Transfer device for fat beef processing
By designing a transport device for Feicao processing, and using the combination of packaging bags and insulation boxes, the problems of Feicao bricks are solved in the transport process, and the effect of reducing pollution risks and protecting food safety is achieved.
Patent Information
- Application Number
- CN202510640493.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2045-05-19
AI Technical Summary
During the transport of fat cattle bricks, the prior art is difficult to effectively prevent the fat cattle bricks from being contaminated, and the frozen fat cattle bricks have a high risk of thawing and spoiling during the transport process.
A transport device for processing of fat cattle is designed, which includes a mobile rack, an insulation box and a disassembly and assembly structure. By setting up packaging bags on the outer periphery of the Fei Niu brick and using the tear-pull assembly to separate the tear-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-pull-
It effectively reduces the pollution risk of fat cattle bricks during transportation, and protects fat cattle bricks through low-temperature environment to avoid thawing and spoilage, and improves food safety.
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Figure CN120156784A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of food processing equipment, and particularly relates to a transfer device for processing fat beef. Background Art
[0002] During the production process of fat beef rolls, it is necessary to perform acidification and tenderization treatment on beef, and trim the beef into a specific shape. Subsequently, the fat beef is placed in a cold storage for freezing to form fat beef bricks, which are stored in the cold storage. When it is necessary to produce fat beef rolls, workers can use transfer devices such as trolleys and insulated boxes to transport the frozen fat beef bricks to the slicing device for processing.
[0003] However, when using the above-mentioned existing transfer device to transport fat beef bricks, workers need to take the fat beef bricks multiple times, increasing the risk of contamination of the fat beef bricks. Summary of the Invention
[0004] In order to facilitate workers to take the fat beef bricks, this application provides a transfer device for processing fat beef.
[0005] A transfer device for processing fat beef provided by this application adopts the following technical solutions: A transfer device for processing fat beef includes a mobile rack, an insulated box body, and a disassembly and assembly structure. The insulated box body and the disassembly and assembly structure are arranged on the mobile rack; a storage chamber for accommodating fat beef bricks is provided inside the insulated box body. A packaging bag is arranged on the outer periphery of the fat beef bricks. The packaging bag includes a first bag surface and a second bag surface that are oppositely arranged. The first bag surface and the second bag surface enclose a main bag body. The main bag body is provided with an accommodation chamber for accommodating the fat beef bricks. The first bag surface is provided with a tear strip, and the tear strip is used to separate the main bag body; the disassembly and assembly structure includes a disassembly and assembly rack and a tearing component. The disassembly and assembly rack is provided with a workbench for placing the fat beef bricks. The tearing component is arranged on the disassembly and assembly rack, and the tearing component is used to pull the tear strip to separate the first bag surface from the second bag surface, and the first bag surface covers the fat beef bricks.
[0006] By adopting the above technical solutions, a packaging bag is arranged on the outer periphery of the fat beef bricks, thereby separating the fat beef bricks from the external environment and reducing the risk of contamination of the fat beef bricks; and the fat beef bricks are arranged in the insulated box body, so that the fat beef bricks can be transported in a low-temperature environment, reducing the risk of thawing and deterioration of the fat beef bricks; when the fat beef bricks need to be placed on the slicing device for slicing treatment, the tearing component is used to pull the tear strip to separate the main bag body, that is, the first bag surface is separated from the second bag surface. The fat beef bricks are arranged in the first bag surface. Workers can hold the first bag surface on the outer periphery of the fat beef bricks to transfer the fat beef bricks into the slicing device, and then take away the first bag surface.
[0007] In summary, through the improvement of the existing packaging bags and transfer devices for fat beef bricks, during the process of transferring fat beef bricks from the cold storage to the slicing device, the fat beef bricks are separated from the external environment, and the hands of the staff do not directly contact the fat beef bricks, thereby reducing the risk of contamination of the fat beef bricks and improving the food safety.
[0008] Optionally, there are two tear tapes, and the two tear tapes are symmetrically arranged along the central axis of the fat beef brick; there are two tearing components, and the two tearing components are symmetrically arranged on the disassembly and assembly frame. The fat beef brick is arranged between the two tearing components, and the tearing components correspond to the tear tapes one by one; each tearing component includes a tearing motor and a tearing winding roller, and the tearing winding roller is arranged on the driving end of the tearing motor, and the tearing winding roller winds the tear tape to separate the main bag body.
[0009] By adopting the above technical solution, two symmetrically arranged tearing components are used to wind two tear tapes to separate the tear tapes from the main body of the packaging bag, which is convenient for the staff to operate.
[0010] Optionally, the packaging bag has a plurality of main bag bodies, and the plurality of main bag bodies are arranged at intervals. A plurality of fat beef bricks are arranged side by side in the accommodating chamber; a communication hole is opened on one side of the heat preservation box body close to the disassembly and assembly structure, and the communication hole is used for the fat beef brick to pass through. An activity door assembly is arranged on the outer periphery of the heat preservation box body, and the activity door assembly is used to block the communication hole; the surface of the workbench is flush with the hole side wall at the bottom of the communication hole. The disassembly and assembly structure further includes a traction assembly, and the traction assembly is arranged on the disassembly and assembly frame and between the two tearing components. The traction assembly includes a traction motor and a traction winding roller. The traction motor drives the traction winding roller to rotate, and the winding roller is used to wind the packaging bag to pull the fat beef brick from the storage chamber to the workbench.
[0011] By adopting the above technical solution, through the coordinated cooperation of the traction assembly and the activity door assembly, the disassembly and assembly structure can continuously remove the packaging bags around the fat beef bricks, improving the disassembly and assembly efficiency of the packaging bags of the fat beef bricks.
[0012] Optionally, the activity door assembly includes a turning plate, a sealing ring and a reset member; the upper edge of the turning plate is rotatably connected to the heat preservation box body, the sealing ring is arranged on the side of the turning plate close to the heat preservation box body, and the sealing ring surrounds the outer periphery of the turning plate. The sealing ring is used to abut against the heat preservation box body. One end of the reset member is arranged on the turning plate, and the other end of the reset member is arranged on the heat preservation box body. The reset member forces the turning plate to approach the heat preservation box body.
[0013] By adopting the above technical solution, when the traction assembly pulls the packaging bag, the fat beef bricks in the main bag body abut against the turning plate; when the fat beef bricks continue to move, the fat beef bricks force the turning plate to rotate so that the fat beef bricks pass through the communication hole of the heat preservation box body. When the fat beef bricks move onto the workbench, under the action of the resetting member, the turning plate rotates towards the direction of the heat preservation box body, and the sealing ring on the turning plate abuts against the heat preservation box body; so that the turning plate covers the communication hole on the heat preservation box body again, reducing the leakage of cold air in the heat preservation box body and improving the heat preservation effect of the heat preservation box body.
[0014] At this time, the connecting part of the packaging bag is arranged between the turning plate and the workbench; so that the traction assembly can pull the next fat beef brick to pass through the communication hole.
[0015] Optionally, it further includes a lifting assembly. The lifting assembly is arranged in the storage chamber of the heat preservation box body. The top of the lifting assembly is provided with a lifting working plate for supporting the fat beef bricks; when there are multiple layers of fat beef bricks arranged vertically, the lifting assembly moves the upper-layer fat beef bricks to the communication hole.
[0016] By adopting the above technical solution, when there are multiple layers of fat beef bricks arranged vertically, the lifting assembly moves the upper-layer fat beef bricks to the communication hole; so as to improve the accommodation capacity of the heat preservation box body.
[0017] Optionally, the tearing assembly further includes a tearing sleeve. The tearing sleeve is sleeved on the tearing winding roller. The side surface of the tearing winding roller is provided with a limiting convex strip, and the inner peripheral wall of the tearing sleeve is provided with a limiting groove. The limiting convex strip is inserted into the limiting groove; the tearing sleeve is used to fix the easy-tearing tape to wind the easy-tearing tape.
[0018] By adopting the above technical solution, by sleeving the tearing sleeve on the outer periphery of the tearing winding roller, the staff can fix the easy-tearing tape on the tearing sleeve with adhesive tape, so that the easy-tearing tape is wound on the tearing sleeve; and the tearing sleeve is detachably connected to the tearing winding roller, so that it is convenient for the staff to take the easy-tearing tape away from the tearing assembly.
[0019] Optionally, the tearing sleeve is a flexible sleeve. After the tearing sleeve is folded inwards, the tearing sleeve is separated from the easy-tearing tape.
[0020] By adopting the above technical solution, the tearing sleeve is a flexible sleeve. Thus, when the staff removes the tearing sleeve from the tearing winding roller, the staff can fold the tearing sleeve inwards to separate the tearing sleeve from the easy-tearing tape. The tearing sleeve can be reused, reducing the cost.
[0021] Optionally, the disassembly and assembly structure further includes a guide wheel. The guide wheel is fixedly arranged on the disassembly and assembly frame and is used to guide the easy-tearing tape to move towards the tearing winding roller.
[0022] By adopting the above technical solution, the tear tape is guided by the guide wheel to move, so as to facilitate the winding of the tear tape by the tearing component and improve the collection effect of the tearing component.
[0023] Optionally, the disassembly and assembly structure further includes a water receiving tank body, which is arranged on the disassembly and assembly frame, directly below the traction component, and is used for receiving the blood dripping from the traction winding roller.
[0024] By adopting the above technical solution, when the pulling component winds the packaging bag, the residual ice scum on the packaging bag will melt; by arranging a water receiving tank body at the bottom of the pulling component to collect the blood dripping from the packaging bag, the cleanliness of the transfer device can be improved and the food safety can be enhanced.
[0025] Optionally, a partition board is arranged inside the heat preservation box body, and a plurality of ventilation holes are arranged on the partition board. The partition board divides the inside of the heat preservation box body into a first storage chamber and a second storage chamber. The first storage chamber is used for accommodating fat beef bricks, and the second storage chamber is used for accommodating a cold storage member, which is used for absorbing the heat of the surrounding environment.
[0026] By adopting the above technical solution, the first storage chamber and the second storage chamber are separated in the heat preservation box body by the partition board, and the cold storage member is used for absorbing the heat in the heat preservation box body, which is beneficial to the preservation of the fat beef bricks.
[0027] In summary, the present application includes at least one of the following beneficial technical effects: Through the improvement of the existing packaging bag and transfer device of the fat beef bricks, during the process of transferring the fat beef bricks from the cold storage to the slicing device, the fat beef bricks are separated from the external environment, and the hands of the staff do not directly contact the fat beef bricks, thereby reducing the risk of contamination of the fat beef bricks and improving the food safety; By setting the coordinated cooperation of the traction component and the movable door component, the disassembly and assembly structure can continuously remove the packaging bag around the fat beef bricks, improving the disassembly and assembly efficiency of the packaging bag of the fat beef bricks; By sleeving a tearing sleeve on the outer circumference of the tearing winding roller, the staff can fix the tear tape on the tearing sleeve with adhesive tape, so that the tear tape is wound on the tearing sleeve; and the tearing sleeve is detachably connected to the tearing winding roller, which is convenient for the staff to take the tear tape away from the tearing component. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a schematic diagram showing the packaging structure of the fat beef bricks in this embodiment.
[0029] Figure 2It is a schematic diagram showing the packaging structure of the fat beef bricks in this embodiment.
[0030] Figure 3 It is a cross-sectional view showing the packaging structure of the fat beef bricks in this embodiment.
[0031] Figure 4 It is a schematic diagram showing the working principle of the packaging structure of the fat beef bricks in this embodiment.
[0032] Figure 5 It is a schematic diagram showing the structure of the transfer device in this embodiment.
[0033] Figure 6 It is a schematic diagram showing the internal structure of the insulation box in this embodiment.
[0034] Figure 7 It is a cross-sectional view showing the internal structure of the transfer device in this embodiment.
[0035] Figure 8 It is Figure 7 an enlarged view of part A in
[0036] Figure 9 It is Figure 5 an enlarged view of part B in
[0037] Figure 10 It is Figure 7 an enlarged view of part C in
[0038] Figure 11 It is Figure 10 an enlarged view of part D in
[0039] Description of reference numerals: 11, fat beef bricks; 12, carton; 2, packaging bag; 21, main bag body; 211, accommodation chamber; 22, connecting portion; 23, first bag surface; 231, first outer film; 232, first inner film; 233, accommodation groove body; 234, tear strip; 2341, straight segment; 2342, annular segment; 235, first connecting portion; 236, through groove; 24, second bag surface; 241, second outer film; 242, second inner film; 3, mobile rack; 31, rack body; 311, installation platform; 32, universal wheel; 4, heat preservation box body; 41, partition board; 411, ventilation hole; 42, first storage chamber; 43, second storage chamber; 44, communication hole; 5, disassembly and assembly structure; 51, disassembly and assembly rack; 511, workbench; 52, traction assembly; 521, traction motor; 522, traction winding roller; 53, tearing assembly; 531, tearing motor; 532, tearing winding roller; 5321, limiting rib; 533, tearing sleeve; 5331, limiting groove; 534, guide wheel; 54, water receiving groove body; 55, trash can; 6, movable door assembly; 61, turning plate; 62, sealing ring; 63, reset member; 64, handle; 7, lifting assembly; 71, lifting working plate. Detailed implementation manners
[0040] The following further elaborates on this application with reference to Figure 1 -11.
[0041] The embodiment of this application discloses a transfer device for fat beef processing.
[0042] The transfer device of this application is used to transfer the frozen fat beef bricks 11, so as to transport the fat beef bricks 11 to a slicing device for processing, thereby processing the fat beef bricks 11 into sliced fat beef rolls. In order to reduce the risk of contamination of the fat beef bricks 11 during the transfer process, this application has made new designs for both the packaging form of the fat beef bricks 11 and the transfer device to solve the above technical problems. To facilitate technicians' understanding of the transfer device of this application, this embodiment first further introduces the new packaging form of the fat beef bricks 11.
[0043] Referring to Figure 1 and Figure 2 , a packaging bag 2 is provided on the outer periphery of the fat beef bricks 11. The packaging bag 2 is a continuous strip structure. The packaging bag 2 includes a plurality of alternately arranged main bag bodies 21 and connecting portions 22. The main bag body 21 is provided with an accommodation chamber 211 for accommodating the fat beef bricks 11. A plurality of fat beef bricks 11 are arranged side by side in the accommodation chamber 211 of the packaging bag 2. The connecting portion 22 is a flat strip structure. Thus, a plurality of fat beef bricks 11 can be stacked in the carton 12 and stored in a cold storage.
[0044] Referring to Figure 2 and Figure 3, in this embodiment, the packaging bag 2 includes a first bag surface 23 and a second bag surface 24 which are oppositely arranged. The first bag surface 23 is disposed on the second bag surface 24, and the first bag surface 23 and the second bag surface 24 are fixed by hot pressing.
[0045] Referring to Figure 2 and Figure 3 , the first bag surface 23 includes a receiving groove 233, a tear strip 234 and a first connecting portion 235. The receiving groove 233 is connected to the second connecting portion 22 through the tear strip 234, and the second connecting portion 22 is fixed to the second bag surface 24 by hot pressing. The receiving groove 233 and the second bag surface 24 enclose a receiving chamber 211 for receiving the beef brick 11.
[0046] Referring to Figure 2 and Figure 3 , two tear strips 234 are symmetrically provided on the first bag surface 23, and the two tear strips 234 are symmetrically arranged along the central axis of the length direction of the packaging bag 2. The tear strip 234 includes a straight segment 2341 and an annular segment 2342; the annular segments 2342 of the two tear strips 234 are arranged around the main bag body 21, and the annular segment 2342 of the tear strip 234 is arranged at the notch of the receiving groove 233; so that the receiving groove 233, the tear strip 234 and the second bag surface 24 enclose the main bag body 21 of the packaging bag 2. The straight segment 2341 of the tear strip 234 is arranged on the connecting portion 22 of the packaging bag 2, and the straight segment 2341 of the tear strip 234 is weakly connected to the second bag surface 24 to facilitate the separation of the tear strip 234 from the second bag surface 24.
[0047] Referring to Figure 2 and Figure 3 , when the tear strip 234 is subjected to an external force, the annular segment 2342 of the tear strip 234 is separated from the receiving groove 233 and the first connecting portion 235 to separate the receiving groove 233 of the first bag surface 23 from the first connecting portion 235. Subsequently, the straight segment 2341 of the tear strip 234 is separated from the second bag surface 24. That is, by pulling the tear strip 234, multiple main bag bodies 21 can be separated in sequence.
[0048] Referring to Figure 2 and Figure 3 , the first bag surface 23 includes a first outer film 231 and a first inner film 232, and the second bag surface 24 includes a second outer film 241 and a second inner film 242; the first inner film 232 and the second inner film 242 are in direct contact with the beef brick 11. The first outer film 231 and the second outer film 241 are made of materials with high strength, wear resistance and tear resistance; so that the first outer film 231 and the second outer film 241 have greater strength.
[0049] In this embodiment, along the width direction of the tear strip 234, continuous through grooves 236 are provided on the first outer film 231 on both sides of the tear strip 234; that is, the tear strip 234 is only connected to the receiving groove body 233 and the first connecting portion 235 through the first inner film 232; when an external force acts on the first outer film 231 of the tear strip 234, the first outer film 231 of the tear strip 234 will pull the first inner film 232, causing the first inner film 232 of the tear strip 234 to separate from the first inner film 232 of the receiving groove body 233 and the first inner film 232 of the first connecting portion 235; that is, the tear strip 234 is separated from the receiving groove body 233 and the first connecting portion 235.
[0050] Referring to Figure 4 , when an external force acts on the tear strip 234, the tear strip 234 is separated from the receiving groove body 233 and the first connecting portion 235 to separate the receiving groove body 233 of the first bag surface 23; at this time, the receiving groove body 233 of the first bag surface 23 wraps the beef brick 11. At this time, the staff can hold the receiving groove body 233 of the first bag surface 23 and transfer the beef brick 11 to the slicing device to process the beef brick 11 into sliced beef rolls.
[0051] In summary: Through the improvement of the existing packaging bag 2 of the beef brick 11, during the process of transferring the beef brick 11 from the cold storage to the slicing device; the packaging bag 2 separates the beef brick 11 from the external environment. When transferring the beef brick 11 to the slicing device, the staff separates the main bag body 21 through the tear strip 234, and the staff can hold the receiving groove body 233 outside the beef brick 11 to transfer the beef brick 11; that is, the staff's hands do not directly contact the beef brick 11, thereby reducing the risk of contamination of the beef brick 11 and improving the food safety.
[0052] Referring to Figure 5 , the transfer device for beef processing includes a mobile rack 3, a heat preservation box body 4 and a disassembly and assembly structure 5, and the heat preservation box body 4 and the disassembly and assembly structure 5 are arranged on the mobile rack 3.
[0053] Referring to Figure 5 , the mobile rack 3 includes a rack body 31 and universal wheels 32. A plurality of universal wheels 32 are provided, and the plurality of universal wheels 32 are fixed to the bottom of the rack body 31; so as to facilitate the staff to push the transfer device. A horizontal installation platform 311 is provided on the rack body 31, and the heat preservation box body 4 and the disassembly and assembly structure 5 are arranged on the installation platform 311, and the disassembly and assembly structure 5 is arranged in a fitting manner with the outer peripheral surface of the heat preservation box body 4.
[0054] Referring to Figure 6, the heat preservation box body 4 is made of heat-insulating materials, so that the heat preservation box body 4 has good heat preservation and heat insulation performance. Inside the heat preservation box body 4, there are two partition plates 41. The two partition plates 41 are arranged at intervals, and there are several ventilation holes 411 on the partition plates 41; thus, a first storage chamber 42 and two second storage chambers 43 are divided inside the heat preservation box body 4, and the two storage chambers are arranged on both sides of the first storage chamber 42. The first storage chamber 42 is used to accommodate the fat beef bricks 11; the second storage chamber 43 is used to accommodate the cold storage objects, and the cold storage objects can be items such as ice bags and cold storage boxes, so that the internal space of the heat preservation box body 4 is maintained in a low-temperature environment, reducing the risk of thawing of the fat beef bricks 11.
[0055] Refer to Figure 6 and Figure 7 , on one side of the heat preservation box body 4 close to the disassembly and assembly structure 5, a communication hole 44 is opened. The communication hole 44 is used for the fat beef bricks 11 to pass through. An activity door assembly 6 is arranged on the outer periphery of the heat preservation box body 4, and the activity door assembly 6 is used to block the communication hole 44.
[0056] Refer to Figure 7 and Figure 8 , the activity door assembly 6 includes a flip plate 61, a sealing ring 62, a reset member 63 and a handle 64. The upper edge of the flip plate 61 is rotatably connected to the heat preservation box body 4. The sealing ring 62 is arranged on the side of the flip plate 61 close to the heat preservation box body 4. The sealing ring 62 is arranged around the outer periphery of the flip plate 61, and the sealing ring 62 is used to abut against the heat preservation box body 4. One end of the reset member 63 is arranged on the flip plate 61, and the other end of the reset member 63 is arranged on the heat preservation box body 4. The reset member 63 forces the flip plate 61 to be close to the heat preservation box body 4. The handle 64 is fixedly arranged on the side of the flip plate 61 away from the heat preservation box body 4, so as to facilitate the staff to open the flip plate 61. In this embodiment, the reset member 63 is a reset torsion spring.
[0057] When an external force pulls the packaging bag 2, the fat beef bricks 11 in the main bag body 21 abut against the flip plate 61; when the fat beef bricks 11 continue to move, the fat beef bricks 11 force the flip plate 61 to rotate, so that the fat beef bricks 11 pass through the communication hole 44 of the heat preservation box body 4. After the fat beef bricks 11 pass through the communication hole 44, under the action of the reset member 63, the flip plate 61 rotates towards the direction of the heat preservation box body 4, and the sealing ring 62 on the flip plate 61 abuts against the heat preservation box body 4; so that the flip plate 61 covers the communication hole 44 on the heat preservation box body 4 again, reducing the leakage of cold air inside the heat preservation box body 4 and improving the heat preservation effect of the heat preservation box body 4. At this time, the connecting part 22 of the packaging bag 2 is arranged between the flip plate 61 and the workbench 511; so that an external force can pull the next fat beef brick 11 to pass through the communication hole 44.
[0058] Refer to Figure 7, the transfer device further includes a lifting assembly 7, and the lifting assembly 7 is disposed in the first storage chamber 42 of the insulation box 4. The top of the lifting assembly 7 is provided with a lifting working plate 71, and the lifting working plate 71 is used to support the fat beef bricks 11; when there are multiple layers of fat beef bricks 11 arranged vertically, the lifting assembly 7 moves the upper layer of fat beef bricks 11 to the communication hole 44. In this embodiment, the lifting assembly 7 is a small electric scissor lift; in the prior art, there are many implementation methods for electric scissor lifts, and the specific structure of the electric scissor lift will not be elaborated in this embodiment.
[0059] Refer to Figure 7 , the working principle of the lifting assembly 7 is as follows: the lifting working plate 71 of the lifting assembly 7 rises to the opening of the insulation box, and the staff places the carton 12 containing the fat beef bricks 11 on the lifting working plate 71; subsequently, the staff removes the cardboard on the top of the carton 12 and the side close to the disassembly and assembly structure 5; finally, the lifting working plate 71 descends, so that the topmost layer of fat beef bricks 11 in the carton 12 is level with the communication hole 44.
[0060] Refer to Figure 7 and Figure 8 , the disassembly and assembly structure 5 pulls the packaging bag 2 on the outer periphery of the fat beef brick 11, so that the fat beef brick 11 passes through the communication hole 44 in sequence. When the height of the topmost layer of fat beef bricks 11 in the carton 12 is lower than the height of the communication hole 44; the lifting working plate 71 of the lifting assembly 7 moves upward, so that the topmost layer of fat beef bricks 11 in the carton 12 is level with the communication hole 44.
[0061] Refer to Figure 5 and Figure 9 , the disassembly and assembly structure 5 includes a disassembly and assembly frame 51, a traction assembly 52 and a tearing assembly 53.
[0062] Refer to Figure 8 and Figure 9 , the disassembly and assembly frame 51 is provided with a workbench 511 for placing the fat beef bricks 11, and the top of the workbench 511 is flush with the hole side wall at the bottom of the communication hole 44.
[0063] Refer to Figure 9 and Figure 10 , the traction assembly 52 is disposed on the disassembly and assembly frame 51, and the traction assembly 52 is disposed opposite to the communication hole 44 and the movable door assembly 6. The traction assembly 52 includes a traction motor 521 and a traction winding roller 522. The winding roller is horizontally disposed, and the traction motor 521 drives the traction winding roller 522 to rotate. The winding roller is used to wind the packaging bag 2 to pull the fat beef brick 11 from the first storage chamber 42 to the workbench 511.
[0064] Refer to Figure 9 and Figure 10, the tearing assembly 53 is arranged on the disassembly and assembly frame 51. There are two tearing assemblies 53, and the two tearing assemblies 53 are symmetrically arranged on the disassembly and assembly frame 51. The fat beef bricks 11 are arranged between the two tearing assemblies 53, and the two tearing assemblies 53 correspond to the two tear tapes 234 one by one. The two symmetrically arranged tearing assemblies 53 are used to wind up the two tear tapes 234 to realize the separation of the tear tapes 234 from the main body structure of the packaging bag 2, which is convenient for the staff to operate. In this embodiment, the transfer device is also provided with a controller to control the coordinated operation of the traction assembly 52 and the tearing assembly 53.
[0065] Referring to Figure 10 and Figure 11 , the tearing assembly 53 includes a tearing motor 531, a tearing winding roller 532, a tearing sleeve 533 and a guide wheel 534. The tearing winding roller 532 is arranged on the driving end of the tearing motor 531. The tearing sleeve 533 is sleeved on the tearing winding roller 532. A limiting rib 5321 is arranged on the side surface of the tearing winding roller 532, and a limiting groove 5331 is arranged on the inner peripheral wall of the tearing sleeve 533. The limiting rib 5321 is inserted into the limiting groove 5331. The tearing sleeve 533 is used to be fixed to the tear tape 234. When the tearing motor 531 drives the tearing winding roller 532 to rotate, the tear tape 234 is wound on the outer periphery of the tearing sleeve 533. The guide wheel 534 is fixedly arranged on the disassembly and assembly frame 51, and the guide wheel 534 is used to guide the tear tape 234 to move towards the tearing winding roller 532. The guide wheel 534 is used to guide the movement of the tear tape 234, so as to facilitate the tearing assembly 53 to wind up the tear tape 234 and improve the collection effect of the tearing assembly 53.
[0066] Referring to Figure 11 , in this embodiment, the sleeve is a flexible sleeve. After the tearing sleeve 533 is folded inwards, the tearing sleeve 533 is separated from the tear tape 234. The tearing sleeve 533 is a flexible sleeve. Thus, when the staff removes the tearing sleeve 533 from the tearing winding roller 532, the staff can fold the tearing sleeve 533 inwards to separate the tearing sleeve 533 from the tear tape 234. The tearing sleeve 533 can be reused, reducing the cost.
[0067] Referring to Figure 5 and Figure 7 , in addition, the disassembly and assembly structure 5 further includes a water receiving tank body 54 and a trash can 55. The water receiving tank body 54 is arranged on the disassembly and assembly frame 51. The water receiving tank body 54 is arranged directly below the traction assembly 52, and the water receiving tank body 54 is used to receive the blood dripping from the traction winding roller 522. The trash can 55 is arranged on the disassembly and assembly frame 51, and the trash can 55 is used to place the receiving tank body 233 covering the fat beef bricks 11.
[0068] The implementation principle of the transfer device for fat beef processing in the embodiment of the present application is as follows: Referring to Figure 2 andFigure 3 A packaging bag 2 is arranged on the outer periphery of the fat beef brick 11, so as to separate the fat beef brick 11 from the external environment and reduce the risk of the fat beef brick 11 being contaminated; and the fat beef brick 11 is arranged in the heat preservation box body 4, so that the fat beef brick 11 can be transported in a low-temperature environment, and the risks of thawing and deterioration of the fat beef brick 11 can be reduced.
[0069] Refer to Figure 2 、 Figure 4 and Figure 5 When the fat beef brick 11 needs to be placed on the slicing device for slicing, the tearing component 53 is used to pull the easy-to-tear tape 234 to separate the main bag body 21, that is, the first bag surface 23 is separated from the second bag surface 24. The fat beef brick 11 is arranged in the first bag surface 23. The staff can hold the first bag surface 23 on the outer periphery of the fat beef brick 11 to transfer the fat beef brick 11 into the slicing device, and then take away the receiving groove body 233.
[0070] By setting the cooperation of the traction component 52, the tearing component 53 and the movable door component 6, the disassembly and assembly structure 5 can continuously remove the packaging bag 2 on the outer periphery of the fat beef brick 11, and improve the disassembly and assembly efficiency of the packaging bag 2 of the fat beef brick 11.
[0071] To sum up: In this embodiment, through the improvement of the existing packaging bag 2 on the outer periphery of the fat beef brick 11 and the transfer device, during the process of transferring the fat beef brick 11 from the cold storage to the slicing device; the fat beef brick 11 is separated from the external environment. And during the process of removing the packaging bag 2 of the fat beef brick 11 and transferring the fat beef brick 11 to the slicing device, the hands of the staff do not directly contact the fat beef brick 11, thereby reducing the risk of the fat beef brick 11 being contaminated and improving the food safety. At the same time, the transfer device also improves the automation degree of the transfer and bag removal of the fat beef brick 11, and can improve the production efficiency.
[0072] The above are all the preferred embodiments of this application. The protection scope of this application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape and principle of this application should be covered within the protection scope of this application.
Claims
1. A transfer device for fattened cattle processing, characterized in that: The invention comprises a movable frame (3), a heat preservation box (4) and a disassembly structure (5), wherein the heat preservation box (4) and the disassembly structure (5) are arranged on the movable frame (3); a storage chamber for accommodating fat beef bricks (11) is arranged inside the heat preservation box (4); a packaging bag (2) is arranged on the periphery of the fat beef bricks (11); the packaging bag (2) comprises a first bag surface (23) and a second bag surface (24) arranged opposite to each other; the first bag surface (23) and the second bag surface (24) enclose a main bag body (21); the main bag body (21) is provided with a storage chamber (211) for accommodating the fat beef bricks (11) The first bag surface (23) is provided with an easy-tear tape (234), and the easy-tear tape (234) is used to separate the main bag body (21); the disassembly structure (5) comprises a disassembly frame (51) and a tearing assembly (53), the disassembly frame (51) is provided with a workbench (511) for placing the fat beef bricks (11), and the tearing assembly (53) is arranged on the disassembly frame (51), and the tearing assembly (53) is used to pull the easy-tear tape (234) so that the first bag surface (23) is separated from the second bag surface (24), and the first bag surface (23) covers the fat beef bricks (11).
2. The transfer device for fattened beef processing according to claim 1, characterized in that: The easy-tear strips (234) are provided with two pieces, and the two easy-tear strips (234) are symmetrically arranged along the central axis of the fat beef brick (11); the tearing components (53) are provided with two pieces, and the two tearing components (53) are symmetrically arranged on the disassembly frame (51), and the fat beef brick (11) is arranged between the two tearing components (53), and the tearing components (53) correspond to the easy-tear strips (234) one by one; the tearing components (53) include a tearing motor (531) and a tearing reel (532), and the tearing reel (532) is arranged on the driving end of the tearing motor (531), and the tearing reel (532) reels the easy-tear strip (234) to separate the main bag body (21).
3. The transfer device for fattened beef processing according to claim 2, characterized in that: The packaging bag (2) comprises a plurality of main bag bodies (21), the plurality of main bag bodies (21) being arranged at intervals, and a plurality of fat beef bricks (11) being arranged side by side in the accommodating chamber (211); a connecting hole (44) is provided on a side of the heat-insulating box body (4) close to the disassembly structure (5), the connecting hole (44) being used for the fat beef bricks (11) to pass through; a movable door assembly (6) is provided on the outer periphery of the heat-insulating box body (4), the movable door assembly (6) being used for blocking the connecting hole (44); a surface of the workbench (511) and a bottom of the connecting hole (44) are connected to each other. The disassembly and assembly structure (5) further comprises a traction assembly (52), the traction assembly (52) being arranged on the disassembly and assembly frame (51), and the traction assembly (52) being arranged between the two tearing assemblies (53), the traction assembly (52) comprising a traction motor (521) and a traction winding roller (522), the traction motor (521) driving the traction winding roller (522) to rotate, the winding roller being used to wind up the packaging bag (2) so as to pull the fat beef bricks (11) from the storage chamber to the workbench (511).
4. The transfer device for fattened beef processing according to claim 3, characterized in that: The movable door assembly (6) comprises a flip plate (61), a sealing ring (62) and a reset member (63); the upper edge of the flip plate (61) is rotatably connected to the heat preservation box (4); the sealing ring (62) is arranged on a side of the flip plate (61) close to the heat preservation box (4); the sealing ring (62) is arranged around the outer circumference of the flip plate (61); the sealing ring (62) is used to abut against the heat preservation box (4); one end of the reset member (63) is arranged on the flip plate (61); the other end of the reset member (63) is arranged on the heat preservation box (4); the reset member (63) forces the flip plate (61) to approach the heat preservation box (4).
5. The transfer device for fattened beef processing according to claim 3, characterized in that: The invention also comprises a lifting component (7), wherein the lifting component (7) is arranged in the storage chamber of the heat-insulating box (4), and a lifting working plate (71) is arranged on the top of the lifting component (7), and the lifting working plate (71) is used to support the fat beef bricks (11); when the fat beef bricks (11) are arranged in multiple layers vertically, the lifting component (7) moves the upper layer of fat beef bricks (11) to the connecting hole (44).
6. The transfer device for fattened beef processing according to claim 2, characterized in that: The tearing assembly (53) further comprises a tearing sleeve (533), wherein the tearing sleeve (533) is sleeved on the tearing reel (532), a side surface of the tearing reel (532) is provided with a limiting convex strip (5321), an inner peripheral wall of the tearing sleeve (533) is provided with a limiting groove (5331), and the limiting convex strip (5321) is inserted into the limiting groove (5331); the tearing sleeve (533) is used to be fixed to the easy-tear tape (234) so as to reel up the easy-tear tape (234).
7. The transfer device for fattened beef processing according to claim 6, characterized in that: The tear sleeve (533) is a flexible sleeve, and after the tear sleeve (533) is folded inwards, the tear sleeve (533) is separated from the easy-tear tape (234).
8. The transfer device for fattened beef processing according to claim 2, characterized in that: The disassembly and assembly structure (5) further comprises a guide wheel (534), wherein the guide wheel (534) is fixedly mounted on the disassembly and assembly frame (51), and the guide wheel (534) is used to guide the easy-tear tape (234) to move towards the tearing and winding roller (532).
9. The transfer device for fattened beef processing according to claim 3, characterized in that: The disassembly and assembly structure (5) further comprises a water receiving trough body (54), wherein the water receiving trough body (54) is arranged on the disassembly and assembly frame (51), and the water receiving trough body (54) is arranged directly below the traction assembly (52), and the water receiving trough body (54) is used to receive blood dripping from the traction winding roller (522).
10. The transfer device for fattened beef processing according to claim 1, characterized in that: A partition plate (41) is provided inside the heat-insulating box (4), and a plurality of air holes (411) are provided on the partition plate (41). The partition plate (41) divides the inside of the heat-insulating box (4) into a first storage chamber (42) and a second storage chamber (43). The first storage chamber (42) is used to accommodate fat beef bricks (11), and the second storage chamber (43) is used to accommodate a cold storage component, and the cold storage component is used to absorb heat from the surrounding environment.
Citation Information
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