Ultrasonic dicer
The ultrasonic cutter uses an ultrasonic generator to drive the cutter to cut food, which solves the problem of food sticking to the mechanical blade during cutting and achieves a stable and continuous food cutting effect.
Patent Information
- Application Number
- CN202422519510.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-10-17
AI Technical Summary
In the prior art, mechanical blades are prone to sticking to food when cutting food, especially sticky or unevenly textured food, resulting in uneven cutting.
An ultrasonic cutter is used, in which an ultrasonic generator is set on the base to drive the cutter for cutting. The cutting position is adjusted by combining the drive component and the electric slide rail. The energy of the ultrasonic wave is used to locally heat and melt the food to achieve cutting and avoid adhesion.
It effectively avoids the cutting knife from sticking to the food, realizes the stable cutting and continuous slicing of food, and improves the cutting efficiency and slicing uniformity.
Smart Images

Figure CN223419695U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of food cutting, and in particular to an ultrasonic cutter. Background Art
[0002] Ultrasonic wave is a sound wave with a frequency higher than 20000Hz. Ultrasonic food cutting uses the energy of ultrasonic transducer to locally heat and melt the material to be cut, thereby achieving the purpose of cutting the material.
[0003] Currently, most food processing operations involve cutting with traditional mechanical blades. While this method is simple and easy to use, it can easily lead to uneven cutting when processing certain sticky or unevenly textured foods. This is especially true for cakes and breads, where a large amount of food can adhere to the cutter during the switching process. Utility Model Content
[0004] In order to improve the problem that existing food cutting knives are prone to sticking to food during cutting, the present application provides an ultrasonic cutting machine.
[0005] The present application provides an ultrasonic cutter, comprising a base and a cutting mechanism slidably mounted on the base, a groove being provided on the top outer wall of the base, and a sliding plate being slidably connected to the inner wall of the groove, a driving assembly for driving the sliding plate being installed on one side outer wall of the base, two symmetrically arranged electric slide rails being fixedly connected to the top outer wall of the base, slots being provided on the inner walls on both sides of the groove, and the same baffle being inserted into the inner walls of the two slots.
[0006] By adopting the above structure, the cutting mechanism on the base facilitates cutting of food, the sliding plate in the groove facilitates clamping of the food to be cut by the matching baffle, the setting of the drive component facilitates direct driving of the sliding plate, the setting of the electric slide rail facilitates adjustment of the position of the cutting mechanism, and thus facilitates continuous cutting of food, and the plug-in baffle facilitates its disassembly and replacement.
[0007] The driving assembly includes a driving box fixedly connected to the outer wall of the base, and the inner walls on both sides of the driving box are rotatably connected to two screws, the outer walls of the two screws are screwed with the same driving rod, and one end of the driving rod is fixedly connected to the sliding plate.
[0008] By adopting the above structure, the screw rod in the drive box is arranged to facilitate driving the drive rod to move when the screw rod rotates, and the position of the sliding plate can be adjusted conveniently when the drive rod moves.
[0009] The inner wall of the drive box is fixedly connected to a servo motor, and the output shaft of the servo motor is fixedly connected to gear 1. One end of the two screws is fixedly connected to gear 2, and the two gears 2 and gear 1 are meshed with each other.
[0010] By adopting the above structure, the servo motor is set to directly drive gear 1 to rotate. When gear 1 rotates, it drives the two gears 2 to rotate synchronously, thereby facilitating the rotation of the two screws. When the screws rotate, they directly drive the drive rod to drive the sliding plate to move.
[0011] The cutting mechanism includes a driving seat slidably connected to two electric slide rails, and the cross section of the driving seat is a U-shaped structure. The inner wall of the top of the driving seat is fixedly connected to two symmetrically arranged fixing rods.
[0012] By adopting the above structure, the electric slide rail drives the driving seat to move, thereby facilitating continuous cutting of food.
[0013] The outer walls of the two fixing rods are slidably connected to the same connecting seat, and the outer wall of the bottom of the connecting seat is fixedly connected to the ultrasonic generator, and the outer wall of the bottom of the ultrasonic generator is installed with a cutter.
[0014] By adopting the above structure, the connection seat can be easily slidably installed through the arrangement of two fixing rods, and the fixing rods can conveniently limit the sliding trajectory of the connection seat. When the ultrasonic generator is started, the cutter is assisted to cut, thereby effectively preventing impurities from adhering to the cutter.
[0015] The top outer wall of the driving seat is provided with a mounting opening, and the inner wall on one side of the mounting opening is rotatably connected to a rotating disk, the outer wall on one side of the rotating disk is eccentrically rotatably connected to a connecting rod, and one end of the connecting rod is rotatably connected to the connecting seat.
[0016] By adopting the above structure, when the rotating disk rotates, the connecting seat is directly pulled up and down through the connecting rod, thereby driving the cutter to move continuously.
[0017] The top outer wall of the driving seat is fixedly connected to a motor, and a pulley 1 is fixedly connected to the output shaft of the motor. One end of the rotating disk transmission shaft is fixedly connected to a pulley 2, and the same belt is connected between the pulley 2 and the pulley 1.
[0018] By adopting the above structure, the motor is arranged to facilitate the belt-driven rotation of the rotating disk, thereby facilitating the cutter to continuously cut the food.
[0019] A control panel is fixedly connected to an outer wall of one side of the driving seat, and the control panel is electrically connected to the electric slide rail, the motor, the ultrasonic generator and the servo motor.
[0020] By adopting the above structure, the electrical components in the dicer can be conveniently controlled through the setting of the control panel.
[0021] In summary, the beneficial effects of this application are as follows:
[0022] 1. The application sets an ultrasonic generator in the cutting mechanism, drives the food cutting knife through the ultrasonic generator, so as to effectively avoid the food sticking to the cutting knife during cutting.
[0023] 2. The application sets a driving assembly in the base, which is convenient for adjusting the position of the sliding plate, and drives the sliding plate to move, so as to press the food to be cut on the baffle, thereby ensuring the stable cutting of the food. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 is the overall schematic diagram of the application;
[0025] Figure 2 is the base schematic diagram of the application;
[0026] Figure 3 is the cutting mechanism schematic diagram of the application;
[0027] Figure 4 is the driving seat schematic diagram of the application;
[0028] Figure 5 is the driving assembly cross-sectional schematic diagram of the application.
[0029] BRIEF DESCRIPTION OF DRAWINGS: 1, base; 2, driving assembly; 3, cutting mechanism; 4, groove; 5, baffle; 6, electric sliding rail; 7, sliding plate; 8, driving seat; 9, control panel; 10, motor; 11, rotating disc; 12, connecting rod; 13, fixed rod; 14, connecting seat; 15, ultrasonic generator; 16, cutting knife; 17, belt; 18, mounting port; 19, driving box; 20, servo motor; 21, gear two; 22, gear one; 23, screw; 24, driving rod. DETAILED DESCRIPTION
[0030] The following will be combined with the drawings Figure 1-5 The application will be further described in detail.
[0031] Please refer to Figure 1-3, ultrasonic cutting machine, including base 1 and slidingly installed on the base 1 cutting mechanism 3, cutting mechanism 3 is provided for the continuous cutting of food, the base 1 top outer wall is provided with a groove 4, the groove 4 is convenient for placing food, and the inner wall of the groove 4 is slidably connected with the sliding plate 7, the sliding plate 7 slides in the groove 4, thereby facilitating the compression of the food to be cut, the base 1 is provided with a drive assembly 2 on one side of the outer wall, the drive assembly 2 is provided for directly driving the sliding plate 7 to move, the base 1 top outer wall is fixedly connected with two symmetrically arranged electric sliding rails 6, the electric sliding rail 6 is provided for driving the cutting mechanism 3 to move on the base 1, the both sides of the groove 4 are provided with a slot, and the inner wall of the two slots is inserted with the same baffle 5, the slot is provided for installing the baffle 5, the cooperation between the baffle 5 and the sliding plate 7 facilitates the compression of the food for cutting the cutting mechanism 3, and the slot is provided for quickly disassembling and replacing the baffle 5.
[0032] In use, the cutting mechanism 3 on the base 1 is convenient for cutting food, the sliding plate 7 in the groove 4 is convenient for clamping the food to be cut with the cooperating baffle 5, the drive assembly 2 is provided for directly driving the sliding plate 7 to act, the electric sliding rail 6 is provided for adjusting the position of the cutting mechanism 3, thereby facilitating the continuous cutting of food, and the inserted baffle 5 is convenient for disassembling and replacing.
[0033] Referring to Figure 5 , the drive assembly 2 comprises a drive box 19 fixedly connected to the outer wall of the base 1, the drive box 19 is provided for installing the drive assembly 2 on the base 1, and the both sides of the inner wall of the drive box 19 is rotatably connected with two screw rods 23, the two screw rods 23 are symmetrically arranged in the drive box 19, the outer wall of the two screw rods 23 is screwed with the same drive rod 24, the screw rod 23 is rotated to drive the drive rod 24 to move, and one end of the drive rod 24 is fixedly connected to the sliding plate 7, the drive rod 24 is moved to directly push the sliding plate 7 to slide in the groove 4, the sliding plate 7 is convenient for clamping the food to be cut, and the screw rod 23 in the drive box 19 is provided for driving the drive rod 24 to move when it rotates, the drive rod 24 is moved to adjust the position of the sliding plate 7.
[0034] Referring to Figure 5The inner wall of the drive box 19 is fixedly connected with a servo motor 20, and a gear 22 is fixedly connected to the output shaft of the servo motor 20. The servo motor 20 directly drives the gear 22 to rotate. The servo motor 20 can control the speed and the position accuracy is very accurate. It can convert the voltage signal into torque and speed to drive the control object. The rotor speed of the servo motor 20 is controlled by the input signal and can respond quickly. In the automatic control system, it is used as an actuator and has the characteristics of small electromechanical time constant and high linearity. It can convert the received electrical signal into angular displacement or angular velocity output on the motor shaft. One end of the two screws 23 is fixedly connected with a gear 21, and the two gears 21 and gear 1 22 are meshed with each other. The servo motor 20 is set to directly drive the gear 22 to rotate. When the gear 1 22 rotates, it drives the two gears 21 to rotate synchronously, thereby facilitating the rotation of the two screws 23. When the screw 23 rotates, it directly drives the drive rod 24 to drive the sliding plate 7 to move.
[0035] Reference Figure 3 and Figure 4 The cutting mechanism 3 includes a driving seat 8 slidably connected to two electric slide rails 6. The setting of the electric slide rails 6 facilitates the reciprocating movement of the driving seat 8, thereby facilitating continuous cutting of the food in the groove 4. The cross-section of the driving seat 8 is a U-shaped structure, and two symmetrically arranged fixing rods 13 are fixedly connected to the inner wall of the top of the driving seat 8. The electric slide rails 6 drive the driving seat 8 to move, thereby facilitating continuous cutting of the food.
[0036] Reference Figure 3 and Figure 4 The outer walls of the two fixed rods 13 are slidably connected to the same connecting seat 14. The two fixed rods 13 are symmetrically arranged on the driving seat 8, and an ultrasonic generator 15 is fixedly connected to the outer wall of the bottom of the connecting seat 14. The setting of the connecting seat 14 facilitates the installation of the ultrasonic generator 15. The ultrasonic generator 15 is a device that converts AC power into high-frequency AC power corresponding to the transducer to drive the transducer to work. It is an important component of the high-power ultrasonic system. It can also be called an electronic box, an ultrasonic driving power supply, or an ultrasonic controller. The ultrasonic generator 15 adopts the world's leading externally excited oscillation circuit structure, which increases the output power by more than 10% compared with the self-excited oscillation circuit structure. A cutter 16 is installed on the outer wall of the bottom of the ultrasonic generator 15. When the ultrasonic generator 15 is started, it cooperates with the cutter 16 to cut the food, while preventing the cut food from adhering to the cutter. The setting of the two fixed rods 13 facilitates the sliding installation of the connecting seat 14. The fixed rod 13 conveniently limits the sliding trajectory of the connecting seat 14. When the ultrasonic generator 15 is started, it assists the cutter 16 in cutting, thereby effectively preventing impurities from adhering to the cutter 16.
[0037] Reference Figure 3-4The outer wall of the top of the driving seat 8 is provided with a mounting hole 18, and the inner wall of one side of the mounting hole 18 is rotatably connected to the rotating disk 11. The setting of the mounting hole 18 is convenient for installing the rotating disk 11. The specification of the mounting hole 18 is larger than the diameter of the rotating disk 11. The outer wall of one side of the rotating disk 11 is eccentrically rotatably connected to the connecting rod 12. When the connecting rod 12 eccentrically rotates on the rotating disk 11, it is convenient to rotate the rotating disk 11 to drive the connecting rod 12 to move, and one end of the connecting rod 12 is rotatably connected to the connecting seat 14. When the connecting rod 12 moves, it is convenient to directly pull the connecting seat 14 to rise and fall. When the rotating disk 11 rotates, the connecting seat 14 is directly pulled up and down through the connecting rod 12, thereby driving the cutter 16 to move continuously.
[0038] Reference Figure 4 The outer wall of the top of the driving seat 8 is fixedly connected to a motor 10, and a pulley 1 is fixedly connected to the output shaft of the motor 10. When the motor 10 is started, it is convenient to directly drive the pulley 1 to rotate. One end of the transmission shaft of the rotating disk 11 is fixedly connected to the pulley 2. The pulley 2 and the rotating disk 11 rotate coaxially, so as to facilitate the rotation of the rotating disk 11 through the pulley 2, and the same belt 17 is connected between the pulley 2 and the pulley 1. When the motor 10 starts, it drives the pulley 1 to rotate. When the pulley 1 rotates, the pulley 2 is driven to rotate through the belt 17. When the pulley 2 rotates, it directly drives the rotating disk 11 to rotate, thereby facilitating the driving of the connecting seat 14 to reciprocate and rise and fall. The setting of the motor 10 is convenient for coordinating with the belt 17 to drive the rotating disk 11 to rotate, so that the cutter 16 can continuously cut the food.
[0039] Reference Figure 3 A control panel 9 is fixedly connected to the outer wall of one side of the driving seat 8, and the control panel 9 is electrically connected to the electric slide 6, the motor 10, the ultrasonic generator 15 and the servo motor 20. The setting of the control panel 9 facilitates the control of the electrical components in the cutting machine.
[0040] The implementation principle of the present application is: during use, when it is necessary to cut the bread, first place the bread in the groove 4, and at the same time, the servo motor 20 starts to directly drive the gear 1 22 to drive the two gear 2s 21 to rotate, and then drives the two screws 23 to rotate to drive the drive rod 24 to push the sliding plate 7 to press the panel on the baffle 5. At this time, the cutting mechanism 3 starts the electric slide rail 6 to drive the drive seat 8 to move. When the drive seat 8 moves to the specified position, the motor 10 starts and cooperates with the belt 17 to drive the rotating disk 11 to rotate. When the rotating disk 11 rotates, it directly pulls the connecting seat 14 back and forth through the connecting rod 12. When the connecting seat 14 descends, the bread is sliced directly through the cutter 16. When the ultrasonic generator 15 is started, it can effectively prevent the cut food from adhering to the cutter 16.
[0041] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. An ultrasonic dicing machine comprising a base (1) and a cutting mechanism (3) slidably mounted on the base (1), characterized in that: The top outer wall of the base (1) is provided with a groove (4), and the inner wall of the groove (4) is slidably connected to a sliding plate (7), and a driving component (2) for driving the sliding plate (7) is installed on one side outer wall of the base (1). The top outer wall of the base (1) is fixedly connected to two symmetrically arranged electric slide rails (6), and the inner walls of both sides of the groove (4) are provided with slots, and the inner walls of the two slots are both plugged with the same baffle (5).
2. The ultrasonic dicer according to claim 1, characterized in that: The driving assembly (2) includes a driving box (19) fixedly connected to the outer wall of the base (1), and two inner walls on both sides of the driving box (19) are rotatably connected to two screw rods (23), the outer walls of the two screw rods (23) are screwed to the same driving rod (24), and one end of the driving rod (24) is fixedly connected to the sliding plate (7).
3. The ultrasonic dicer according to claim 2, characterized in that: The inner wall of the driving box (19) is fixedly connected to a servo motor (20), and the output shaft of the servo motor (20) is fixedly connected to a gear 1 (22). One end of each of the two screw rods (23) is fixedly connected to a gear 2 (21), and the two gears 2 (21) and the gear 1 (22) are meshed with each other.
4. The ultrasonic dicer according to claim 3, characterized in that: The cutting mechanism (3) comprises a driving seat (8) slidably connected to two electric slide rails (6), and the cross section of the driving seat (8) is a U-shaped structure. The top inner wall of the driving seat (8) is fixedly connected to two symmetrically arranged fixing rods (13).
5. The ultrasonic dicer according to claim 4, characterized in that: The outer walls of the two fixed rods (13) are slidably connected to a same connecting seat (14), and the outer wall of the bottom of the connecting seat (14) is fixedly connected to an ultrasonic generator (15), and a cutter (16) is installed on the outer wall of the bottom of the ultrasonic generator (15).
6. The ultrasonic dicer according to claim 5, characterized in that: A mounting opening (18) is provided on the outer wall of the top of the driving seat (8), and a rotating disk (11) is rotatably connected to an inner wall of one side of the mounting opening (18). A connecting rod (12) is eccentrically rotatably connected to an outer wall of one side of the rotating disk (11), and one end of the connecting rod (12) is rotatably connected to the connecting seat (14).
7. The ultrasonic dicer according to claim 6, characterized in that: The top outer wall of the driving seat (8) is fixedly connected to a motor (10), and a pulley 1 is fixedly connected to the output shaft of the motor (10). One end of the transmission shaft of the rotating disk (11) is fixedly connected to a pulley 2, and the same belt (17) is connected between the pulley 2 and the pulley 1.
8. The ultrasonic dicer according to claim 7, characterized in that: A control panel (9) is fixedly connected to an outer wall of one side of the driving seat (8), and the control panel (9) is electrically connected to the electric slide rail (6), the motor (10), the ultrasonic generator (15) and the servo motor (20).