Fig deep processing equipment and technology
Through the integrated cleaning, draining and slicing fig deep processing equipment, the problems of low fig processing efficiency and manual removal of root stems in the prior art are solved, and efficient fig processing and automatic root stem removal are achieved.
Patent Information
- Application Number
- CN202510368501.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2045-03-27
AI Technical Summary
In the existing fig deep processing equipment, steps such as cleaning, draining and slicing exist independently, resulting in low fig processing efficiency and lack of automatic root removal structures, which require manual operation.
A fig deep processing equipment is designed, integrating a cleaning tank, aeration mechanism, slice assembly and limit assembly. The cleaning mechanism and aeration mechanism are used to realize the cleaning and draining of figs, automatic slices are achieved using the slice assembly, and automatic root pedicles are removed through the limit assembly.
It significantly improves the processing efficiency of figs, reduces the transfer steps, realizes automatic removal of fig root stems, and reduces the amount of manual operation.
Smart Images

Figure CN119949535A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of fig processing, and in particular to a fig deep processing device and a fig deep processing technology. Background Art
[0002] Figs are pear-shaped or round, with soft flesh and sweet taste. They are rich in vitamins, minerals and dietary fiber and have high nutritional and medicinal value. Therefore, they are popular all over the world. However, figs are not easy to preserve, so they need to be deeply processed.
[0003] A fig deep processing equipment and process disclosed in a Chinese patent with announcement number CN111802602B first utilizes a cleaning tank in conjunction with an ozone generator to achieve disinfection and cleaning of the figs, then utilizes a drainage conveyor belt to transport the figs, then utilizes a slicing mechanism to slice the figs, and finally utilizes a draining mechanism and a saccharifying mechanism to drain and saccharify the sliced figs, with a high degree of automation and good production efficiency and capacity.
[0004] However, the above-mentioned prior art has the following defects: the steps of washing, draining and slicing figs are all independent, and each step requires the figs to be transported to the processing equipment of the step, which takes a certain amount of time, making the processing efficiency of the figs not high enough; in addition, the above-mentioned prior art does not have a structure for removing the roots of the figs, which needs to be removed manually, further reducing the processing efficiency of the figs. Summary of the invention
[0005] The invention aims to solve the problems existing in the background technology and to provide a fig deep processing equipment and process.
[0006] The technical solution of the present invention is a fig deep processing equipment, comprising a cleaning tank, a hollow plate and a telescopic component a, wherein the hollow plate is slidably arranged inside the cleaning tank, and the telescopic component a is installed at the bottom end of the inside of the cleaning tank and connected to the hollow plate; and further comprising:
[0007] The cleaning mechanism is arranged inside the cleaning tank and is provided with multiple parts. The cleaning mechanism includes two pulley assemblies; the two pulley assemblies are arranged in a "V" shape, and the pulley assembly includes a rotating motor, a plate a, a transmission pulley and a transmission belt; the plate a is provided with two and connected to the inner wall of the cleaning tank; the transmission pulley is provided with two and is rotationally connected to the plate a; the transmission belt is connected to the two transmission pulleys; the rotating motor is transmission-connected to the transmission pulley;
[0008] The aeration mechanism includes a fan, an ozone generator, a tube a and a tube b; the fan and the ozone generator are both arranged inside the cleaning tank; the tube a is provided with two tubes connected to the fan and the ozone generator respectively, and the two tubes a are connected to both ends of the tube b respectively; the surface of the tube b is connected to the hollow plate through the tube c; the top of the hollow plate is evenly provided with a plurality of aeration valves connected thereto;
[0009] A slicing component for slicing figs is arranged on the side wall of the cleaning pool, and a limiting component for limiting the figs is arranged above the cleaning pool.
[0010] Preferably, an inclined material guide plate is provided on the surface of the cleaning pool near the slicing assembly, a dust screen is provided on the side wall of the cleaning pool near the bottom, a vibration motor is provided inside the cleaning pool, and a plurality of drain pipes are provided on the side wall of the cleaning pool; and a solenoid valve is provided on the drain pipe.
[0011] Preferably, the slicing assembly comprises an outer frame and blades; the outer frame is wide at the top and narrow at the bottom; and the blades are evenly arranged inside the outer frame.
[0012] Preferably, the limiting assembly includes a telescopic component b, a plate b, a plate c, a sliding rod and a stopper; the telescopic component b is arranged at both ends of the plate b and is connected thereto; the plate c is provided with multiple and is connected to the bottom end of the plate b; the sliding rod is slidably arranged at one end of the plate c and its bottom end is slidably connected to the stopper; the stopper is magnetically connected to the outer frame; an airbag layer is provided at the bottom end of the plate c.
[0013] Preferably, the transmission belt is a grid structure and has fluff on its surface.
[0014] Preferably, both tubes a are retractable hose structures and are provided with electric-controlled valves.
[0015] The present invention also provides a deep processing technology for figs, which uses the above-mentioned processing equipment and includes the following steps:
[0016] S1. Placing figs: Placing figs to be cleaned side by side inside the cleaning mechanism, then moving the block down through the slide bar to block the slicing assembly, then pouring water into the cleaning pool to make the figs float, with their roots facing downward after floating, then opening the telescopic component b, so that the plate c moves down and presses the figs into the water to form a squeezing force with the surface of the transmission belt;
[0017] S2, cleaning figs: turning on the vibration motor, the vibration motor drives the cleaning pool to vibrate, and then makes the water vibrate, and then uses the aeration mechanism to inject ozone into the water, and uses the ozone to make the water roll, and at the same time, the ozone can play a sterilizing role, and at the same time, the rotating motors on both sides are turned on and turned in the same direction, so that the transmission belts on both sides drive the figs to rotate, and under the action of centrifugal force, the dirt on the surface of the figs is quickly detached, and at the same time, the fluff can play a certain cleaning role on the surface of the figs, thereby improving the cleaning quality and efficiency of the figs;
[0018] S3, draining figs: using the telescopic part a to drive the hollow plate downward, the water level is lowered until the water contacts the drain pipe. At this time, the water is separated from the figs. Under the centrifugal force generated by the rotation of the figs, the water stains on the surface can be accelerated to separate. At the same time, the fan is turned on, and the airflow generated is ejected through the aeration valve, which can accelerate the draining of the figs.
[0019] S4. Fig slicing: first reset the limit assembly, turn off the rotating motor, drive the block upward through the slide bar, and then turn on the rotating motor again so that the rotating motors on both sides turn in opposite directions, so that the transmission belt can realize the conveying function of the figs. When the figs pass through the slicing assembly, they will be cut into slices at one time and fall on the guide plate, and the roots will fall into the water inside the cleaning tank. After the slicing is completed, open the solenoid valve on the drain pipe to drain the water and the roots.
[0020] Compared with the prior art, the above technical solution of the present invention has the following beneficial technical effects:
[0021] The present invention arranges a cleaning mechanism and an aeration mechanism inside a cleaning pool, places figs to be cleaned side by side inside the cleaning mechanism, and utilizes the cleaning mechanism in cooperation with the aeration mechanism to realize the cleaning and draining functions of the figs; and arranges a slicing component, so that when all figs with their roots facing downward pass through the slicing component, an automatic slicing function can be realized, so that the cleaning, draining and slicing of the figs are all performed in the same device, significantly reducing the transfer steps of the figs, improving the processing efficiency of the figs, and realizing the cutting function of the fig roots during the processing process, without the need for manual cutting by staff, reducing the workload of staff, and further improving the processing efficiency of the figs. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 A stereoscopic view of an embodiment of the present invention Figure 1 ;
[0023] Figure 2 A stereoscopic view of an embodiment of the present invention Figure 2 ;
[0024] Figure 3 A stereoscopic view of an embodiment of the present invention Figure 3 ;
[0025] Figure 4 A schematic diagram of the internal structure of a cleaning pool in an embodiment of the present invention;
[0026] Figure 5 A schematic diagram of a structure in which a fig is placed in a cleaning mechanism in an embodiment of the present invention;
[0027] Figure 6A schematic cross-sectional structure diagram of a slicing assembly in an embodiment of the present invention;
[0028] Figure 7 The figure is a schematic cross-sectional structure diagram of an aeration mechanism in an embodiment of the present invention.
[0029] Attached figures: 1. cleaning tank; 2. guide plate; 3. pulley assembly; 31. rotating motor; 32. transmission belt; 33. plate a; 4. outer frame; 5. plate b; 6. plate c; 7. stopper; 8. telescopic part b; 9. dustproof net; 10. air bag layer; 11. drain pipe; 12. telescopic part a; 13. ozone generator; 14. tube a; 15. tube b; 16. hollow plate; 17. fan; 18. aeration valve; 19. blade; 20. slide rod; 21. vibration motor. DETAILED DESCRIPTION
[0030] Embodiment 1, as Figure 1-5 As shown, a fig deep processing equipment proposed by the present invention includes a cleaning tank 1, a hollow plate 16, a telescopic component a12, a cleaning mechanism and an aeration mechanism. The side wall of the cleaning tank 1 is provided with an inspection door near the bottom end; the hollow plate 16 is slidably arranged on the inner side of the cleaning tank 1, and the telescopic component a12 is installed at the inner bottom end of the cleaning tank 1 and connected to the hollow plate 16. The telescopic component a12 includes but is not limited to a device such as a cylinder that can drive the hollow plate 16 to rise and fall. The telescopic component a12 drives the hollow plate 16 to rise and fall, and can adjust the water level inside the cleaning tank 1.
[0031] The cleaning mechanism is arranged inside the cleaning pool 1 and is provided with multiple ones, and the cleaning mechanism includes two pulley assemblies 3; the two pulley assemblies 3 are arranged in a "V" shape, and a space for placing figs is reserved between the pulley assemblies 3, and the pulley assembly 3 includes a rotating motor 31, a plate a33, a transmission pulley and a transmission belt 32; two plates a33 are provided and connected to the inner wall of the cleaning pool 1; two transmission pulleys are provided and are rotationally connected to the plates a33; the transmission belt 32 is connected to the two transmission pulleys; the rotating motor 31 is transmission-connected to the transmission pulley, the transmission belt 32 is a grid structure and its surface is provided with fluff, the grid shape can increase the friction between the transmission belt 32 and the figs, the fluff has a certain elasticity, can play a buffering role, and avoid the extrusion force from causing damage to the figs.
[0032] In this embodiment, the rotation directions of the rotating motors 31 on the pulley assemblies 3 on both sides are controlled to be the same, so that the transmission belts 32 on both sides can drive the figs to rotate and generate centrifugal force. The centrifugal force accelerates the rapid separation of dirt on the surface of the figs. At the same time, the fluff can play a certain cleaning role on the dirt on the surface of the figs, further improving the cleaning efficiency and quality of the figs. When the water level drops and the figs are separated, the centrifugal force of the rotation of the figs can be used to accelerate the separation of water stains on the surface and improve the drainage rate. When the rotation directions of the rotating motors 31 on the pulley assemblies 3 on both sides are opposite, the transmission belts 32 on both sides can realize the conveying function of the figs.
[0033] The aeration mechanism includes a fan 17, an ozone generator 13, a pipe a14 and a pipe b15; the fan 17 and the ozone generator 13 are both arranged inside the cleaning tank 1; the pipe a14 is provided with two pipes connected to the fan 17 and the ozone generator 13 respectively, and the two pipes a14 are respectively connected to the two ends of the pipe b15; the surface of the pipe b15 is connected to the hollow plate 16 through the pipe c; the top of the hollow plate 16 is evenly provided with a plurality of aeration valves 18 connected thereto, and the aeration valve 18 is a prior art, and its specific structure and working principle are not repeated here; the two pipes a14 are both retractable hose structures and are provided with electric control valves; the retractable pipe a14 can ensure the connection function of the pipe b15 with the ozone generator 13 and the fan 17 while realizing the lifting and lowering of the hollow plate 16.
[0034] In this example, the ozone generated by the ozone generator 13 is transported to the inside of the tube b15 through a side tube a14, and then transported to the inside of the hollow plate 16, and finally sprayed into the water through the aeration valve 18 and drives the water to roll, thereby improving the cleaning efficiency of the figs. At the same time, the ozone can achieve the sterilization and disinfection function of the figs.
[0035] A slicing component for slicing figs is disposed on the side wall of the cleaning pool 1 ; a limiting component for limiting the figs is disposed above the cleaning pool 1 .
[0036] Embodiment 2, as Figure 1-4As shown, a fig deep processing equipment proposed by the present invention, compared with the first embodiment, this embodiment also introduces in detail the structure of the limit assembly, the limit assembly includes a telescopic component b8, a plate b5, a plate c6, a sliding rod 20 and a stopper 7; the telescopic component b8 is arranged at both ends of the plate b5 and connected thereto, the telescopic component b8 includes but is not limited to a device such as a cylinder that can drive the plate b5 to rise and fall, and the telescopic component b8 is but is not limited to being installed on the side wall of the cleaning tank 1; the plate c6 is provided with a plurality of and connected to the bottom end of the plate b5; the sliding rod 20 is slidably arranged at one end of the plate c6 and its bottom end is slidably connected to the stopper 7; the stopper 7 is magnetically connected to the outer frame 4, and the surface of the stopper 7 is provided with a rubber layer that cooperates with the magnetic attraction force to enhance the sealing between the stopper 7 and the outer frame 4 and improve the waterproof performance of the stopper 7; the bottom end of the plate c6 is provided with an air bag layer 10, the air bag layer 10 can play a buffering role, and when the plate c6 presses down the fig, it avoids damage to the fig.
[0037] In this embodiment, before water is injected into the cleaning tank 1, the stopper 7 is first driven downward by the slide rod 20 so that the stopper 7 blocks the slicing assembly to prevent water from flowing through the slicing assembly. After water is injected into the cleaning tank 1, the fig will float with the root facing upward. At this time, the fig is not in contact with the transmission belt 32. By opening the telescopic component b8, the telescopic component b8 drives the plate b5 to move downward, and then drives the plate c6 to move downward, so that the plate c6 presses the fig into the water and generates an extrusion force between the plate c6 and the transmission belt 32. The extrusion force is very small to ensure that sufficient friction is generated between the transmission belt 32 and the fig to drive the fig to rotate.
[0038] Embodiment three, as Figure 1-2 and Figure 4 and Figure 6 As shown, a fig deep processing device proposed by the present invention, compared with the second embodiment, this embodiment further introduces the structure of the slicing component in detail, the slicing component includes an outer frame 4 and a blade 19, the outer frame 4 is a structure that is wide at the top and narrow at the bottom; the blade 19 is evenly arranged inside the outer frame 4; the blade 19 is arranged layer by layer from top to bottom.
[0039] In this embodiment, the outer frame 4 is a trapezoidal structure that is wide at the top and narrow at the bottom. In order to adapt to the shape of the fig and ensure that the blade 19 can slice the fig, the figs pass through the slicing assembly one by one under the conveying action of the transmission belt 32. During the process of passing through the slicing assembly, the blades 19 of each layer slice the fig at the same time, cutting the entire fig into slices at one time, thereby improving the slicing efficiency.
[0040] Embodiment 4, as Figure 1-3As shown, a fig deep processing equipment proposed by the present invention, compared with the third embodiment, this embodiment also includes that the surface of the cleaning pool 1 is provided with an inclined guide plate 2 near the slicing component, and a conveyor belt (not shown in the figure) is provided below the guide plate 2; the conveyor belt is connected to the existing equipment for drying figs; the inclined guide plate 2 facilitates the automatic sliding of the sheet figs onto the conveyor belt, and facilitates the separation of the stacked sheet figs from each other; a dustproof net 9 is provided near the bottom of the side wall of the cleaning pool 1, and the setting of the dustproof net 9 enables the space inside the cleaning pool 1 where the vibration motor 21, the ozone generator 13 and the aeration mechanism are installed to be ventilated and heat dissipated , and at the same time plays a certain dust-proof role; a vibration motor 21 is arranged inside the cleaning pool 1, and the vibration motor 21 can drive the cleaning pool 1 to vibrate so that the water inside the cleaning pool 1 can vibrate, and the vibration of the water can generate a small shock wave to further accelerate the disintegration and shedding of dirt on the surface of the figs; the vibration of the cleaning pool 1 will drive the guide plate 2 to vibrate, accelerate the sheet figs to slide on the guide plate 2, and help the stacked sheet figs to separate quickly; a plurality of drain pipes 11 are arranged on the side wall of the cleaning pool 1, and an electromagnetic valve is arranged on the drain pipe 11. When the hollow plate 16 moves down to the bottom of the drain pipe 11, the electromagnetic valve is opened so that water can be discharged through the drain pipe 11.
[0041] Example 5, please refer to Figure 1-7 The present invention also provides a fig deep processing device, which adopts the processing device described in any one of the above embodiments 1 to 4, and comprises the following steps:
[0042] S1. Placing figs: Placing figs to be cleaned side by side inside the cleaning mechanism, then moving the stopper 7 downward through the slide bar 20 to block the slicing assembly, then pouring water into the cleaning pool 1 to make the figs float, with their roots facing downward after floating, then opening the telescopic component b8 to make the plate c6 move downward and press the figs into the water to form a squeezing force with the surface of the transmission belt 32;
[0043] S2, cleaning figs: turning on the vibration motor 21, the vibration motor 21 drives the cleaning pool 1 to vibrate, thereby causing the water to vibrate, and then using the aeration mechanism to inject ozone into the water, using the ozone to make the water tumble, and at the same time, the ozone can play a sterilizing role, and at the same time, turning on the rotating motors 31 on both sides and making them turn in the same direction, so that the transmission belts 32 on both sides drive the figs to rotate, and under the action of centrifugal force, the dirt on the surface of the figs is quickly detached, and at the same time, the fluff can play a certain cleaning role on the surface of the figs, thereby improving the cleaning quality and efficiency of the figs;
[0044] S3, draining figs: using the telescopic part a12 to drive the hollow plate 16 to move downward, so that the water level is lowered until the water contacts the drain pipe 11. At this time, the water is separated from the figs. Under the centrifugal force generated by the rotation of the figs, the water stains on the surface can be accelerated to separate. At the same time, the fan 17 is turned on, and the airflow generated is ejected through the aeration valve 18, which can accelerate the draining of the figs.
[0045] S4, fig slicing: first reset the limit assembly, turn off the rotary motor 31, drive the stopper 7 to move upward through the slide bar 20, and then turn on the rotary motor 31 again, so that the rotary motors 31 on both sides turn in opposite directions, so that the transmission belt 32 can realize the conveying function of the figs. When the figs pass through the slicing assembly, they will be cut into slices at one time and fall on the guide plate 2, and the roots will fall into the water inside the cleaning tank 1. After the slicing is completed, open the solenoid valve on the drain pipe 11 to drain the water and the roots.
[0046] In summary, when the present invention is used, the figs to be cleaned are first placed side by side in the space formed between the pulley assemblies 3 in the cleaning mechanism, and then the stopper 7 is moved downward by the slide bar 20 so that the stopper 7 moves to the outer frame 4 of the slicing assembly to block the slicing assembly. The magnetic attraction between the outer frame 4 and the stopper 7 can enhance the waterproofness of the stopper 7 to prevent the water in the cleaning pool 1 from flowing away through the outer frame 4. Then, water is poured into the cleaning pool 1 to make the figs float. After the figs float, their roots will face downward. Then, the telescopic component b8 is turned on to make the plate b5 descend and then drive the plate c6 to descend. The plate c6 is used to press the floating figs into the water and generate a squeezing force between the plate c6 and the transmission belt 32 (the roots of the figs are always facing downward during the process of moving downward in the water). Then, the rotating motor 31 on the pulley assembly 3 is turned on so that the rotating motors 31 on the pulley assemblies 3 on both sides have the same direction of rotation. Then the transmission belt 32 can drive the fig to rotate, and the centrifugal force generated by the rotation can quickly separate the dirt on the surface of the fig. At the same time, the fluff on the surface of the transmission belt 32 can clean the dirt to a certain extent, thereby improving the cleaning efficiency. At the same time, the vibration motor 21 and the ozone generator 13 are turned on, and the ozone generated by the ozone generator 13 is transported to the inside of the tube b15 through a side tube a14 (the electric control valve on the tube a14 connected to the fan 17 is in a closed state), and then transported to the inside of the hollow plate 16, and finally sprayed into the water through the aeration valve 18 and drives the water to roll. At the same time, the ozone can achieve the sterilization and disinfection function of the fig, and the vibration motor 21 can drive the cleaning pool 1 to vibrate so that the water inside the cleaning pool 1 vibrates. The vibration of the water can generate a small shock wave to further accelerate the disintegration and shedding of the dirt on the surface of the fig, thereby improving the cleaning quality and efficiency of the fig.
[0047] After the figs are cleaned, the telescopic component a12 is opened, and the telescopic component a12 drives the hollow plate 16 to move downward, thereby causing the water level in the cleaning pool 1 to drop until the hollow plate 16 drops to below the drain pipe 11 (close to the drain pipe 11). At this time, the water is separated from the figs, and the water stains on the surface of the figs can be quickly detached under the centrifugal force generated by the rotation. At the same time, the electric control valve on the pipe a14 connected to the fan 17 is opened, and the electric control valve on the pipe a14 connected to the ozone generator 13 is closed. The fan 17 is turned on, and the airflow generated by the fan 17 enters the pipe b15 through the pipe a14, and then enters the hollow plate 16, and finally is sprayed out through the aeration valve 18, thereby accelerating the air flow in the cleaning pool 1, thereby accelerating the draining of the figs.
[0048] After the figs are drained, the telescopic component b8 is opened again, so that the plates b5 and c6 are moved up and reset, and the stopper 7 is moved up and reset by the slide rod 20, and no longer blocks the outer frame 4, and then the rotation direction of the rotating motor 31 on the pulley assemblies 3 on both sides is reversed, so that the transmission belt 32 can realize the conveying function of the figs, so that the figs pass through the slicing assembly one by one. In the process of the figs passing through the slicing assembly, under the joint action of the blades 19 of each layer, the whole fig is cut into multiple slices, and the cut roots fall into the water in the cleaning pool 1, and the sliced figs fall on the inclined guide plate 2. Since the cleaning tank 1 is in a vibrating state, the guide plate 2 is also in a vibrating state, which can accelerate the sliding of the sliced figs and help the stacked sliced figs to separate from each other. The sliding sliced figs fall on the conveyor belt and are conveyed to the equipment for drying figs, so that the cleaning, draining and slicing of the figs are all carried out in the same equipment, which significantly reduces the transfer steps of the figs and improves the processing efficiency of the figs. At the same time, the function of removing the fig roots is realized during the processing, and there is no need for the staff to manually remove them, which reduces the workload of the staff and further improves the processing efficiency of the figs.
[0049] Finally, open the solenoid valve on the drain pipe 11 so that the sewage and roots generated by the cleaning inside the cleaning pool 1 can be discharged through the drain pipe 11.
[0050] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited thereto, and various changes can be made within the knowledge scope of technicians in the relevant technical field without departing from the purpose of the present invention.
Claims
1. A fig deep processing device, comprising a cleaning tank (1), a hollow plate (16) and a telescopic component a (12), wherein the hollow plate (16) is slidably arranged inside the cleaning tank (1), and the telescopic component a (12) is installed at the bottom end of the inside of the cleaning tank (1) and connected to the hollow plate (16); characterized in that: Also includes: A cleaning mechanism is arranged inside a cleaning pool (1) and is provided with a plurality of cleaning mechanisms, the cleaning mechanism comprising two pulley assemblies (3); the two pulley assemblies (3) are arranged in a "V" shape, the pulley assembly (3) comprising a rotating motor (31), a plate a (33), a transmission pulley and a transmission belt (32); two plates a (33) are provided and connected to the inner wall of the cleaning pool (1); two transmission pulleys are provided and are rotationally connected to the plates a (33), and the transmission belt (32) is connected to the two transmission pulleys; the rotating motor (31) is transmission-connected to the transmission pulley; An aeration mechanism comprises a fan (17), an ozone generator (13), a pipe a (14) and a pipe b (15); the fan (17) and the ozone generator (13) are both arranged inside the cleaning tank (1); the pipe a (14) is provided with two pipes respectively connected to the fan (17) and the ozone generator (13), and the two pipes a (14) are respectively connected to the two ends of the pipe b (15); the surface of the pipe b (15) is connected to the hollow plate (16) through the pipe c; the top of the hollow plate (16) is evenly provided with a plurality of aeration valves (18) connected thereto; A slicing component for slicing figs is provided on the side wall of the cleaning pool (1), and a limiting component for limiting the figs is provided above the cleaning pool (1).
2. A fig deep processing equipment according to claim 1, characterized in that: An inclined material guide plate (2) is provided on the surface of the cleaning pool (1) near the slicing assembly, a dust screen (9) is provided on the side wall of the cleaning pool (1) near the bottom end, a vibration motor (21) is provided inside the cleaning pool (1), and a plurality of drainage pipes (11) are provided on the side wall of the cleaning pool (1), and a solenoid valve is provided on the drainage pipe (11).
3. A fig deep processing equipment according to claim 1, characterized in that: The slicing component comprises an outer frame (4) and a blade (19); the outer frame (4) is of a structure that is wide at the top and narrow at the bottom; and the blade (19) is evenly arranged inside the outer frame (4).
4. A fig deep processing equipment according to claim 3, characterized in that: The limiting assembly comprises a telescopic component b (8), a plate b (5), a plate c (6), a sliding rod (20) and a stopper (7); the telescopic component b (8) is arranged at both ends of the plate b (5) and is connected thereto; the plate c (6) is provided with a plurality of sliding rods and is connected to the bottom end of the plate b (5); the sliding rod (20) is slidably arranged at one end of the plate c (6) and its bottom end is slidably connected to the stopper (7); the stopper (7) is magnetically connected to the outer frame (4); and an airbag layer (10) is provided at the bottom end of the plate c (6).
5. The deep processing equipment for figs according to claim 1, characterized in that: The transmission belt (32) is a grid structure and has fluff on its surface.
6. A fig deep processing equipment according to claim 1, characterized in that: Both tubes a (14) are retractable hose structures and are provided with electric control valves.
7. A fig deep processing process, using the fig deep processing equipment according to any one of claims 2 to 6, characterized in that: The steps include: S1. Placing figs: Placing figs to be cleaned side by side inside the cleaning mechanism, then moving the stopper (7) downwards through the slide bar (20) to block the slicing assembly, then pouring water into the cleaning pool (1) to make the figs float up, with their roots facing downwards after the figs float up, then opening the telescopic component b (8) to make the plate c (6) move downwards and press the figs into the water to form a squeezing force with the surface of the transmission belt; S2, cleaning figs: turning on the vibration motor (21), the vibration motor (21) drives the cleaning pool (1) to vibrate, thereby causing the water to vibrate, and then injecting ozone into the water using an aeration mechanism, so that the water is rolled by the ozone, and the ozone can also play a sterilizing role, and at the same time, the rotating motors (31) on both sides are turned on and rotated in the same direction, so that the transmission belts (32) on both sides drive the figs to rotate, and under the action of centrifugal force, the dirt on the surface of the figs is quickly detached, and at the same time, the fluff can play a certain cleaning role on the surface of the figs, thereby improving the cleaning quality and efficiency of the figs; S3, draining the figs: using the telescopic component a (12) to drive the hollow plate (16) downward, the water level is lowered until the water contacts the drain pipe (11). At this time, the water is separated from the figs. Under the centrifugal force generated by the rotation of the figs, the water stains on the surface can be accelerated to separate. At the same time, the fan (17) is turned on, and the airflow generated is ejected through the aeration valve (16), which can accelerate the draining of the figs. S4, slicing figs: first, the limit assembly is reset, the rotary motor (31) is turned off, and then the rotary motor (31) is turned on again, so that the rotary motors (31) on both sides rotate in opposite directions, so that the transmission belt (32) can realize the conveying function of the figs. When the figs pass through the slicing assembly, they will be cut into slices at one time and fall on the guide plate (2), and the roots will fall into the water inside the cleaning tank (1). After the slicing is completed, the electromagnetic valve on the drain pipe (11) is opened to drain the water and the roots.
Citation Information
Patent Citations
A fig deep processing equipment and process
CN111802602B
Balsam pear washs and removes base of a fruit device
CN204682467U
Vegetable cleaning and processing device for vegetable processing
CN218551220U
Fruit freeze-drying processing device
CN221962796U
Fruit and vegetable washing and disinfection equipment
JP6802428B1