Separating type material arranging machine, food weighing device and food stuffing injection production line

Through the design of the split-type feeding machine and food weighing device, the problem of low automation in food production is solved, and the automatic sorting and weighing of materials is realized, which improves production efficiency.

CN223219911UActive Publication Date: 2025-08-15FOSHAN SANHE INTELLIGENT MECHANICAL EQUIP CO LTD
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Patent Information

Application Number
CN202422527268.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-08-15
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

In the existing food production process, the degree of food sorting automation is low, the labor intensity is high, the production efficiency is low, and continuous processing is difficult.

Method used

The track-dividing machine is used to automatically sort the materials through the mobile arm and the dial assembly, and combine the food weighing device and the filling production line to realize the automatic sorting, weighing and filling process of the materials.

Benefits of technology

It has improved the degree of automation and continuous processing capacity of food production, and significantly improved production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lane type material arranging machine which comprises a first conveying belt device, a second conveying belt device and a third conveying belt device, and a connecting frame, a mounting base plate, a moving arm, a shifting plate assembly and a material arranging driving mechanism are arranged between the second conveying belt device and the third conveying belt device. Materials on the first conveying belt device are transferred to the second conveying belt device and the third conveying belt device through the shifting plate assembly. The food weighing device comprises the split type material arranging machine, a first weighing part and a second weighing part, the food side filling production line comprises a side filling machine, the food weighing device and a finished product conveying device. The separation type material arranging machine, the food weighing device and the food stuffing injection production line have the advantages of being high in automation degree and high in continuous processing capacity, and the production efficiency can be effectively improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of food processing equipment, in particular to a channel-type material processing machine, a food weighing device and a food filling production line. Background Art

[0002] During the food production and processing process, food needs to be sorted to ensure the order, direction, speed or time interval of food entering the processing area. Currently, food is mainly placed accurately by manual means. However, this method not only has high labor costs and high labor intensity, but also does not meet food hygiene requirements. In addition, it has a low degree of automation, is not conducive to continuous processing, has low production efficiency, and has certain limitations. Utility Model Content

[0003] The technical problem to be solved by the utility model is to overcome the deficiencies in the prior art and provide a channel-type material sorting machine, a food weighing device and a food filling production line which have a high degree of automation, a strong continuous processing capability and can effectively improve production efficiency.

[0004] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0005] A lane-type material sorting machine includes a first conveyor belt device, and a second conveyor belt device and a third conveyor belt device respectively arranged on both sides of the first conveyor belt device, a connecting frame is provided between the second conveyor belt device and the third conveyor belt device, a mounting base is provided on the connecting frame, a movable arm is movably provided on the mounting base through a sliding connection mechanism, a paddle assembly is provided on the movable arm, and a material sorting drive mechanism for driving the movable arm to reciprocate is provided on the mounting base, so that the paddle assembly transfers the material on the first conveyor belt device to the second conveyor belt device and the third conveyor belt device.

[0006] As a further improvement of the above technical solution:

[0007] The material handling drive mechanism includes a screw rod, a screw rod nut and a drive motor for driving the screw rod to rotate, and the screw rod nut is fixedly connected to the moving arm.

[0008] A transmission assembly is provided between the drive motor and the screw rod, and the transmission assembly includes a driving pulley, a driven pulley and a synchronous belt. The driving pulley is circumferentially fixedly connected to the output shaft of the drive motor, the driven pulley is circumferentially fixedly connected to the screw rod, and the synchronous belt is wound between the driving pulley and the driven pulley.

[0009] The shift plate assembly includes a connecting arm and multiple groups of shift plates arranged at the bottom of the connecting arm; a tube arm is provided at the bottom of the movable arm, and a quick-release locking mechanism for connecting with the connecting arm is provided in the tube arm. The quick-release locking mechanism includes a locking pin fixedly provided on the connecting arm, a locking block provided in the tube arm, a locking tongue passed through the locking block, and a reset spring. A locking groove is provided on the locking pin, and a locking protrusion is provided on the locking tongue. One end of the reset spring abuts against the inner wall of the tube arm, and the other end abuts against the locking tongue.

[0010] The connecting frame includes a first bracket fixedly arranged on the side of the second conveyor belt device, a second bracket fixedly arranged on the side of the third conveyor belt device, and a material sorting base frame arranged on the first bracket and the second bracket. The material sorting base frame is hingedly connected to the first bracket through a hinge. A rotating drive device for driving the material sorting base frame to rotate is arranged between the material sorting base frame and the first bracket, and a locking mechanism is arranged between the material sorting base frame and the second bracket.

[0011] The output end of the first conveyor belt device partially overlaps with the input ends of the second conveyor belt device and the third conveyor belt device in the length direction, and the length of the connecting arm is equal to the length of the overlapping portion.

[0012] The first conveyor belt device is provided with a plurality of partitions, and any two adjacent groups of partitions enclose a receiving space, and the length of the shifting plate is adapted to the length of the receiving space.

[0013] The utility model also provides a food weighing device, comprising the above-mentioned lane-type material processing machine, a first weighing part and a second weighing part, wherein the first weighing part is connected to the output end of the second conveyor belt device, and the second weighing part is connected to the output end of the third conveyor belt device.

[0014] As a further improvement of the above technical solution:

[0015] The first weighing part and the second weighing part both include a double-speed chain conveying mechanism, and a weighing station and a screening station are sequentially arranged on the double-speed chain conveying mechanism along the conveying direction.

[0016] The utility model also provides a food filling production line, including a side filling machine, the above-mentioned food weighing device and a finished product conveying device, the side filling machine is arranged on one side of the input end of the first conveyor belt device, and the finished product conveying device is connected to the output ends of the first weighing part and the second weighing part.

[0017] As a further improvement of the above technical solution:

[0018] The side filling machine includes a machine base, on which is provided a mounting base and a first driving mechanism for driving the mounting base to reciprocate in vertical and horizontal directions; the mounting base is provided with a feeding part and a filling part, the feeding part includes a hopper, and the filling part includes a cylinder, a gear pump assembly arranged in the cylinder, and a filling assembly;

[0019] Two groups of mounting cantilevers and several groups of supporting cantilevers are provided on the mounting base, and handles are provided on both sides of the material cylinder. The handles are provided with rollers for abutting against the mounting cantilevers. The material cylinder is placed on the mounting cantilevers and pushed inwards so that the supporting cantilevers pass through the material cylinder.

[0020] A locking handle is provided on the handle portion, a flange edge is provided at the bottom of the hopper, and a locking groove is provided on the flange edge. The locking handle is rotated and inserted into the locking groove to put the hopper and the cylinder in a locked state. Several groups of buckle components are also provided between the hopper and the cylinder.

[0021] Compared with the prior art, the advantages of the present invention are:

[0022] 1. The lane-type material sorting machine of the present invention drives the movable arm to move back and forth through the material sorting drive mechanism, thereby driving the paddle assembly to transfer the material on the first conveyor belt device to the second conveyor belt device or the third conveyor belt device. The second conveyor belt device and the third conveyor belt device transport the material to the subsequent processing area, realizing alternating lane combing of the dual production lines, which has the advantages of high degree of automation and strong continuous processing capability, and can effectively improve production efficiency.

[0023] 2. The food weighing device of the present invention comprises a lane-type material sorting machine, a first weighing section and a second weighing section. After being sorted by the lane-type material sorting machine, the materials on the second conveyor belt device and the third conveyor belt device can be transferred to the first weighing section and the second weighing section respectively to carry out the weighing process simultaneously, thereby improving production efficiency.

[0024] 3. The food filling production line of the present invention includes a side filling machine, a food weighing device and a finished product conveying device. The material is placed on the first conveyor belt device, and after automatic filling by the side filling machine, it is conveyed to the lane-type material sorting machine for automatic sorting. After automatic weighing and automatic screening by the first weighing part and the second weighing part, the finished product that meets the production standards is transferred to the finished product conveying device, with a high degree of automation. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a structural diagram of the lane-type material sorting machine.

[0026] Figure 2 It is a structural diagram of the connecting frame and its components.

[0027] Figure 3 It is a structural diagram of the moving arm and the paddle assembly.

[0028] Figure 4 It is a structural diagram of the quick-install locking mechanism.

[0029] Figure 5 It is a structural diagram of the food weighing device.

[0030] Figure 6 This is a structural diagram of the food side filling production line.

[0031] Figure 7 It is a structural diagram of the side filling machine.

[0032] Figure 8 This is an enlarged view of part of the structure of the side filling machine.

[0033] Legend:

[0034] 100, first conveyor belt device; 1001, partition; 200, second conveyor belt device; 300, third conveyor belt device; 400, first weighing unit; 500, second weighing unit; 600, side filling machine; 700, finished product conveying device;

[0035] 1. Connecting frame; 101. First bracket; 102. Second bracket; 103. Material handling base frame; 104. Hinge; 105. Rotation drive device; 2. Mounting base plate; 3. Sliding connection mechanism; 4. Moving arm; 401. Tube arm; 402. Quick-release locking mechanism; 5. Plate assembly; 501. Connecting arm; 502. Plate assembly; 6. Material handling drive mechanism; 601. Screw; 602. Screw nut; 603. Drive motor; 604. Transmission assembly; 7. Double-speed chain drive Feeding mechanism; 8. Weighing station; 9. Screening station; 10. Machine base; 11. Mounting base; 12. Hopper; 1201. Flange edge; 1202. Locking slot; 13. Material cylinder; 14. Filling assembly; 15. Mounting cantilever; 16. Supporting cantilever; 17. Handle; 18. Roller; 19. Locking handle; 20. Buckle assembly; 21. Locking pin; 2101. Positioning groove; 22. Locking block; 23. Locking tongue; 2301. Positioning protrusion; 24. Return spring. DETAILED DESCRIPTION

[0036] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0037] Example 1

[0038] like Figures 1 to 4As shown, the lane-type material sorting machine of this embodiment includes a first conveyor belt device 100, and a second conveyor belt device 200 and a third conveyor belt device 300 respectively arranged on both sides of the first conveyor belt device 100. A connecting frame 1 is provided between the second conveyor belt device 200 and the third conveyor belt device 300, and a mounting base plate 2 is provided on the connecting frame 1. A movable arm 4 is movably provided on the mounting base plate 2 through a sliding connection mechanism 3, and a shift plate assembly 5 is provided on the movable arm 4. A material sorting drive mechanism 6 for driving the movable arm 4 to move back and forth is provided on the mounting base plate 2, so that the shift plate assembly 5 transfers the material on the first conveyor belt device 100 to the second conveyor belt device 200 and the third conveyor belt device 300. The lane-type material sorting machine drives the movable arm 4 to move back and forth through the material sorting drive mechanism 6, thereby driving the plate assembly 5 to transfer the material on the first conveyor belt device 100 to the second conveyor belt device 200 and the third conveyor belt device 300. The second conveyor belt device 200 and the third conveyor belt device 300 transport the material to the subsequent processing area, realizing alternating lane combing of the dual production lines, which has the advantages of high degree of automation and strong continuous processing capability, and can effectively improve production efficiency.

[0039] Preferably, the material handling drive mechanism 6 includes a screw 601, a screw nut 602, and a drive motor 603 for driving the screw 601 to rotate. The screw nut 602 is fixedly connected to the movable arm 4. In this embodiment, the material handling drive mechanism 6 adopts the form of a screw pair to convert the rotational motion of the screw 601 into the linear motion of the screw nut 602. It has the advantages of high precision, high efficiency, good operating stability, and easy maintenance. In other embodiments, the material handling drive mechanism 6 can also adopt a gear rack mechanism, a telescopic cylinder, or other components with reciprocating motion function, and is not limited to this embodiment.

[0040] Preferably, a transmission assembly 604 is provided between the drive motor 603 and the screw rod 601. The transmission assembly 604 includes a driving pulley, a driven pulley, and a synchronous belt. The driving pulley is circumferentially fixedly connected to the output shaft of the drive motor 603, the driven pulley is circumferentially fixedly connected to the screw rod 601, and the synchronous belt is wound between the driving pulley and the driven pulley. In this embodiment, the transmission assembly 604 adopts a synchronous belt drive, which has the advantages of high transmission efficiency, good energy saving effect, constant transmission ratio, easy maintenance, and low operating cost. In other embodiments, the transmission assembly 604 may also adopt a sprocket chain drive, a gear set drive, or other forms, and is not limited to this embodiment.

[0041] Preferably, the shift plate assembly 5 includes a connecting arm 501 and multiple groups of shift plates 502 arranged at the bottom of the connecting arm 501; a tube arm 401 is provided at the bottom of the movable arm 4, and a quick-release locking mechanism 402 for connecting with the connecting arm 501 is provided in the tube arm 401. The quick-release locking mechanism 402 includes a locking pin 21 fixedly provided on the connecting arm 501, a locking block 22 provided in the tube arm 401, a locking tongue 23 passed through the locking block 22, and a reset spring 24. A locking groove 2101 is provided on the locking pin 21, and a locking protrusion 2301 is provided on the locking tongue 23. One end of the reset spring 24 abuts against the inner wall of the tube arm 401, and the other end abuts against the locking tongue 23. In this embodiment, taking the installation of the connecting arm 501 on the tube arm 401 as an example, the staff presses the lock tongue 23 and compresses the return spring 24, then the locking protrusion 2301 on the lock tongue 23 moves backward to form an escape position, and the lock pin 21 on the connecting arm 501 is inserted into the lock block 22, and then the staff releases the lock tongue 23, and the lock tongue 23 is reset under the action of the return spring 24. At this time, the locking protrusion 2301 on the lock tongue 23 moves forward and is locked into the locking groove 2101 on the lock pin 21 to achieve a locking effect, and the return spring 24 keeps the lock tongue 23 in a locked state. Through the quick-install locking mechanism 402, the tube arm 401 and the dial plate assembly 5 can be quickly installed and disassembled, which has the advantages of simple structure and high assembly efficiency.

[0042] Preferably, the connecting frame 1 includes a first bracket 101 fixedly arranged on the side of the second conveyor belt device 200, a second bracket 102 fixedly arranged on the side of the third conveyor belt device 300, and a material sorting base 103 arranged on the first bracket 101 and the second bracket 102. The material sorting base 103 is hingedly connected to the first bracket 101 through a hinge 104. A rotating drive device 105 for driving the material sorting base 103 to rotate is arranged between the material sorting base 103 and the first bracket 101, and a locking mechanism is arranged between the material sorting base 103 and the second bracket 102. In this embodiment, the rotation drive device 105 uses a nitrogen spring, one end of the nitrogen spring is hinged to the first bracket 101, and the other end is hinged to the material sorting base 103; the material sorting base 103 and the first bracket 101 are hingedly connected by a hinge 104, and a locking mechanism is provided between the material sorting base 103 and the second bracket 102. When the staff needs to move the third conveyor belt device 300, the locking mechanism can be loosened, and then the material sorting base 103 is supported by the nitrogen spring, and the hinge 104 can be used to open the material sorting base 103 to a specified angle, thereby releasing movable space for the third conveyor belt device 300, and having good flexibility.

[0043] Preferably, the output end of the first conveyor belt device 100 partially overlaps with the input ends of the second conveyor belt device 200 and the third conveyor belt device 300 in the length direction, and the length of the connecting arm 501 is equal to the length of the overlapping part. When the material on the first conveyor belt device 100 is transported to the overlapping part, the in-position sensor sends a signal and stops the first conveyor belt device 100, the second conveyor belt device 200 and the third conveyor belt device 300 from conveying. At this time, the material sorting drive mechanism 6 drives the movable arm 4 to move toward the side of the second conveyor belt device 200 or the third conveyor belt device 300, thereby driving the connecting arm 501 and its upper shift plate 502 to push the material on the first conveyor belt device 100, thereby completing the transfer of the material to the second conveyor belt device 200 or the third conveyor belt device 300.

[0044] Preferably, the first conveyor belt device 100 is provided with multiple sets of partitions 1001. Any two adjacent sets of partitions 1001 enclose a storage space, and the length of the shift plate 502 is adapted to the length of the storage space. In this embodiment, the partitions 1001 provided on the first conveyor belt device 100 can limit the position of the materials on the conveyor belt, so that the materials are arranged in an orderly manner, thereby ensuring the accurate working position of the material handling machine in each production cycle and preventing the materials from shifting and falling during the transfer process.

[0045] Example 2

[0046] like Figure 5 As shown, the food weighing device of this embodiment includes the above-mentioned lane-type material sorting machine, a first weighing part 400 and a second weighing part 500. The first weighing part 400 is connected to the output end of the second conveyor belt device 200, and the second weighing part 500 is connected to the output end of the third conveyor belt device 300. After being sorted by the lane-type material sorting machine, the materials on the second conveyor belt device 200 and the third conveyor belt device 300 can be transferred to the first weighing part 400 and the second weighing part 500 respectively to carry out the weighing process at the same time, thereby improving production efficiency.

[0047] Preferably, the first weighing part 400 and the second weighing part 500 both include a double-speed chain conveying mechanism 7, and a weighing station 8 and a screening station 9 are sequentially arranged on the double-speed chain conveying mechanism 7 along the conveying direction. In this embodiment, the double-speed chain conveying mechanism 7, also known as a differential chain line, is a gravity-flowing production conveying line that can achieve fast and efficient material transportation and improve production efficiency. It is linked with the weighing station 8 and the screening station 9 to accurately control the position and transmission path of the material, and realize overall production process optimization and intelligent management. The weighing station 8 includes a weighing device, which weighs a single material and compares it with a preset weight standard. When it is detected that the current material does not meet the weight standard, a signal is sent to the screening station 9. The screening station 9 includes a sorting mechanism, which transfers defective products to the defective area through the sorting mechanism. It should be noted that the double-speed chain conveying mechanism 7, the weighing device and the sorting mechanism in this embodiment are all common production equipment on the market. Their specific structure and working principle belong to the prior art and will not be repeated here.

[0048] Example 3

[0049] like Figures 6 to 8 As shown, the food filling production line of this embodiment includes a side filling machine 600, the above-mentioned food weighing device and a finished product conveying device 700. The side filling machine 600 is arranged on one side of the input end of the first conveyor belt device 100, and the finished product conveying device 700 is connected to the output ends of the first weighing part 400 and the second weighing part 500. The material (such as croissant) is placed on the first conveyor belt device 100, and after automatic filling by the side filling machine 600, it is conveyed to the lane-type material sorting machine for automatic combing. After automatic weighing and automatic screening by the first weighing part 400 and the second weighing part 500, the finished product that meets the production standards is transferred to the finished product conveying device 700, with a high degree of automation.

[0050] Preferably, the side filling machine 600 includes a base 10, on which is disposed a mounting base 11 and a first drive mechanism for driving the mounting base 11 to reciprocate in vertical and horizontal directions. The mounting base 11 is provided with a feeding unit and a filling unit. The feeding unit includes a hopper 12, and the filling unit includes a cylinder 13, a gear pump assembly disposed within the cylinder 13, and a filling assembly 14. In this embodiment, the specific operating principle of the side filling machine 600 can be referred to the utility model patent previously applied for and authorized by the applicant, entitled "A Filling Machine", with authorization publication number CN217937052U, and will not be repeated here.

[0051] Preferably, two groups of mounting cantilevers 15 and several groups of supporting cantilevers 16 are provided on the mounting base 11, and handles 17 are respectively provided on both sides of the material cylinder 13. The handles 17 are provided with rollers 18 for abutting against the mounting cantilevers 15. The material cylinder 13 is placed on the mounting cantilever 15 and pushed inward so that the supporting cantilever 16 passes through the material cylinder 13. In this embodiment, since the filling of the side filling machine 600 is frequently replaced, the hopper 12 and the material cylinder 13 need to be frequently disassembled from the machine base 10 for cleaning. Improving the convenience of installation and disassembly can help improve production efficiency. A limiting groove is provided on the mounting cantilever 15. When assembling the material cylinder 13 to the mounting base 11, the staff first places the material cylinder 13 on the mounting cantilever 15, and the roller 18 is embedded in the limiting groove. Then, the material cylinder 13 is pushed inward until the supporting cantilever 16 passes through the material cylinder 13, and finally the nut is tightened at the end of the supporting cantilever 16 to realize the locking and fixation of the material cylinder 13 on the mounting base 11. The operation is simple and the disassembly is convenient and quick.

[0052] Preferably, a locking handle 19 is provided on the handle portion 17, a flange edge 1201 is provided at the bottom of the hopper 12, and a locking groove 1202 is provided on the flange edge 1201. The locking handle 19 is rotated and inserted into the locking groove 1202 to put the hopper 12 and the cylinder 13 in a locked state. Several groups of buckle assemblies 20 are also provided between the hopper 12 and the cylinder 13. In this embodiment, when assembling the hopper 12 to the cylinder 13, the staff first places the hopper 12 on the cylinder 13, and then rotates the locking handle 19 upward so that the locking handle 19 is stuck in the locking slot 1202. At this time, the union nut on the top of the locking handle 19 is rotated so that the union nut abuts against the top surface of the flange edge 1201, thereby realizing the initial locking between the hopper 12 and the cylinder 13. Finally, the secondary locking between the hopper 12 and the cylinder 13 is realized by pulling the buckle assembly 20. It has the advantages of compact structure, good connection stability, and convenient and quick disassembly.

[0053] The above is only a preferred embodiment of the present invention, and the scope of protection of the present invention is not limited to the above embodiment. For those skilled in the art, improvements and modifications obtained without departing from the technical concept of the present invention should also be considered as the scope of protection of the present invention.

Claims

1. A lane-type material handling machine, comprising a first conveyor belt device (100), and a second conveyor belt device (200) and a third conveyor belt device (300) respectively arranged on both sides of the first conveyor belt device (100), characterized in that: A connecting frame (1) is provided between the second conveyor belt device (200) and the third conveyor belt device (300), a mounting base (2) is provided on the connecting frame (1), a movable arm (4) is movably provided on the mounting base (2) via a sliding connection mechanism (3), a shifting plate assembly (5) is provided on the movable arm (4), and a material handling drive mechanism (6) for driving the movable arm (4) to move back and forth is provided on the mounting base (2), so that the shifting plate assembly (5) transfers the material on the first conveyor belt device (100) to the second conveyor belt device (200) and the third conveyor belt device (300).

2. The lane-type material handling machine according to claim 1, characterized in that: The material handling drive mechanism (6) comprises a screw (601), a screw nut (602), and a drive motor (603) for driving the screw (601) to rotate, and the screw nut (602) is fixedly connected to the movable arm (4).

3. The lane-type material handling machine according to claim 2, characterized in that: A transmission assembly (604) is provided between the drive motor (603) and the screw rod (601), the transmission assembly (604) comprising a driving pulley, a driven pulley and a synchronous belt, the driving pulley being circumferentially fixedly connected to the output shaft of the drive motor (603), the driven pulley being circumferentially fixedly connected to the screw rod (601), and the synchronous belt being wound between the driving pulley and the driven pulley.

4. The lane-type material handling machine according to claim 1, characterized in that: The dial plate assembly (5) comprises a connecting arm (501) and a plurality of dial plates (502) arranged at the bottom of the connecting arm (501); A tubular arm (401) is provided at the bottom of the movable arm (4), and a quick-install locking mechanism (402) for connecting with the connecting arm (501) is provided in the tubular arm (401). The quick-install locking mechanism (402) comprises a locking pin (21) fixedly provided on the connecting arm (501), a locking block (22) provided in the tubular arm (401), a locking tongue (23) passing through the locking block (22), and a return spring (24). A locking groove (2101) is provided on the locking pin (21), and a locking protrusion (2301) is provided on the locking tongue (23). One end of the return spring (24) abuts against the inner wall of the tubular arm (401), and the other end abuts against the locking tongue (23).

5. The lane-type material handling machine according to claim 1, characterized in that: The connecting frame (1) includes a first bracket (101) fixedly arranged on the side of the second conveyor belt device (200), a second bracket (102) fixedly arranged on the side of the third conveyor belt device (300), and a material sorting base (103) arranged on the first bracket (101) and the second bracket (102), the material sorting base (103) is hingedly connected to the first bracket (101) through a hinge (104), a rotation driving device (105) for driving the material sorting base (103) to rotate is arranged between the material sorting base (103) and the first bracket (101), and a locking mechanism is arranged between the material sorting base (103) and the second bracket (102).

6. The lane-type material handling machine according to claim 5, characterized in that: The first conveyor belt device (100) is provided with a plurality of groups of partitions (1001), and any two adjacent groups of the partitions (1001) enclose a receiving space, and the length of the shifting plate (502) is adapted to the length of the receiving space.

7. A food weighing device, characterized in that: The invention comprises a lane-type material handling machine according to any one of claims 1 to 6, a first weighing part (400) and a second weighing part (500), wherein the first weighing part (400) is connected to the output end of the second conveyor belt device (200), and the second weighing part (500) is connected to the output end of the third conveyor belt device (300).

8. The food weighing device according to claim 7, characterized in that: The first weighing part (400) and the second weighing part (500) both comprise a double-speed chain conveying mechanism (7), and a weighing station (8) and a screening station (9) are sequentially arranged on the double-speed chain conveying mechanism (7) along the conveying direction.

9. A food stuffing production line, characterized in that: The invention comprises a side filling injector (600), the food weighing device according to claim 8, and a finished product conveying device (700), wherein the side filling injector (600) is arranged on one side of the input end of the first conveyor belt device (100), and the finished product conveying device (700) is connected to the output ends of the first weighing part (400) and the second weighing part (500).

10. The food stuffing production line according to claim 9, characterized in that: The side filling machine (600) includes a machine base (10), a mounting base (11) and a first driving mechanism for driving the mounting base (11) to reciprocate in vertical and horizontal directions are provided on the machine base (10), a feeding part and a filling part are provided on the mounting base (11), the feeding part includes a hopper (12), and the filling part includes a cylinder (13), a gear pump assembly provided in the cylinder (13), and a filling assembly (14); Two groups of mounting cantilevers (15) and several groups of supporting cantilevers (16) are provided on the mounting base (11), and handles (17) are provided on both sides of the material cylinder (13). The handles (17) are provided with rollers (18) for contacting the mounting cantilevers (15). The material cylinder (13) is placed on the mounting cantilevers (15) and pushed inwards so that the supporting cantilevers (16) pass through the material cylinder (13); A locking handle (19) is provided on the handle portion (17), a flange edge (1201) is provided at the bottom of the hopper (12), and a locking groove (1202) is provided on the flange edge (1201). The locking handle (19) is rotated and inserted into the locking groove (1202) so that the hopper (12) and the cylinder (13) are in a locked state. A plurality of groups of buckle components (20) are also provided between the hopper (12) and the cylinder (13).

Citation Information

Patent Citations

  • Stuffing filling machine

    CN217937052U