Automatic raw food cutting and segmenting feeding equipment

CN224751449UActive Publication Date: 2026-09-15FUJIAN LISHENG FOOD CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522258657.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-25
Publication Date
2026-09-15
Estimated Expiration
2035-10-25

AI Technical Summary

Technical Problem

[0003]现有的用于生食切段的设备中,例如型号为:BL500型直线往复式切断机,需要工作人员将需要切割的食材一次次的放在输送带上输送进行切割,过程中,工作人员参与上料的情况过多,导致增加了工作人员的工作量,并且费时费力

Benefits of technology

[0020] 1. By adjusting the shell, limiting plate and baffle design, it can be adjusted for different ingredients, so that different types of ingredients can be placed and the ingredients can be fed normally onto the surface of the conveyor belt, which greatly enhances the practicality of feeding.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224751449U_ABST
    Figure CN224751449U_ABST
Patent Text Reader

Abstract

The utility model discloses a raw food cutting section automatic feeding equipment, including the chassis, the both sides of chassis upper end all have the vertical board of welding, two groups of vertical board between common welding have the rectangular plate, the rectangular plate surface sliding connection has the connecting piece, corresponding two groups connecting piece one side common welding has the adjusting shell, one group adjusting shell inner wall both sides all weld the limit stop, another group adjusting shell inner wall both sides all weld have the baffle, and the baffle and limit stop between sliding connection setting, apply in raw food cutting section technical field, the utility model discloses through and two groups of adjusting shell in the opposite or reverse movement, one group adjusting shell will drive the baffle in the limit stop inside another group adjusting shell inside and slide, the baffle is used for closing the clearance between two groups of adjusting shell side, prevents the leakage, when the clearance between two groups of adjusting shell bottom can supply the food material that needs cutting through.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of raw food cutting technology, and specifically relates to an automatic feeding device for raw food cutting. Background Technology

[0002] Raw food refers to food that is eaten directly without cooking or with only simple processing (such as washing, slicing, marinating, etc., without changing the original structure and core nutrients of the food). It has a wide variety of categories, including seafood (sashimi made from salmon, tuna, etc., sea urchin, oysters, etc.), some meats (sashimi made from Wagyu beef, etc.), most vegetables and fruits (lettuce, tomatoes, apples, strawberries, etc.), as well as nuts, uncooked whole grains, etc. The core feature of raw food is that it retains active enzymes, vitamin C and other nutrients that are easily destroyed by heat. The taste is also closer to the original flavor of the ingredients. However, it should be noted that raw food has the risk of microbial contamination and parasitic infection. Fresh, reliable ingredients should be selected and properly cleaned.

[0003] Existing equipment for cutting raw food, such as the BL500 linear reciprocating cutter, requires workers to repeatedly place the ingredients to be cut onto the conveyor belt for cutting. This process involves excessive worker involvement in feeding, increasing their workload and wasting time and effort. Utility Model Content

[0004] The purpose of this utility model is to provide an automatic feeding device for raw food cutting, which has the advantages of automatic feeding and saving manpower.

[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an automatic feeding device for raw food cutting, including a base frame, with upright plates welded to both sides of the upper end of the base frame, and a rectangular plate welded between the two sets of upright plates. A connecting plate is slidably connected to the surface of the rectangular plate, and an adjusting shell is welded to one side of the two sets of connecting plates. One set of adjusting shells has a limit plate welded to both sides of its inner wall, and the other set of adjusting shells has a baffle welded to both sides of its inner wall, and the baffle and the limit plate are slidably connected.

[0006] The above technical solution involves adjusting the distance between the two sets of adjusting shells according to the required food ingredients to be cut, so that the gap at the bottom of the two sets of adjusting shells can allow the food ingredients to pass through. This is achieved by rotating the forward and reverse lead screws, which cause the two sets of connecting plates to move in opposite directions on the rectangular plate surface. This movement of the connecting plates causes the adjusting shells to move. When the two sets of adjusting shells move in opposite directions, one set of adjusting shells will cause a baffle to slide inside the limiting plate of the other set of adjusting shells. The baffle is used to seal the gap between the sides of the two sets of adjusting shells to prevent material leakage. The process is complete when the gap between the bottoms of the two sets of adjusting shells is large enough for the food ingredients to be cut to pass through.

[0007] The present invention is further configured such that the two sets of connecting plates are internally connected by a common threaded screw, and the positive and negative screws are rotatably connected to the two sets of vertical plates.

[0008] Using the above technical solution: rotating the positive and negative lead screws will cause the connecting plate to move synchronously in opposite directions on the surface of the rectangular plate.

[0009] The present invention is further configured such that a second electric push rod is slidably connected inside one of the sets of upright plates, and a screw is threadedly connected to the surface of the second electric push rod, and the screw is rotatably connected to the upright plate.

[0010] Using the above technical solution: rotating the screw will cause the screw to drive the second electric push rod.

[0011] The present invention is further configured such that a fixing plate is bolted to the piston end of the second electric push rod, and a baffle is welded to one side of the fixing plate, and the baffle is slidably connected to one end of the adjusting shell.

[0012] Using the above technical solution: when material needs to be fed, the second electric push rod will drive the fixed plate to move, and the fixed plate will drive the baffle to move.

[0013] The present invention is further configured such that a sliding plate is welded to one side of the baffle, and a movable plate is slidably connected to the surface of the sliding plate.

[0014] Using the above technical solution: the movement of the moving plate will cause the cleaning cloth to enter the surface of the baffle from the through hole.

[0015] The present invention is further configured such that a cleaning cloth is adhered to three sides of the surface of the movable plate, and a through hole is provided on one side of the baffle, and the through hole is slidably connected to the cleaning cloth.

[0016] Using the above technical solution: push the moving plate on the surface of the sliding plate so that the moving plate can bring the cleaning cloth into the surface of the baffle through the through hole. In this way, the cleaning cloth at the top, bottom and bottom and one side of the bottom of the moving plate can clean the bottom of the adjusting shell, the top of the baffle and the side of the baffle that is against the food.

[0017] The present invention is further configured such that rotating rollers are rotatably connected to both ends of the base frame, and a conveyor belt is connected to the surface of the two sets of rotating rollers for common transmission. One end of one set of rotating rollers is bolted to a motor, and the motor is bolted to one side of the base frame. A PLC is bolted to the middle of one side of the base frame. A vertical frame is welded to one side of the upper end of the base frame. A cutter is slidably connected inside the vertical frame. Both ends of the cutter are bolted to a first electric push rod, and the first electric push rod is bolted to the surface of the base frame.

[0018] Using the above technical solution: when the food falls to the top of the conveyor belt, the motor will run and drive the rotating roller to rotate. The rotating roller will drive the conveyor belt to rotate, thereby conveying the food to the front end. During the conveying process, the first electric push rod will drive the cutter to move up and down inside the stand, thereby cutting the food.

[0019] In summary, this utility model has the following beneficial effects:

[0020] 1. By adjusting the shell, limiting plate and baffle design, it can be adjusted for different ingredients, so that different types of ingredients can be placed and the ingredients can be fed normally onto the surface of the conveyor belt, which greatly enhances the practicality of feeding.

[0021] 2. The cleaning cloth design allows for the removal of food juices from the bottom of the adjustment shell and the sides of the upper part of the cover, saving staff the trouble of having to take out tools to clean them separately. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0023] Figure 2 This is a schematic diagram of the vertical plate structure of this utility model;

[0024] Figure 3 This is a schematic diagram of the adjusting shell structure of this utility model;

[0025] Figure 4 This is a schematic diagram of the cleaning cloth structure of this utility model.

[0026] Reference numerals in the attached diagram: 1. Base frame; 2. Motor; 3. Rotating roller; 4. First electric push rod; 5. Cutter; 6. Stand; 7. PLC; 801. Stand plate; 802. Positive and negative lead screws; 803. Connecting plate; 804. Adjusting housing; 805. Limiting plate; 806. Baffle; 807. Second electric push rod; 808. Cleaning cloth; 809. Slide plate; 810. Fixing plate; 811. Screw; 812. Moving plate; 813. Through hole; 814. Rectangular plate; 815. Baffle; 9. Conveyor belt. Detailed Implementation

[0027] The present invention will be further described in detail below with reference to the accompanying drawings.

[0028] Example 1:

[0029] refer to Figures 1-3An automatic feeding device for raw food cutting includes a base frame 1. Vertical plates 801 are welded to both sides of the upper end of the base frame 1. A rectangular plate 814 is welded between the two sets of vertical plates 801. A connecting plate 803 is slidably connected to the surface of the rectangular plate 814. An adjusting shell 804 is welded to one side of the two sets of connecting plates 803. Limiting plates 805 are welded to both sides of the inner wall of one set of adjusting shells 804. Baffles 806 are welded to both sides of the inner wall of the other set of adjusting shells 804. The baffles 806 and the limiting plates 805 are slidably connected.

[0030] The two sets of connecting plates 803 are connected by a common threaded connection to a positive and negative screw 802, and the positive and negative screw 802 is rotatably connected to the two sets of vertical plates 801.

[0031] One of the upright plates 801 has a second electric push rod 807 slidably connected inside. The surface of the second electric push rod 807 is threaded with a screw 811, and the screw 811 is rotatably connected to the upright plate 801.

[0032] Brief description of the usage process: The operation of motor 2, first electric push rod 4 and second electric push rod 807 in this technical solution are all controlled by PLC 7. During use, the distance between the two sets of adjusting shells 804 is adjusted according to the food to be cut so that the gap at the bottom of the two sets of adjusting shells 804 can allow the food to pass through. Therefore, the positive and negative lead screws 802 can be rotated. The positive and negative lead screws 802 will drive the two sets of connecting plates 803 to move in opposite directions on the surface of the rectangular plate 814, thereby causing the connecting plates 803 to move the adjusting shells 804. When the two sets of adjusting shells 804 move in opposite directions, one set of adjusting shells 804 will drive the baffle 806 to slide inside the limiting plate 805 inside the other set of adjusting shells 804. The baffle 806 is used to seal the gap between the sides of the two sets of adjusting shells 804 to prevent material leakage. The food to be cut can be cut when the gap between the bottom of the two sets of adjusting shells 804 is large enough.

[0033] Example 2:

[0034] refer to Figure 1 , Figure 2 , Figure 4 The piston end of the second electric push rod 807 is bolted to a fixing plate 810. A baffle 815 is welded to one side of the fixing plate 810, and the baffle 815 is slidably connected to one end of the adjusting shell 804.

[0035] A sliding plate 809 is welded to one side of the cover 815, and a movable plate 812 is slidably connected to the surface of the sliding plate 809.

[0036] Cleaning cloths 808 are adhered to three sides of the surface of the movable plate 812. A through hole 813 is provided on one side of the cover 815, and the through hole 813 is slidably connected to the cleaning cloth 808.

[0037] Brief description of usage: When feeding is required, the second electric push rod 807 will drive the fixed plate 810 to move, which in turn drives the baffle 815 to move. As the baffle 815 moves, the gap at the bottom of the two sets of adjusting shells 804 will open, thus initiating feeding. Feeding will stop when the baffle 815 closes the gap at the bottom of the two sets of adjusting shells 804. However, when the baffle 815 closes the gap at the bottom of the adjusting shells 804, it will push the food against the bottom edge of the adjusting shells 804, thereby squeezing out the juice from inside the food. When it is necessary to clean the juice from the bottom of the adjusting shells 804, the top of the baffle 815, and the side of the baffle 815 that is against the food, rotate... The screw 811 drives the second electric push rod 807 and the baffle 815 to move down a certain distance, leaving a space between the bottom of the adjusting shell 804 and the baffle 815 for the moving plate 812 and the cleaning cloth 808 to pass through. Then, the moving plate 812 on the surface of the slide plate 809 is pushed, so that the moving plate 812 drives the cleaning cloth 808 to enter the surface of the baffle 815 through the through hole 813. In this way, the cleaning cloth 808 on the upper end, upper and lower ends and one side of the lower end of the moving plate 812 can clean the bottom of the adjusting shell 804, the upper end of the baffle 815 and the side of the baffle 815 that is against the food. The cleaning cloth 808 is made of microfiber cloth, can be used multiple times, and can be replaced after use.

[0038] Example 3:

[0039] refer to Figure 1 The base frame 1 has rotating rollers 3 rotatably connected to both ends inside. The surfaces of the two sets of rotating rollers 3 are connected to a conveyor belt 9 for transmission. One end of one set of rotating rollers 3 is bolted to a motor 2, and the motor 2 is bolted to one side of the base frame 1. A PLC 7 is bolted to the middle of one side of the base frame 1. A vertical frame 6 is welded to one side of the upper end of the base frame 1. A cutter 5 is slidably connected inside the vertical frame 6. Both ends of the cutter 5 are bolted to a first electric push rod 4, and the first electric push rod 4 is bolted to the surface of the base frame 1.

[0040] Brief description of the usage process: When the food falls to the upper end of the conveyor belt 9, the motor 2 will run and drive the rotating roller 3 to rotate. The rotating roller 3 will drive the conveyor belt 9 to rotate, thereby conveying the food to the front end. During the conveying process, the first electric push rod 4 will drive the cutter 5 to move up and down inside the stand 6, thereby causing the cutter 5 to cut the food.

[0041] It should be noted that parts have a lifespan and can be replaced during regular maintenance when they no longer meet performance requirements. Deterioration in performance due to prolonged use of parts is not a design defect of this application.

[0042] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.

Claims

1. An automatic feeding device for raw food cutting, comprising a base frame (1), characterized in that: The base frame (1) has upright plates (801) welded on both sides of its upper end. A rectangular plate (814) is welded between the two sets of upright plates (801). A connecting plate (803) is slidably connected to the surface of the rectangular plate (814). An adjusting shell (804) is welded to one side of each of the two sets of connecting plates (803). A limiting plate (805) is welded to both sides of the inner wall of one set of adjusting shells (804). A baffle (806) is welded to both sides of the inner wall of the other set of adjusting shells (804). The baffle (806) and the limiting plate (805) are slidably connected.

2. The automatic feeding device for raw food cutting and dicing according to claim 1, characterized in that: The two sets of connecting plates (803) are connected by a common threaded screw (802), and the screw (802) is rotatably connected to the two sets of vertical plates (801).

3. The automatic feeding device for raw food cutting and dicing according to claim 2, characterized in that: One of the sets of upright plates (801) is slidably connected to a second electric push rod (807), and the surface of the second electric push rod (807) is threadedly connected to a screw (811), and the screw (811) is rotatably connected to the upright plate (801).

4. The automatic feeding device for raw food cutting and dicing according to claim 3, characterized in that: The piston end of the second electric push rod (807) is bolted to a fixing plate (810). A baffle (815) is welded to one side of the fixing plate (810), and the baffle (815) is slidably connected to one end of the adjusting shell (804).

5. The automatic feeding device for raw food cutting and dicing according to claim 4, characterized in that: A sliding plate (809) is welded to one side of the baffle (815), and a movable plate (812) is slidably connected to the surface of the sliding plate (809).

6. The automatic feeding device for raw food cutting and dicing according to claim 5, characterized in that: The moving plate (812) has cleaning cloths (808) glued to three sides of its surface. The cover (815) has a through hole (813) on one side, and the through hole (813) is slidably connected to the cleaning cloth (808).

7. The automatic feeding device for raw food cutting and dicing according to claim 1, characterized in that: The base frame (1) has rotating rollers (3) rotatably connected to both ends inside. The surfaces of the two sets of rotating rollers (3) are connected to a conveyor belt (9) for transmission. One end of one set of rotating rollers (3) is bolted to a motor (2), and the motor (2) is bolted to one side of the base frame (1). A PLC (7) is bolted to the middle of one side of the base frame (1). A stand (6) is welded to one side of the upper end of the base frame (1). A cutter (5) is slidably connected inside the stand (6). Both ends of the cutter (5) are bolted to a first electric push rod (4), and the first electric push rod (4) is bolted to the surface of the base frame (1).