Vegetable pretreatment equipment for quick-frozen food stuffing

By designing a rotating shaft and brush structure that drives multi-stage operation and combining it with a water washing method, the problem of poor cleaning effect of existing equipment is solved, and efficient pre-treatment and cleaning of fruits and vegetables is achieved, ensuring the cleaning effect and protection of the appearance of the vegetables.

CN223379964UActive Publication Date: 2025-09-26PUYANG ZENGYUN FOOD CO LTD
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Patent Information

Application Number
CN202423239680.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-09-26
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing pretreatment equipment for fruits and vegetables has limited cleaning effect, especially due to insufficient flushing water pressure and improper cleaning methods, resulting in poor cleaning effect.

Method used

A vegetable pretreatment equipment was designed. By driving a multi-stage rotating shaft and brush structure and combining it with a water washing method, it can achieve shaking and rotating brush cleaning of fruits and vegetables, ensuring that the impurity cleaning part fits the surface of the vegetable and moves, and combined with a certain water pressure flushing to improve the cleaning effect.

Benefits of technology

It effectively improves the pretreatment and cleaning effect of fruits and vegetables, ensures the cleaning quality of the surface of fruits and vegetables, and avoids damage to the appearance of vegetables caused by excessive water pressure.

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Abstract

The utility model discloses vegetable pretreatment equipment for quick-frozen food stuffing, which comprises a treatment shell, a feed hopper is arranged at the left end of the top wall of the treatment shell in a penetrating manner, an L-shaped partition plate and a filter plate are respectively arranged between the front wall and the rear wall of the treatment shell from top to bottom, and the vegetable pretreatment equipment further comprises a cleaning mechanism; the cleaning mechanism comprises rotating shafts I, a circular brush, a transmission assembly I, a shaking assembly and a transmission assembly II, the number of the rotating shafts I is eight, and the eight rotating shafts I are rotationally connected to the bottom wall of the L-shaped partition plate through bearings I. According to the vegetable pretreatment equipment for the quick-frozen food stuffing, one stage drives multiple stages to operate, and the operation efficiency is improved; the upper surfaces of the melon and fruit vegetables are cleaned through the rotating brush while the melon and fruit vegetables shake and move, the impurity cleaning part is attached to the surfaces of the melon and fruit vegetables to rotate, and the impurity cleaning part and the melon and fruit vegetables move relatively; and the pretreatment cleaning effect of the device on melon and fruit vegetables for quick-frozen food stuffing is effectively improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of quick-frozen food production, in particular to vegetable preprocessing equipment used for quick-frozen food fillings. Background Art

[0002] Quick-frozen food is a quick-frozen food that is processed at a rapid low temperature. The water and juice in the food tissue will not be lost. Fruits and vegetables are usually used as fillings for quick-frozen food. Before being used as fillings for quick-frozen food, fruits and vegetables need to be cleaned of dust and impurities on their surface through pre-treatment equipment. Some pre-treatment equipment adopts a vibrating screen structure design, and a high-pressure nozzle is installed in the vibrating screen. When in use, fruits and vegetables vibrate and slide along the sieve plate inside the vibrating screen, and at the same time, the surface of the fruits and vegetables is rinsed by the high-pressure nozzle. The pre-treatment and cleaning operation of fruits and vegetables is achieved through vibration and water washing. However, when fruits and vegetables fall along the sieve plate of the vibrating screen, in order to avoid excessive rinsing water pressure and thus damage to the appearance of the fruits and vegetables themselves, the rinsing water pressure is limited, and the rinsing water pressure uses a direct spray method to clean the surface of fruits and vegetables. The pre-treatment cleaning effect of the surface of fruits and vegetables is limited. For this reason, we propose a vegetable pre-treatment equipment for quick-frozen food fillings. Utility Model Content

[0003] The technical problem to be solved by the present invention is to overcome the existing defects and provide a vegetable pretreatment device for quick-frozen food fillings. The device drives multiple stages to operate in a first stage, so that the fruits and vegetables shake and move while the upper surfaces of the fruits and vegetables are cleaned by a rotating brush. The impurity cleaning part rotates in contact with the surface of the fruits and vegetables and the two move relative to each other. Combined with a certain water pressure flushing, the pretreatment and cleaning effect of the device on the fruits and vegetables used for quick-frozen food fillings is effectively improved, which can effectively solve the problems in the background technology.

[0004] To achieve the above-mentioned object, the present invention provides the following technical solution: a vegetable preprocessing device for quick-frozen food fillings, comprising a processing shell, a feed hopper being provided through the left end of the top wall of the processing shell, an L-shaped partition plate and a filter plate being provided between the front and rear walls of the processing shell from top to bottom, and the device is characterized in that it also includes a cleaning mechanism;

[0005] Cleaning mechanism: It includes a rotating shaft 1, a circular brush, a transmission component 1, a shaking component and a transmission component 2. There are eight rotating shafts 1, and the eight rotating shafts 1 are all rotatably connected to the bottom wall of the L-shaped partition plate through a bearing 1. A circular brush is provided at the lower end of the rotating shaft 1, and a shaking component is provided between the front and rear walls of the processing shell. A transmission component 1 is provided between the rear rotating shaft 1 and the processing shell, and a transmission component 2 is provided between the transmission component 1 and the shaking component. The first stage of the device drives multiple stages to operate, so that the fruits and vegetables are shaken and moved while the upper surface of the fruits and vegetables is cleaned by the rotating brush, and the impurity cleaning part rotates in contact with the surface of the fruits and vegetables and moves relative to each other, and then combined with a certain water pressure flushing, effectively improves the pre-treatment and cleaning effect of the device on fruits and vegetables used for quick-frozen food fillings.

[0006] Furthermore, a control switch is included, which is located outside the processing shell. The input end of the control switch is electrically connected to the external power supply, which makes it convenient to control the electrical components.

[0007] Furthermore, the cleaning mechanism also includes gear one, rotating shaft two and gear two, and the gear one is respectively arranged at the upper end of the rotating shaft one. The bottom wall of the L-shaped partition plate is rotatably connected to six evenly distributed gear twos through the rotating shaft two. The gear twos are all meshed with the adjacent gear one, so that the circular brush rotates synchronously in the vegetable preprocessing equipment used for quick-frozen food fillings.

[0008] Furthermore, the transmission assembly 1 includes a fixed seat, a worm, a rotating shaft 3, a bevel gear and a worm wheel. The fixed seat is arranged on the rear wall of the processing shell. The middle part of the fixed seat is rotatably connected to the worm through the bearing 2. The upper ends of the two rotating shafts 1 on the rear side are provided with worm wheels, and the worm wheels are meshed with the worm. The rear wall of the processing shell is rotatably connected to the rotating shaft 3 through the bearing 3. The front end of the rotating shaft 3 and the right end of the worm are provided with bevel gears. The bevel gears are meshed with each other, so that in the vegetable preprocessing equipment used for quick-frozen food fillings, the two rotating shafts 1 at the rear end can be driven to rotate synchronously through the rotating shaft 3.

[0009] Furthermore, the shaking assembly includes a fourth rotating shaft, a rotating seat, a telescopic column, a spring and a shaking ball. The fourth rotating shaft is rotatably connected to the left and right ends between the front and rear walls of the processing shell through four bearings respectively. Three evenly distributed rotating seats are provided on the outside of the fourth rotating shaft. Two evenly distributed shaking balls are provided on the outside of the rotating seat through the telescopic column and the spring. The springs are movably connected to the outer ends of adjacent telescopic columns. The shaking balls are installed in conjunction with the filter plate to perform shaking processing on fruits and vegetables used as quick-frozen food fillings.

[0010] Furthermore, the transmission component 2 includes pulley 1, belt 1, pulley 2 and belt 2, the pulley 1 is respectively arranged at the rear end of the rotating shaft 4, and the two pulleys 1 are connected by belt 1. The rear ends of the rotating shaft 4 and the rotating shaft 3 on the right are both provided with pulley 2, and the two pulleys 2 are connected by belt 2, so that the rotating shaft 3 and the rotating shaft 4 in the vegetable preprocessing equipment for quick-frozen food fillings can rotate simultaneously.

[0011] Furthermore, the cleaning mechanism also includes a motor, which is arranged on the front side of the processing shell, the input end of the motor is electrically connected to the output end of the control switch, and the output shaft of the motor is fixedly connected to the front end of the rotating shaft four on the right side, providing power for the device to pre-process and clean fruits and vegetables used for quick-frozen food fillings.

[0012] Furthermore, a flushing pipe is provided through the right wall of the processing shell, and the lower end of the flushing pipe passes through the avoidance hole opened on the bottom wall of the L-shaped partition plate to wash the fruits and vegetables used as quick-frozen food fillings.

[0013] Compared with the prior art, the beneficial effects of the present invention are: the vegetable pretreatment equipment for quick-frozen food fillings has the following advantages:

[0014] When pre-processing and cleaning the fruits and vegetables used as quick-frozen food fillings, the first level of the device drives the multi-level operation through the rotating shaft 1, the circular brush, the gear 1, the rotating shaft 2, the gear 2, the transmission component 1, the shaking component, the transmission component 2 and the flushing pipe, so that the fruits and vegetables are shaken and moved, and the upper surface of the fruits and vegetables is cleaned by the rotating brush through the brush, and the impurity cleaning part rotates in contact with the surface of the fruits and vegetables and moves relative to each other, and then combined with a certain water pressure flushing, the pre-processing and cleaning effect of the device on the fruits and vegetables used as quick-frozen food fillings is effectively improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the structure of the utility model;

[0016] Figure 2 This is a schematic diagram of the internal structure of the utility model;

[0017] Figure 3 This is a schematic diagram of the rear structure of the utility model;

[0018] Figure 4 This is a schematic diagram of the structure of the flushing pipe of the utility model;

[0019] Figure 5 This is an enlarged structural diagram of point A of the present utility model.

[0020] In the figure: 1 processing shell, 2 control switch, 3 feed hopper, 4 filter plate, 5 L-shaped partition plate, 6 cleaning mechanism, 61 rotating shaft 1, 62 circular brush, 63 gear 1, 64 rotating shaft 2, 65 gear 2, 66 transmission component 1, 661 fixed seat, 662 worm, 663 rotating shaft 3, 664 bevel gear, 665 worm gear, 67 shaking component, 671 rotating shaft 4, 672 rotating seat, 673 telescopic column, 674 spring, 675 shaking ball, 68 transmission component 2, 681 pulley 1, 682 belt 1, 683 pulley 2, 684 belt 2, 69 motor, 7 flushing pipe. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] See also Figure 1-5 This embodiment provides a technical solution: a vegetable preprocessing device for quick-frozen food fillings, comprising a processing shell 1, a feed hopper 3 penetrating the left end of the top wall of the processing shell 1, an L-shaped partition plate 5 and a filter plate 4 respectively provided from top to bottom between the front and rear walls of the processing shell 1, when washing and preprocessing fruits and vegetables used as quick-frozen food fillings, firstly, the flushing pipe 7 is connected to the external high-pressure water supply pipe, the fruits and vegetables enter the device through the feed hopper 3 and fall to the upper left end of the filter plate 4, and the fruits and vegetables move along the inclined surface of the filter plate 4, characterized in that: it also includes a cleaning mechanism 6;

[0023] Cleaning mechanism 6: It includes a rotating shaft 61, a circular brush 62, a transmission component 66, a shaking component 67 and a transmission component 2 68. There are eight rotating shafts 61, and the eight rotating shafts 61 are rotatably connected to the bottom wall of the L-shaped partition plate 5 through a bearing 1. The lower end of the rotating shaft 61 is provided with a circular brush 62. A shaking component 67 is provided between the front and rear walls of the processing shell 1. A transmission component 66 is provided between the rear rotating shaft 61 and the processing shell 1. A transmission component 2 68 is provided between the transmission component 1 66 and the shaking component 67. It also includes a control switch 2, which is located outside the processing shell 1. The input end of the control switch 2 is electrically connected to the external power supply. The cleaning mechanism 6 also includes a gear 1 63, a rotating shaft 2 64 and a gear 2 65. The gear 1 63 is respectively provided at The upper end of the rotating shaft 1 61 and the bottom wall of the L-shaped partition plate 5 are rotatably connected to six evenly distributed gear 2 65 through the rotating shaft 2 64. The gear 2 65 is meshed with the adjacent gear 1 63. The transmission component 1 66 includes a fixed seat 661, a worm 662, a rotating shaft 3 663, a bevel gear 664 and a worm wheel 665. The fixed seat 661 is set on the rear wall of the processing shell 1. The middle part of the fixed seat 661 is rotatably connected to the worm 662 through the bearing 2. The upper ends of the two rotating shafts 1 61 on the rear side are provided with worm wheels 665. The worm wheels 665 are meshed with the worm 662. The rear wall of the processing shell 1 is rotatably connected to the rotating shaft 3 663 through the bearing 3. The front end of the rotating shaft 3 663 and the right end of the worm 662 are provided with bevel gears 664. The bevel gears 664 are meshed with each other. The shaking assembly 67 includes a rotating shaft 4 671, a rotating seat 672, a telescopic column 673, a spring 674 and a shaking ball 675. The rotating shaft 4 671 is respectively connected to the left and right ends between the front and rear walls of the processing shell 1 through the bearing 4. Three evenly distributed rotating seats 672 are provided on the outside of the rotating shaft 4 671. Two evenly distributed shaking balls 675 are provided on the outside of the rotating seat 672 through the telescopic column 673 and the spring 674. The springs 674 are movably connected to the outer ends of the adjacent telescopic columns 673. The shaking ball 675 is installed in conjunction with the filter plate 4. The transmission assembly 2 68 includes a pulley 1 681, a belt 1 682, a pulley 2 683 and a belt 2 684. The pulley 1 681 is respectively set at the rear end of the rotating shaft 4 671, and the two belts The pulleys 1 681 are connected by a belt 1 682, and the rear ends of the right rotating shaft 4 671 and the rotating shaft 3 663 are both provided with a pulley 2 683. The two pulleys 2 683 are connected by a belt 2 684. The cleaning mechanism 6 also includes a motor 69. The motor 69 is arranged on the front side of the processing shell 1. The input end of the motor 69 is electrically connected to the output end of the control switch 2. The output shaft of the motor 69 is fixedly connected to the front end of the right rotating shaft 4 671. A flushing pipe 7 is provided through the right wall of the processing shell 1. The lower end of the flushing pipe 7 passes through the avoidance hole opened on the bottom wall of the L-shaped partition plate 5. The belt transmission diameters between the two pulleys 1 681 are different, thereby ensuring the belt transmission of the belt 1 682. The belt transmission diameters between the two pulleys 2 683 are different.Thus, the belt transmission of belt 2 684 is ensured, and the control switch 2 starts the motor 69 to drive the right shaft 4 671 to rotate. The right shaft 4 671 is driven by the belt between pulley 1 681 and belt 1 682, so that the left shaft 4 671 rotates, and the shaft 4 671 drives the rotating seat 672 to rotate. When the rotating seat 672 rotates until its own shaking ball 675 contacts the lower side of the filter plate 4, the shaking ball 675 is compressed, and the telescopic end of the telescopic column 673 and the spring 674 contract. When the shaking ball 675 is separated from the filter plate 4 by rotation, the contraction elastic force of the spring 674 causes the shaking ball 675 to move. 75 is reset, and as the rotating shaft 4 671 continues to rotate, the shaking ball 675 continuously collides with the lower side of the filter plate 4, so that the filter plate 4 itself generates a shaking force, and then the fruits and vegetables on the filter plate 4 shake off some of their own impurities and dust through shaking. At the same time, the rotating shaft 4 671 on the right is driven by the belt between the pulley 2 683 and the belt 2 684, so that the rotating shaft 3 663 rotates, and the rotating shaft 3 663 is connected by meshing with the bevel gear 664 to rotate the worm 662, and the worm 662 is connected by meshing with the worm wheel 665, so that the two rotating shafts 1 61 on the rear side rotate, and the rear The two rotating shafts 1 61 on the side are each meshed with the adjacent gear 2 65 through the gear 1 63, so that the remaining rotating shaft 1 61 rotates synchronously, and the rotating shaft 1 61 drives the circular brush 62 to rotate, so as to brush and clean the upper surface of the fruits and vegetables between the filter plate 4 and the L-shaped partition plate 5. As the fruits and vegetables move along the inclined surface of the filter plate 4, the filter plate 4 shakes the fruits and vegetables on the upper side thereof, and the contact part between the fruits and vegetables and the circular brush 62 is constantly changed by the shaking. At the same time, the high-pressure water is sprayed from the lower end of the flushing pipe 7 through the external high-pressure water supply pipe. The surface of fruits and vegetables is thereby washed with water. By combining water washing, shaking and brush cleaning, the device improves the pre-treatment and cleaning effect of fruits and vegetables used for quick-frozen food fillings. It is easy to use. Impurities on the surface of fruits and vegetables and water flow through the filter holes of the filter plate 4. The device drives multiple stages to operate at one level, so that the fruits and vegetables shake and move while the brush rotates to clean the upper surface of the fruits and vegetables. The impurity cleaning part rotates in contact with the surface of the fruits and vegetables and the two move relative to each other. Combined with a certain water pressure flushing, the device effectively improves the pre-treatment and cleaning effect of fruits and vegetables used for quick-frozen food fillings.

[0024] The working principle of the vegetable pretreatment equipment for quick-frozen food fillings provided by the present invention is as follows: when washing and pre-treating fruits and vegetables for quick-frozen food fillings, first connect the flushing pipe 7 to the external high-pressure water supply pipe, and the fruits and vegetables enter the device through the feed hopper 3 and fall to the upper left end of the filter plate 4. The fruits and vegetables move along the inclined surface of the filter plate 4. At the same time, the control switch 2 starts the motor 69 to drive the right-side rotating shaft four 671 to rotate. The right-side rotating shaft four 671 is driven by a belt between a pulley 1 681 and a belt 1 682, thereby causing the left-side rotating shaft four 671 to rotate. The fourth shaft 671 drives the rotating seat 672 to rotate. When the rotating seat 672 rotates until the shaking ball 675 contacts the lower side of the filter plate 4, the shaking ball 675 is compressed, and the telescopic end of the telescopic column 673 and the spring 674 contract. When the shaking ball 675 rotates and separates from the filter plate 4, the contraction elastic force of the spring 674 resets the shaking ball 675. As the rotating shaft 671 continues to rotate, the shaking ball 675 continuously collides with the lower side of the filter plate 4, thereby causing the filter plate 4 to generate a shaking force itself, thereby causing the fruits and vegetables on the filter plate 4 to shake off some of their own impurities and dust through shaking. At the same time, the rotating shaft 671 on the right side 71 is driven by a belt between pulley 2 683 and belt 2 684, thereby rotating shaft 3 663, rotating shaft 3 663 is connected by meshing connection between bevel gear 664, thereby rotating worm 662, worm 662 is connected by meshing connection with worm wheel 665, thereby rotating two rotating shafts 1 61 on the rear side, and the two rotating shafts 1 61 on the rear side are respectively connected by meshing connection between gear 1 63 and adjacent gear 2 65, thereby making the remaining rotating shafts 1 61 rotate synchronously, rotating shaft 1 61 drives circular brush 62 to rotate, thereby cleaning the melon between filter plate 4 and L-shaped partition plate 5. The upper surface of fruits and vegetables is cleaned with a brush. As the fruits and vegetables move along the inclined surface of the filter plate 4, the filter plate 4 shakes the fruits and vegetables on its upper side, and the contact points between the fruits and vegetables and the circular brush 62 are constantly changed by the shaking. At the same time, high-pressure water is sprayed from the lower end of the flushing pipe 7 through the external high-pressure water supply pipe, thereby washing the surface of the fruits and vegetables. By combining water washing, shaking and brush cleaning, the pretreatment and cleaning effect of the device on fruits and vegetables used for quick-frozen food fillings is improved. The device is easy to use, and impurities on the surface of fruits and vegetables and water flow through the filter holes of the filter plate 4.

[0025] It is worth noting that the motor 69 disclosed in the above embodiment can adopt Y90S-2, and the control switch 2 is provided with a control button corresponding to the motor 69 for controlling its switch.

[0026] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A vegetable pre-processing device for quick-frozen food fillings, comprising a processing shell (1), wherein a feed hopper (3) is provided through the left end of the top wall of the processing shell (1), and an L-shaped partition plate (5) and a filter plate (4) are provided between the front and rear walls of the processing shell (1) from top to bottom, respectively, and characterized in that: Also included is a cleaning mechanism (6); Cleaning mechanism (6): It includes a rotating shaft (61), a circular brush (62), a transmission component (66), a shaking component (67) and a transmission component (68). There are eight rotating shafts (61). The eight rotating shafts (61) are rotatably connected to the bottom wall of the L-shaped partition plate (5) through bearings. The lower end of the rotating shaft (61) is provided with a circular brush (62). A shaking component (67) is provided between the front and rear walls of the processing shell (1). A transmission component (66) is provided between the rear rotating shaft (61) and the processing shell (1). A transmission component (68) is provided between the transmission component (66) and the shaking component (67).

2. The vegetable pretreatment equipment for quick-frozen food fillings according to claim 1, characterized in that: It also includes a control switch (2), which is located outside the processing shell (1), and an input end of the control switch (2) is electrically connected to an external power supply.

3. The vegetable pretreatment equipment for quick-frozen food fillings according to claim 1, characterized in that: The cleaning mechanism (6) further comprises a gear 1 (63), a rotating shaft 2 (64) and a gear 2 (65), wherein the gear 1 (63) is respectively arranged at the upper end of the rotating shaft 1 (61), and the bottom wall of the L-shaped partition plate (5) is rotatably connected to six evenly distributed gear 2s (65) via the rotating shaft 2 (64), and each gear 2 (65) is meshed with an adjacent gear 1 (63).

4. The vegetable pretreatment equipment for quick-frozen food fillings according to claim 2, characterized in that: The transmission component 1 (66) includes a fixed seat (661), a worm (662), a rotating shaft 3 (663), a bevel gear (664) and a worm wheel (665). The fixed seat (661) is arranged on the rear wall of the processing shell (1). The middle part of the fixed seat (661) is rotatably connected to the worm (662) through a bearing 2. The upper ends of the two rotating shafts 1 (61) on the rear side are both provided with worm wheels (665). The worm wheels (665) are both meshed and connected with the worm (662). The rear wall of the processing shell (1) is rotatably connected to the rotating shaft 3 (663) through a bearing 3. The front end of the rotating shaft 3 (663) and the right end of the worm (662) are both provided with a bevel gear (664). The bevel gears (664) are meshed and connected with each other.

5. The vegetable pretreatment equipment for quick-frozen food fillings according to claim 4, characterized in that: The shaking assembly (67) includes a rotating shaft (671), a rotating seat (672), a telescopic column (673), a spring (674) and a shaking ball (675). The rotating shaft (671) is rotatably connected to the left and right ends between the front and rear walls of the processing shell (1) through bearings (671). Three evenly distributed rotating seats (672) are provided on the outside of the rotating shaft (671). Two evenly distributed shaking balls (675) are provided on the outside of the rotating seat (672) through the telescopic column (673) and the spring (674). The springs (674) are movably connected to the outer ends of the adjacent telescopic columns (673). The shaking balls (675) are installed in conjunction with the filter plate (4).

6. The vegetable pre-processing equipment for quick-frozen food fillings according to claim 5, characterized in that: The transmission component 2 (68) includes a pulley 1 (681), a belt 1 (682), a pulley 2 (683) and a belt 2 (684). The pulley 1 (681) is respectively arranged at the rear end of the rotating shaft 4 (671). The two pulleys 1 (681) are connected to each other through the belt 1 (682). The rear ends of the rotating shaft 4 (671) and the rotating shaft 3 (663) on the right are both provided with a pulley 2 (683). The two pulleys 2 (683) are connected to each other through the belt 2 (684).

7. The vegetable pre-processing equipment for quick-frozen food fillings according to claim 5, characterized in that: The cleaning mechanism (6) further includes a motor (69), which is arranged at the front side of the processing shell (1), the input end of the motor (69) is electrically connected to the output end of the control switch (2), and the output shaft of the motor (69) is fixedly connected to the front end of the right rotating shaft (671).

8. The vegetable pre-processing equipment for quick-frozen food fillings according to claim 1, characterized in that: A flushing pipe (7) is provided through the right wall of the processing shell (1), and the lower end of the flushing pipe (7) passes through a avoidance hole provided on the bottom wall of the L-shaped partition plate (5).