Anti-infection device for producing and processing prefabricated vegetables
By introducing disinfection and alignment mechanisms into the pre-made vegetable production and processing anti-infection device, the problems of incomplete disinfection and offset of the vegetable box are solved, and efficient disinfection and accurate feeding of the vegetable box are achieved.
Patent Information
- Application Number
- CN202510662765.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-21
- Publication Date
- 2025-08-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the existing pre-made vegetables packaging process, the vegetable box is not fully disinfected, which is prone to bacterial residues, and the vegetable box is easily offset on the conveyor belt, resulting in inaccurate feeding.
A pre-made vegetable production and processing anti-infection device is designed, including a disinfection mechanism and a alignment mechanism. The vegetable box is disinfected using an adsorption assembly and a disinfection box, and the alignment mechanism is used to ensure that the vegetable box is accurately moved to the feeding port.
The complete disinfection of the vegetable box is achieved, the sterilization effect is improved, and the vegetable box is prevented from being offset during the transmission process, ensuring the accuracy of feeding.
Smart Images

Figure CN120397441A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of pre-prepared meal packaging production, and in particular to an infection prevention device for the production and processing of pre-prepared meals. Background Art
[0002] Pre-prepared meals are convenient dishes that use modern standardized assembly line operations, with preliminary preparation of the ingredients, hygienic and scientific packaging, and then heating or steaming and frying before being eaten directly. Existing pre-prepared meals are packaged directly on an open assembly line. The conveyor transports the meal boxes to the bottom of the pre-prepared meal temporary storage device, and then seals them after the ingredients are added.
[0003] In the prior art, before pre-prepared dishes are packaged, the vegetable boxes cannot be fully disinfected, and bacteria are easily left on the vegetable boxes, causing food contamination. Moreover, when the vegetable boxes are transported on the conveyor belt, they cannot be accurately moved to the bottom of the pre-prepared dish temporary storage device, which easily causes the feeding to be offset. In response to the above problems, an anti-infection device for the production and processing of pre-prepared dishes is proposed. Summary of the Invention
[0004] The purpose of this application is to provide an infection prevention device for the production and processing of pre-prepared dishes to solve the problems raised in the above background technology.
[0005] To achieve the above objectives, the present application provides the following technical solutions: an infection prevention device for the production and processing of pre-prepared dishes, comprising a conveyor box, a disinfection mechanism disposed within the conveyor box, the disinfection mechanism being used to disinfect the dish boxes, and an alignment mechanism disposed within the conveyor box, adapted to the disinfection mechanism, the alignment mechanism being used to align the dish boxes;
[0006] The disinfection mechanism includes a transport assembly arranged in the conveying box, a rotating motor is fixedly mounted on the top of the conveying box, a turntable is fixedly mounted on the output shaft of the rotating motor, and four adsorption assemblies are arranged on the turntable, the disinfection mechanism also includes a disinfection box, the disinfection box is fixedly mounted on the bottom inner wall of the conveying box, and an air intake assembly is arranged on the side of the disinfection box;
[0007] The alignment mechanism includes two alignment plates, two L-shaped fixing plates are fixedly installed on the bottom inner wall of the conveying box, and lifting protrusions are slidably installed in the two L-shaped fixing plates through elastic components. The lifting protrusions are connected to the adsorption components through a clamping component, and the sides of the two L-shaped fixing plates are provided with rotating holes, and threaded guide sleeves are rotatably installed in the two rotating holes, and screws are threadedly installed in the two threaded guide sleeves. The two alignment plates are respectively fixedly installed on the ends of the two screws, and the two threaded guide sleeves and the lifting protrusions are connected through a transmission component.
[0008] Preferably, the transportation component includes a conveyor belt. A feeding hole is formed in the inner wall of the side of the transportation box. Conveyor shafts are rotatably installed on the opposite inner walls of the feeding hole and the transportation box. Conveyor rollers are fixedly sleeved on both of the conveyor shafts. The conveyor belt is tensionally installed on the two conveyor rollers. A conveyor motor is fixedly installed on the side of the transportation box. The output shaft of the conveyor motor is connected to the end of one of the conveyor shafts.
[0009] Preferably, the adsorption component includes a suction cup. A cylinder is fixedly installed at the bottom end of the turntable. The suction cup is fixedly installed on the output end of the cylinder. An air pump is fixedly installed on the top of the turntable. The air pump is communicated with the inner wall around the suction cup through an air pipe. The transportation box and the turntable are jointly provided with a first induction unit adapted to the air pump.
[0010] Preferably, the first induction unit includes a main sensor. An induction groove is formed in the outer wall around the turntable. The main sensor is arranged in the induction groove. A secondary sensor one is fixedly installed on the inner wall around the transportation box. The main sensor, the secondary sensor one and the air pump are electrically connected.
[0011] Preferably, the air intake component includes an air suction pipe and an exhaust pipe. One ends of the air suction pipe and the exhaust pipe are both arranged on the inner wall of the side of the disinfection box. The other ends of the air suction pipe and the exhaust pipe both extend outside the transportation box. An air intake pump and an exhaust pump are respectively arranged on the air suction pipe and the exhaust pipe.
[0012] Preferably, the elastic component includes two reset springs. Lifting grooves are formed in the opposite sides of the two L-shaped fixing plates. Guide rods are fixedly installed together on the opposite inner walls of the two lifting grooves. The lifting bumps are slidably installed on the two guide rods. The two reset springs are respectively sleeved on the two guide rods. A top plate is jointly arranged on the tops of the two L-shaped fixing plates. A secondary sensor two is arranged on the side of the top plate. The secondary sensor two, the main sensor and the air pump and the cylinder are electrically connected.
[0013] Preferably, the clamping component includes two arc-shaped pressing plates. Two pressing grooves are formed in the side of the lifting bump. Limit rods are fixedly installed on the inner walls of the sides of the two pressing grooves. The two arc-shaped pressing plates are respectively slidably installed on the two limit rods. Pressing springs are sleeved on the two limit rods. A clamping plate is fixedly sleeved on the outer wall around the output end of the cylinder. The clamping plate is adapted to the two arc-shaped pressing plates.
[0014] Preferably, the transmission assembly includes a rack and a gear. A transmission cavity is provided inside the L-shaped fixed plate. Limiting grooves are formed on the opposite inner walls of the transmission cavity. Limiting sliding bars are slidably installed in the two limiting grooves respectively. The two side portions of the rack are fixedly connected to the opposite side portions of the two limiting sliding bars respectively. The gear is fixedly sleeved on the threaded guide sleeve. The gear is meshed and installed with the rack. A connecting rod is rotatably installed on the side portion of the rack. The other end of the connecting rod is rotatably installed on the side portion of the lifting bump.
[0015] Preferably, a round hole is formed in the top of the delivery box. A prefabricated vegetable temporary storage barrel is fixedly installed in the round hole. A barrel cover is arranged at the top end of the prefabricated vegetable temporary storage barrel. A stirring shaft is rotatably installed at the bottom end of the barrel cover. A stirring motor is arranged at the top end of the barrel cover. The output shaft of the stirring motor is connected to the end of the stirring shaft. A plurality of stirring rods are uniformly arranged on the circumferential outer wall of the stirring shaft. An outlet pipe is arranged at the bottom end of the prefabricated vegetable temporary storage barrel. A valve is arranged on the outlet pipe.
[0016] Preferably, a rectangular hole is formed in the side portion of the delivery box. A collection box adapted to the transportation assembly is slidably installed in the rectangular hole.
[0017] In summary, the technical effects and advantages of the present invention are as follows:
[0018] 1. In the present invention, when the vegetable box moves below one of the suction cups, the suction cup is driven to move downward by the air cylinder. When the main sensor contacts the secondary sensor one, the air pump is started, so that the air in the suction cup is sucked out, which is convenient for adsorbing the vegetable box and improving the adsorption effect. After adsorption, the air cylinder drives the suction cup and the vegetable box to move upward and reset. At this time, the rotating motor drives the turntable to rotate 90 degrees, and the suction cup located at the top of the conveyor belt continues to adsorb the vegetable box.
[0019] 2. In the present invention, the vegetable box moving to the top of the disinfection box moves downward under the action of the air cylinder, so that the whole enters the disinfection box for comprehensive disinfection, thereby removing the bacteria inside and outside the vegetable box and improving the disinfection and sterilization effect. After sterilization, it is driven to move upward and reset by the action of the air cylinder, and then driven to continue to rotate 90 degrees by the turntable.
[0020] 3. In the present invention, when the output end of the air cylinder moves downward, it drives the clamping plate to be clamped with the two arc-shaped pressing plates, drives the two arc-shaped pressing plates and the lifting bump to move downward. Through the connection of the two connecting rods, it drives the two racks to move horizontally, so that they are respectively meshed with the two gears, drives the two threaded guide sleeves to rotate. Through the thread action and the limiting action of the conveyor belt on the alignment plate, the two alignment plates move towards each other, pushing the vegetable box to the middle position to achieve the alignment function, which can effectively prevent the phenomenon that the vegetable box cannot accurately move to the feeding port and improve the feeding effect. Description of the Drawings
[0021] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those skilled in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0022] Figure 1 It is a three-dimensional structural schematic diagram of an anti-infection device for the production and processing of prefabricated dishes in an embodiment of the present invention;
[0023] Figure 2 It is a partial cross-sectional structural schematic diagram of a conveying box and a rotating disk in an embodiment of the present invention;
[0024] Figure 3 It is an enlarged structural schematic diagram of a suction cup and a secondary sensor II in an embodiment of the present invention;
[0025] Figure 4 It is a partial cross-sectional structural schematic diagram of a conveying box and a prefabricated dish temporary storage barrel in an embodiment of the present invention;
[0026] Figure 5 It is an enlarged structural schematic diagram of a secondary sensor II and an arc-shaped pressing plate in an embodiment of the present invention;
[0027] Figure 6 It is a partial cross-sectional structural schematic diagram of an L-shaped fixing plate and a lifting convex block in an embodiment of the present invention;
[0028] Figure 7 For Figure 6 's It is an enlarged structural schematic diagram at position A;
[0029] Figure 8 It is a side view of an anti-infection device for the production and processing of prefabricated dishes in an embodiment of the present invention.
[0030] In the figure: 1, conveying box; 2, conveying belt; 3, conveying roller; 4, conveying shaft; 5, conveying motor; 6, rotating motor; 7, turntable; 8, cylinder; 9, suction cup; 10, air pump; 11, air pipe; 12, main sensor; 13, secondary sensor I; 14, disinfection box; 15, suction pipe; 16, intake air pump; 17, exhaust pipe; 18, exhaust air pump; 19, L-shaped fixing plate; 20, top plate; 21, secondary sensor II; 22, lifting convex block; 23, guide rod; 24, return spring; 25, arc-shaped pressing plate; 26, pressing spring; 27, clamping plate; 28, threaded guide sleeve; 29, screw rod; 30, alignment plate; 31, rack; 32, limit slide bar; 33, gear; 34, connecting rod; 35, prefabricated dish temporary storage barrel; 36, stirring motor; 37, stirring rod; 38, collection box. Detailed implementation manners
[0031] Next, in combination with the accompanying drawings in the embodiments of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.
[0032] Embodiment: Refer to Figures 1-8 A prefabricated food production and processing anti-infection device as shown, including a conveying box 1. A disinfection mechanism is arranged in the conveying box 1, and the disinfection mechanism is used for disinfecting the food boxes. A alignment mechanism adapted to the disinfection mechanism is arranged in the conveying box 1, and the alignment mechanism is used for aligning the food boxes;
[0033] The disinfection mechanism includes a transportation component arranged in the conveying box 1. A rotating motor 6 is fixedly installed on the top of the conveying box 1. The output shaft of the rotating motor 6 is fixedly installed with a turntable 7. Four adsorption components are arranged on the turntable 7. The disinfection mechanism further includes a disinfection box 14. It should be noted that in this embodiment, the disinfection box 14 can refer to the kitchenware disinfection box already disclosed in the prior art and will not be elaborated here. The disinfection box 14 is fixedly installed on the bottom inner wall of the conveying box 1, and an air inlet component is arranged on the side of the disinfection box 14;
[0034] The alignment mechanism includes two alignment plates 30. Two L-shaped fixing plates 19 are fixedly installed on the bottom inner wall of the conveying box 1. A lifting convex block 22 is slidably installed in the two L-shaped fixing plates 19 through an elastic component. The lifting convex block 22 is connected to the adsorption component through a clamping component. Rotation holes are respectively opened on the sides of the two L-shaped fixing plates 19. Threaded guide sleeves 28 are rotatably installed in the two rotation holes. Screws 29 are threadedly installed in the two threaded guide sleeves 28. The two alignment plates 30 are respectively fixedly installed at the ends of the two screws 29. The two threaded guide sleeves 28 are connected to the lifting convex block 22 through a transmission component.
[0035] As Figure 1 、 Figure 2 shown, the transportation component includes a conveyor belt 2. A feeding hole is opened on the side inner wall of the conveying box 1. Conveyor shafts 4 are rotatably installed on the opposite inner walls of the conveying box 1 and the feeding hole. Conveyor rollers 3 are fixedly sleeved on the two conveyor shafts 4. The conveyor belt 2 is tensioned and installed on the two conveyor rollers 3. A conveyor motor 5 is fixedly installed on the side of the conveying box 1. The output shaft of the conveyor motor 5 is connected to the end of one of the conveyor shafts 4. With such a setting, the food boxes can be driven to realize the horizontal movement function through the conveyor belt 2, and through the intermittent rotation of the conveyor motor 5, the food boxes 2 can be driven to realize synchronous intermittent movement.
[0036] As Figure 3As shown, the adsorption assembly includes a suction cup 9. A cylinder 8 is fixedly installed at the bottom end of the turntable 7, and the suction cup 9 is fixedly installed on the output end of the cylinder 8. An air pump 10 is fixedly installed on the top of the turntable 7, and the air pump 10 is connected to the inner wall of the circumferential side of the suction cup 9 through an air pipe 11. The delivery box 1 and the turntable 7 are jointly provided with a first induction unit adapted to the air pump 10. With this setting, the cylinder 8 can drive the suction cup 9 to move downward, and the suction cup 9 can adsorb the vegetable box.
[0037] As Figure 3 shown, the first induction unit includes a main inductor 12. An induction groove is formed on the outer wall of the circumferential side of the turntable 7, and the main inductor 12 is arranged in the induction groove. A first sub-inductor 13 is fixedly installed on the inner wall of the circumferential side of the delivery box 1. The main inductor 12, the first sub-inductor 13 and the air pump 10 are electrically connected. With this setting, when the main inductor 12 and the first sub-inductor 13 come into contact, the air pump 10 can inhale air, making the inside of the suction cup 9 in a negative pressure state and improving the adsorption effect.
[0038] As Figure 2 shown, the air intake assembly includes an intake pipe 15 and an exhaust pipe 17. One ends of the intake pipe 15 and the exhaust pipe 17 are both arranged on the inner wall of the side part of the disinfection box 14, and the other ends of the intake pipe 15 and the exhaust pipe 17 both extend outside the delivery box 1. An intake pump 16 and an exhaust pump 18 are respectively arranged on the intake pipe 15 and the exhaust pipe 17. With this setting, it is convenient to realize the gas conversion function in the disinfection box 14 and improve the disinfection and sterilization effect.
[0039] As Figure 7 shown, the elastic assembly includes two reset springs 24. Lifting grooves are formed on the opposite side parts of the two L-shaped fixing plates 19. Guide rods 23 are fixedly installed on the opposite inner walls of the two lifting grooves. A lifting lug 22 is slidably installed on the two guide rods 23, and the two reset springs 24 are respectively sleeved on the two guide rods 23. A top plate 20 is jointly arranged on the tops of the two L-shaped fixing plates 19. A second sub-inductor 21 is arranged on the side part of the top plate 20. The second sub-inductor 21, the main inductor 12 and the air pump 10, the cylinder 8 are electrically connected. Through the setting of the reset springs 24, when the limit on the lifting lug 22 is released, its elastic action can drive the lifting lug 22 to move upward to achieve the reset function.
[0040] As Figure 7As shown in the figure, the clamping component includes two arc-shaped pressing plates 25. Two pressing grooves are formed on the side of the lifting bump 22. Limiting rods are fixedly installed on the inner walls of the sides of the two pressing grooves respectively. The two arc-shaped pressing plates 25 are slidably installed on the two limiting rods respectively. Pressing springs 26 are sleeved on the two limiting rods. A clamping plate 27 is fixedly sleeved on the outer wall of the peripheral side of the output end of the air cylinder 8. The clamping plate 27 is adapted to the two arc-shaped pressing plates 25. Through the setting of the arc-shaped pressing plates 25, when the air cylinder 8 rotates, it can be pressed to slide into the pressing groove to avoid it. When the pressing on the arc-shaped pressing plates 25 is released, it is driven to reset by the action of the pressing spring 26, which is convenient for the clamping plate 27 to be clamped with the two arc-shaped pressing plates 25.
[0041] As Figure 7 shown in the figure, the transmission component includes a rack 31 and a gear 33. A transmission cavity is arranged inside the L-shaped fixing plate 19. Limiting grooves are formed on the opposite inner walls of the transmission cavity. Limiting sliding strips 32 are slidably installed in the two limiting grooves respectively. The two side parts of the rack 31 are fixedly connected to the opposite side parts of the two limiting sliding strips 32 respectively. The gear 33 is fixedly sleeved on the threaded guide sleeve 28. The gear 33 is meshed and installed with the rack 31. A connecting rod 34 is rotatably installed on the side of the rack 31. The other end of the connecting rod 34 is rotatably installed on the side of the lifting bump 22. With such a setting, when the lifting bump 22 moves downward, it can drive the rack 31 to move horizontally through the connection of the two connecting rods 34 and be meshed with the gear 33, driving the threaded guide sleeve 28 to realize the rotation function. Through the thread action and the limiting function of the alignment plate 30 and the conveyor belt 2, the alignment plate 30 is driven to move horizontally.
[0042] As Figure 4 shown in the figure, a round hole is formed in the top of the conveying box 1. A prefabricated vegetable temporary storage barrel 35 is fixedly installed in the round hole. A barrel cover is arranged at the top end of the prefabricated vegetable temporary storage barrel 35. A stirring shaft is rotatably installed at the bottom end of the barrel cover. A stirring motor 36 is arranged at the top end of the barrel cover. The output shaft of the stirring motor 36 is connected to the end of the stirring shaft. A plurality of stirring rods 37 are uniformly arranged on the outer wall of the peripheral side of the stirring shaft. An outlet pipe is arranged at the bottom end of the prefabricated vegetable temporary storage barrel 35. A valve is arranged on the outlet pipe. With such a setting, the prefabricated vegetables can be accurately put into the vegetable box, and quantitative input can be realized through the control of the valve.
[0043] As Figure 8 shown in the figure, a rectangular hole is formed in the side of the conveying box 1. A collection box 38 adapted to the transportation component is slidably installed in the rectangular hole. With such a setting, after the prefabricated vegetables are sealed, they can fall into the collection box 38, which is convenient for the staff to take out later.
[0044] The working principle of the present invention: First, place the vegetable box on the conveyor belt 2, and drive the vegetable box to move horizontally by starting the intermittent rotation of the conveyor motor 5.
[0045] When the vegetable box moves under one of the suction cups 9, the cylinder 8 drives the suction cup 9 to move downward. When the main sensor 12 contacts the first sub-sensor 13, the air pump 10 is started, so that the air in the suction cup 9 is sucked out, which is convenient for adsorbing the vegetable box, improving the adsorption effect. After adsorption, the cylinder 8 drives the suction cup 9 and the vegetable box to move upward and reset. At this time, the rotating motor 6 drives the turntable 7 to rotate 90 degrees, and the suction cup 9 located at the top of the conveyor belt 2 continues to adsorb the vegetable box.
[0046] The vegetable box moving to the top of the disinfection box 14 moves downward under the action of the cylinder 8, so that the whole enters the disinfection box 14 for comprehensive disinfection, thereby removing the bacteria inside and outside the vegetable box and improving the disinfection and sterilization effect. After sterilization, it is driven to move upward and reset by the action of the cylinder 8, and then driven to continue rotating 90 degrees by the turntable 7.
[0047] When the disinfected vegetable box continues to rotate 90 degrees, it is driven to move downward by the cylinder 8. At this time, the main sensor 12 contacts the second sub-sensor 21, so that the air pump 10 supplies air into the suction cup 9 to release its adsorption function. The vegetable box is placed on the top of the conveyor belt 2 through the cooperation of the cylinder 8. When the cylinder 8 rotates, by squeezing the arc-shaped pressing plate 25, it can move between the two arc-shaped pressing plates 25. When its output end moves downward, it drives the clamping plate 27 to be clamped with the two arc-shaped pressing plates 25, driving the two arc-shaped pressing plates 25 and the lifting bump 22 to move downward. Through the connection of the two connecting rods 34, the two racks 31 are driven to move horizontally, so that they are respectively engaged with the two gears 33, driving the two threaded guide sleeves 28 to rotate. Through the thread action and the limiting action of the conveyor belt 2 on the alignment plate 30, the two alignment plates 30 move towards each other, pushing the vegetable box to the middle position to achieve the alignment function.
[0048] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A prefabricated food production and processing anti-infection device, including a conveying box (1), characterized in that: A disinfection mechanism is provided inside the conveying box (1). The disinfection mechanism is used to disinfect the vegetable boxes. A alignment mechanism adapted to the disinfection mechanism is provided inside the conveying box (1). The alignment mechanism is used to align the vegetable boxes; The disinfection mechanism includes a transportation component arranged inside the conveying box (1). A rotating motor (6) is fixedly installed on the top of the conveying box (1). The output shaft of the rotating motor (6) is fixedly installed with a turntable (7). Four adsorption components are arranged on the turntable (7). The disinfection mechanism further includes a disinfection box (14). The disinfection box (14) is fixedly installed on the bottom inner wall of the conveying box (1). An air inlet component is arranged on the side of the disinfection box (14); The alignment mechanism includes two alignment plates (30). Two L-shaped fixing plates (19) are fixedly installed on the bottom inner wall of the conveying box (1). A lifting convex block (22) is slidably installed inside the two L-shaped fixing plates (19) through an elastic component. The lifting convex block (22) is connected to the adsorption component through a clamping component. A rotating hole is opened on the side of each of the two L-shaped fixing plates (19). A threaded guide sleeve (28) is rotatably installed inside each of the two rotating holes. A screw rod (29) is threadedly installed inside each of the two threaded guide sleeves (28). The two alignment plates (30) are respectively fixedly installed at the ends of the two screw rods (29). A transmission component is connected between each of the two threaded guide sleeves (28) and the lifting convex block (22).
2. The anti-infection device for the production and processing of prefabricated dishes according to claim 1, characterized in that: The transportation component includes a conveyor belt (2). A feeding hole is opened on the side inner wall of the conveying box (1). Conveyor shafts (4) are rotatably installed on the opposite inner walls of the feeding hole and the conveying box (1). Conveyor rollers (3) are fixedly sleeved on the two conveyor shafts (4). The conveyor belt (2) is tensionally installed on the two conveyor rollers (3). A conveyor motor (5) is fixedly installed on the side of the conveying box (1). The output shaft of the conveyor motor (5) is connected to the end of one of the conveyor shafts (4).
3. A prefabricated dish production and processing anti-infection device according to claim 1, characterized in that: The adsorption component includes a suction cup (9). A cylinder (8) is fixedly installed at the bottom end of the turntable (7). The suction cup (9) is fixedly installed at the output end of the cylinder (8). An air pump (10) is fixedly installed on the top of the turntable (7). The air pump (10) is communicated with the inner wall around the suction cup (9) through an air pipe (11). The conveying box (1) and the turntable (7) are jointly provided with a first induction unit adapted to the air pump (10).
4. The prefabricated dish production and processing anti-infection device according to claim 3, characterized in that: The first induction unit includes a main inductor (12). An induction groove is opened on the outer wall around the turntable (7). The main inductor (12) is arranged inside the induction groove. A first sub-inductor (13) is fixedly installed on the inner wall around the conveying box (1). The main inductor (12), the first sub-inductor (13) and the air pump (10) are electrically connected.
5. The anti-infection device for prefabricated food production and processing according to claim 1, wherein: The intake assembly includes an intake pipe (15) and an exhaust pipe (17). One ends of the intake pipe (15) and the exhaust pipe (17) are both arranged on the inner wall of the side part of the disinfection box (14), and the other ends of the intake pipe (15) and the exhaust pipe (17) both extend outside the conveying box (1). An intake pump (16) and an exhaust pump (18) are respectively arranged on the intake pipe (15) and the exhaust pipe (17).
6. The prefabricated dish production and processing anti-infection device according to claim 4, characterized in that: The elastic component includes two reset springs (24). Lifting grooves are respectively formed on the opposite side parts of the two L-shaped fixing plates (19). Guide rods (23) are fixedly installed on the opposite inner walls of the two lifting grooves. The lifting bumps (22) are slidably installed on the two guide rods (23). The two reset springs (24) are respectively sleeved on the two guide rods (23). A top plate (20) is jointly arranged on the tops of the two L-shaped fixing plates (19). A secondary sensor two (21) is arranged on the side part of the top plate (20). The secondary sensor two (21), the main sensor (12), the air pump (10), and the air cylinder (8) are electrically connected.
7. The prefabricated food production and processing anti-infection device according to claim 3, characterized in that: The clamping component includes two arc-shaped pressing plates (25). Two pressing grooves are formed on the side part of the lifting bump (22). Limiting rods are fixedly installed on the side inner walls of the two pressing grooves. The two arc-shaped pressing plates (25) are respectively slidably installed on the two limiting rods. Pressing springs (26) are sleeved on the two limiting rods. A clamping plate (27) is fixedly sleeved on the outer wall of the peripheral side of the output end of the air cylinder (8). The clamping plate (27) is adapted to the two arc-shaped pressing plates (25).
8. The anti-infection device for the production and processing of prefabricated dishes according to claim 1, characterized in that: The transmission component includes a rack (31) and a gear (33). A transmission cavity is arranged inside the L-shaped fixing plate (19). Limiting grooves are respectively formed on the opposite inner walls of the transmission cavity. Limiting sliding strips (32) are slidably installed in the two limiting grooves. The two side parts of the rack (31) are respectively fixedly connected to the opposite side parts of the two limiting sliding strips (32). The gear (33) is fixedly sleeved on the threaded guide sleeve (28). The gear (33) is meshed and installed with the rack (31). A connecting rod (34) is rotatably installed on the side part of the rack (31). The other end of the connecting rod (34) is rotatably installed on the side part of the lifting bump (22).
9. The anti-infection device for the production and processing of prefabricated dishes according to claim 1, characterized in that: A round hole is formed in the top of the conveying box (1). A prefabricated vegetable temporary storage barrel (35) is fixedly installed in the round hole. A barrel cover is arranged at the top end of the prefabricated vegetable temporary storage barrel (35). A stirring shaft is rotatably installed at the bottom end of the barrel cover. A stirring motor (36) is arranged at the top end of the barrel cover. The output shaft of the stirring motor (36) is connected to the end part of the stirring shaft. A plurality of stirring rods (37) are uniformly arranged on the outer wall of the peripheral side of the stirring shaft. An outlet pipe is arranged at the bottom end of the prefabricated vegetable temporary storage barrel (35). A valve is arranged on the outlet pipe.
10. A prefabricated food production and processing anti-infection device according to claim 1, characterized in that: A rectangular hole is formed in the side part of the conveying box (1). A collection box (38) adapted to the transportation component is slidably installed in the rectangular hole.