Rice food processing equipment
By designing auxiliary movement and discharge mechanisms for rice food processing equipment, the problem of manual movement of discharge boxes and long-term discharge in the prior art is solved, and the effect of reducing manual labor and improving work efficiency is achieved.
Patent Information
- Application Number
- CN202421787543.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The discharge device of the existing large beige color sorting machine needs to be manually moved when moving the discharge box, which consumes more physical strength of the operator and increases manual labor. At the same time, rice and debris are discharged for a long time, reducing work efficiency.
Design a rice food processing equipment, including a collection box, an auxiliary moving mechanism and an auxiliary discharge mechanism. The auxiliary moving mechanism realizes the movement of the collection box through the servo motor and the toothed pulley system, and the auxiliary discharge mechanism realizes the automatic discharge of rice through the dual-axis motor and rack system.
Through the cooperation of wheels and auxiliary moving mechanism, the physical consumption of operators when handling the collection box is reduced and manual labor is saved. Through the automatic discharge function of the auxiliary discharge mechanism, the time for discharge of rice and debris is shortened and the working efficiency is improved.
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Figure CN222973951U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of rice food processing, and particularly relates to a rice food processing device. Background Art
[0002] Food processing mainly changes edible things through certain procedures to make them more delicious or more beneficial, etc. The raw grains or other raw materials are processed artificially to form a new form of directly edible products. Rice foods process rice into directly edible products, and the rice needs to be screened before processing.
[0003] For example, in the discharging device of a rice color sorter with the authorization announcement number of "CN217477877U", the good rice and sundries selected by the color sorter can be respectively conveyed to the good rice cavity and the sundries cavity. The number of sundries is much smaller than that of good rice. The height in the good rice cavity and the sundries cavity can be detected by the provided lidar. When the height of the good rice in the good rice cavity reaches the preset value, the main control unit can drive the electric push rod to push the movable partition to move, so that the good rice cavity increases and the sundries cavity decreases, so as to receive more good rice, reduce the number of times of replacing the discharging box, and reduce the labor intensity of the staff. However, for the discharging device of this rice color sorter, when moving the discharging box, it needs to be manually carried by the operator, which consumes a lot of physical strength of the operator, thus increasing the labor force. At the same time, for the discharging device of this rice color sorter, when discharging the rice and sundries, the operator needs to use tools to assist in discharging, and it takes a long time to discharge the rice and sundries, thus reducing the working efficiency. Content of the Utility Model
[0004] The purpose of the utility model is to solve the problems that when moving the discharging box, it needs to be manually carried by the operator, which consumes a lot of physical strength of the operator, thus increasing the labor force. At the same time, for the discharging device of this rice color sorter, when discharging the rice and sundries, the operator needs to use tools to assist in discharging, and it takes a long time to discharge the rice and sundries, thus reducing the working efficiency, and a rice food processing device is proposed.
[0005] To achieve the above purpose, the utility model provides the following technical scheme:
[0006] Design a rice food processing device, including a collection box, an auxiliary moving mechanism is arranged below the collection box, a plurality of auxiliary discharging mechanisms are arranged at the rear side of the collection box, a partition is fixedly connected in the middle of the inner wall of the collection box, two feeding ports are fixedly communicated with the upper end of the collection box, two box doors are hinged to the front side of the collection box, and sealing gaskets are arranged at the joints of the box doors and the collection box.
[0007] Preferably, the auxiliary discharging mechanism includes a first outer shell, a double-shaft motor is fixedly connected to the inner wall of the first outer shell, gears are fixedly connected to the ends of the output shafts of the double-shaft motor, the outer walls of the transmission shafts of the gears are rotatably connected to the first outer shell through bearings, the outer walls of the gears are engaged with racks, a plurality of bumps are fixedly connected to the lower ends of the racks, the outer walls of the bumps are slidably connected to the first outer shell, and the lower ends of the racks are fixedly connected to wedge-shaped push plates.
[0008] Preferably, the outer wall of the rack is slidably connected to the collection box, the outer wall of the wedge-shaped push plate is attached to the collection box, and the front end of the first outer shell is fixedly connected to the collection box.
[0009] Preferably, the auxiliary moving mechanism includes a second outer shell, a servo motor is fixedly connected to the inner wall of the second outer shell, a plurality of toothed pulleys are arranged inside the second outer shell, the outer walls of the toothed pulleys are engaged with toothed belts, the upper end of the transmission shaft of one of the toothed pulleys is fixedly connected to the output shaft of the servo motor, the upper ends of the transmission shafts of the toothed pulleys are rotatably connected to the second outer shell through bearings, the lower ends of the transmission shafts of the toothed pulleys are fixedly connected to threaded rods, the lower ends of the threaded rods are rotatably connected to the second outer shell through bearings, the outer walls of the threaded rods are threadedly connected to sliders, the outer walls of the sliders are slidably connected to the second outer shell, and wheels are installed at the lower ends of the sliders.
[0010] Preferably, the upper end of the second outer shell is fixedly connected to the collection box.
[0011] For a rice food processing device proposed by the present utility model, the beneficial effects are as follows: Through the cooperation of the wheels and the auxiliary moving mechanism, the rotation of the output shaft of the servo motor drives the rotation of one toothed pulley, and the rotation of the toothed belt drives the rotation of the other three toothed pulleys. The rotation of the toothed pulley drives the rotation of the threaded rod, thereby driving the slider to slide along the chute processed on the inner wall of the second outer shell. The sliding of the slider drives the movement of the wheels, so as to realize that when moving the collection box, through the movement of the wheels, it is not necessary for the operator to consume a lot of physical strength for handling, thus saving labor.
[0012] Through the cooperation of the collection box and the auxiliary discharging mechanism, the rotation of the output shaft of the double-shaft motor drives the rotation of the gear, thereby driving the movement of the rack. The movement of the rack drives the movement of the wedge-shaped push plate, and at the same time drives the bump to slide along the chute processed on the inner wall of the first outer shell, so as to realize pushing out the rice through the wedge-shaped push plate. It is not necessary for the operator to use tools for discharging, and the rice and sundries can be discharged in a short time, thus improving the work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a schematic structural diagram of the present utility model;
[0014] Figure 2 is Figure 1Front elevation sectional view of the local part;
[0015] Figure 3 is Figure 1 Top view sectional view of the auxiliary discharging mechanism in
[0016] Figure 4 is Figure 1 Right view sectional view of the auxiliary moving mechanism in
[0017] Figure 5 is Figure 1 Front elevation sectional view of the local part of the auxiliary moving mechanism in
[0018] Figure 6 is Figure 1 Right view of the local part;
[0019] Figure 7 is Figure 1 Right view sectional view of the local part of the auxiliary discharging mechanism in
[0020] Figure 8 is Figure 1 Top view sectional view of the local part of the auxiliary moving mechanism in
[0021] In the figure: 1. Collection box, 2. Partition board, 3. Feed inlet, 4. Auxiliary discharging mechanism, 401. First outer shell, 402. Biaxial motor, 403. Gear, 404. Rack, 405. Wedge-shaped push plate, 406. Convex block, 5. Auxiliary moving mechanism, 501. Second outer shell, 502. Servo motor, 503. Toothed pulley, 504. Toothed belt, 504. Toothed belt, 505. Threaded rod, 506. Slide block, 507. Wheel, 6. Box door. Specific implementation mode
[0022] The present utility model will be further described below with reference to the accompanying drawings:
[0023] Referring to the attached Figure 1-8 : In this embodiment, a rice food processing device includes a collection box 1. An auxiliary moving mechanism 5 is provided below the collection box 1. A plurality of auxiliary discharging mechanisms 4 are provided at the rear side of the collection box 1. A partition board 2 is fixedly connected to the middle of the inner wall of the collection box 1. Two feed inlets 3 are fixedly communicated with the upper end of the collection box 1. Two box doors 6 are hinged to the front side of the collection box 1. A lock catch is provided at the connection between the box door 6 and the collection box, which can prevent the box door from being pushed open by the stored rice. When it needs to be opened, just unlock it with a key. Sealing gaskets are provided at the connections between the box door 6 and the collection box 1. The sealing gaskets can prevent rice from leaking. The outer wall of the rack 404 is slidably connected to the collection box 1. The outer wall of the wedge-shaped push plate 405 is in contact with the collection box 1. The front end of the first outer shell 401 is fixedly connected to the collection box 1. The upper end of the second outer shell 501 is fixedly connected to the collection box 1.
[0024] Referring to the attached Figure 3and the appendix Figures 6-7
[0025] The auxiliary discharging mechanism 4 includes a first housing 401. A double-shaft motor 402 is fixedly connected to the inner wall of the first housing 401. Gear 403 is fixedly connected to the end of the output shaft of the double-shaft motor 402. The outer walls of the transmission shafts of the gears 403 are all rotatably connected to the first housing 401 through bearings. The outer walls of the gears 403 are all meshed with racks 404. A plurality of bumps 406 are fixedly connected to the lower ends of the racks 404. The outer walls of the bumps 406 are all slidably connected to the first housing 401. The lower ends of the racks 404 are all fixedly connected to wedge-shaped push plates 405. When the output shafts of the double-shaft motor 402 rotate, the gears 403 are driven to rotate, thereby driving the racks 404 to move. The movement of the racks 404 drives the wedge-shaped push plates 405 to move, and at the same time drives the bumps 406 to slide along the chutes machined on the inner wall of the first housing 401.
[0026] Refer to the appendix Figures 4-5 and the appendix Figure 8
[0027] The auxiliary moving mechanism 5 includes a second housing 501. A servo motor 502 is fixedly connected to the inner wall of the second housing 501. A plurality of toothed pulleys 503 are arranged inside the second housing 501. The outer walls of the toothed pulleys 503 are all meshed with toothed belts 504. The upper end of the transmission shaft of one of the toothed pulleys 503 is fixedly connected to the output shaft of the servo motor 502. The upper ends of the transmission shafts of the other three toothed pulleys 503 are all rotatably connected to the second housing 501 through bearings. The lower ends of the transmission shafts of the toothed pulleys 503 are all fixedly connected to threaded rods 505. The lower ends of the threaded rods 505 are all rotatably connected to the second housing 501 through bearings. The outer walls of the threaded rods 505 are all threadedly connected to sliders 506. The outer walls of the sliders 506 are all slidably connected to the second housing 501. Wheels 507 are installed at the lower ends of the sliders 506. When the output shaft of the servo motor 502 rotates, one of the toothed pulleys 503 is driven to rotate, and the other three toothed pulleys 503 are driven to rotate through the toothed belt 504. The rotation of the toothed pulleys 503 drives the threaded rods 505 to rotate, thereby driving the sliders 506 to slide along the chutes machined on the inner wall of the second housing 501. The sliding of the sliders 506 drives the wheels 507 to move.
[0028] Working principle:
[0029] When using a rice (taking rice as an example) food processing equipment:
[0030] Preparation process:
[0031] The operator starts the power supply of the servo motor 502. The output shaft of the servo motor 502 rotates forward to drive a toothed pulley 503 to rotate. The toothed pulley 503 drives the other three toothed pulleys 503 to rotate through the toothed belt 504. The rotation of the toothed pulley 503 drives the threaded rod 505 to rotate, thereby driving the slider 506 to slide along the chute machined on the inner wall of the second housing 501. The sliding of the slider 506 drives the wheel 507 to move downward. The wheel 507 passes through the through hole machined at the bottom of the second housing 501. When the wheel 507 completely slides out of the through hole machined on the second housing 501, the power supply of the servo motor 502 is turned off. The operator pushes the collection box 1 to drive the wheel 507 to roll, which does not require the operator to consume a lot of physical strength for handling, thus saving labor. When the collection box 1 moves to an appropriate position (when the two feeding ports 3 are respectively corresponding to the impurity discharge port and the rice discharge port of the color sorter), stop pushing the collection box 1. Then start the power supply of the servo motor 502 again. The output shaft of the servo motor 502 rotates reversely to drive the wheel 507 to reset, so that the bottom of the second housing 501 fits the ground, making the collection box 1 more stable during operation.
[0032] Discharging process:
[0033] After collecting the rice and impurities discharged from the color sorter, the operator starts the servo motor 502 again. The output shaft of the servo motor 502 rotates forward to drive the wheel 507 to extend out of the second housing 501. Then the power supply of the servo motor 502 is turned off. The operator pushes the collection box 1 to move rightward to the feeding port of the equipment for processing rice into food. Adjust the position of the collection box 1 so that the bottom of the box door of the collection box 1 fits the left end of the feeding port of the equipment for processing rice into food. Open the box door 6 corresponding to the rice. Then start the power supply of the double-shaft motor 402 corresponding to the rice. The output shaft of the double-shaft motor 402 rotates forward to drive the gear 403 to rotate, thereby driving the rack 404 to move. The movement of the rack 404 drives the wedge-shaped push plate 405 to move forward, and at the same time drives the convex block 406 to slide forward along the chute machined on the inner wall of the first housing 401. The wedge-shaped push plate 405 pushes the rice out of the collection box 1, enabling the rice to enter the feeding port of the equipment for processing rice into food. It does not require the operator to manually use tools for processing, and all the rice can enter the equipment for processing rice into food in a short time, thus improving work efficiency. When the wedge-shaped push plate 405 needs to be reset, just reverse the output shaft of the double-shaft motor 402. Then move the collection box 1 to the designated position for collecting impurities. Then open the box door 6 corresponding to the impurities and start the power supply of the double-shaft motor 402 corresponding to the impurities to discharge the impurities.
[0034] Although the present utility model has been illustrated and described by referring to the preferred embodiments, those of ordinary skill in the art should understand that various changes in form and details can be made within the scope of the claims.
Claims
1. A rice food processing device, comprising a collecting box (1), characterized in that: An auxiliary moving mechanism (5) is provided below the collection box (1), a plurality of auxiliary discharging mechanisms (4) are provided at the rear side of the collection box (1), a partition (2) is fixedly connected to the middle of the inner wall of the collection box (1), two feed ports (3) are fixedly connected at the upper end of the collection box (1), two box doors (6) are hingedly connected to the front side of the collection box (1), and sealing gaskets are provided at the connection between the box doors (6) and the collection box (1).
2. A rice food processing equipment according to claim 1, characterized in that: The auxiliary discharging mechanism (4) comprises a first housing (401), the inner wall of the first housing (401) is fixedly connected to a dual-axis motor (402), the ends of the output shafts of the dual-axis motors (402) are fixedly connected to gears (403), the outer walls of the transmission shafts of the gears (403) are rotatably connected to the first housing (401) via bearings, the outer walls of the gears (403) are meshed with racks (404), the lower ends of the racks (404) are fixedly connected to a plurality of protrusions (406), the outer walls of the protrusions (406) are slidably connected to the first housing (401), and the lower ends of the racks (404) are fixedly connected to wedge-shaped push plates (405).
3. A rice food processing equipment according to claim 2, characterized in that: The outer wall of the rack (404) is slidably connected to the collection box (1), the outer wall of the wedge-shaped push plate (405) is in contact with the collection box (1), and the front end of the first shell (401) is fixedly connected to the collection box (1).
4. The rice food processing equipment according to claim 1, characterized in that: The auxiliary moving mechanism (5) comprises a second housing (501), the inner wall of the second housing (501) is fixedly connected to a servo motor (502), a plurality of toothed belt pulleys (503) are arranged inside the second housing (501), the outer walls of the toothed belt pulleys (503) are meshed with toothed belts (504), the upper end of a transmission shaft of one of the toothed belt pulleys (503) is fixedly connected to an output shaft of the servo motor (502), the upper ends of the transmission shafts of the toothed belt pulleys (503) are rotatably connected to the second housing (501) via bearings, the lower ends of the transmission shafts of the toothed belt pulleys (503) are fixedly connected to threaded rods (505), the lower ends of the threaded rods (505) are rotatably connected to the second housing (501) via bearings, the outer walls of the threaded rods (505) are threadedly connected to a slider (506), the outer walls of the sliders (506) are slidably connected to the second housing (501), and wheels (507) are installed at the lower ends of the sliders (506).
5. The rice food processing equipment according to claim 4, characterized in that: The upper end of the second shell (501) is fixedly connected to the collection box (1).
Citation Information
Patent Citations
Discharging device of rice color sorter
CN217477877U