Device for food material dicing treatment
By designing a food diced processing device that includes slices, strips and diced devices, the problem that existing equipment is difficult to control the diced volume and size is solved, and precise adjustment of the diced size of the food diced size and improvement of the production efficiency is achieved.
Patent Information
- Application Number
- CN202421950467.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-13
AI Technical Summary
The existing ingredient dicing processing equipment is difficult to control the diced volume and size, and it consumes high labor costs and low production efficiency.
A food diced processing device including slices, strips and diced devices is designed to accurately adjust the size of the food diced size and improve production efficiency by adjusting the components and anti-stick components.
It realizes flexible adjustment of the size of diced ingredients, reduces labor costs, improves production efficiency, prevents stagnation of ingredients, and improves cutting effect.
Smart Images

Figure CN223013281U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of food processing, and particularly relates to a device for dicing food materials. Background Art
[0002] Food materials such as purple sweet potatoes, Chinese yams, and tremella are usually added to instant porridge cans. These food materials need to be processed through cleaning, dicing, etc. before being put into the products. The existing steps for dicing food materials generally include slicing, strip cutting, and dicing, which are completed separately. This method not only results in large differences in the quality specifications of the diced products, but also consumes high labor costs and has low production efficiency. In the current dicing equipment, the positions of the internal slicing knives are relatively far apart, and the specifications of the slicing knives are fixed, making it difficult to control and change the diced volume size. Content of the Utility Model
[0003] The purpose of the utility model is to provide a device for dicing food materials to solve the technical problems raised in the above background art.
[0004] To achieve the above purpose, the specific technical solution of a device for dicing food materials of the utility model is as follows:
[0005] A device for dicing food materials includes a base, a slicing device disposed on the base through a first support plate for slicing materials, two second support plates disposed on the base, a strip cutting device rotatably disposed between the two second support plates, an anti-sticking component disposed on the two second support plates and cooperating with the strip cutting device, and a dicing device disposed below the strip cutting device on the two second support plates and cooperating with the anti-sticking component. The slicing device includes a loading bucket disposed on the first support plate, a turntable rotatably disposed at one end of the loading bucket, a plurality of supporting plates distributed on the turntable inside the loading bucket, a first motor disposed on the base through a mounting frame, and the first motor is connected to the turntable through a connecting shaft. An opening is disposed on the side wall of the loading bucket, a slicing knife is disposed at the bottom end of the opening, a guiding plate is disposed outside the lower end of the opening, a flap is rotatably disposed on the opening of the loading bucket, and an adjusting portion for adjusting the flap is disposed on the second support. The strip cutting device includes a hollow shaft disposed on the second support plate, a limiting groove is formed on the hollow shaft, a plurality of first cutting knives slidably disposed on the hollow shaft, and a plurality of limiting blocks slidably disposed in the limiting groove, the limiting blocks are connected to the first cutting knives, the first cutting knives cooperate with the guiding plate, and the first cutting knives are evenly distributed on the hollow shaft. An adjusting component for adjusting the distance between the first cutting knives is disposed on the hollow shaft. The connecting shaft and the hollow shaft are connected through a transmission portion.
[0006] Furthermore, the dicing device includes a roller rotatably disposed on the second support plate, a plurality of second cutting knives distributed on the circumference of the roller, a second motor disposed on the first support plate, and the second motor is connected to the roller.
[0007] Further, the adjusting component includes sliders slidably arranged at both ends of the limiting groove. An adjusting frame is arranged inside the hollow shaft between the two sliders, and the adjusting frame is hinged by a plurality of extension frames. The extension frame includes a first connecting rod and a second connecting rod that are cross-rotationally connected by a pin shaft. The first connecting rod and the second connecting rod between adjacent extension frames are rotationally connected by a pin shaft. The first connecting rod and the second connecting rod at the head and tail ends of the adjusting frame are slidably arranged with their corresponding sliders. The pin shaft of the extension frame is rotationally connected with the limiting block. A second bracket is arranged on the outer wall of the second support plate, and an electric push rod is arranged on the second bracket. The electric push rod is rotationally connected with its corresponding slider.
[0008] Further, the anti-sticking component includes a third support plate arranged on the second support plate, a connecting plate for connecting the two third support plates. A plurality of baffle plates are distributed on the connecting plate. Each baffle plate is inserted into the gap between adjacent first cutting knives, and the free end of the baffle plate is chamfered.
[0009] Further, the adjusting part includes a first bracket arranged on the two second support plates. A through groove is formed on the first bracket, and a mounting block is rotatably arranged in the through groove. A screw rod is threadedly connected to the mounting block. One end of the screw rod is rotationally arranged with the turning plate, and a handle is arranged at the other end.
[0010] Further, the transmission part includes belt pulleys arranged on the connecting shaft and the hollow shaft. The two belt pulleys are connected by a transmission belt.
[0011] Further, a retaining ring is arranged at one end of the material loading bucket opposite to the first motor.
[0012] The device for dicing food materials of the present utility model has the following advantages:
[0013] 1. By setting the adjusting part and the adjusting component, the adjusting part can change the slicing thickness of the food materials, and the adjusting component can drive the adjusting component to work under the external force applied by the electric push rod, thereby driving the first cutting knife connected thereto to move, so as to adjust the cutting width of the first cutting knife on the food materials, and finally achieve the purpose of adjusting the dicing size of the food materials.
[0014] 2. By setting the anti-sticking component, it can prevent the food materials cut by the first cutting knife from getting stuck in the gap between adjacent first cutting knives, resulting in an unsatisfactory cutting effect on the food materials.
[0015] 3. By setting the retaining ring, it can prevent the materials in the loading bucket from being thrown out during rotation, causing waste of food materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic structural diagram of the device for dicing food materials of the present utility model;
[0017] Figure 2 is a schematic diagram of the transmission part of the present utility model;
[0018] Figure 3 Schematic diagram of the slicing device of the present utility model;
[0019] Figure 4 Schematic diagram of the guide plate, the first cutting knife, the baffle plate, the rotating roller and the second cutting knife of the present utility model;
[0020] Figure 5 Schematic diagram of the hollow shaft, the limiting groove, the limiting block and the first cutting knife of the present utility model;
[0021] Figure 6 Schematic diagram of the adjusting assembly of the present utility model;
[0022] Figure 7 Schematic diagram of the anti-sticking assembly of the present utility model;
[0023] Figure 8 Schematic diagram of the adjusting device of the present utility model.
[0024] Description of the markings in the figure:
[0025] 1. Base; 2. Loading bucket; 3. First support plate; 4. Turntable; 5. Support plate; 6. Retaining ring; 7. Second support plate; 8. Hollow shaft; 81. Limiting groove; 9. First cutting knife; 91. Limiting block; 10. First motor; 101. Mounting frame; 11. Dicing device; 111. Rotating roller; 112. Second cutting knife; 113. Second motor; 12. Transmission part; 121. Belt pulley; 122. Transmission belt; 13. Anti-sticking assembly; 131. Third support plate; 132. Connecting plate; 133. Baffle plate; 14. Flap; 15. Slice knife; 16. Guide plate; 17. First bracket; 171. Through groove; 18. Mounting block; 181. Screw; 182. Handle; 19. Adjusting assembly; 191. First connecting rod; 192. Second connecting rod; 193. Pin shaft; 194. Slide block; 20. Second bracket; 21. Electric push rod. Detailed implementation manners
[0026] In order to better understand the purpose, structure and function of the present utility model, the following further describes in detail a device for dicing food materials of the present utility model with reference to the accompanying drawings.
[0027] As Figures 1 to 8As shown in the figure, a device for dicing food ingredients of the present utility model includes a base 1, and a slicing device for slicing materials is provided on the base 1 through a first support plate 3. At the same time, two second support plates 7 are also provided on the base 1, and a strip cutting device is rotatably provided between the two second support plates 7. A dicing device 11 is provided below the strip cutting device on the two second support plates 7. After the materials are sliced by the slicing device, they are cut into strips by the strip cutting device, and finally the strip-shaped materials are diced by the dicing device 11. In order to prevent the materials from getting stuck in the strip cutting device when being cut into strips, an anti-sticking component 13 cooperating with the strip cutting device is provided on the two second support plates 7, and the anti-sticking component 13 also cooperates with the dicing device 11.
[0028] The above-mentioned slicing device includes a loading bucket 2 provided on the first support plate 3, a turntable 4 rotatably provided at one end of the loading bucket 2, and the diameter of the turntable 4 is adapted to the diameter of the loading bucket 2. On the turntable 4, there are distribution trays 5 inside the loading bucket 2, and the trays 5 are inclined along the diameter of the turntable 4. A first motor 10 is provided on the base 1 through a mounting bracket 101, the first motor 10 is connected to the turntable 4 through a connecting shaft, and the first motor 10 is powered by being electrically connected to an external power supply. An opening is provided on the side wall of the loading bucket 2, a slicing knife 15 is provided at the bottom of the opening, and a flap 14 is rotatably provided at the opening of the loading bucket 2. When slicing materials, the materials are directly placed into the loading bucket 2, and then the first motor 10 is started. The first motor 10 drives the turntable 4 and the trays 5 on the turntable 4 to rotate. Under the action of the trays 5, the materials are thrown onto the inner wall of the loading bucket 2. When the materials rotate to contact the slicing knife 15, the materials will be cut by the slicing knife 15, and the cutting thickness is adapted to the gap between the slicing knife 15 and the flap 14. It should be noted here that the trays 5 are inclined with respect to the turntable 4, which can facilitate the formation of a clamping force on the materials by the angle formed between the trays 5 and the inner wall of the loading bucket 2 when the trays 5 rotate with the turntable 4, preventing the problem of the materials moving randomly. In order to prevent the materials from detaching from the loading bucket 2 when the trays 5 drive the materials to rotate, a retaining ring 6 is provided at one end of the loading bucket 2 relative to the first motor 10.
[0029] Meanwhile, to facilitate the adjustment of the slicing thickness of the slicing device for the material, the flap 14 and the upper end of the opening are rotatably connected, and an adjusting part for adjusting the flap 14 is provided on the second support plate 7. The adjusting part for adjusting the flap 14 includes a first bracket 17 provided on the two second support plates 7. A through groove 171 is formed in the first bracket 17. An installation block 18 is rotatably arranged in the through groove 171. A screw rod 181 is threadedly connected to the installation block 18. One end of the screw rod 181 is rotatably arranged with the flap 14, and a handle 182 is provided at the other end. By rotating the handle 182, the handle 182 will drive the screw rod 181 to rotate. When the screw rod 181 rotates, it will move outwards on the installation block 18 threadedly connected to it. When the screw rod 181 moves, it will drive the flap 14 to rotate on the opening. When the appropriate distance between the flap 14 and the cutting knife is reached, stop rotating the handle 182. The operation is simple and convenient to use. When it is necessary to reduce the distance between the flap 14 and the cutting knife, reverse the handle 182.
[0030] As Figure 3 and Figure 4 shown, a guide plate 16 is provided on the outer side of the lower end of the opening of the material loading bucket 2. The strip cutting device is matched with the guide plate 16, and the sliced material will directly slide down along the guide plate 16 and be strip-cut by the strip cutting device. Specifically, the strip cutting device includes a hollow shaft 8 provided on the second support plate 7. A plurality of first cutting knives 9 are distributed on the hollow shaft 8, and the first cutting knives 9 are evenly distributed on the hollow shaft 8. It should be noted that the first cutting knives 9 are matched with the guide plate 16, and the connecting shaft and the hollow shaft 8 are connected through a transmission part 12. The transmission part 12 includes belt pulleys 121 provided on the connecting shaft and the hollow shaft 8, and the two belt pulleys 121 are connected through a transmission belt 122. When the first motor 10 rotates, it will drive the connecting shaft connected to it to rotate. The belt pulley 121 on the connecting shaft will also drive another belt pulley 121 to rotate through the transmission belt 122, so that the hollow shaft 8 rotates. The first cutting knives 9 and the limit blocks 91 provided on the hollow shaft 8 will also rotate accordingly. When the material is sliced, the sliced material will slide down along the guide plate 16 and be cut into strips under the action of the first cutting knives 9.
[0031] To facilitate the adjustment of the spacing of the first cutting knife 9 on the hollow shaft 8, a limit groove 81 is formed on the hollow shaft 8. The first cutting knife 9 is slidably arranged on the hollow shaft 8, and the limit block 91 is slidably arranged in the limit groove 81. The limit block 91 is connected to the first cutting knife 9 to prevent the first cutting knife 9 from rotating on the hollow shaft 8. An adjusting assembly 19 for adjusting the spacing of the first cutting knife 9 is provided on the hollow shaft 8. Specifically, the adjusting assembly 19 includes sliders 194 arranged at both ends of the limit groove 81 in a sliding manner. An adjusting frame is arranged inside the hollow shaft 8 between the two sliders 194, and the adjusting frame is hinged through a plurality of extension frames. The extension frame includes a first connecting rod 191 and a second connecting rod 192 that are cross-rotationally connected through a pin shaft 193. The first connecting rod 191 and the second connecting rod 192 of adjacent extension frames are rotationally connected through a pin shaft 193, and the first connecting rod 191 and the second connecting rod 192 at the head and tail ends of the adjusting frame are slidably arranged with their corresponding sliders 194. Among them, the pin shaft 193 of each extension frame is rotationally connected to its corresponding limit block 91. At the same time, a second support 20 is arranged on the outer wall of the second support plate 7, and the second support 20 is L-shaped. An electric push rod 21 with a telescopic end facing the direction of the hollow shaft 8 is arranged on the second support 20, and the electric push rod 21 is connected to its corresponding slider 194.
[0032] Among them, the two electric push rods 21 are connected through a controller, which facilitates the simultaneous telescopic operation of the two electric push rods 21 at the same speed. When it is necessary to adjust the spacing of each first slice, the electric push rod 21 can be started. The electric push rod 21 pushes the slider 194 connected to it. The two sliders 194 simultaneously push the adjusting frame. The adjusting frame contracts, and each extension frame on the adjusting frame will drive the limit block 91 to move through the pin shaft 193. When the limit block 91 moves, it will also drive the first cutting knife 9 connected to it to move, ultimately achieving the purpose of adjusting the spacing between adjacent first cutting knives 9 and meeting the requirements for cutting strips of materials of different sizes.
[0033] The anti-sticking assembly 13 arranged on the second support 20 includes a third support plate 131 arranged on the second support plate 7, a connecting plate 132 for connecting the two third support plates 131. A plurality of baffle plates 133 are distributed on the connecting plate 132, and the number of the baffle plates 133 is adapted to the number of gaps between the first cutting knives 9, so that each baffle plate 133 is inserted into the gap between adjacent first cutting knives 9 respectively, and the free end of the baffle plate 133 is chamfered. The material sliced by the first cutting knife 9 will be thrown downward along the chamfer at the free end of the baffle plate 133 under the action of the first cutting knife 9, thus preventing the problem that the material is stuck in the gap between adjacent first cutting knives 9. It should be noted that the thickness of the baffle plate 133 is less than the gap between adjacent first cutting knives 9, and the baffle plate 133 only needs to meet the requirement that the material is not stuck in the gap between adjacent first slices, and no more restrictions are made here.
[0034] The ejected strip-shaped material is diced by the dicing device 11. Specifically, the dicing device 11 includes a rotating roller 111 disposed on the second support plate 7, and second cutting knives 112 distributed on the circumference of the roller 111. The second cutting knives 112 are arranged along the axis of the roller 111. A second motor 113 is provided on the first support plate 3. The second motor 113 is connected to the roller 111 and is electrically connected to an external power supply for power supply. As Figure 4 shown, when the dicing device 11 is dicing, the second motor 113 is started. The second motor 113 drives the roller 111 to rotate clockwise. The second cutting knives 112 provided on the roller 111 work. The strip-shaped material ejected along the chamfer of the baffle 133 is cut into blocks of the same specification under the action of the second cutting knives 112, thus completing the dicing work of the material. It should be noted that both the first motor 10 and the second motor 113 are adjustable-speed motors to change the dicing efficiency of the material.
[0035] Usage method: According to the usage requirements, the adjusting component 19 adjusts the distance between the first cutting knives 9 in the slicing device, and the distance between the turning plate 14 and the slicing knives 15 is adjusted through the adjusting part. Then, the first motor 10 and the second motor 113 are started. The first motor 10 drives the slicing device to work, and the second motor 113 drives the dicing device 11 to work. Under the action of the transmission part 12, the strip-cutting device also starts to work. The material is placed in the loading bucket 2. The material is thrown onto the inner wall of the loading bucket 2 under the action of the support plate 5 and is sliced by the slicing knives 15. After the sliced material passes through the cutting knives of the strip-cutting device, it is ejected along the chamfer of the baffle 133 in the anti-sticking component 13 and is diced by the dicing device 11.
[0036] It can be understood that the present utility model is described by some embodiments. Those skilled in the art know that without departing from the spirit and scope of the present utility model, various changes or equivalent replacements can be made to these features and embodiments. In addition, under the teaching of the present utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the present utility model. Therefore, the present utility model is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application belong to the scope protected by the present utility model.
Claims
1. A device for dicing food, characterized in that: The invention comprises a base (1), a slicing device arranged on the base (1) through a first supporting plate (3) for slicing materials, two second supporting plates (7) arranged on the base (1), a strip cutting device rotatably arranged between the two second supporting plates (7), an anti-sticking component (13) arranged on the two second supporting plates (7) and cooperating with the strip cutting device, and a dicing device (11) cooperating with the anti-sticking component (13) arranged on the two second supporting plates (7) below the strip cutting device; The slicing device comprises a material loading bucket (2) arranged on a first supporting plate (3), a turntable (4) rotatably arranged at one end of the material loading bucket (2), a support plate (5) distributed on the turntable (4) and located inside the material loading bucket (2), a first motor (10) arranged on a base (1) via a mounting frame (101), and the first motor (10) is connected to the turntable (4) via a connecting shaft; An opening is provided on the side wall of the loading bucket (2), a blade (15) is provided at the bottom end of the opening, a guide plate (16) is provided on the outer side of the lower end of the opening, a flap (14) is rotatably provided on the opening of the loading bucket (2), and an adjustment portion for adjusting the flap (14) is provided on the second bracket (20); The strip cutting device comprises a hollow shaft (8) arranged on the second support plate (7), a limiting groove (81) is formed on the hollow shaft (8), a plurality of first cutters (9) slidably arranged on the hollow shaft (8), and a plurality of limiting blocks (91) slidably arranged in the limiting groove (81), the limiting blocks (91) are connected to the first cutters (9), the first cutters (9) are matched with the guide plate (16), and the first cutters (9) are evenly distributed on the hollow shaft (8), and an adjusting component (19) for adjusting the spacing between the first cutters (9) is provided on the hollow shaft (8); The connecting shaft is connected to the hollow shaft (8) via a transmission part (12).
2. The device for dicing food according to claim 1, characterized in that: The dicing device (11) comprises a rotating roller (111) rotatably arranged on a second support plate (7), a second cutter (112) distributed on the circumference of the rotating roller (111), and a second motor (113) arranged on the first support plate (3); the second motor (113) is connected to the rotating roller (111).
3. The device for dicing food according to claim 2, characterized in that: The adjustment assembly (19) comprises sliders (194) slidably arranged at both ends of the limit groove (81), an adjustment frame is arranged between the two sliders (194) and located in the hollow shaft (8), and the adjustment frame is hinged through a plurality of extension frames; The extension frame comprises a first connecting rod (191) and a second connecting rod (192) which are cross-rotatably connected via a pin shaft (193); the first connecting rods (191) and the second connecting rods (192) of adjacent extension frames are rotationally connected via the pin shaft (193); the first connecting rods (191) and the second connecting rods (192) at the front and rear ends of the adjustment frame and their corresponding sliders (194) are slidably arranged; the pin shaft (193) of the extension frame is rotationally connected to the limit block (91); A second bracket (20) is provided on the outer wall of the second support plate (7), and an electric push rod (21) is provided on the second bracket (20), and the electric push rod (21) is rotatably connected to its corresponding slider (194).
4. The device for dicing food according to claim 3, characterized in that: The anti-sticking component (13) comprises a third support plate (131) arranged on the second support plate (7), a connecting plate (132) for connecting two third support plates (131), a plurality of baffles (133) are distributed on the connecting plate (132), each baffle (133) is respectively inserted into the gap of the adjacent first cutter (9), and the free end of the baffle (133) is chamfered.
5. The device for dicing food according to claim 4, characterized in that: The adjusting part comprises a first bracket (17) arranged on two second support plates (7), a through slot (171) being formed on the first bracket (17), a mounting block (18) being rotatably arranged in the through slot (171), a screw rod (181) being threadedly connected to the mounting block (18), one end of the screw rod (181) being rotatably arranged with the flap (14), and a handle (182) being provided at the other end thereof.
6. The device for dicing food according to claim 5, characterized in that; The transmission part (12) comprises a pulley (121) arranged on the connecting shaft and the hollow shaft (8), and the two pulleys (121) are connected by a transmission belt (122).
7. The device for dicing food according to claim 1, characterized in that ; A retaining ring (6) is provided at one end of the material loading bucket (2) opposite to the first motor (10).