at least the hip joints thereof.

9. The system according to any one of claims 1 to 8, wherein the rotating device comprises a drive operatively connected to the receiving element for moving the receiving element in the conveying direction.

10. The system according to any one of claims 1 to 9, further comprising a stationary guide for holding at least a portion of the back portion of the back half within the receiving element during rotation of the back portion by the back rotation device.

11. The system of any one of claims 1 to 10, further comprising a cutting device upstream of the dorsal rotation device for cutting the joint at or at least near the hip joint.

12. 12. A system according to any one of claims 1 to 11, wherein the separating device comprises a separating conveyor for supporting the spine portion in an upside-down orientation downstream of the spine rotating device, the separating conveyor being configured to move at a speed different from the speed of the conveyor and / or configured to move away from the conveyor for the purpose of separating the legs from the spine portion, and / or the system comprising a leg cutting device along the separating conveyor.

13. 1. A method for processing back halves of a slaughtered poultry carcass, the back halves including a back portion and legs connected thereto, the method comprising: - conveying the back halves suspended in the conveying direction by a conveyor, with the legs hanging down from the conveyor; - receiving at least a part of the spine portion in a receiving element of the spine rotating device, the receiving element being movably connected to a fixed frame of the spine rotating device; - during the continuous movement of the bag halves in the conveying direction, moving the receiving element in the conveying direction, thereby rotating the bag halves upside down while at least a part of the bag halves is received in the receiving element; and - separating the legs from the back portion while the back portion is inverted; A method comprising:

14. A method according to claim 13, wherein a system according to any one of claims 1 to 12 is used.

15. 15. The method according to claim 13 or 14, wherein for the rotating step the spine portion is raised during the movement of the receiving element in the conveying direction.

16. 16. The method according to claim 13, 14 or 15, wherein the movement of the receiving element in the conveying direction comprises at least a rotational movement, the rotational movement resulting in the spine portion being inverted.

17. 17. The method according to claim 16, wherein the receiving element is rotatably connected to the frame about a rotation axis transverse to the conveying direction, and in order to turn the spine portion upside down, the receiving element is rotated in a vertical plane about the rotation axis.

18. The method according to any one of claims 13 to 17, wherein the upstream end of the back portion is moved in the conveying direction between and beyond the legs or at least the hip joints thereof while the receiving element moves in the conveying direction with at least a part of the back portion received in the receiving element.

Citation Information

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