Automatic mushroom slitting device
By designing the automatic slitting device of mushrooms and using a motor to drive the movement of the slitting plate and feeding box, the problems of labor waste and operational troubles in the production of mushroom slices are solved, and automatic loading and uniform blanking are achieved, reducing the burden on workers.
Patent Information
- Application Number
- CN202422008003.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-19
AI Technical Summary
During the existing mushroom slice production process, workers need to stand at the beginning of the conveyor belt for a long time to load the mushrooms to prevent the accumulation of shiitake mushrooms, resulting in waste of manpower and labor burden. At the same time, after the slice is completed, the container position needs to be manually moved to prevent accumulation, which is troublesome.
An automatic slitting device of mushrooms is designed, including the main body of the slicer, cutting tool, fixed base, feed silo, drive motor, feeding plate and feeding assembly. By driving the movement of the feeding plate and feeding box by the motor, the automatic batch loading and uniform loading of mushrooms is achieved, reducing manual intervention.
This achieves the need for long-term loading of materials without manual labor, reduces the labor burden of workers, and moves the feeding box to make the cut mushroom slices evenly fall into the feeding box, preventing stacking, and simplifying the transfer process of mushroom slices.
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Figure CN223044663U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of mushroom processing, and more specifically, particularly relates to an automatic mushroom slicing device. Background Art
[0002] In some food processing enterprises, using a slicing machine to perform large - batch slicing processing on mushrooms can significantly improve the processing speed of mushrooms, reduce the time and cost of manual operation, and thus improve production efficiency. The existing automatic mushroom slicing machines generally consist of a machine body, a conveyor belt for driving the mushrooms to move forward, and a cutting blade.
[0003] The existing application number: CN201721341231.4. The utility model discloses an assembled mushroom slicing machine, including a support platform, first support rods, and a working power supply. At the left and right ends of the bottom of the rear side of the support platform, first support rods are installed. On the left side of the top of the support platform, a first cutting box is installed. The right side of the first cutting box is connected to a second cutting box through a cutting shaft. Multiple groups of blades are installed on the surface of the cutting shaft. At the front end of the right side of the support platform, a working power supply is installed. At the front end of the right side of the working power supply, a first control switch is installed. Behind the first control switch, a second control switch is installed. By providing a transfer belt, fixing blocks, and bolts, the transfer belt can freely assemble the support platform, greatly improving the functionality and convenience of slicing, being more convenient for using the mushroom slicing machine, being more practical, and suitable for wide promotion and use.
[0004] Based on the above, when slicing mushrooms, in order to prevent the mushrooms from piling up and causing extrusion damage during cutting, workers need to stand at the starting end of the conveyor belt for a long time to feed the materials, which not only wastes a lot of manpower but also places a large burden on the workers. When the sliced mushrooms fall into the container from the other end of the conveyor belt, in order to prevent the mushroom slices from piling up in one place of the container and reducing the container capacity, it is also necessary to manually move the position of the container at regular intervals, which is rather troublesome. Summary of the Utility Model
[0005] In order to solve the above - mentioned technical problems, the utility model provides an automatic mushroom slicing device to solve the problems that when slicing mushrooms, in order to prevent the mushrooms from piling up and causing extrusion damage during cutting, workers need to stand at the starting end of the conveyor belt for a long time to feed the materials, which not only wastes a lot of manpower but also places a large burden on the workers. When the sliced mushrooms fall into the container from the other end of the conveyor belt, in order to prevent the mushroom slices from piling up in one place of the container and reducing the container capacity, it is also necessary to manually move the position of the container at regular intervals, which is rather troublesome.
[0006] The purpose and efficacy of the automatic mushroom slicing device of the utility model are achieved by the following specific technical means:
[0007] An automatic slicing device for shiitake mushrooms, comprising a slicer main body;
[0008] A cutting tool, which is fixedly connected to the slicer main body;
[0009] A fixed base, which is fixedly connected to the left side of the slicer main body;
[0010] A feed bin, which is fixedly connected to the slicer main body;
[0011] A driving motor, which is fixedly connected to the front of the feed bin;
[0012] A material distributing plate, which is rotatably connected inside the feed bin, and the front end of the material distributing plate is coaxially and fixedly connected to the rotating shaft of the driving motor;
[0013] A feeding and receiving assembly, which is arranged on the fixed base and inside the feed bin;
[0014] A disassembly and assembly limiting assembly, which is arranged on the fixed base.
[0015] Furthermore, the feeding and receiving assembly includes:
[0016] A first transmission shaft, which is rotatably connected inside the fixed base;
[0017] Two belt pulleys, one of the belt pulleys at the top is coaxially and fixedly connected to the outside of the rotating shaft of the driving motor, and one of the belt pulleys at the bottom is coaxially and fixedly connected to the rear end of the first transmission shaft;
[0018] A transmission belt, which is connected to the outside of the two belt pulleys in a transmission manner.
[0019] Furthermore, the feeding and receiving assembly further includes:
[0020] A driving bevel gear, which is coaxially and fixedly connected to the front end of the first transmission shaft;
[0021] A second transmission shaft, which is rotatably connected inside the fixed base;
[0022] A driven bevel gear, which is coaxially and fixedly connected to the right end of the second transmission shaft, and the driven bevel gear meshes with the driving bevel gear.
[0023] Furthermore, the feeding and receiving assembly further includes:
[0024] A transmission worm, which is coaxially and fixedly connected to the left end of the second transmission shaft;
[0025] A reciprocating lead screw, which is rotatably connected inside the fixed base;
[0026] The driving worm gear is coaxially and fixedly connected to the front end of the reciprocating lead screw, and the driving worm gear meshes with the driving worm.
[0027] Furthermore, the loading and receiving component further includes:
[0028] A connecting slider, which is slidably connected inside the fixed base and is threadedly connected to the reciprocating lead screw;
[0029] A placement plate, which is fixedly connected to the connecting slider;
[0030] A receiving box, which is arranged on the placement plate.
[0031] Furthermore, the disassembly and assembly limiting component includes:
[0032] A knob, which is rotatably connected to the front of the placement plate;
[0033] A driving lead screw, which is coaxially and fixedly connected to the right end of the knob;
[0034] A clamping block, the bottom of which is slidably connected inside the placement plate and is threadedly connected to the driving lead screw.
[0035] Furthermore, the disassembly and assembly limiting component further includes:
[0036] The first limiting pieces, two of which are dispersedly and fixedly connected to the upper front of the placement plate;
[0037] The second limiting pieces, two of which are dispersedly and fixedly connected to the front of the receiving box.
[0038] Compared with the prior art, the utility model has the following beneficial effects:
[0039] First, pour the mushrooms to be sliced into the feeding bin, and then drive the motor to drive the material dividing plate to rotate, so that the mushrooms can fall onto the conveyor belt of the slicer main body in batches. There is no need for manual feeding beside the conveyor belt all the time. At the same time, through the loading and receiving component, the receiving box can also be driven to move back and forth, so that the sliced mushrooms can fall evenly into the receiving box, preventing the mushrooms from accumulating in one position.
[0040] Second, rotate the knob, which can make the clamping block move to the left, thus releasing the restriction on the receiving box, facilitating the removal of the receiving box together with the sliced mushrooms for transfer. By moving the two second limiting pieces to the outside of the two first limiting pieces, the front and back positions of the receiving box and the placement plate can be positioned. Then, rotate the knob in the reverse direction to clamp and fix the receiving box, and the operation is simple and convenient.
[0041] The utility model no longer requires workers to stand beside the conveyor belt for a long time to feed materials, which reduces the labor burden of workers. Through the forward and backward movement of the material receiving box, the cut mushroom slices can evenly fall into the material receiving box, preventing the accumulation of mushrooms from affecting the capacity of the material receiving box. The disassembly and installation of the material receiving box are simple and fast, facilitating the transfer of the sliced mushrooms after cutting. Brief Description of the Drawings
[0042] Figure 1 is a schematic diagram of the overall structure of the utility model.
[0043] Figure 2 is a schematic diagram of the material dividing plate structure of the utility model.
[0044] Figure 3 is a schematic diagram of the conveyor belt structure of the utility model.
[0045] Figure 4 is a schematic diagram of the connecting slider structure of the utility model.
[0046] Figure 5 is a schematic diagram of the material receiving box structure of the utility model.
[0047] Figure 6 is a schematic diagram of the placement plate structure of the utility model.
[0048] In the figure, the corresponding relationship between the component names and the drawing reference numbers is as follows:
[0049] 1. Slicing machine main body; 101. Cutting tool; 102. Fixed base; 103. Feeding bin; 2. Driving motor; 3. Material dividing plate; 4. Belt pulley; 5. Conveyor belt; 6. First transmission shaft; 601. Driving bevel gear; 7. Second transmission shaft; 701. Driven bevel gear; 702. Transmission worm; 8. Reciprocating lead screw; 801. Transmission worm gear; 802. Connecting slider; 9. Placement plate; 901. First limiting member; 10. Material receiving box; 1001. Second limiting member; 11. Knob; 1101. Transmission lead screw; 12. Clamping block. Detailed Embodiments
[0050] The following further describes in detail the embodiments of the utility model in conjunction with the drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.
[0051] Example 1:
[0052] As shown in the attached Figure 1 to the attached Figure 6 figure:
[0053] The utility model provides an automatic mushroom slicing device, including a slicing machine main body 1;
[0054] Cutting tool 101, and the cutting tool 101 is fixedly connected to the slicer main body 1;
[0055] Fixed base 102, and the fixed base 102 is fixedly connected to the left side of the slicer main body 1;
[0056] Feeding bin 103, and the feeding bin 103 is fixedly connected to the slicer main body 1;
[0057] Drive motor 2, and the drive motor 2 is fixedly connected to the front of the feeding bin 103;
[0058] Material distributing plate 3, and the material distributing plate 3 is rotatably connected inside the feeding bin 103, and the front end of the material distributing plate 3 is fixedly connected coaxially with the rotating shaft of the drive motor 2;
[0059] Loading and receiving component, and the loading and receiving component is arranged on the fixed base 102 and inside the feeding bin 103.
[0060] Among them, the loading and receiving component includes:
[0061] First transmission shaft 6, and the first transmission shaft 6 is rotatably connected inside the fixed base 102;
[0062] Pulley 4, and two pulleys 4 are provided. The upper pulley 4 is fixedly connected coaxially to the outside of the rotating shaft of the drive motor 2, and the lower pulley 4 is fixedly connected coaxially to the rear end of the first transmission shaft 6;
[0063] Drive belt 5, and the drive belt 5 is connected in transmission to the outside of the two pulleys 4. The function is that the drive motor 2 drives the first transmission shaft 6 to rotate through the transmission mechanism composed of the two pulleys 4 and the drive belt 5.
[0064] Among them, the loading and receiving component further includes:
[0065] Active bevel gear 601, and the active bevel gear 601 is fixedly connected coaxially to the front end of the first transmission shaft 6;
[0066] Second transmission shaft 7, and the second transmission shaft 7 is rotatably connected inside the fixed base 102;
[0067] Driven bevel gear 701, and the driven bevel gear 701 is fixedly connected coaxially to the right end of the second transmission shaft 7. The driven bevel gear 701 meshes with the active bevel gear 601. The function is that the first transmission shaft 6 drives the second transmission shaft 7 to rotate through the bevel gear transmission mechanism composed of the meshing of the driven bevel gear 701 and the active bevel gear 601.
[0068] Among them, the loading and receiving component further includes:
[0069] Transmission worm 702, and the transmission worm 702 is fixedly connected coaxially to the left end of the second transmission shaft 7;
[0070] The reciprocating lead screw 8 is rotatably connected inside the fixed base 102;
[0071] The driving worm gear 801 is coaxially and fixedly connected to the front end of the reciprocating lead screw 8. The driving worm gear 801 meshes with the driving worm 702. The function is that the second transmission shaft 7 drives the reciprocating lead screw 8 to rotate through the worm gear and worm transmission mechanism jointly formed by the meshing of the driving worm gear 801 and the driving worm 702.
[0072] Among them, the feeding and receiving component further includes:
[0073] The connecting slider 802 is slidably connected inside the fixed base 102, and the connecting slider 802 is threadedly connected to the reciprocating lead screw 8;
[0074] The placing plate 9 is fixedly connected to the connecting slider 802;
[0075] The receiving box 10 is arranged on the placing plate 9. The function is that the reciprocating lead screw 8 drives the placing plate 9 and the receiving box 10 to move back and forth through the thread transmission mechanism jointly formed with the connecting slider 802.
[0076] The specific usage mode and function of this embodiment:
[0077] First, pour the mushrooms to be sliced into the feeding bin 103, and then start the driving motor 2. The driving motor 2 drives the material dividing plate 3 to rotate, enabling the mushrooms to fall onto the conveyor belt of the slicing machine main body 1 in batches; at the same time, the driving motor 2 also drives the first transmission shaft 6 to rotate through the transmission mechanism jointly formed by the two belt pulleys 4 and the transmission belt 5. The first transmission shaft 6 drives the second transmission shaft 7 to rotate through the bevel gear transmission mechanism jointly formed by the meshing of the driven bevel gear 701 and the driving bevel gear 601. The second transmission shaft 7 drives the reciprocating lead screw 8 to rotate through the worm gear and worm transmission mechanism jointly formed by the meshing of the driving worm gear 801 and the driving worm 702. The reciprocating lead screw 8 drives the placing plate 9 and the receiving box 10 to move back and forth through the thread transmission mechanism jointly formed with the connecting slider 802, so that the sliced mushrooms can evenly fall into the receiving box 10 and prevent the mushrooms from piling up.
[0078] Embodiment 2:
[0079] On the basis of Embodiment 1, as shown in Appendix Figure 1 to Appendix Figure 6 shown, it further includes a disassembly and assembly limiting component, and the disassembly and assembly limiting component is arranged on the fixed base 102.
[0080] Among them, the disassembly and assembly limiting component includes:
[0081] The knob 11 is rotatably connected to the front of the placement plate 9;
[0082] The transmission lead screw 1101 is coaxially and fixedly connected to the right end of the knob 11;
[0083] The clamping block 12 has its bottom slidably connected to the inside of the placement plate 9, and the bottom of the clamping block 12 is threadedly connected to the transmission lead screw 1101. The function is that by rotating the knob 11, the clamping block 12 can be driven to move leftward by the threaded transmission mechanism formed by the transmission lead screw 1101 and the clamping block 12, thereby releasing the restriction on the receiving box 10 and facilitating the removal and transfer of the receiving box 10 together with the cut mushrooms.
[0084] Among them, the disassembly and assembly restriction component further includes:
[0085] The first restrictor 901, with two pieces of the first restrictor 901 dispersedly and fixedly connected to the upper surface of the front end of the placement plate 9;
[0086] The second restrictor 1001, with two pieces of the second restrictor 1001 dispersedly and fixedly connected to the front of the receiving box 10. The function is that by moving the receiving box 10 to move the two second restrictors 1001 to the outside of the two first restrictors 901, the front and back positions of the receiving box 10 and the placement plate 9 can be positioned. Then, rotate the knob 11 in the reverse direction to make the clamping block 12 move rightward, thereby enabling the clamping and fixing of the receiving box 10.
[0087] The specific usage method and function of this embodiment:
[0088] After the receiving box 10 is full or all the mushrooms are cut, rotate the knob 11. The clamping block 12 can be driven to move leftward by the threaded transmission mechanism formed by the transmission lead screw 1101 and the clamping block 12, thereby releasing the restriction on the receiving box 10 and facilitating the removal and transfer of the receiving box 10 together with the cut mushrooms. After the transfer of the cut mushrooms is completed, by moving the receiving box 10 to move the two second restrictors 1001 to the outside of the two first restrictors 901, the front and back positions of the receiving box 10 and the placement plate 9 can be positioned. Then, rotate the knob 11 in the reverse direction to make the clamping block 12 move rightward, thereby enabling the clamping and fixing of the receiving box 10 for continued use.
Claims
1. An automatic mushroom cutting device, comprising a slicer body, a cutting tool, a fixed base, a feed bin, a drive motor, a dividing plate, a material loading and receiving assembly, and a disassembly and assembly limiting assembly; the cutting tool is fixedly connected to the slicer body; characterized in that: The fixed base is fixedly connected to the left side of the slicer body; the feed bin is fixedly connected to the slicer body; the drive motor is fixedly connected to the front of the feed bin; the dividing plate is rotatably connected to the inside of the feed bin, and the front end of the dividing plate is coaxially fixedly connected to the rotating shaft of the drive motor; the loading and receiving assembly is arranged on the fixed base and inside the feed bin; the disassembly and assembly limiting assembly is arranged on the fixed base.
2. The automatic mushroom cutting device according to claim 1, characterized in that: The material loading and receiving assembly includes: a first transmission shaft, a pulley and a transmission belt; the first transmission shaft is rotatably connected to the inside of a fixed base; the pulley is provided with two pieces, the top piece of the pulley is coaxially fixedly connected to the outside of the rotating shaft of the driving motor, and the bottom piece of the pulley is coaxially fixedly connected to the rear end of the first transmission shaft; the transmission belt is transmission-connected to the outside of the two pulleys.
3. An automatic mushroom cutting device as claimed in claim 2, characterized in that: The material loading and receiving assembly also includes: a driving bevel gear, a second transmission shaft and a driven bevel gear; the driving bevel gear is coaxially fixedly connected to the front end of the first transmission shaft; the second transmission shaft is rotatably connected inside the fixed base; the driven bevel gear is coaxially fixedly connected to the right end of the second transmission shaft, and the driven bevel gear is meshed with the driving bevel gear.
4. The automatic mushroom cutting device according to claim 3, characterized in that: The material loading and receiving assembly also includes: a transmission worm, a reciprocating screw and a transmission worm wheel; the transmission worm is coaxially fixedly connected to the left end of the second transmission shaft; the reciprocating screw is rotatably connected inside the fixed base; the transmission worm wheel is coaxially fixedly connected to the front end of the reciprocating screw, and the transmission worm wheel is meshed with the transmission worm.
5. The automatic mushroom cutting device according to claim 4, characterized in that: The material loading and receiving assembly also includes: a connecting slider, a placement plate and a material receiving box; the connecting slider is slidably connected inside the fixed base, and the connecting slider is threadedly connected to the reciprocating screw; the placement plate is fixedly connected to the connecting slider; the material receiving box is arranged on the placement plate.
6. The automatic mushroom cutting device according to claim 1, characterized in that: The disassembly and assembly limiting assembly includes: a knob, a transmission screw and a clamping block; the knob is rotatably connected to the front of the placement plate; the transmission screw is coaxially fixedly connected to the right end of the knob; the bottom of the clamping block is slidably connected to the inside of the placement plate, and the bottom of the clamping block is threadedly connected to the transmission screw.
7. An automatic mushroom cutting device as claimed in claim 6, characterized in that: The disassembly and assembly limiting component also includes: a first limiting member and a second limiting member; two first limiting members are provided, and the two first limiting members are distributed and fixedly connected to the front end of the placement plate; two second limiting members are provided, and the two second limiting members are distributed and fixedly connected to the front of the material receiving box.
Citation Information
Patent Citations
Assembled mushroom slicer
CN207534884U