Novel strip pushing, dicing and slicing all-in-one machine

By designing a new type of cushion and slicing machine including push bar device, cutter set and rotary cutter set, the problem of single cutting form and large footprint in the prior art is solved, and multifunctional cutting of food is realized, reducing the equipment footprint and cost.

CN222972331UActive Publication Date: 2025-06-13河北领创机械制造有限公司
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Patent Information

Application Number
CN202422007080.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-06-13
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

In the prior art, the cutting thickness of vegetable and fruit processing equipment is fixed and the cutting form is single, resulting in the need of multiple equipment for processing, occupying a large area of ​​the site, and increasing processing costs.

Method used

A new type of cushion and diced slicing machine is designed, including a rack, processing bin, processing knife set, processing motor, main control box and pushing device. It can be used in combination with the cutting knife set and the rotary cutter set to cut ingredients into strips, cushions or slices, and the rotation speed of the rotary cutter set and the pushing speed of the pushing device are controlled through the main control box, so as to realize automatic switching of various cutting forms.

Benefits of technology

It realizes multi-functional cutting of ingredients, reduces the equipment's footprint, and reduces the capital investment in purchasing multiple equipment. It is suitable for vegetable and fruit processing in central kitchens and various catering companies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of fruit and vegetable cutting equipment, and particularly relates to a novel strip pushing, dicing and slicing all-in-one machine which comprises a machine frame, a processing cutter set arranged on a processing bin on the machine frame, a processing motor and a main control box. The strip pushing device is arranged on the machine frame and used for pushing food materials to the feeding port, the processing cutter set comprises a strip cutting cutter set and a rotary cutting cutter set which are sequentially arranged between the feeding port and the discharging port, and the rotary cutting cutter set is in transmission connection with the processing motor. Cutting edges of the strip cutting knife group and the rotary cutting knife group are respectively crossed with the strip pushing direction of the strip pushing device, and the main control box is respectively connected with a controlled end of the processing motor and a controlled end of the strip pushing device, so that food materials can be processed into strips, dices or slices, multiple purposes are realized, and the occupied area of the food processing equipment is reduced.
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Description

Technical Field

[0001] The utility model belongs to the field of fruit and vegetable cutting equipment, and specifically relates to a novel all-in-one machine for pushing, dicing and slicing. Background Art

[0002] Vegetables and fruits usually need to be pre-cut into strips, dices or slices before processing. Currently, there are strip pushers and slicers on the market for processing vegetables and fruits, but the cutting thickness is fixed and the cutting form cannot be changed, so the function is relatively single. It usually takes a lot of money to equip multiple equipment such as strip pushers, dicer, slicers, etc. for processing vegetables and fruits, and it also takes up a large area of ​​processing space, which increases the processing cost. Utility Model Content

[0003] In order to solve the problems existing in the above-mentioned prior art, the utility model provides a novel all-in-one strip-pushing, dicing and slicing machine, which can process food into strips, dices or slices, realize multi-purpose use of one machine and reduce the floor space occupied by food processing equipment.

[0004] The specific technical solution adopted by the utility model is:

[0005] A novel integrated strip pushing, dicing and slicing machine comprises a frame, a processing knife group arranged in a processing bin on the frame, a processing motor and a main control box, the processing bin is provided with a feed port and a discharge port, and the key point is that it also comprises a strip pushing device arranged on the frame for pushing food toward the feed port, the processing knife group comprises a strip cutting knife group and a rotary cutting knife group which are sequentially arranged between the feed port and the discharge port, the rotary cutting knife group is transmission-connected to the processing motor, the cutting edges of the strip cutting knife group and the rotary cutting knife group are respectively arranged to cross the strip pushing direction of the strip pushing device, and the main control box is respectively connected to the controlled end of the processing motor and the controlled end of the strip pushing device.

[0006] The frame is provided with a material pushing chute which is matched with the strip pushing device and the end of which is connected with the material feeding port.

[0007] The cross section of the material pushing chute is V-shaped or inverted trapezoidal.

[0008] Limiting pieces matching the strip pushing device are respectively arranged on both sides of the feed port.

[0009] The strip pushing device includes a driving motor, a pusher, a driving gear connected to the driving motor and a rack connected to the pusher. The driving gear and the rack are matched and meshed with each other. The axial direction of the rack is parallel to the strip pushing direction of the strip pushing device. The main control box is connected to the controlled end of the driving motor.

[0010] A slide bar is arranged on the frame, and the strip pushing device is slidably matched with the slide bar guide by means of a sliding bearing.

[0011] The described strip cutting knife group includes a strip cutting knife disc forming a grid structure, and the strip cutting knife disc is located at the feed inlet and fixedly connected to the processing chamber.

[0012] The described rotary cutting knife group includes a knife shaft and a set of cutting knives arranged in an array along the knife shaft, and the knife shaft is in transmission connection with the processing motor.

[0013] The beneficial effects of the present utility model are:

[0014] In the present utility model, a pushing device pushes food materials towards the feed inlet of the processing chamber. The food materials enter the processing chamber from the feed inlet, and the food materials pass through the strip cutting knife group and the rotary cutting knife group in sequence. The food materials are divided into strips by the strip cutting knife group. The pushing device continues to push the food materials, and the strip-shaped food materials output by the strip cutting knife group pass through the rotary cutting knife group and are cut into individual strip, diced or flake-shaped food materials by the rotary cutting knife group. The cut food materials fall from the discharge outlet. By controlling the coordination between the rotation speed of the rotary cutting knife group and the pushing speed of the pushing device, the food materials are processed into dices, strips of different lengths, or slices of different thicknesses, realizing multiple functions in one machine and reducing the floor area occupied by food material processing equipment. Description of the Drawings

[0015] Figure 1 is a schematic structural diagram of the present utility model;

[0016] Figure 2 is an assembly schematic diagram of the strip cutting knife group and the rotary cutting knife group on the processing chamber;

[0017] Figure 3 is an assembly schematic diagram of the rotary cutting knife group and the processing motor;

[0018] Figure 4 is an assembly schematic diagram of the driving motor, the driving gear and the rack;

[0019] In the drawings, 1, frame; 2, processing motor; 3, main control box; 4, feed inlet; 5, discharge outlet; 6, pushing chute; 7, limiting member; 8, pushing device, 801, driving motor, 802, pusher, 803, driving gear, 804, rack; 9, strip cutting knife group, 901, fixed disc, 902, strip cutting knife; 10, rotary cutting knife group, 1001, knife shaft, 1002, cutting knife; 11, sliding rod; 12, sliding bearing; 13, processing chamber. Detailed Embodiments

[0020] The following further describes the present utility model in conjunction with the drawings and specific embodiments:

[0021] The specific embodiment is as follows Figures 1-4As shown in the figure, a new type of integrated push bar dicing and slicing machine includes a frame 1, a processing knife set in the processing bin 13 on the frame 1, a processing motor 2, and a main control box 3. The processing bin 13 is provided with a feeding port 4 and a discharging port 5. The key is that it also includes a push bar device 8 arranged on the frame 1 for pushing food materials towards the feeding port 4. The processing knife set includes a strip cutting knife set 9 and a rotary cutting knife set 10 arranged in sequence between the feeding port 4 and the discharging port 5. The rotary cutting knife set 10 is in transmission connection with the processing motor 2. The cutting edges of the strip cutting knife set 9 and the rotary cutting knife set 10 are respectively arranged intersecting with the pushing direction of the push bar device 8. The main control box 3 is respectively connected to the controlled end of the processing motor 2 and the controlled end of the push bar device 8. The main control box 3 respectively controls the rotation speed of the processing motor 2 and the pushing speed of the push bar device 8.

[0022] During operation, the push bar device 8 pushes the food materials to the feeding port 4 of the processing bin 13. The food materials enter the processing bin 13 from the feeding port 4 and pass through the strip cutting knife set 9 and the rotary cutting knife set 10 in sequence. The strip cutting knife set 9 divides the food materials into strips. The push bar device 8 continues to push the food materials. The strip-shaped food materials output by the strip cutting knife set 9 pass through the rotary cutting knife set 10, and the rotary cutting knife set 10 cuts the strip-shaped food materials. The cut food materials fall from the discharging port 5. A receiving basket can be placed below the discharging port 5 to receive the food materials falling from the discharging port 5.

[0023] This integrated machine is suitable for the processing of various fruits and root vegetables.

[0024] The main control box 3 controls the rotation speed of the processing motor 2 to control the rotation speed of the rotary cutting knife set 10, so as to control the cutting length of the food materials output by the strip cutting knife set 9, and process the food materials into dices, strips of different lengths or slices of different thicknesses, realizing multiple functions with one machine, reducing the floor area of food material processing equipment, and at the same time reducing the capital investment in purchasing food material processing equipment. It is suitable for central kitchens and various catering enterprises.

[0025] The main control box 3 can also adjust the pushing speed of the push bar device 8, that is, adjust the speed of the food materials moving towards the strip cutting knife set 9. Through the coordination of the rotation speed of the rotary cutting knife set 10 and the pushing speed of the push bar device 8, the food materials are processed into strips, dices or slices, improving the processing speed and ensuring the quality of the cut surface of the food materials.

[0026] A push chute 6 is arranged on the frame 1, which is matched with the push bar device 8 and the end of which is connected to the feeding port 4, and is used to carry the food materials and prevent the food materials from deflecting to both sides during the movement, ensuring that the food materials are pushed to the feeding port 4.

[0027] Furthermore, the cross-section of the pushing chute 6 is V-shaped or inverted trapezoidal in structure, and the pushing chute 6 can adapt to food of various shapes and effectively support the food. The food to be processed is placed on the pushing chute 6, and the pushing device 8 works to push the food along the pushing chute 6 toward the processing bin 13 to prevent the food from deviating from the pushing device 8, thereby ensuring that the food can move in a straight line toward the processing bin 13 as the pushing device 8 moves.

[0028] Limiting members 7 matching the strip pushing device 8 are respectively arranged on both sides of the feed port 4, and the limiting members 7 limit the movable distance of the transverse stacking assembly 8 to ensure that the strip pushing device 8 can push the food into the processing bin 13 as much as possible, while preventing the transverse stacking assembly 8 from colliding and being damaged by the strip cutting knife group 9.

[0029] The strip pushing device 8 includes a driving motor 801, a pusher 802, a driving gear 803 that is transmission-connected to the driving motor 801, and a rack 804 that is connected to the pusher 802. The driving gear 803 and the rack 804 are matched and meshed with each other. The axial direction of the rack 804 is parallel to the strip pushing direction of the strip pushing device 8. The main control box 3 is connected to the controlled end of the driving motor 801. When the driving motor 801 works, it drives the driving gear 803 to rotate. The driving gear 803 meshes with the rack 804 to make the rack 804 move along its axial direction, thereby driving the pusher 802 to push the food toward the processing bin 13.

[0030] A slide bar 11 is provided on the frame 1, and the strip pushing device 8 is guided and slidably cooperated with the slide bar 11 by means of a sliding bearing 12, wherein the axial direction of the slide bar 11 is arranged parallel to the axial direction of the rack 804, ensuring that the strip pushing device 8 moves toward the processing bin 13 in a straight line, so that the strip cutting knife group 9 can effectively divide the food. The limiting member 7 is a limiting spacer sleeve mounted on the slide bar 11, and a slide seat connected to the rack 804 is provided on the slide bar 11. The pusher 802 is fixedly connected to the slide seat by means of a pusher mounting seat, and the pusher mounting seat and the limiting spacer sleeve are matched to limit the position of the pusher 802.

[0031] The strip cutting knife group 9 includes a strip cutting knife disk that forms a grid structure. The strip cutting knife disk is located at the feed port 4 and is fixedly connected to the processing bin 13. The food is cut into strips of the same size as the grid by the strip cutting knife disk, and is cut along the grid by the rotary cutting knife group 10; the strip pushing, dicing and slicing integrated machine is equipped with a plurality of strip cutting knife disks, and the number of grids on each strip cutting knife disk is different, that is, the size of the grids formed on each strip cutting knife disk is different. Before work, the strip cutting knife disk with the corresponding grid size can be selected as needed and installed on the processing bin 13, so as to cut the food into strips with a cross-section of the desired size, and finally cut into strips, dices or slices of different lengths by the rotary cutting knife group 10.

[0032] Further, the rotary cutting tool set 10 includes a tool shaft 1001 and a set of cutting tools 1002 arranged in an array along the tool shaft 1001. The tool shaft 1001 is drivingly connected to the processing motor 2. In this embodiment, a total of two cutting tools 1002 are provided on the tool shaft 1001. By driving the tool shaft 1001 to rotate with the aid of the processing motor 2, the cutting tools 1002 cut the food materials output by the strip cutting cutter head. The rotation speed of the processing motor 2 and the pushing speed of the pushing device 8 are adjusted so that the food materials are all processed into preset sizes.

Claims

1. A novel all-in-one machine for pushing, dicing and slicing, comprising a frame (1), a processing knife group arranged in a processing chamber (13) on the frame (1), a processing motor (2) and a main control box (3), wherein the processing chamber (13) is provided with a feed inlet (4) and a discharge outlet (5), and characterized in that: The machine also comprises a strip pushing device (8) arranged on the frame (1) for pushing the food material toward the feed port (4); the processing knife group comprises a strip cutting knife group (9) and a rotary cutting knife group (10) arranged in sequence between the feed port (4) and the discharge port (5); the rotary cutting knife group (10) is connected to the processing motor (2) by transmission; the cutting edges of the strip cutting knife group (9) and the rotary cutting knife group (10) are arranged to cross the strip pushing direction of the strip pushing device (8); and the main control box (3) is connected to the controlled end of the processing motor (2) and the controlled end of the strip pushing device (8) respectively.

2. The novel strip-pushing, dicing and slicing integrated machine according to claim 1 is characterized in that: The frame (1) is provided with a material pushing chute (6) which is matched with the strip pushing device (8) and the end of which is connected with the feed port (4).

3. The novel strip-pushing, dicing and slicing integrated machine according to claim 2 is characterized in that: The cross section of the material pushing chute (6) is V-shaped or inverted trapezoidal.

4. The novel strip-pushing, dicing and slicing integrated machine according to claim 1 is characterized in that: Limiting members (7) matching with the strip pushing device (8) are respectively arranged on both sides of the feed port (4).

5. The novel strip-pushing, dicing and slicing integrated machine according to claim 1 is characterized in that: The strip pushing device (8) comprises a driving motor (801), a pusher (802), a driving gear (803) drivingly connected to the driving motor (801), and a rack (804) connected to the pusher (802); the driving gear (803) and the rack (804) are matched and meshed with each other; the axial direction of the rack (804) is parallel to the strip pushing direction of the strip pushing device (8); and the main control box (3) is connected to the controlled end of the driving motor (801).

6. The novel strip-pushing, dicing and slicing integrated machine according to claim 1 is characterized in that: The frame (1) is provided with a slide bar (11), and the strip pushing device (8) is guided and slidably matched with the slide bar (11) by means of a sliding bearing (12).

7. The novel strip-pushing, dicing and slicing integrated machine according to claim 1 is characterized in that: The strip cutting knife group (9) comprises a strip cutting knife disc forming a grid structure, and the strip cutting knife disc is located at the feed inlet (4) and is fixedly connected to the processing chamber (13).

8. The novel strip-pushing, dicing and slicing integrated machine according to claim 1 is characterized in that: The rotary cutter group (10) comprises a cutter shaft (1001) and a group of cutting knives (1002) arranged in an array along the cutter shaft (1001); the cutter shaft (1001) is drivingly connected to a processing motor (2).