Automatic discharging type chopping and slicing machine
By designing an automatic feeding type cutting and slicing machine, and using components such as a cutting mechanism, a pushing mechanism, and a slicing mechanism, automated cutting and slicing are achieved, solving the problems of low efficiency, uneven quality, and difficult maintenance of existing cutting and slicing machines, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202520180939.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-05
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-05
AI Technical Summary
Most existing slicing and cutting machines are semi-automatic, resulting in low production efficiency, uneven product quality, difficult maintenance, and high costs.
Design an automatic feeding type cutting and slicing machine, including a cutting mechanism, a pushing mechanism, a slicing mechanism and a flipping mechanism. The machine achieves automated cutting, pushing and slicing through components such as hydraulic cylinders, automatic telescopic rods and slicing motors, reducing manual intervention.
It has improved production efficiency and product quality, reduced production costs, achieved automated production, and reduced manual intervention and maintenance difficulty.
Smart Images

Figure CN223787024U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of slicing and cutting machine technology, specifically to an automatic feeding slicing and cutting machine. Background Technology
[0002] The slicing and cutting machine, through the coordination of the transmission system and the movement of the blade assembly, cuts and slices steaks, ribs, pork chops, cheese, ham, and other medium to large-sized ingredients. With the acceleration of the pace of life and the improvement of consumption levels, people's demand for meat products is increasing, and at the same time, they are also putting forward higher requirements for the quality and taste of meat products; therefore, it is necessary to cut and slice the raw materials.
[0003] Most common slicing machines are semi-automatic, which affects production efficiency and results in uneven slice sizes. Furthermore, most slicing machines are difficult to maintain, repair, or replace, impacting product quality and production efficiency.
[0004] For example, Chinese patent CN222074335U discloses a slicing machine comprising a body, a tool box, a discharge box, a base, a slicing and pushing assembly, and a drive and moving assembly. The tool box is fixed to one side of the body, and the discharge box is fixed to the other side of the tool box. The base is fixed to the bottom of the body, and the slicing and pushing assembly is disposed within the body and the tool box. While this device can slice and cut, it only has a single function, failing to meet current needs and impacting production efficiency and product quality. Furthermore, its typically integrated design makes replacement or maintenance difficult, increasing maintenance costs.
[0005] There are currently no effective solutions to the problems in the relevant technologies. Utility Model Content
[0006] In view of the problems in the related technologies, this utility model proposes an automatic feeding type slicing and cutting machine to overcome the above-mentioned technical problems existing in the existing related technologies.
[0007] Therefore, the specific technical solution adopted by this utility model is as follows:
[0008] An automatic feeding type slicing and cutting machine includes a mounting frame, a first support frame in the middle of the mounting frame, a slicing mechanism inserted through the top of the first support frame; a pushing mechanism at one end of the mounting frame, a mounting seat at the other end of the mounting frame, a slicing mechanism between the mounting seats, a discharge port on the side wall of the mounting frame away from the pushing mechanism; a conveyor belt at the bottom of the mounting frame away from the pushing mechanism, a flipping mechanism at the middle of the bottom of the mounting frame, and second support frames symmetrically arranged on the outer side of the mounting frame.
[0009] Furthermore, to reduce manual labor and lower production costs, the cutting mechanism includes a hydraulic cylinder inserted into the top of the first support frame. The output shaft of the hydraulic cylinder is connected to a T-shaped concave plate. A locking groove is provided on one side of the T-shaped concave plate, which mates with a locking block. A threaded hole is located in the middle of one side of the T-shaped concave plate, with return springs on both sides of the threaded hole. A first limiting groove is located at the bottom of the T-shaped concave plate. A threaded bolt is located in the middle of the locking block, and a second limiting groove is located at the bottom of the locking block. The threaded bolt mates with the threaded hole, and the locking groove and locking block are connected on both sides by bolts. A cutting blade is positioned between the first and second limiting grooves.
[0010] Furthermore, to improve production conveying efficiency, the pushing mechanism includes a protective frame at one end of the mounting frame. An automatic telescopic rod is installed inside the protective frame. The output end of the automatic telescopic rod is connected to a first concave frame. A movable frame is installed between the first concave frames. The middle of the movable frame is connected to a second concave frame on the side wall of one end of the mounting frame. A bidirectional concave frame is installed on the top of the movable frame. A connecting rod is connected to one end of the bidirectional concave frame, and a push plate is connected to the top of the connecting rod. Slider blocks are installed on both sides of the push plate, and the sliders cooperate with grooves opened on both sides of the mounting frame. The movable frame is connected to the first concave frame, the second concave frame, and the bidirectional concave frame via pins, and the bidirectional concave frame is connected to the connecting rod via pins.
[0011] Furthermore, to improve product quality and taste, and increase automated production efficiency, the slicing mechanism includes a first semicircular support frame and a second semicircular support frame respectively disposed between the mounting bases. A slicing blade is disposed in the middle of the first and second semicircular support frames, and the slicing blade extends to the bottom of the mounting frame. One end of the slicing blade passes through the second semicircular support frame and connects to the slicing motor. A connecting block is disposed at the top of both the first and second semicircular support frames, and an end block is disposed on both sides of both the first and second semicircular support frames. The connecting blocks of the first and second semicircular support frames are connected by bolts, and the end blocks are connected to the mounting bases by bolts.
[0012] Furthermore, in order to improve the efficiency of product conveying, reduce manual intervention, lower production costs, and improve the efficiency of automated production, the flipping mechanism includes a mounting slot at the bottom of the mounting frame, and the mounting slot is located between the cutting and arranging mechanism and the conveyor belt. A drive shaft is installed inside the mounting slot, and several flipping plates are installed on the drive shaft. The output end of the drive shaft passes through the mounting frame and connects to the drive motor.
[0013] The beneficial effects of this utility model are as follows:
[0014] 1. When meat chops or frozen meat chops are thawed in the refrigerator until the surface becomes soft but the inside remains frozen, they are placed into a chopping and slicing machine for chopping and slicing. By setting up a chopping mechanism, a pushing mechanism, a slicing mechanism, and a flipping mechanism, when the thawed meat chops are placed into the mounting frame, the pushing mechanism pushes them into the chopping mechanism, improving the efficiency of conveying meat chops and the production speed. With the cooperation of the chopping mechanism and the flipping mechanism, the meat chops are cut into rows. The flipping mechanism then sends the meat strips or chops into the conveyor belt for the next process, improving the conveying efficiency of production and reducing manual intervention, thus lowering production costs. The conveyor belt then transports the meat strips or chops to the slicing mechanism for slicing, improving the quality and taste of the product and increasing the efficiency of automated production.
[0015] 2. By setting up a pushing mechanism, the meat patties can be pushed to the next process, reducing manual intervention and improving production efficiency; and in conjunction with the cutting mechanism, automated feeding and cutting can be achieved.
[0016] 3. By setting up a flipping mechanism, the chopped meat chops can be sent into the conveyor belt, and the drive motor drives the drive shaft to flip 270 degrees, so that the flipping plate is reset. The two sets of flipping plates are in a right-angle structure, which improves the efficiency of conveying products, reduces manual intervention, reduces production costs, and improves the efficiency of automated production.
[0017] 4. By setting up a slicing mechanism, after the meat patties are cut into small pieces in conjunction with the previous program, the conveyor belt transports them to the slicing mechanism, where the slicing blade is used to slice the meat patties, improving the quality and taste of the product and increasing the efficiency of automated production. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of an automatic feeding type slicing and cutting machine according to an embodiment of the present utility model;
[0020] Figure 2 This is a cross-sectional view of an automatic feeding type slicing and cutting machine according to an embodiment of the present utility model;
[0021] Figure 3 yes Figure 2 Enlarged view of a portion at point A;
[0022] Figure 4This is a schematic diagram of the cutting mechanism on one side of an automatic feeding type cutting and slicing machine according to an embodiment of the present utility model;
[0023] Figure 5 This is a schematic diagram of the cutting mechanism on the other side of an automatic feeding type cutting and slicing machine according to an embodiment of the present utility model;
[0024] Figure 6 This is a schematic diagram of the flipping mechanism in an automatic feeding type slicing and cutting machine according to an embodiment of the present utility model;
[0025] Figure 7 This is a schematic diagram of the slicing mechanism in an automatic feeding type slicing machine according to an embodiment of the present utility model.
[0026] In the picture:
[0027] 1. Mounting frame; 101. Slide groove; 2. First support frame; 3. Cutting mechanism; 301. Hydraulic cylinder; 302. T-shaped concave plate; 303. Snap-fit groove; 304. Snap-fit block; 305. Threaded hole; 306. Return spring; 307. First limit groove; 308. Threaded bolt; 309. Second limit groove; 310. Cutting blade; 4. Pushing mechanism; 401. Protective frame; 402. Automatic telescopic rod; 403. First concave frame; 404. Movable frame; 405. Second... 406. Concave frame; 407. Bidirectional concave frame; 408. Connecting rod; 409. Push plate; 4000. Slider; 5. Mounting base; 6. Slicing mechanism; 601. First semi-circular support frame; 602. Second semi-circular support frame; 603. Slicing blade; 604. Slicing motor; 605. Connecting block; 606. End block; 7. Discharge port; 8. Conveyor belt; 9. Tilting mechanism; 901. Drive shaft; 902. Tilting plate; 903. Drive motor; 10. Second support frame; 11. Mounting slot. Detailed Implementation
[0028] To further illustrate the various embodiments, the present invention provides accompanying drawings, which are part of the disclosure of the present invention. These drawings are mainly used to illustrate the embodiments and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments. With reference to these contents, those skilled in the art should be able to understand other possible implementation methods and the advantages of the present invention. The components in the figures are not drawn to scale, and similar component symbols are usually used to represent similar components.
[0029] According to an embodiment of the present invention, an automatic feeding type slicing and cutting machine is provided.
[0030] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments, such as... Figures 1-7As shown, an automatic feeding type slicing machine according to an embodiment of the present invention includes a mounting frame 1, a first support frame 2 in the middle of the mounting frame 1, a slicing mechanism 3 inserted through the top of the first support frame 2; a pushing mechanism 4 at one end of the mounting frame 1, a mounting seat 5 at the other end of the mounting frame 1, a slicing mechanism 6 between the mounting seats 5, a discharge port 7 on the side wall of the mounting frame 1 away from the pushing mechanism 4; a conveyor belt 8 at the bottom of the mounting frame 1 away from the pushing mechanism 4, a flipping mechanism 9 at the middle of the bottom of the mounting frame 1, second support frames 10 symmetrically arranged on the outer side of the mounting frame 1, and a control panel (not shown in the figure) on the side wall of the mounting frame 1. The program is prepared using the control panel, and the control panel is electrically connected to the slicing mechanism 3, the pushing mechanism 4, the slicing mechanism 6, the flipping mechanism 9, and the conveyor belt 8 in sequence.
[0031] With the help of the above-mentioned technical solution of this utility model, when meat chops or frozen meat chops are placed in the refrigerator compartment to thaw appropriately until their surface becomes soft but their interior remains frozen, they are placed into a chopping and slicing machine for chopping and slicing. By setting up a chopping mechanism 3, a pushing mechanism 4, a slicing mechanism 6, and a flipping mechanism 9, when the thawed meat chops are placed into the mounting frame, the pushing mechanism 4 pushes them into the chopping mechanism 3, which improves the efficiency of conveying meat chops and the production speed. With the cooperation of the chopping mechanism 3 and the flipping mechanism 9, the meat chops are chopped into a row, and the flipping mechanism 9 sends the meat strips or meat chops into the conveyor belt 8 to enter the next process, which improves the conveying efficiency of production and reduces manual intervention, thereby reducing production costs. The conveyor belt transports the meat strips or meat chops to the slicing mechanism 6 for slicing, improving the quality and taste of the product and improving the efficiency of automated production.
[0032] In one embodiment, the cutting mechanism 3 includes a hydraulic cylinder 301 inserted into the top of the first support frame 2. The output shaft of the hydraulic cylinder 301 is connected to a T-shaped concave plate 302. A locking groove 303 is provided on one side of the T-shaped concave plate 302, which cooperates with a locking block 304. A threaded hole 305 is provided in the middle of one side of the T-shaped concave plate 302, and return springs 306 are provided on both sides of the threaded hole 305. A first limiting groove 307 is provided at the bottom of the T-shaped concave plate 302. A threaded bolt 308 is provided in the middle of the locking block 304, and a second limiting groove 309 is provided at the bottom of the locking block 304. The threaded bolt 308 cooperates with the threaded hole 305, and the locking groove 303 and the locking block 304 are connected on both sides by bolts. A cutting blade 310 is provided between the first limiting groove 307 and the second limiting groove 309, thereby reducing manual intervention and lowering production costs.
[0033] The working principle of the cutting mechanism 3: After the locking groove 303 of the T-shaped concave plate 302 at the bottom of the hydraulic cylinder 301 is engaged with the locking block 304, it is initially fixed by the threaded bolt 308 and the threaded hole 305. Then, the cutting blade 310 is placed between the locking groove 303 and the first limiting groove 307 and the second limiting groove 309 of the locking block 304. It is then fixed by the threaded bolt 308 and the threaded hole 305. After the locking groove 303 and the locking block 304 are finally fixed by bolts on both sides, the meat is pushed under the cutting blade 310 by the pushing mechanism 4. The hydraulic cylinder 301 cuts the meat downwards. When the threaded bolt 308 is loosened, if it cannot be loosened, the return spring 306 of the locking groove 303 and the bolts on both sides pops out the locking block 304 to replace and repair the cutting blade 310.
[0034] In one embodiment, the feeding mechanism 4 includes a protective frame 401 disposed at one end of the mounting frame 1. An automatic telescopic rod 402 is disposed inside the protective frame 401. The output end of the automatic telescopic rod 402 is connected to a first concave frame 403. A movable frame 404 is disposed between the first concave frames 403. The middle part of the movable frame 404 is connected to a second concave frame 405 on one side wall of the mounting frame 1. A bidirectional concave frame 406 is disposed at the top of the movable frame 404. A connecting rod 407 is connected to one end of the bidirectional concave frame 406. A push plate 408 is connected to the top of the connecting rod 407. Slider blocks 409 are disposed on both sides of the push plate 408. The sliders 409 cooperate with the sliding grooves 101 opened on both sides of the mounting frame 1. The movable frame 404 is connected to the first concave frame 403, the second concave frame 405, and the bidirectional concave frame 406 via pins. The bidirectional concave frame 406 is connected to the connecting rod 407 via pins, thereby improving the conveying efficiency of production.
[0035] Working principle of the pushing mechanism 4: When the meat cutlet is placed in front of the push plate 408, the output end of the automatic telescopic rod 402 inside the protective frame 401 drives the movable frame 404 inside the first concave frame 403 and the second concave frame 405 to move backward. The top of the movable frame 404 and the bidirectional concave frame 406 move forward, driving the push plate 408 at the top of the connecting rod 407 to move forward. The sliders 409 on both sides of the push plate 408 move in the sliding grooves 101 on both sides of the mounting frame 1, driving the push plate 408 to slide forward and push the meat cutlet.
[0036] In one embodiment, the slicing mechanism 6 includes a first semicircular support frame 601 and a second semicircular support frame 602 respectively disposed between the mounting base 5. A slicing blade 603 is disposed in the middle of the first semicircular support frame 601 and the second semicircular support frame 602, and the slicing blade 603 is inserted to the bottom end of the mounting frame 1. One end of the slicing blade 603 passes through the second semicircular support frame 602 and connects to the slicing motor 604. A connecting block 605 is disposed at the top of the first semicircular support frame 601 and the second semicircular support frame 602, and an end block 606 is disposed on both sides of the first semicircular support frame 601 and the second semicircular support frame 602. The connecting blocks 605 of the first semicircular support frame 601 and the second semicircular support frame 602 are connected by bolts, and the end blocks 606 are connected to the mounting base 5 by bolts, thereby improving the quality and taste of the product and the efficiency of automated production.
[0037] The working principle of the slicing mechanism 6 is as follows: When the slicing blade 603 is placed between the first semicircular support frame 601 and the second semicircular support frame 602 and fixed, the connecting block 605 at the top of the first semicircular support frame 601 and the second semicircular support frame 602 is bolted and fixed, and the end block 606 of the first semicircular support frame 601 and the second semicircular support frame 602 is bolted to the mounting base 5. Then, the output end of the slicing motor 604 is connected to the slicing blade 603 at one end of the second semicircular support frame 602 to slice the cut meat. The slicing blade 603 moves in a circular motion and passes through the bottom of the mounting frame 1.
[0038] In one embodiment, the flipping mechanism 9 includes a mounting groove 11 at the bottom of the mounting frame 1, and the mounting groove 11 is located between the cutting mechanism 3 and the conveyor belt 8. A drive shaft 901 is provided inside the mounting groove 11, and a plurality of flipping plates 902 are provided on the drive shaft 901. The output end of the drive shaft 901 passes through the mounting frame 1 and is connected to the drive motor 903.
[0039] The working principle of the flipping mechanism 9: When the cutting mechanism 3 cuts the meat into pieces and the pieces fall onto the flipping plate 902, the drive motor 903 is started through the control panel to drive the drive shaft 901 to rotate 90 degrees, and the flipping plate 902 on the drive shaft 901 flips to the conveyor belt 8. When the cutting mechanism 3 resets upwards to cut the meat again, the drive motor 903 is started through the control panel to drive the drive shaft 901 to rotate 270 degrees, so that the flipping plate 902 resets. The two sets of flipping plates 902 are in a right-angle structure.
[0040] To facilitate understanding of the above-mentioned technical solutions of this utility model, the working principle or operation method of this utility model in actual process will be described in detail below.
[0041] In practical applications, when meat chops or frozen meat chops are placed in the refrigerator compartment to thaw appropriately until their surface becomes soft but their interior remains frozen, they are placed in the mounting frame 1. The push plate 408 of the pushing mechanism 4 pushes the meat chops to the next process (the working principle of the pushing mechanism 4 is as described above). The cutting mechanism 3 uses the cutting blade 310 to cut the thawed meat chops (the working principle of the cutting mechanism 3 is as described above), and the cut meat chops are pushed onto the flipping plate 902 of the flipping mechanism 9 to flip the meat chops onto the conveyor belt 8 (the working principle of the flipping mechanism 9 is as described above). Then, the conveyor belt 8 transports the meat chops to the slicing mechanism 6, where the slicing blade 603 slices the cut meat chops. The bottom of the discharge port 7 is angled, and the sliced meat chops fall into the discharge port 7 and are manually removed.
[0042] In summary, with the help of the above-mentioned technical solution of this utility model, when meat chops or frozen meat chops are thawed appropriately in the refrigerator compartment until their surface becomes soft but their interior remains frozen, they are placed into a chopping and slicing machine for chopping and slicing. By setting up a chopping mechanism 3, a pushing mechanism 4, a slicing mechanism 6, and a flipping mechanism 9, when the thawed meat chops are placed into the mounting frame 1, the pushing mechanism 4 pushes them into the chopping mechanism 3, improving the efficiency of conveying meat chops and the production speed. Furthermore, with the cooperation of the chopping mechanism 3 and the flipping mechanism 9, the meat chops are cut into rows, and the flipping mechanism 9 sends the meat strips or chops onto the conveyor belt to enter the next process, improving the conveying efficiency of production and reducing manual intervention, thus lowering production costs. The conveyor belt 8 transports the meat strips or chops to the slicing mechanism for slicing, improving product quality and taste, and increasing the efficiency of automated production. By setting up the pushing mechanism 4, the meat chops can be pushed to the next process, reducing manual intervention and improving production efficiency; and in conjunction with the chopping mechanism 3, automated feeding and chopping are achieved. By setting up a flipping mechanism 9, the chopped meat chops can be fed into the conveyor belt 8, and the drive motor 903 drives the drive shaft 901 to rotate 270 degrees, causing the flipping plate 902 to reset. The two sets of flipping plates 902 are at right angles, which improves the efficiency of product conveying, reduces manual intervention, lowers production costs, and improves the efficiency of automated production. By setting up a slicing mechanism 6, after the meat chops are cut into small pieces in conjunction with the previous program, the conveyor belt transports them to the slicing mechanism 6, where the slicing blade slices the meat chops, improving product quality and taste, and increasing the efficiency of automated production.
[0043] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0044] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. An automatic unloading type row cutting slicer comprising a mounting frame (1), characterized in that, The middle of the installation frame (1) is provided with a first support frame (2), and the top of the first support frame (2) is provided with a chopping mechanism (3); One end of the installation frame (1) is provided with a pushing mechanism (4), the other end of the installation frame (1) is provided with a mounting seat (5), the mounting seat (5) is provided with a slicing mechanism (6) between, and the side wall of the end of the installation frame (1) away from the pushing mechanism (4) is provided with a discharge port (7); The bottom of the installation frame (1) away from the pushing mechanism (4) is provided with a conveying belt (8), the middle position of the bottom of the installation frame (1) is provided with a turnover mechanism (9), and the outer side of the installation frame (1) is symmetrically provided with a second support frame (10).
2. The automatic unloading type row-cut slicer according to claim 1, wherein The chopping mechanism (3) comprises a hydraulic cylinder (301) penetratingly arranged on the top of the first support frame (2), the output shaft of the hydraulic cylinder (301) is connected with a T-shaped concave plate (302), a clamping groove (303) is formed in one side of the T-shaped concave plate (302), and the clamping groove (303) is matched with a clamping block (304); A threaded hole (305) is arranged in the middle of one side of the T-shaped concave plate (302), reset springs (306) are arranged on both sides of the threaded hole (305), and a first limiting groove (307) is arranged on the bottom of the T-shaped concave plate (302); A threaded bolt (308) is arranged in the middle of the clamping block (304), and a second limiting groove (309) is arranged on the bottom of the clamping block (304).
3. The automatic unloading type slicing machine according to claim 2, wherein The threaded bolt (308) is matched with the threaded hole (305), bolts are arranged between the clamping groove (303) and the clamping block (304) on both sides, and a chopping knife (310) is arranged between the first limiting groove (307) and the second limiting groove (309).
4. The automatic unloading type slicing machine according to claim 1, wherein The pushing mechanism (4) comprises a protection frame (401) arranged at one end of the installation frame (1), an automatic telescopic rod (402) is arranged in the protection frame (401), the output end of the automatic telescopic rod (402) is connected with a first concave frame (403), movable frames (404) are arranged between the first concave frames (403), the middle of the movable frame (404) is connected with a second concave frame (405) on the side wall of one end of the installation frame (1), a bidirectional concave frame (406) is arranged on the top of the movable frame (404), a connecting rod (407) is connected with one end of the bidirectional concave frame (406), a push plate (408) is connected with the top of the connecting rod (407), and sliding blocks (409) are arranged on both sides of the push plate (408).
5. The automatic unloading type slicing machine according to claim 4, wherein The movable frames (404) are connected with the first concave frames (403), the second concave frames (405) and the bidirectional concave frames (406) through pin shafts, and the bidirectional concave frames (406) are connected with the connecting rods (407) through a bolt.
6. The automatic unloading type slicing machine according to claim 1, wherein The slicing mechanism (6) comprises first and second semicircular support frames (601, 602) respectively arranged between the mounting seats (5), a slicing knife (603) is arranged in the middle of the first and second semicircular support frames (601, 602), the slicing knife (603) penetrates into the bottom end of the mounting frame (1), one end of the slicing knife (603) penetrates through the second semicircular support frame (602) and is connected with a slicing motor (604); The first and second semicircular support frames (601, 602) are both provided with a connecting block (605) at the top, and both sides of the first and second semicircular support frames (601, 602) are provided with an end block (606); The connecting block (605) of the first and second semicircular support frames (601, 602) is connected by bolts, and the end block (606) and the mounting seat (5) are connected by bolts.
7. The automatic unloading type slicing machine according to claim 1, wherein The turnover mechanism (9) comprises a mounting groove (11) arranged at the bottom of the mounting frame (1), the mounting groove (11) is located between the chopping mechanism (3) and the conveying belt (8), a driving shaft (901) is arranged in the mounting groove (11), a plurality of turnover plates (902) are arranged on the driving shaft (901), and the output end of the driving shaft (901) penetrates through the mounting frame (1) and is connected with a driving motor (903).
Citation Information
Patent Citations
Chopping and slicing machine
CN222074335U