Sterilizing and conveying mechanism for eggs

By using a combination of a blowing member and an ultraviolet lamp in the egg conveying mechanism, the problems of unstable movement and incomplete disinfection during the egg conveying process are solved, and efficient blowing cleaning and sterilization effects are achieved.

CN120482618AInactive Publication Date: 2025-08-15HENAN DEGU FOOD CO LTD
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Patent Information

Application Number
CN202510832358.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-20
Publication Date
2025-08-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing eggs are very random and have poor stability during transportation, making it difficult to achieve full-range disinfection coverage, and spraying disinfectant water cannot effectively remove adhesions, and the disinfection and sterilization effect is limited.

Method used

The blowing components installed at equal intervals on the two transmission belts are adopted, including the outgoing air component and the inner air component. The inner cylinder rotates as the transmission belt moves to adjust the wind speed, and combines the rotating member and the ultraviolet lamp for blowing air cleaning and sterilization.

Benefits of technology

It realizes precise blowing and cleaning of eggs and multi-angle sterilization during the transportation process, improves the disinfection effect and stability, and ensures all-round coverage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a disinfecting and conveying mechanism for eggs, and relates to the field of egg disinfection, the disinfecting and conveying mechanism comprises two transmission belts mounted on a conveying frame, and is characterized in that a plurality of groups of blowing components are mounted on the two transmission belts at equal intervals, and each group of blowing components comprises an outer air outlet assembly and an inner air outlet assembly; a plurality of outer air outlet assemblies are installed on the two transmission belts at equal intervals, each outer air outlet assembly is provided with an inner air outlet assembly, each inner air outlet assembly comprises an inner cylinder which is arranged in a hollow mode and is provided with a plurality of sets of second air outlet holes, and the second air outlet holes in the same set comprise a plurality of holes with the hole diameters changing in sequence. The egg conveying device has the advantages that blowing cleaning and ultraviolet irradiation sterilization and disinfection can be carried out on eggs in the conveying process, the eggs are automatically disinfected while being conveyed, and meanwhile the blowing cleaning effect and the ultraviolet lamp egg irradiation sterilization effect can be further improved through cooperation of a rotating component and the rotatably-arranged inner barrel.
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Description

Technical Field

[0001] The present invention relates to the technical field of egg disinfection, in particular to a disinfection and conveying mechanism for eggs. Background Art

[0002] In large-scale egg use scenarios, disinfecting eggs is crucial to ensure cleanliness during use. Currently, a common disinfection method involves spraying disinfectant during egg transportation, with the egg tray inside the conveyor rotating to allow for a certain amount of displacement during transport. However, this traditional method has significant drawbacks: first, the movement of eggs during transportation is highly random and unstable, making it difficult to achieve full disinfection coverage; second, relying solely on spraying disinfectant cannot effectively remove debris from the egg surface, resulting in limited disinfection and sterilization effectiveness. Therefore, we propose a disinfectant conveying mechanism for eggs to address these issues. Summary of the Invention

[0003] The purpose of the present invention is to solve the problems raised in the background technology and to propose a sterilizing and conveying mechanism for eggs.

[0004] In order to achieve the above object, the present invention adopts the following technical solutions: A sterilizing and conveying mechanism for eggs, comprising two transmission belts mounted on a conveying frame, characterized in that a plurality of groups of blowing components are mounted at equal intervals on the two transmission belts, each group of blowing components comprises an outgoing air component and an inner air outlet component, a plurality of outgoing air components are mounted at equal intervals on the two transmission belts, each of the outgoing air components is provided with an inner air outlet component, the inner air outlet component comprises an inner cylinder having a hollow configuration and a plurality of groups of second air outlet holes, and the same group of second air outlet holes comprises a plurality of holes of sequentially varying apertures, the inner cylinder rotates relative to the outgoing air component as the transmission belts move, so that the outgoing air velocity is regularly adjusted; The conveyor frame is equipped with an air intake component and a control rotation component that cooperates with the blowing component. The control rotation component includes an annular gear ring and a gear three. Two annular gear rings are fixedly installed on the conveyor frame. The part of the inner air outlet component located outside the transmission belt is fixedly equipped with a gear three that meshes with the annular gear ring. Two strip plates are fixedly installed on the conveying frame, and a plurality of rotating components and a plurality of disinfecting components are fixedly installed between the two strip plates, and the rotating components and the disinfecting components are arranged at intervals.

[0005] Compared with the existing technology, the advantages of the present invention are: 1: The eggs can be cleaned by air blowing and sterilized by ultraviolet light during transportation, so that the eggs can be automatically sterilized while being transported. At the same time, the rotating component and the rotatable inner cylinder can further improve the effect of air blowing cleaning and the effect of ultraviolet light sterilization of eggs.

[0006] 2: The inner cylinder can rotate along with the normal operation of the transmission belt, and the outflowing wind speed can be adjusted. By setting the second air outlet on the inner cylinder, the outflowing wind can be adjusted regularly, and the size of the wind when blowing out and the contact surface with the eggs when blowing out can be adjusted, so that the eggs can be cleaned more accurately and effectively.

[0007] 3: A rotatable turntable is set up to adjust the position of the eggs passing through. At the same time, with the use of multiple sets of ultraviolet lamps, the eggs can be irradiated and sterilized in multiple positions more accurately. The ultraviolet lamp can also swing back and forth during use to irradiate and sterilize the eggs at multiple angles. BRIEF DESCRIPTION OF THE DRAWINGS

[0008] Figure 1 This is a schematic structural diagram of a sterilizing and conveying mechanism for eggs proposed by the present invention; Figure 2 for Figure 1 Structural diagram from another perspective; Figure 3 for Figure 2 Structural diagram from another perspective; Figure 4 for Figure 3 A schematic diagram of the structure of part A; Figure 5 for Figure 3 An enlarged schematic diagram of the structure of the middle air intake pipe; Figure 6 for Figure 5 Schematic diagram of the middle egg tray after being rotated a certain angle; Figure 7 for Figure 6 Schematic diagram of the structure of a part of a single rod; Figure 8 for Figure 7 Schematic diagram of the inner tube and egg tray after separation; Figure 9 for Figure 5 Schematic diagram of the structure of the middle air intake seat; Figure 10 for Figure 9 A schematic diagram of the structure of part B in the middle; Figure 11 for Figure 1 Schematic diagram of the structure after the two parts of the middle cross plate are rotated to a certain angle; Figure 12 for Figure 11 A schematic diagram of the structure of the middle C part; Figure 13 for Figure 11 Front view of the second part of the middle cross plate; Figure 14 for Figure 11 Schematic diagram of the structure between the two horizontal plates; Figure 15 for Figure 11 Schematic diagram of the structure between the two horizontal plates; Figure 16 for Figure 15 Schematic diagram of the structure of the two parts of a single horizontal plate; Figure 17 for Figure 16 Schematic diagram of the structure of the middle rack part; Figure 18 for Figure 17 Schematic diagram of the enlarged structure of part D.

[0009] In the figure: 1. base; 2. vertical frame; 3. transmission belt; 4. rod frame 1; 5. rod frame 2; 6. inner cylinder; 7. egg tray; 8. air pump; 9. air inlet pipe; 10. air inlet seat; 11. trough body; 12. annular gear ring; 13. gear 3; 14. strip plate; 15. horizontal plate 1; 16. horizontal plate 2; 17. gear 1; 18. turntable; 19. rack 1; 20. reciprocating screw rod 1; 21. transmission structure 1; 22. motor; 23. support frame; 24. shaft; 25. swing block; 26. ultraviolet lamp; 27. gear 2; 28. rack 2; 29. reciprocating screw rod 2; 30. transmission structure 2; 31. transmission structure 3; 32. elastic pad. DETAILED DESCRIPTION

[0010] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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.

[0011] Reference Figures 1-18, a sterilizing and conveying mechanism for eggs, including a conveying frame, which includes a base 1 and a vertical frame 2. The number of vertical frames 2 shown in the figure is four, which is used to install the structure of existing equipment for conveying eggs. The structure includes two transmission belts 3, and two sprockets are meshed and installed on the two transmission belts 3. The corresponding two sprockets are fixedly installed with a rotating shaft, and a vertical frame 2 is rotatably installed at both ends of the two rotating shafts. The lower ends of the four vertical frames 2 are commonly fixed with a base 1, and a conveying motor is fixedly installed on one of the vertical frames 2, and one end of the corresponding rotating shaft rotates through the vertical frame 2 and is fixedly connected to the driving end of the conveying motor; the above parts are all existing technologies, and the transmission belt 3 can be a belt setting. It is convenient for the subsequent setting of the rod 1; the vertical frame 2 can also be set to be height-adjustable during the specific setting. Multiple vertical frames 2 can be set to be height-adjustable individually, or the four vertical frames 2 can be used as a whole, such as a lifting plate fixedly installed at the lower ends of the four vertical frames 2, and multiple hydraulic cylinders are set between the lifting plate and the base 1. The hydraulic cylinders are fixed on the base 1. At this time, the lifting plate can be slidably set on the base 1, or multiple baffles can be fixed on the base 1. The baffles are grouped in pairs and are respectively arranged on both sides of the vertical frame 2, which play a certain limiting role on the vertical frame 2 without affecting the lifting requirements of the vertical frame 2.

[0012] Reference Figures 1-18 , multiple groups of blowing components are installed at equal intervals on the two transmission belts 3, each group of blowing components includes an outgoing wind component and an inner wind component, multiple outgoing wind components are installed at equal intervals on the two transmission belts 3, each outgoing wind component is provided with an inner wind component, the inner wind component rotates relative to the outgoing wind component, so that the outgoing wind speed is regularly adjusted, and the outgoing wind component can run together with the normal operation of the transmission belt 3, and is in a stationary state relative to the transmission belt 3; the outgoing wind component includes a rod frame 2 5 and an egg tray 7, and multiple groups of blowing components are fixedly installed at equal intervals on the two transmission belts 3. Rod frame 2 5, rod frame 2 5 is composed of multiple rods, and the rods are all hollow. The ends of the two outermost rods are flush with the outer side of the transmission belt 3. The outermost rods are fixedly connected to the corresponding transmission belt 3. An egg tray 7 is fixedly installed between the corresponding rods, and the egg tray 7 is hollow, and air outlet holes 1 are opened on both sides. When setting it specifically, the shape of the air outlet can also be set, such as a spiral setting, or a truncated cone shape. The internal size of the air outlet is larger than the external size of the air outlet, which has the effect of accelerating the flow rate when the air is discharged.

[0013] The inner air outlet assembly includes a rod frame 1 4 and an inner cylinder 6. A rod frame 1 4 is sealed and rotatably installed in each rod frame 2 5. The rod frame 2 5 is composed of multiple rods 2, and the rods 2 are all hollow. The length of the outermost rod 2 is greater than the length of the outermost rod 1. An inner cylinder 6 is fixedly installed between the corresponding rods 2, and the inner cylinder 6 is rotatably installed in the corresponding egg tray 7; the inner cylinder 6 is a hollow setting with both ends connected, and multiple groups of air outlet holes 2 are opened on the inner cylinder 6. The same group of air outlet holes 2 includes multiple holes with successively changing aperture sizes, such as Figure 8 As shown, at this time, each group of air outlet holes 2 is composed of three groups of holes of different sizes. Furthermore, the air outlet holes 2 can also be set to a frustum shape with a larger inner side and a smaller outer side. This has been described above and will not be elaborated here.

[0014] Reference Figures 1-18 , an air intake component coordinated with the blowing component is installed on the conveying frame, and the air intake component is used to inject gas into multiple groups of blowing components at the same time. At this time, the gas is blown out through the blowing component to blow and clean the eggs on the corresponding egg trays 7. Hot air can also be injected regularly as needed during specific use; further, a spray component (not shown in the figure) can also be installed on the base 1, and the spray component includes an n-shaped frame, on which a water pipe is fixed, and a rotary nozzle coordinated with the egg tray 7 is intermittently installed on the water pipe for spraying and cleaning the eggs. However, it should be noted that the shape of the subsequent trough 11 needs to be changed to ensure that the egg tray 7 at the corresponding position before spraying is in a relatively sealed state. Furthermore, a one-way pipe can be provided on each air outlet 1 to prevent the sprayed liquid from entering the air outlet 1 as much as possible. In order to prevent the spray water from flowing everywhere, a water receiving seat can be provided on the base 1, but it should be noted that the setting of the water receiving seat will not affect the normal use of the transmission belt 3 and other structures.

[0015] The air intake component includes an air pump 8, an air intake pipe 9, and an air intake seat 10. An air intake seat 10 is fixedly installed between the two vertical frames 2, and an air pump 8 is fixedly installed on the base 1. The air outlet end of the air pump 8 is fixedly connected to the two air intake pipes 9, and the upper end of the air intake pipe 9 is connected to the corresponding air intake seat 10; the air pump 8 is also fixedly connected to an air intake pipe, and a filter can be fixedly set at one end of the air intake pipe, which is set to filter the air that can enter the air intake pipe 9; a groove body 11 is provided on the side close to the two air intake seats 10, and the groove body 11 consists of two grooves with different depths, and the two grooves are symmetrically arranged. When one end of the rod frame 4 is located in the upper groove, one end of it is in an unblocked state. At this time, gas can enter through the rod frame 4. When one end of the rod frame 4 is located When the rod frame 1 is in the groove below, one end of the rod frame 1 is in a sealed and blocked state. At this time, gas cannot enter the rod frame 14 below. Furthermore, in order to ensure the sealing when it is at the bottom, a layer of elastic sealing gasket can be fixed on the inner wall of the groove below, and at the same time, the two sides of the elastic sealing gasket are set with arc surfaces to facilitate the movement of the rod frame 14; a sealing assembly (not shown in the figure) that matches the groove body 11 is fixedly installed between multiple rod frames 14 on the same side. This is a common existing technology. For example, the sealing assembly includes a sealing block and a sealing rubber. A sealing block is fixedly installed on each rod frame 14, and the sealing block is sealingly slidably installed on the groove body 11. A sealing rubber is fixedly installed on two adjacent sealing blocks, and the sealing rubber is sealingly slidably installed on the groove body 11.

[0016] Reference Figures 1-18 , a control rotation member is installed between the conveyor frame and the inner air outlet assembly; the control rotation member includes an annular ring gear 12, a gear three 13, and a plurality of inverted U rods are fixedly installed on the four vertical frames 2, such as Figure 4 As shown, multiple U-bars on the same side are fixedly mounted with an annular gear ring 12. Each rod frame 14 is fixedly mounted with a gear 3 13 on the portion outside the transmission belt 3. The gear 3 13 is meshed with the corresponding annular gear ring 12. When the transmission belt 3 moves, it drives the rod frame 1 4 to move together. At this time, under the cooperation of the annular gear ring 12 and the gear 3 13, the rod frame 1 4 can be driven to rotate. The rotation of the rod frame 1 4 drives the inner cylinder 6 to rotate together. Two strip plates 14 are fixedly installed on the conveying frame. Furthermore, an L-rod is fixedly installed on each of the four vertical frames 2, and one end of the corresponding two L-rods is fixed to the corresponding strip plate 14; multiple rotating components and multiple disinfecting components are fixedly installed between the two strip plates 14, and the rotating components and the disinfecting components are arranged at intervals; the rotating components are used to cooperate with the moving eggs, and when they come into contact with the eggs, they can apply a certain rotational force to the eggs, thereby changing their position on the egg tray 7, so as to better clean them; the disinfecting components are used to irradiate and disinfect the eggs, and at the same time, the ultraviolet lamp in the disinfecting component can swing at a certain angle while irradiating, so as to better irradiate and disinfect the eggs.

[0017] The rotating component includes a horizontal plate 15, a gear 17, a turntable 18, a rack 19, a reciprocating screw 20, a transmission structure 21, and a motor 22. A plurality of horizontal plates 15 are fixedly installed between two adjacent shaped plates 14. A gear 17 and a turntable 18 are coaxially mounted on each horizontal plate 15. At the same time, a layer of elastic rubber pad can be fixedly installed on the upper surface of the turntable 18. The outer edge of the elastic rubber pad can also be set to an arc shape to facilitate the egg to move just to the turntable 18. One side of each horizontal plate 15 is limited. A rack 19 is slidably installed, and the rack 19 is engaged with multiple corresponding gears 17 at the same time. Multiple reciprocating screws 20 are rotatably installed between the two strip plates 14, and a ball nut that matches the corresponding reciprocating screws 20 is installed on the rack 19, and a transmission structure 21 is commonly sleeved between the multiple reciprocating screws 20; a motor 22 is fixedly installed on one of the strip plates 14, and one end of one of the reciprocating screws 20 rotates through the strip plate 14 and is fixedly connected to the driving end of the motor 22.

[0018] The disinfection component includes a horizontal plate 216, a support frame 23, a shaft 24, a swing block 25, an ultraviolet lamp 26, a gear 27, a rack 28, a reciprocating screw 29, and a transmission structure 230. A plurality of horizontal plates 216 are fixedly installed between the two shaped plates 14, and the number of horizontal plates 216 is twice the number of horizontal plates 15, respectively located on the upper and lower sides of the upper egg tray 7. A plurality of supports 23 are fixedly installed on each horizontal plate 216, and a shaft 24 is rotatably installed between the corresponding two supports 23. The shaft 24 is fixedly installed with an ultraviolet lamp 26 through the swing block 25. The ultraviolet lamp 26 is preferentially mounted. The wavelength is selected to be 254±5nm, the irradiation intensity is ≥90uW / cm2, and the movement time of the transmission belt 3 is controlled at the same time to ensure that the irradiation time is not less than 3-5 seconds; a gear 27 is coaxially fixedly installed on the shaft 24, and a rack 28 is slidingly installed on each horizontal plate 16, and the rack 28 is simultaneously engaged with multiple corresponding gears 27; multiple reciprocating screws 29 are rotatably installed on the two strips of the plate 14, and a ball nut matching the reciprocating screw 29 is installed on the rack 28, and multiple reciprocating screws 29 are jointly sleeved with a transmission structure 2 30.

[0019] Furthermore, a transmission structure three 31 is provided between one of the reciprocating screw rods 29 and the corresponding reciprocating screw rod 1 20. At this time, when the reciprocating screw rod 1 20 rotates, the reciprocating screw rod 2 29 can be driven to rotate together. Alternatively, the transmission structure three 31 is not provided, and a motor is directly fixed at the corresponding position to directly drive the reciprocating screw rod 2 29. The disinfection components and rotating components shown in the figure are both two groups, and there can be multiple groups when specifically set up. The figure is only for reference. An arc groove can also be provided on each horizontal plate 2 16, and the lower end part of the swing block 25 is located in the arc groove. Elastic pads 32 are fixedly installed on both sides of each swing block 25. The setting here can further improve the stability of the swing block 25 when it swings, ensuring that the ultraviolet lamp 26 can more accurately disinfect the eggs. The above-mentioned transmission structure one 21, transmission structure two 30 and transmission structure three 31 can be existing belt drives or chain drives.

[0020] It is further explained that the above-mentioned fixed connection should be understood in a broad sense unless otherwise clearly specified and limited. For example, it can be welding, gluing, or one-piece molding, etc., which are common means well known to those skilled in the art.

[0021] The working principle of the present invention is as follows: Egg transportation: In the initial state, the eggs are placed on the corresponding egg tray 7 and will move along with the movement of the conveyor belt 3. When they move to the corresponding position, they are transported out of the mechanism in conjunction with the external transmission device. The corresponding position refers to the position where the eggs move with the conveyor belt 3 and are separated from it. At this point, the existing common technology will not be elaborated in detail here; Blowing cleaning: The air pump 8 works to deliver the gas through the air inlet pipe 9 to the air inlet seat 10, and then through the upper rod frame 4 to the inner cylinder 6, and then through the egg tray 7 to blow the corresponding eggs to clean them. At the same time, during the movement of the transmission belt 3, the rod frame 4 will also rotate, thereby driving the inner cylinder 6 to rotate, adjusting the size of the air blown out and the contact surface with the eggs when blowing, so as to better blow the eggs clean; Adjusting the position of eggs: The motor 22 drives the multiple reciprocating screws 20 to rotate together through the transmission structure 21. The reciprocating screw 20 rotates through the ball nut to drive the rack 19 to move back and forth. The movement of the rack 19 causes the gear 17 to rotate. The rotation of the gear 17 drives the coaxially arranged turntable 18 to rotate. When the eggs move onto the turntable 18, the rotation of the turntable 18 can generate a certain rotational force on the eggs, thereby adjusting the position of the eggs for better disinfection. Irradiation disinfection: The reciprocating screw 20 rotates under the action of the transmission structure 31, driving the reciprocating screw 2 29 to rotate. The reciprocating screw 2 29 rotates through the ball nut to drive the rack 2 28 to move. The rack 2 28 moves through the gear 2 27 to drive the shaft 24 to rotate. The shaft 24 rotates through the swing block 25 to drive the ultraviolet lamp 26 to rotate, thereby sterilizing the eggs from different angles.

[0022] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A sterilizing conveying mechanism for eggs, comprising two transmission belts (3) mounted on a conveying frame, characterized in that: A plurality of groups of blowing components are installed at equal intervals on the two transmission belts (3), and each group of blowing components includes an outgoing wind component and an inner wind component. A plurality of outgoing wind components are installed at equal intervals on the two transmission belts (3), and each of the outgoing wind components is provided with an inner wind component. The inner wind component includes an inner cylinder (6) which is hollow and has a plurality of groups of second wind holes, and the same group of second wind holes includes a plurality of holes with successively varying apertures. The inner cylinder (6) rotates relative to the outgoing wind component as the transmission belt (3) moves, so that the outgoing wind speed is regularly adjusted. The conveying frame is provided with an air intake component and a control rotation component that cooperates with the blowing component. The control rotation component includes an annular gear ring (12) and a gear three (13). Two annular gear rings (12) are fixedly installed on the conveying frame. The portion of the inner air outlet component located outside the transmission belt (3) is fixedly provided with a gear three (13) that meshes with the annular gear ring (12). Two strip plates (14) are fixedly mounted on the conveying frame, and a plurality of rotating components and a plurality of sterilizing components are fixedly mounted between the two strip plates (14), and the rotating components and the sterilizing components are spaced apart.

2. The sterilizing and conveying mechanism for eggs according to claim 1, characterized in that: The conveying frame includes a base (1) and a vertical frame (2), two sprockets are meshed and installed on the two transmission belts (3), and the two corresponding sprockets are fixedly installed with a rotating shaft, and both ends of the two rotating shafts are rotatably installed with a vertical frame (2), and the lower ends of the four vertical frames (2) are commonly fixed with a base (1), and a conveying motor is fixedly installed on one of the vertical frames (2), and one end of the corresponding rotating shaft rotates through the vertical frame (2) and is fixedly connected to the driving end of the conveying motor; An L-rod is fixedly mounted on each of the four vertical frames (2), and one end of each of the two L-rods is fixedly arranged on the corresponding strip plate (14).

3. The sterilizing and conveying mechanism for eggs according to claim 2, characterized in that: The outgoing air component comprises a rod frame 2 (5) and an egg tray (7), a plurality of rod frames 2 (5) are fixedly installed on the two transmission belts (3) at equal intervals, the rod frame 2 (5) is composed of a plurality of rods 1, and the rods 1 are all hollow, the rods 1 located on the outermost side are fixedly connected to the corresponding transmission belt (3), an egg tray (7) is fixedly installed between the corresponding rods 1, and the egg tray (7) is hollow, and air outlet holes 1 are opened on both sides; One end of the two outermost rods that is away from each other is flush with the outer side of the transmission belt (3).

4. The sterilizing and conveying mechanism for eggs according to claim 3, characterized in that: The inner air outlet assembly further comprises a rod frame 1 (4), wherein each rod frame 2 (5) is sealed and rotatably mounted with a rod frame 1 (4), the rod frame 2 (5) is composed of a plurality of rods 2, and the rods 2 are all hollow, the length of the outermost rod 2 is greater than the length of the outermost rod 1, and the inner cylinder (6) is fixedly mounted between the corresponding two rods 2, and the inner cylinder (6) is rotatably mounted in the corresponding egg tray (7).

5. The sterilizing and conveying mechanism for eggs according to claim 4, characterized in that: The air intake component comprises an air pump (8), an air intake pipe (9), and an air intake seat (10), wherein an air intake seat (10) is fixedly installed between the two vertical frames (2), an air pump (8) is fixedly installed on the base (1), and the air outlet end of the air pump (8) is fixedly connected to the two air intake pipes (9), and the upper end of the air intake pipe (9) is connected to the corresponding air intake seat (10); A groove body (11) is provided on one side of the two air inlet seats (10) close to each other. The groove body (11) is composed of two grooves with different groove depths. A sealing component that matches the groove body (11) is fixedly installed between the plurality of rod frames (4) on the same side. The sealing assembly includes a sealing block and a sealing rubber. A sealing block is fixedly mounted on each rod frame (4), and the sealing block is sealingly slidably mounted on the trough body (11). Two adjacent sealing blocks are commonly fixedly mounted with a sealing rubber, and the sealing rubber is sealingly slidably mounted on the trough body (11).

6. The sterilizing and conveying mechanism for eggs according to claim 3, characterized in that: A plurality of inverted U rods are fixedly mounted on each of the four vertical frames (2), and the plurality of U rods on the same side are fixedly arranged with corresponding annular gear rings (12), and the gear three (13) is fixedly arranged on the portion of each rod frame one (4) located outside the transmission belt (3).

7. The sterilizing and conveying mechanism for eggs according to claim 1, characterized in that: The rotating component includes a horizontal plate (15), a gear (17), a turntable (18), a rack (19), a reciprocating screw (20), a transmission structure (21), and a motor (22). A plurality of horizontal plates (15) are fixedly installed between two adjacent strip plates (14). A gear (17) and a turntable (18) are coaxially installed on each horizontal plate (15). A rack (19) is limitedly slidably installed on one side of each horizontal plate (15), and the rack (19) is simultaneously engaged with a plurality of corresponding gears (17). A plurality of reciprocating screws (20) are rotatably installed between the two strip plates (14), and a ball nut matched with the corresponding reciprocating screw (20) is installed on the rack (19), and a transmission structure (21) is commonly sleeved between the plurality of reciprocating screws (20). A layer of elastic rubber pad is fixedly mounted on the upper surface of the turntable (18); A motor (22) is fixedly mounted on one of the strip plates (14), and one end of one of the reciprocating screw rods (20) rotates through the strip plate (14) and is fixedly connected to the driving end of the motor (22).

8. The sterilizing and conveying mechanism for eggs according to claim 7, characterized in that: The disinfection component includes a second transverse plate (16), a support frame (23), a shaft (24), a swing block (25), an ultraviolet lamp (26), a second gear (27), a second rack (28), a second reciprocating screw (29), and a second transmission structure (30). A plurality of second transverse plates (16) are fixedly installed between the two strip plates (14), and the number of the second transverse plates (16) is twice the number of the first transverse plates (15). The two transverse plates are respectively located on the upper and lower sides of the upper egg tray (7). A plurality of supports (23) are fixedly installed on each of the second transverse plates (16). A shaft (24) is rotatably installed between the corresponding two supports (23). The shaft (24) is fixedly installed with an ultraviolet lamp (26) through the swing block (25). A gear 2 (27) is coaxially fixedly mounted on the shaft (24), and a rack 2 (28) is limitedly slidably mounted on each of the transverse plates 2 (16), and the rack 2 (28) is simultaneously meshed with a plurality of corresponding gears 2 (27); A plurality of reciprocating screw rods (29) are rotatably mounted on the two strip plates (14), and a ball nut matched with the reciprocating screw rods (29) is mounted on the rack (28). The plurality of reciprocating screw rods (29) are collectively sheathed with a transmission structure (30).

9. The sterilizing and conveying mechanism for eggs according to claim 8, characterized in that: A transmission structure 3 (31) is provided between one of the reciprocating screw rods 2 (29) and the corresponding reciprocating screw rod 1 (20).

10. The sterilizing and conveying mechanism for eggs according to claim 9, characterized in that: An arc groove is provided on each of the second transverse plates (16), and the lower end portion of the swing block (25) is located in the arc groove. Elastic pads (32) are fixedly installed on both sides of each of the swing blocks (25).