Dicing device for food processing

By combining a horizontal cutting mechanism, a vertical cutting mechanism, and a block cutting mechanism with a chip removal fan, the problem of low cutting efficiency in existing food cutting devices has been solved, achieving automated cutting and high cutting accuracy to meet the needs of different food sizes.

CN224239734UActive Publication Date: 2026-05-15JINAN AIJIA FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINAN AIJIA FOOD CO LTD
Filing Date
2025-06-18
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing food cutting devices have low cutting efficiency, cannot achieve automation, and are difficult to adjust the cutting size to meet the needs of different foods.

Method used

Employing a horizontal cutting mechanism, a vertical cutting mechanism, and a block cutting mechanism, combined with a chip removal fan, the system achieves automated food cutting and size adjustment. The blade movement is driven by cylinders and ball screws to ensure cutting accuracy and efficiency.

Benefits of technology

It achieves automated food cutting with high efficiency and precision, can adapt to different food sizes, and keeps the cut food clean.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224239734U_ABST
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Abstract

The utility model relates to the technical field of food processing, and discloses a dicing device for food processing, which comprises a processing table and a conveying belt embedded in the upper end of the processing table, a transverse trimming mechanism is mounted on the inner side of a first portal frame in a penetrating manner, and a vertical trimming mechanism is mounted on the inner side of a second portal frame in a penetrating manner. A square block cutting mechanism is installed on the inner side of the third door frame in a penetrating mode, and a scrap removing fan is installed at the upper end of a fan cover. According to the utility model, redundant parts of four edges of food can be cut off through the transverse edge cutting mechanism and the vertical edge cutting mechanism, so that the food forms a regular shape; the food can be cut into square blocks with the same size through the square block cutting mechanism; residues and chippings in the fan cover can be sucked out through the chipping removing fan, so that the diced food is kept clean and tidy, automatic dicing is achieved, and the dicing efficiency is high; and the cutting widths and the cutting positions of the transverse edge cutting mechanism and the vertical edge cutting mechanism can be adjusted so as to meet the requirement for cutting food of different sizes.
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Description

Technical Field

[0001] This utility model relates to the field of food processing technology, specifically a food cutting device. Background Technology

[0002] In the processing of pastries such as cakes, cookies, and bread, cutting is usually required to meet different needs and for ease of consumption. For example, cookies are usually made by cutting dough into pieces and then baking them. In order to reduce labor costs and improve production efficiency, factories usually use cutting equipment to cut the dough into pieces.

[0003] Chinese patent discloses a food cutting device (authorization announcement number CN213320336U). This patented technology uses an electric cylinder to drive a pressure plate, which, together with the cutting layer set below the pressure plate, can easily and conveniently cut food into pieces. The fixing groove set on the blade fixing layer, together with the blade retainers set on both sides of the blade, can easily change the gap between the blades and adjust the size of the pieces. However, its cutting efficiency is low and it cannot achieve automated cutting. Utility Model Content

[0004] The purpose of this invention is to provide a food processing cutting device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A food processing cutting device includes a processing table and a conveyor belt embedded in and installed on the upper part of the processing table. The upper end of the processing table, located outside the conveyor belt, has three gantry frames arranged sequentially from back to front. A transverse edge-cutting mechanism is installed through the inner side of gantry frame one, a vertical edge-cutting mechanism is installed through the inner side of gantry frame two, and a block cutting mechanism is installed through the inner side of gantry frame three. A set of guide plates is provided on the upper end of the processing table outside the block cutting mechanism, and a fan cover is installed on the upper end of the processing table near the front side of the block cutting mechanism. A chip removal fan is installed on the upper end of the fan cover.

[0007] As a further improvement of this utility model: a discharge port is provided on the front side of the fan cover, and a guide trough is installed at the lower end of the front end of the processing table near the discharge port.

[0008] As a further embodiment of this utility model: the transverse cutting mechanism includes a set of parallel blades, each blade having a connecting strip I fixedly connected to both sides of its upper end, each connecting strip I having a screw rod installed through its inner side, and each screw rod having a set of nuts meshing with its outer side at the front and rear ends of the connecting strip I, two adjacent screw rods being fixedly connected by a fixing sleeve in the front-back direction, and a connecting strip II being fixedly connected between the two fixing sleeves in the left-right direction, with a cylinder I fixedly connected to the upper end of the connecting strip II.

[0009] As a further embodiment of this utility model: a nut pair is fixedly connected to the rear end of the outer side of the cylinder one, a ball screw is engaged through the inner side of the nut pair, and a guide sleeve is fixedly connected to the upper end of the outer side of the nut pair. A guide rod is slidably connected through the inner side of the guide sleeve. A motor bracket is installed at both ends of the ball screw and the guide rod, and a screw motor is fixedly connected to one end of the ball screw.

[0010] As a further embodiment of this utility model: the upper end of the first gantry is provided with a strip groove, the first cylinder is slidably connected to the inner side of the strip groove, the motor bracket is fixedly installed on the upper end of the inner side of the first gantry, and the upper end of the second gantry is provided with a strip groove.

[0011] As a further embodiment of this utility model: the block cutting mechanism includes a set of parallel support plates, with block blades arranged horizontally and vertically between the set of support plates, and a fixing strip fixedly connected to the upper end of the set of support plates. A cylinder two is fixedly connected to the upper end of the fixing strip, and the outer shell of the cylinder two is fixed on the gantry three.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] This invention uses a horizontal and vertical cutting mechanism to remove excess material from the four sides of food, resulting in a regular shape. A block cutting mechanism then cuts the food into identical blocks. A chip removal fan sucks out residue and debris from the fan hood, keeping the cut food clean and achieving automated cutting with high efficiency. Furthermore, the cutting width and position of both the horizontal and vertical cutting mechanisms are adjustable to accommodate food of different sizes. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of a food processing cutting device.

[0015] Figure 2 This is a schematic diagram of the transverse cutting mechanism in a food processing cutting device.

[0016] Figure 3for Figure 2 A magnified structural diagram of part A in the middle;

[0017] Figure 4 This is a schematic diagram of the block cutting mechanism in a food processing block cutting device.

[0018] In the diagram: 1. Processing table; 2. Conveyor belt; 3. Gantry 1; 4. Gantry 2; 5. Horizontal trimming mechanism; 51. Blade; 52. Connecting strip 1; 53. Connecting strip 2; 54. Motor bracket; 55. Cylinder 1; 56. Guide rod; 57. Guide sleeve; 58. Nut pair; 59. Ball screw; 510. Screw motor; 511. Fixing sleeve; 512. Screw; 513. Nut; 6. Vertical trimming mechanism; 7. Guide plate; 8. Block cutting mechanism; 81. Support plate; 82. Block blade; 83. Cylinder 2; 84. Fixing strip; 9. Chip removal fan; 10. Discharge port; 11. Guide chute; 12. Fan cover; 13. Gantry 3; 14. Strip chute 1; 15. Strip chute 2. Detailed Implementation

[0019] Please see Figures 1-4 In this embodiment of the present invention, a food processing cutting device includes a processing table 1 and a conveyor belt 2 embedded in the upper end of the processing table 1. The upper end of the processing table 1, located outside the conveyor belt 2, is provided with a first gantry 3, a second gantry 4, and a third gantry 13 arranged sequentially from back to front. A transverse cutting mechanism 5 is installed through the inner side of the first gantry 3, a vertical cutting mechanism 6 is installed through the inner side of the second gantry 4, and a block cutting mechanism 8 is installed through the inner side of the third gantry 13. A set of guide plates 7 is provided on the upper end of the processing table 1, outside the block cutting mechanism 8. A fan shroud 12 is installed on the upper end of the processing table 1 near the front of the block cutting mechanism 8. A chip removal fan 9 is installed on the upper end of the fan shroud 12, and a discharge port 10 is opened on the front side of the fan shroud 12. A guide groove 11 is installed on the lower end of the front end of the processing table 1 near the discharge port 10. The edge cutting mechanism 5 has the same structure as the vertical edge cutting mechanism 6, except that the cutting directions are perpendicular to each other. The horizontal edge cutting mechanism 5 cuts off the two sides of the food (such as pastries) in the front-back direction. The vertical edge cutting mechanism 6 cuts off the two sides of the food in the left-right direction. The guide plate 7 guides the food after cutting, so that it can be transported directly below the block cutting mechanism 8. The block cutting mechanism 8 then cuts the food into blocks of the same size. The output end of the chip removal fan 9 is connected to an external pipe. The residue and debris generated during the cutting process enters the fan hood 12. The chip removal fan 9 sucks out the residue and debris in the fan hood 12 and discharges it to the outside through the pipe. The block food falls from the discharge port 10 into the guide trough 11. A storage box is placed below the guide trough 11 to store the food.

[0020] exist Figure 1 , Figure 2 and Figure 3 In the middle, the transverse cutting mechanism 5 includes a set of parallel blades 51. Each blade 51 has a connecting strip 52 fixedly connected to both sides of its upper end. A screw 512 is installed through the inner side of each connecting strip 52. A set of nuts 513 are engaged with the outer side of each screw 512 at the front and rear ends of the connecting strip 52. Adjacent screws 512 are fixedly connected in the front-rear direction by a fixing sleeve 511. A connecting strip 53 is fixedly connected between the two fixing sleeves 511 in the left-right direction. The upper part of the connecting strip 53... A cylinder 55 is fixedly connected to the end. By rotating two nuts 513 in the same direction, the position of the connecting strip 52 on the screw 512 can be adjusted, thereby adjusting the distance between the two blades 51 to meet the cutting requirements of different sized foods. When the food is large, the distance between the two blades 51 is increased, and vice versa. The cylinder 55 drives the connecting strip 53 to move downward, which in turn drives the blades 51 to move downward, allowing the blades 51 to cut off the excess parts on both sides of the food. The outer rear end of the cylinder 55... A nut assembly 58 is fixedly connected, with a ball screw 59 meshing through the inner side of the nut assembly 58. A guide sleeve 57 is fixedly connected to the upper outer side of the nut assembly 58, and a guide rod 56 is slidably connected through the inner side of the guide sleeve 57. A motor bracket 54 is mounted on both ends of the ball screw 59 and the guide rod 56. A screw motor 510 is fixedly connected to one end of the ball screw 59. A slotted groove 14 is formed at the upper end of the gantry 3, and a cylinder 55 is slidably connected through the inner side of the slotted groove 14. The motor bracket 54 is fixedly mounted on... The upper inner side of the gantry 3 is driven by the lead screw motor 510 to rotate the ball screw 59, causing the nut assembly 58 to move left and right along the ball screw 59. This causes the guide sleeve 57 and the cylinder 55 to move left and right along the guide rod 56, which in turn drives the blade 51 to move left and right, so that the blade 51 is aligned with the edge of the food on the conveyor belt 2 to meet the cutting requirements. Similarly, the upper end of the gantry 4 is provided with a strip groove 15. The vertical cutting mechanism 6 can also move left and right along the strip groove 15 to meet the cutting requirements.

[0021] exist Figure 1 and Figure 4 In the middle, the block cutting mechanism 8 includes a set of parallel support plates 81, and block blades 82 arranged horizontally and vertically are installed between the set of support plates 81. A fixing strip 84 is fixedly connected to the upper end of the set of support plates 81, and a cylinder 83 is fixedly connected to the upper end of the fixing strip 84. The outer shell of the cylinder 83 is fixed on the gantry 13. The cylinder 83 drives the fixing strip 84 to move downward, thereby causing the support plates 81 and the block blades 82 to move downward together, and the block blades 82 cut the food into blocks of the same size.

[0022] The working principle of this utility model is as follows: First, the prepared large pieces of food (such as pastries) are placed on the conveyor belt 2, and the conveyor belt 2 transports the food towards the feeding trough 11; when the food reaches the bottom of the gantry 3, the screw motor 510 on the gantry 3 drives the ball screw 59 to rotate, causing the nut assembly 58 to move left and right along the ball screw 59, causing the blade 51 to move left and right, thereby aligning the blade 51 with the edge of the food; then, the cylinder 55 extends, driving the connecting strip 53 to move downward, and the blade 51 cuts off the excess parts on both sides of the food in the front-back direction.

[0023] Next, the food continues to move forward on the conveyor belt 2. When it reaches the bottom of the gantry 4, the vertical cutting mechanism 6 cuts off both sides of the food in the left and right directions.

[0024] Next, the cut food continues to move forward on the conveyor belt 2. The guide plate 7 guides the cut food so that it is transported directly below the gantry 13. The cylinder 83 extends, driving the fixing bar 84 to move downward, and the square blade 82 cuts the food into squares of the same size.

[0025] Next, the diced food enters the blower hood 12, where the debris and crumbs are sucked out by the chip removal fan 9 and discharged to the outside through the pipe; while the cubed food falls from the discharge port 10 into the guide trough 11. A storage box is placed below the guide trough 11 to store the food.

[0026] The above are merely preferred embodiments of this utility model, but the scope of protection of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this utility model, based on the technical solution and inventive concept of this utility model, should be included within the scope of protection of this utility model.

Claims

1. A food processing cutting device, comprising a processing table (1) and a conveyor belt (2) embedded in and installed on the upper end of the processing table (1), characterized in that, The upper end of the processing table (1) is located outside the conveyor belt (2) and is provided with gantry one (3), gantry two (4) and gantry three (13) in sequence from back to front. A transverse cutting mechanism (5) is installed through the inner side of gantry one (3), a vertical cutting mechanism (6) is installed through the inner side of gantry two (4), and a block cutting mechanism (8) is installed through the inner side of gantry three (13). A set of guide plates (7) is provided on the upper end of the processing table (1) outside the block cutting mechanism (8), and a fan cover (12) is installed on the upper end of the processing table (1) near the front side of the block cutting mechanism (8). A chip removal fan (9) is installed on the upper end of the fan cover (12).

2. The food processing cutting device according to claim 1, characterized in that, The front side of the fan cover (12) is provided with a discharge port (10), and the front end of the processing table (1) near the lower end of the discharge port (10) is provided with a guide trough (11).

3. The food processing cutting device according to claim 1, characterized in that, The transverse cutting mechanism (5) includes a set of parallel blades (51). Each blade (51) has a connecting strip (52) fixedly connected to both sides of its upper end. A screw (512) is installed through the inner side of each connecting strip (52). A set of nuts (513) is engaged with the front and rear ends of each screw (512) at the outer side of the connecting strip (52). Two adjacent screws (512) are fixedly connected by a fixing sleeve (511) in the front-back direction. A connecting strip (53) is fixedly connected between the two fixing sleeves (511) in the left-right direction. A cylinder (55) is fixedly connected to the upper end of the connecting strip (53).

4. A food processing cutting device according to claim 3, characterized in that, A nut pair (58) is fixedly connected to the rear end of the outer side of the cylinder (55). A ball screw (59) is meshed through the inner side of the nut pair (58). A guide sleeve (57) is fixedly connected to the upper end of the outer side of the nut pair (58). A guide rod (56) is slidably connected through the inner side of the guide sleeve (57). A motor bracket (54) is installed at both ends of the ball screw (59) and the guide rod (56). A screw motor (510) is fixedly connected to one end of the ball screw (59).

5. A food processing cutting device according to claim 4, characterized in that, The upper end of the first gantry (3) is provided with a strip groove (14), the first cylinder (55) is slidably connected to the inner side of the strip groove (14), the motor bracket (54) is fixedly installed on the upper end of the inner side of the first gantry (3), and the upper end of the second gantry (4) is provided with a strip groove (15).

6. A food processing cutting device according to claim 1, characterized in that, The block cutting mechanism (8) includes a set of parallel support plates (81), with block blades (82) arranged horizontally and vertically between the set of support plates (81), and a fixing strip (84) fixedly connected to the upper end of the set of support plates (81). A cylinder two (83) is fixedly connected to the upper end of the fixing strip (84), and the outer shell of the cylinder two (83) is fixed on the gantry three (13).