Variable-frequency vegetable stuffing machine
By using a three-phase asynchronous motor and inverter to control the speed of the material tray and cutter in the vegetable filling machine, the problem of long time and high cost of electric vegetable filling machines is solved, and high efficiency and low cost of large-scale vegetable filling production is achieved.
Patent Information
- Application Number
- CN202421838595.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The existing household vegetable filling machine requires manpower operation, and the production of vegetable filling takes a long time and is slow. The electric vegetable filling machine is expensive to make and cannot achieve frequency conversion control.
A three-phase asynchronous motor is used to drive the material tray and cutter mechanism, and the frequency is adjusted through the inverter of the electrical control box, so as to achieve integrated control of the speed of the material tray and cutter, reducing the number of motors.
It reduces production costs, improves production efficiency, shortens production time, and is suitable for mass production.
Smart Images

Figure CN223186581U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processing equipment, in particular to a frequency conversion vegetable stuffing machine. Background Art
[0002] Existing vegetable stuffing machines are generally household-use, so they generally include a material cup and a stirring device. The stirring device is generally manually driven to rotate to chop and stir the ingredients, but the amount of vegetable filling that can be prepared each time is limited, which cannot meet the needs of large-scale vegetable filling production sites. Secondly, it requires manual operation, which makes the production of vegetable fillings inefficient and time-consuming. Another type of vegetable stuffing machine uses a vertical motor to drive the cutting and stirring device of the stirring device, but the cutting and stirring devices of this vegetable stuffing machine have synchronous speeds and cannot achieve variable frequency control. Moreover, the amount of vegetable filling that can be prepared is limited, and manual removal of the prepared vegetable filling is required each time, which is more troublesome.
[0003] Patent number CN202895296U discloses a fish ball vegetable stuffing machine. The machine comprises a frame mounted with a rotating bowl driven horizontally by a vertical motor. The bowl has a raised center section, forming an annular groove. A main shaft, driven by a horizontal motor and positioned horizontally above the bowl, is mounted on the frame. A circular cutter, mounted in the center of the main shaft and nestling within the annular groove at the rear of the bowl, is located at the rear of the bowl. A flap covers the cutter. This machine utilizes the bowl to drive the vegetables (roots, stems, and leafy vegetables) in relative motion with the cutter. The cutter's rapid rotary action chops the vegetables into filling, reducing labor and improving production efficiency.
[0004] However, the need to use two motors increases the production cost of the vegetable stuffing machine, and the cutting machine cannot achieve variable frequency control, and cannot control and adjust the rotation speed of the cutting knife and the material basin.
[0005] Therefore, there is still room for improvement in the existing technology. Utility Model Content
[0006] The purpose of the utility model is to provide a frequency conversion vegetable stuffing machine, which aims to solve the technical problems that household vegetable stuffing machines require manual operation, take a long time to make vegetable stuffing, are slow, and the existing electric vegetable stuffing machines have high production costs and cannot achieve frequency conversion control.
[0007] To achieve the above-mentioned purpose, the technical solution of the present utility model is: a frequency conversion vegetable stuffing machine, which includes: a frame mechanism, an electric control box, a cutter mechanism, a material tray mechanism and a three-phase asynchronous motor, the electric control box is installed at the upper end of one side of the frame mechanism, and is used to control the three-phase asynchronous motor; a frequency converter for adjusting the frequency of the three-phase asynchronous motor is also installed in the electric control box; the three-phase asynchronous motor is installed in the frame mechanism, the material tray mechanism is installed at the upper end of the frame mechanism, the cutter mechanism is installed on the table of the frame mechanism, and the cutter of the cutter mechanism is located in the material tray mechanism; the three-phase asynchronous motor is used to drive the material tray of the material tray mechanism to rotate, and at the same time drive the cutter of the cutter mechanism to rotate.
[0008] The variable frequency vegetable stuffing machine, wherein the frame mechanism includes a frame, a frame cover plate and universal wheels for movement, the frame cover plate is fixed to the four sides and the bottom of the frame, and the universal wheels are installed at the four corners of the bottom of the frame.
[0009] The variable frequency vegetable stuffing machine, wherein the three-phase asynchronous motor drives the material tray mechanism to rotate through the first transmission shaft assembly, the first transmission shaft assembly includes: a first transmission shaft, a bevel gear and a first pulley, the first pulley is respectively installed at both ends of the first transmission shaft, the bevel gear is fixed in the middle of the first transmission shaft, the two ends of the first transmission shaft are respectively fixed to the lower end of the frame through bearing seats, and the first pulley at the inner end of the first transmission shaft is connected to the three-phase asynchronous motor through a belt.
[0010] The variable frequency vegetable stuffing machine, wherein the material tray mechanism includes: a material tray, a bearing, a material tray rotating shaft and a bearing mounting plate, the material tray rotating shaft is mounted on the bearing mounting plate through a bearing, and there are two bearing mounting plates, the bearing mounting plate is fixed to the middle part of the frame, the material tray is fixed to the top of the material tray rotating shaft, and the lower end of the material tray rotating shaft is also fixed with a transmission bevel gear, the transmission bevel gear is located under the bottom bearing mounting plate, and the transmission bevel gear is engaged with the bevel gear.
[0011] The variable frequency vegetable stuffing machine, wherein the cutter mechanism includes: multiple cutters, a cutter drive shaft and a second pulley, the multiple cutters are respectively fixedly installed in the middle of the cutter drive shaft, and the two ends of the cutter drive shaft are fixed on the table through bearing seats; the second pulley is installed at one end of the cutter drive shaft and is located on the outside of the frame mechanism.
[0012] The variable frequency vegetable stuffing machine, wherein the diameter of the first pulley is greater than the diameter of the second pulley.
[0013] The variable frequency vegetable stuffing machine, wherein a bearing seat cover is installed on the bearing seat.
[0014] The variable frequency vegetable stuffing machine is characterized in that a material tray cover is also installed on the table to cover the material tray.
[0015] The variable frequency vegetable stuffing machine, wherein the frame mechanism is further provided with an oil collecting pan for receiving the oil from the material tray rotating shaft, bevel gear and transmission bevel gear.
[0016] The variable frequency vegetable stuffing machine is characterized in that a material guide hopper for guiding the removal of vegetable ingredients is also installed on the front side of the table.
[0017] Beneficial effects: The utility model adopts a three-phase asynchronous motor to simultaneously drive the material tray mechanism and the cutter mechanism, thereby reducing the use of motors and lowering the production cost of the vegetable stuffing machine. At the same time, the frequency is adjusted by the electrical control box, and the material tray and cutter speed are controlled in an integrated manner; there is no need for manual operation of the cutter mechanism, which shortens the time for making vegetable stuffing and improves the efficiency of making vegetable stuffing. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a three-dimensional diagram of the present utility model.
[0019] Figure 2 It is a three-dimensional diagram of the utility model with the frame cover removed.
[0020] Figure 3 It is a three-dimensional diagram of the first transmission shaft assembly of the present utility model.
[0021] Figure 4 It is a three-dimensional diagram of the material tray mechanism of the present utility model.
[0022] Figure 5 It is a three-dimensional diagram of the cutter mechanism of the present utility model. DETAILED DESCRIPTION
[0023] In order to make the purpose, technical solutions and advantages of the present invention more clear and explicit, the present invention is further described in detail below with reference to the accompanying drawings and examples.
[0024] like Figure 1-5 As shown, the utility model discloses a frequency conversion vegetable stuffing machine, which includes: a frame mechanism 1, an electric control box 2, a cutter mechanism 3, a material tray mechanism 4 and a three-phase asynchronous motor 5. The electric control box 2 is installed at the upper end of one side of the frame mechanism 1 and is used to control the three-phase asynchronous motor 5; a frequency converter for adjusting the frequency of the three-phase asynchronous motor 5 is also installed in the electric control box 2; the three-phase asynchronous motor 5 is installed in the frame mechanism 1, the material tray mechanism 4 is installed at the upper end of the frame mechanism, the cutter mechanism 3 is installed on the table 6 of the frame mechanism 1, and the cutter of the cutter mechanism 3 is located in the material tray mechanism 4; the three-phase asynchronous motor 5 is used to drive the material tray 7 of the material tray mechanism 4 to rotate, and at the same time drive the cutter 8 of the cutter mechanism 3 to rotate.
[0025] After adopting the above structure, the frame drum of the utility model is used to realize the supporting and load-bearing function of the whole machine; the said electric control box realizes the starting and stopping of parts and the control function of the whole machine; the said cutter mechanism is used to realize the function of chopping materials; the said tray mechanism is used to realize the function of carrying materials and rotating materials. Therefore, the utility model can realize the control of the rotation of the cutter mechanism and the tray mechanism through a three-phase asynchronous motor, saving the number of motors, so it can reduce the manufacturing cost of the vegetable stuffing machine. At the same time, the electric motor is used to drive the cutter and tray mechanism, so the time for making vegetable stuffing is shortened, the production efficiency is greatly improved, the use of manpower is reduced, and it can be suitable for mass production of vegetable stuffing. The frequency converter of the electric control box can be used to adjust the frequency of the motor to realize the integrated control of the tray and cutter speed.
[0026] Specifically, the frame mechanism 1 includes a frame 10, a frame cover plate 11 and universal wheels 12 for movement. The frame cover plate 11 is fixed to the four sides and the bottom of the frame 10, and the universal wheels 12 are installed at the four corners of the bottom of the frame 10.
[0027] Specifically, the three-phase asynchronous motor 5 drives the tray mechanism 4 to rotate through the first transmission shaft assembly 9. The first transmission shaft assembly 9 includes: a first transmission shaft 13, a bevel gear 14 and a first pulley 15. The first pulley 15 is respectively installed at both ends of the first transmission shaft 13. The bevel gear 14 is fixed in the middle of the first transmission shaft 13. The two ends of the first transmission shaft 13 are respectively fixed to the lower end of the frame 10 through bearing seats 16. The first pulley 15 at the inner end of the first transmission shaft 13 is connected to the three-phase asynchronous motor 5 through a belt.
[0028] The first pulley 15 of the present invention is driven by the three-phase asynchronous motor 5 , and further drives the first transmission shaft 13 and the bevel gear 14 .
[0029] Specifically, the tray mechanism 4 includes: a tray 7, a bearing 17, a tray shaft 18, and a bearing mounting plate 19. The tray shaft 18 is mounted on the bearing mounting plate 19 via a bearing. The bearing mounting plate 19 has two pieces. The bearing mounting plate 19 is fixed to the middle of the frame 10. The tray 7 is fixed to the top of the tray shaft 18. The lower end of the tray shaft 18 is also fixed with a transmission bevel gear 20. The transmission bevel gear 20 is located below the bottom bearing mounting plate 19 and meshes with the bevel gear 14. The transmission bevel gear 20 is meshed with the bevel gear, so it can drive the transmission bevel gear to rotate, thereby driving the tray shaft to rotate, and then driving the tray to rotate. The tray drives the vegetable filling in the tray to rotate.
[0030] Specifically, the cutter mechanism 3 includes: multiple cutters 8, a cutter drive shaft 30 and a second pulley 31. The multiple cutters 8 are respectively fixedly installed in the middle of the cutter drive shaft 30, and the two ends of the cutter drive shaft 30 are fixed to the table 6 through the bearing seat 16; the second pulley 31 is installed at one end of the cutter drive shaft 30 and is located on the outside of the frame mechanism 1; the second pulley 31 is connected to the first pulley 15 on the outside of the first rotating shaft 13 through a belt 32, thereby driving the cutter drive shaft 30 to rotate, and then driving the cutter 8 to rotate, thereby realizing cutting of the vegetables.
[0031] Specifically, the diameter of the first pulley 15 is greater than the diameter of the second pulley 31 .
[0032] Preferably, a bearing seat cover 21 is installed on the bearing seat 16 .
[0033] Preferably, a material tray cover 22 is also installed on the table 6 to cover the material tray 7; when the machine is working, it realizes the protection and material splashing functions.
[0034] Preferably, an oil receiving pan 23 for receiving the oil from the material tray shaft, bevel gear and transmission bevel gear is also installed in the frame mechanism 1.
[0035] Preferably, a material guide hopper 24 for guiding the removal of vegetables is also installed on the front side of the table top 6.
[0036] The guide hopper 24 realizes the product discharge guiding function.
[0037] Working principle: A. Through the rotation of the three-phase asynchronous motor, the small pulley of the motor drives the first pulley to reduce the rotation speed of the first transmission shaft;
[0038] B. The first transmission shaft in the first transmission shaft assembly rotates, and the bevel gear drives the transmission bevel gear (small teeth with large teeth) to reduce the rotation speed of the feed tray shaft;
[0039] C. The first transmission shaft in the first transmission shaft assembly rotates, which facilitates the first pulley to drive the second pulley (large pulley with small pulley), thereby accelerating the rotation of the cutter transmission shaft of the cutter mechanism, and further driving the cutter to accelerate rotation;
[0040] D adjusts the frequency through the inverter of the electric control box, thereby realizing integrated control of the speed of the vegetable filling plate and the cutting knife.
[0041] The utility model adopts a three-phase asynchronous motor to simultaneously drive the material tray mechanism and the cutter mechanism, thereby reducing the use of motors and lowering the production cost of the vegetable stuffing machine. At the same time, the frequency is adjusted by the electric control box, and the rotation speed of the material tray and the cutter are controlled in an integrated manner. There is no need for manual operation of the cutter mechanism, which shortens the time for making vegetable stuffing and improves the efficiency of making vegetable stuffing.
[0042] The above is only a preferred embodiment of the present invention, which certainly cannot be used to limit the scope of rights of the present invention. It should be pointed out that for technical personnel in this technical field, any modification or equivalent replacement of the technical solution of the present invention without creative work does not deviate from the protection scope of the technical solution of the present invention.
Claims
1. A variable frequency vegetable stuffing machine, characterized in that: include: A frame mechanism, an electric control box, a cutter mechanism, a tray mechanism and a three-phase asynchronous motor, wherein the electric control box is installed at the upper end of one side of the frame mechanism and is used to control the three-phase asynchronous motor; a frequency converter for adjusting the frequency of the three-phase asynchronous motor is also installed in the electric control box; the three-phase asynchronous motor is installed in the frame mechanism, the tray mechanism is installed at the upper end of the frame mechanism, the cutter mechanism is installed on the table of the frame mechanism, and the cutter of the cutter mechanism is located in the tray mechanism; the three-phase asynchronous motor is used to drive the tray of the tray mechanism to rotate, and at the same time drive the cutter of the cutter mechanism to rotate.
2. The frequency conversion vegetable stuffing machine according to claim 1, characterized in that: The frame mechanism comprises a frame, a frame cover plate and universal wheels for movement, wherein the frame cover plate is fixed on the four sides and the bottom of the frame, and the universal wheels are installed at the four corners of the bottom of the frame.
3. The frequency conversion vegetable stuffing machine according to claim 2, characterized in that: The three-phase asynchronous motor drives the material tray mechanism to rotate through the first transmission shaft assembly. The first transmission shaft assembly includes: a first transmission shaft, a bevel gear and a first pulley. The first pulley is respectively installed at both ends of the first transmission shaft, and the bevel gear is fixed in the middle of the first transmission shaft. The two ends of the first transmission shaft are respectively fixed to the lower end of the frame through bearing seats. The first pulley at the inner end of the first transmission shaft is connected to the three-phase asynchronous motor through a belt.
4. The frequency conversion vegetable stuffing machine according to claim 3, characterized in that: The tray mechanism includes: a tray, a bearing, a tray rotating shaft and a bearing mounting plate. The tray rotating shaft is mounted on the bearing mounting plate through a bearing. There are two bearing mounting plates. The bearing mounting plate is fixed to the middle part of the frame. The tray is fixed to the top of the tray rotating shaft. The lower end of the tray rotating shaft is also fixed with a transmission bevel gear. The transmission bevel gear is located under the bottom bearing mounting plate, and the transmission bevel gear is engaged with the bevel gear.
5. The frequency conversion vegetable stuffing machine according to claim 4, characterized in that: The cutter mechanism includes: multiple cutters, a cutter drive shaft and a second pulley. The multiple cutters are fixedly installed in the middle of the cutter drive shaft, and the two ends of the cutter drive shaft are fixed to the table through bearing seats; the second pulley is installed at one end of the cutter drive shaft and is located on the outside of the frame mechanism.
6. The frequency conversion vegetable stuffing machine according to claim 5, characterized in that: The diameter of the first pulley is greater than the diameter of the second pulley.
7. The frequency conversion vegetable stuffing machine according to claim 5, characterized in that: A bearing seat cover is installed on the bearing seat.
8. The frequency conversion vegetable stuffing machine according to claim 4, characterized in that: A material tray cover is also installed on the table top to cover the material tray.
9. The frequency conversion vegetable stuffing machine according to claim 4, characterized in that: An oil receiving pan for receiving the oil from the material tray rotating shaft, the bevel gear and the transmission bevel gear is also installed in the frame mechanism.
10. The frequency conversion vegetable stuffing machine according to claim 1, characterized in that: A material guide hopper for guiding the taking out of vegetables is also installed on the front side of the table.
Citation Information
Patent Citations
Fish ball vegetable stuffing machine
CN202895296U