Egg counter with counting probe cleaning structure
By designing an egg counter with a counting probe head cleaning structure, the bacterial breeding problems caused by manual counting errors and humidity in the environment are solved, and the accuracy of counting and the long-term use of the equipment are achieved.
Patent Information
- Application Number
- CN202422025224.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing egg counter is prone to counting errors due to manual operation, and the humid environment of the farm leads to bacteria and mold growth, which affects the normal operation of the counter.
An egg counter with a counting probe head cleaning structure is designed, including a transmission component, a separating egg delivery component, a two-way cleaning component and an egg counting control component. The transmission component and the counting control component are cleaned through the two-way cleaning component to ensure the normal operation of the counter.
It effectively avoids manual counting errors, ensures the accuracy and reliability of counting, and at the same time, through the use of two-way cleaning components, the growth of bacteria and mold is reduced and the service life of the counter is extended.
Smart Images

Figure CN223006456U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laying hen breeding, in particular to an egg counter with a cleaning structure for a counting detection head. Background Technique
[0002] Eggs are a kind of food rich in high-quality protein, fat, vitamins and trace elements. The laying hen breeding technology has been continuously improved and the benefits have been continuously increased. The modern laying hen breeding mode adopts automated equipment, environmental control technology and scientific feeding management, etc., which effectively improves the production performance and feeding benefits of laying hens. At the same time, the laying hen breeding industry adopts a large-scale and specialized operation mode. Egg counting can help the breeding farm to monitor the production of laying hens in real time. By regularly counting, the law and changes of egg production of laying hens can be understood, and problems in production, such as a decrease in egg production rate and an increase in abnormal eggs, can be found in time, so as to take corresponding measures for adjustment to ensure the stability and high efficiency of the production process. The existing egg counting is the cooperation operation of manual counting and auxiliary mechanisms. Due to reasons such as manual fatigue and inattention, counting errors are likely to occur. Moreover, the environment of the breeding farm is usually relatively humid, which is prone to breed bacteria and molds. If the egg counter is in such an environment for a long time, stains and dirt are likely to accumulate on the surface, affecting the normal operation of the counter. Therefore, we propose an egg counter with a cleaning structure for a counting detection head to facilitate the solution of the problems raised above. Content of the Utility Model
[0003] In order to overcome the problems of the existing egg counting, which is the cooperation operation of manual counting and auxiliary mechanisms, prone to counting errors, and the environment of the breeding farm is usually relatively humid, prone to breed bacteria and molds, affecting the normal operation of the counter.
[0004] The technical solution of the utility model is: an egg counter with a cleaning structure for a counting detection head, which includes a transmission component, a first separated egg conveying component, a second separated egg conveying component, a bidirectional cleaning component and an egg counting control component; both ends of the transmission component are respectively provided with a first separated egg conveying component and a second separated egg conveying component for stable protection of egg separation and conveying and avoiding accumulation and collision, the transmission component is provided with an egg counting control component that can slide along for egg counting operation, and a bidirectional cleaning component that can slide for bidirectional cleaning operation of the egg counting control component and the transmission component to facilitate counting and observation is arranged at the inner position of the transmission component.
[0005] Preferably, the first separated egg conveying component and the second separated egg conveying component are used to convey eggs separately to avoid the eggs from colliding with each other. With the egg counting control component, the eggs can be counted by sliding along. While counting, the two-way cleaning component can be used to clean the egg counting control component and the transmission component in both directions for convenient counting and observation. When transmitting, the first driving motor drives the conduction shaft to drive the transmission module for conveying operation. The eggs are successively pressed on the conveyor belt, and its flexible waterproof layer provides pressure protection. The synchronous multi-group of strip partition grooves can limit the eggs and reduce the continuous rolling of the eggs, forming an effective protection performance and facilitating the overall counting operation.
[0006] Preferably, the transmission component includes a transmission module, a bushing, a first driving motor, a conduction shaft, a flexible waterproof layer, a slide rail, a shock-absorbing bracket and a conveyor belt. Bushings are provided on both sides of the transmission module. Strip partition grooves are arranged along the conveyor belt. Sliding grooves for the two-way cleaning component to slide are provided inside the bushing. A slide rail for the egg counting control component to slide is provided on the top of the bushing. The multi-group of strip partition grooves can limit the eggs and reduce the continuous rolling of the eggs, forming an effective protection performance and facilitating the overall counting operation.
[0007] Preferably, a shock-absorbing bracket is provided at the lower end of the bushing. The first driving motor drives the conduction shaft to drive the transmission module for conveying operation. A conveyor belt is sleeved outside the transmission module, and a flexible waterproof layer is coated on the conveyor belt. The eggs are successively pressed on the conveyor belt, and its flexible waterproof layer provides pressure protection.
[0008] Preferably, the first separated egg conveying component and the second separated egg conveying component are set with the same structure. Both the first separated egg conveying component and the second separated egg conveying component include a conveying module, a guiding frame, a protective sleeve, a control motor, an adjusting rod, a flexible block, a transmission shaft, a second driving motor, a conveyor belt and a flexible partition board. Protective sleeves are sleeved on both sides of the conveying module. A guiding frame connected to the transmission component is provided outside the protective sleeve. An adjusting rod is provided between the guiding frame and the protective sleeve. The control motor drives the adjusting rod to drive the guiding frame and the protective sleeve to turn and adjust. When performing separated transmission, the control motor drives the adjusting rod to drive the guiding frame and the protective sleeve to turn and adjust to reach the corresponding angular position.
[0009] Preferably, a transmission shaft is provided at one end of the conveying module. The second driving motor drives the transmission shaft to drive the conveying module to operate. A conveyor belt is sleeved outside the conveying module. Multiple groups of flexible partition boards are arranged along the conveyor belt. Multiple groups of flexible blocks are transversely arranged on the flexible partition boards. When transmitting, the eggs successively enter the flexible partition boards, forming multi-region separation. The flexible blocks provide separate support and protection to avoid mutual collision.
[0010] Preferably, the two-way cleaning component includes a balance box, sliders, a first driving module, a solution box, a filling pipe, a liquid level strip, a water box, a spray pipe, an extension bracket, a third driving motor, a rotating rod, a wiping roller, a guiding connecting plate, a disinfection lamp, and a wiping block. Sliders are provided on both sides of the balance box, and a first driving module is provided inside the sliders. A water box is provided at the center of the balance box. A solution box is communicated with the outer end of the water box, and a filling pipe and a liquid level strip are provided on the solution box. A heating module is provided inside the guiding connecting plate to heat the water liquid, so as to better remove the stains on the transmission component and improve the overall cleaning effect.
[0011] Preferably, multiple groups of spray pipes are horizontally provided on the top of the water box, and a water pump is provided at the center of the spray pipes. Extension brackets are provided on both sides of the water box, and a rotating rod is provided at one end of the extension bracket far away from the water box. A wiping roller is sleeved on the rotating rod, and wiping blocks are circumferentially provided on the outer side of the wiping roller. The third driving motor drives the rotating rod to drive the wiping roller to rotate. Multiple groups of guiding connecting plates are distributed at the bottom of the water box, and spray holes are longitudinally opened on the guiding connecting plates. A disinfection lamp is provided between two groups of guiding connecting plates. High-pressure injectors are provided inside the spray holes and the spray pipes. The high-pressure injectors control the water liquid to be sprayed out from the spray holes and the spray pipes to clean the transmission component and the balance box respectively.
[0012] Preferably, the egg counting control component includes a sliding sleeve, a second driving module, a telescopic push rod, a guiding sleeve, a telescopic cylinder, a fixed sleeve, a steering rod, a rotating motor, an installation box, a sleeve, a photoelectric sensor, a vision laser sensor, an electric control module, a counting display board, and a flashing indicator light. A second driving module is provided at the outer end of the sliding sleeve, and a telescopic push rod is provided at the upper end of the sliding sleeve. The telescopic push rods are arranged in two groups opposite to each other, and a guiding sleeve is provided on the telescopic push rod. The telescopic cylinder drives the telescopic push rod to drive the guiding sleeve to move. A fixed sleeve is penetrated through the center of the guiding sleeve, a steering rod is provided at the center of the fixed sleeve, an installation box is provided at the center of the steering rod, and the rotating motor drives the steering rod to drive the installation box to turn. Then, the telescopic cylinder drives the telescopic push rod to drive the guiding sleeve to move to reach a suitable height, increasing the visual field range.
[0013] Preferably, multiple groups of sleeves are longitudinally provided on both sides of the installation box, and a photoelectric sensor is provided at the center of the sleeve. A vision laser sensor is longitudinally provided at the bottom of the installation box. An electric control module electrically connected to the photoelectric sensor and the vision laser sensor is provided at the top of the installation box. A signal generator and a wireless information sensor are provided inside the electric control module. A counting display board is provided at the outer end of the electric control module, and a flashing indicator light is provided at the top of the sleeve. Then, the signal generator and the wireless information sensor are electrically driven to feedback information to the background, and synchronously feedback to the counting display board and the flashing indicator light for counting display, improving the overall counting control performance.
[0014] The beneficial effects of the present utility model are as follows:
[0015] 1. Different from the past, when manual counting was combined with auxiliary institutions for operation, counting errors were likely to occur, and the environment in the breeding farm was usually relatively humid, which was prone to breeding bacteria and molds, affecting the normal operation of the counter. By using the transmission component to form stable conveying in the middle, it is convenient to carry out egg counting operations. The first separated egg conveying component and the second separated egg conveying component are used to separately convey eggs to avoid mutual collision of eggs. By using the egg counting control component, eggs can be counted while sliding along. During counting, the two-way cleaning component can be used to clean the egg counting control component and the transmission component in both directions for convenient counting and observation. When transmitting, the first driving motor drives the conduction shaft to drive the transmission module for conveying operation. Eggs are successively pressed on the conveyor belt, and its flexible waterproof layer provides pressure protection. The synchronous multi-group of strip partition grooves can limit the eggs, reducing the continuous rolling of eggs and forming an effective protection performance, which is convenient for overall counting operations.
[0016] 2. When carrying out the counting operation, the second driving module drives the sliding sleeve to slide along the slide rail, and the eggs can be counted in all directions to avoid the situation of being blocked by eggs of different sizes. Then, the telescopic cylinder drives the telescopic push rod to drive the guide sleeve to move to reach an appropriate height, approaching the eggs for observation. The rotating motor drives the steering rod to drive the installation box to turn, so that the electronic control module controls the photoelectric sensor and the vision laser sensor for observation and counting operations, and then electrically drives the signaler and the wireless information sensor to feedback information to the background, and synchronously feedbacks to the counting display board and the flashing indicator light for counting display, improving the overall counting control performance.
[0017] 3. When carrying out two-way cleaning, select the corresponding sliders and install them on both sides of the two-way cleaning component, corresponding to the chute. When not in use, disassemble them with tools, add the corresponding solution through the filling pipe, observe the liquid level bar filling situation, the first driving module drives the slider to quickly slide along the chute to the corresponding position, the water pump lifts the liquid into the spray pipe, and the high-pressure injector controls the liquid to spray out from the spray holes and the spray pipe to clean the transmission component and the balance box respectively. The third driving motor drives the rotating rod to drive the wiping roller to rotate to clean and wipe the photoelectric sensor and the vision laser sensor. The heating module heats the liquid so that it can better remove the stains on the transmission component and improve the overall cleaning effect.
[0018] 4. When carrying out separated transmission, the control motor drives the adjusting rod to drive the guide frame and the protective sleeve to turn and adjust to reach the corresponding angular position, so that the eggs can be better transmitted. The second driving motor drives the transmission shaft to drive the conveying module to operate. During transmission, the eggs successively enter the flexible partition, forming multi-region separation, and are individually supported and protected by the flexible blocks to avoid mutual collision, thereby improving the conveying effect. Description of the Drawings
[0019] Figure 1 This is a schematic diagram of the overall structure of the present utility model;
[0020] Figure 2 This is a schematic diagram of the transmission component of the present utility model;
[0021] Figure 3 This is a schematic diagram of the first partitioned egg conveying component of the present utility model;
[0022] Figure 4 This is a schematic diagram of the first partitioned egg conveying component of the present utility model from another angle;
[0023] Figure 5 This is a schematic diagram of the two-way cleaning component of the present utility model;
[0024] Figure 6 This is a schematic diagram of the two-way cleaning component of the present utility model from another angle;
[0025] Figure 7 This is a schematic diagram of the egg counting control component of the present utility model.
[0026] Explanation of reference numerals: 1, transmission component; 2, first partitioned egg conveying component; 3, second partitioned egg conveying component; 4, two-way cleaning component; 5, egg counting control component; 101, transmission module; 102, ferrule; 103, first driving motor; 104, conduction shaft; 105, flexible waterproof layer; 106, slide rail; 107, shock-absorbing bracket; 108, chute; 109, conveyor belt; 110, strip partition groove; 201, guide frame; 202, protective sleeve; 203, control motor; 204, adjusting rod; 205, flexible block; 206, transmission shaft; 207, second driving motor; 208, conveyor belt; 209, flexible partition; 401, balance box; 402, slider; 403, first driving module; 404, solution box; 405, filling pipe; 406, liquid level strip; 407, water box; 408, spray pipe; 409, extension frame; 410, third driving motor; 411, rotating rod; 412, wiping roller; 413, spray hole; 414, connecting plate; 415, disinfection lamp; 416, wiping block; 501, sliding sleeve; 502, second driving module; 503, telescopic push rod; 504, guide sleeve; 505, telescopic cylinder; 506, fixed sleeve; 507, steering rod; 508, rotating motor; 509, mounting box; 510, sleeve; 511, photoelectric inductor; 512, vision laser sensor; 513, electronic control module; 514, counting display board; 515, flashing indicator light. Detailed implementation manners
[0027] The present utility model will be further described below with reference to the accompanying drawings and embodiments.
[0028] Please refer to Figure 1-2 , the present utility model provides an embodiment: an egg counter with a cleaning structure for a counting detection head, comprising a transmission assembly 1, a first partitioned egg conveying assembly 2, a second partitioned egg conveying assembly 3, a two-way cleaning assembly 4 and an egg counting control assembly 5; both ends of the transmission assembly 1 are respectively provided with a first partitioned egg conveying assembly 2 and a second partitioned egg conveying assembly 3 for stable protection of egg partitioned conveying and avoiding accumulation and collision, an egg counting control assembly 5 for sliding along and operating for egg counting operation is arranged on the transmission assembly 1, and a two-way cleaning assembly 4 for sliding operation for two-way cleaning operation of the egg counting control assembly 5 and the transmission assembly 1 to facilitate counting observation is arranged at the inner side position of the transmission assembly 1.
[0029] Please refer to Figure 2-4 , in this embodiment, the transmission assembly 1 comprises a transmission module 101, a bushing 102, a first driving motor 103, a conduction shaft 104, a flexible waterproof layer 105, a slide rail 106, a shock absorption bracket 107 and a transmission belt 109. Bushings 102 are arranged on both sides of the transmission module 101. A strip-shaped partition groove 110 is arranged along the transmission belt 109. A slide groove 108 for the two-way cleaning assembly 4 to slide is arranged inside the bushing 102. A slide rail 106 for the egg counting control assembly 5 to slide is arranged on the top of the bushing 102. Multiple strip-shaped partition grooves 110 can limit the eggs, reduce the continuous rolling of the eggs, form an effective protection performance, and facilitate the overall counting operation. A shock absorption bracket 107 is arranged at the lower end of the bushing 102. The first driving motor 103 drives the conduction shaft 104 to drive the transmission module 101 for conveying operation. A transmission belt 109 is sleeved outside the transmission module 101, and a flexible waterproof layer 105 is coated on the transmission belt 109. The eggs are successively pressed on the transmission belt 109, and the flexible waterproof layer 105 provides pressure-bearing protection.
[0030] Please refer to Figure 3-5, in this embodiment, the first separated egg conveying component 2 and the second separated egg conveying component 3 are arranged with the same structure. Both the first separated egg conveying component 2 and the second separated egg conveying component 3 include a conveying module, a guiding frame 201, a protective sleeve 202, a control motor 203, an adjusting rod 204, a flexible block 205, a transmission shaft 206, a second driving motor 207, a conveyor belt 208 and a flexible partition 209. Protective sleeves 202 are sleeved on both sides of the conveying module. A guiding frame 201 connected to the transmission component 1 is arranged on the outer side of the protective sleeve 202. An adjusting rod 204 is arranged between the guiding frame 201 and the protective sleeve 202. The control motor 203 drives the adjusting rod 204 to drive the guiding frame 201 and the protective sleeve 202 to perform steering adjustment operations. When performing separated transmission, the control motor 203 drives the adjusting rod 204 to drive the guiding frame 201 and the protective sleeve 202 to perform steering adjustment operations to reach the corresponding angular positions. A transmission shaft 206 is arranged at one end of the conveying module. The second driving motor 207 drives the transmission shaft 206 to drive the conveying module to operate. A conveyor belt 208 is sleeved on the outer side of the conveying module. Multiple groups of flexible partitions 209 are arranged along the conveyor belt 208. Multiple groups of flexible blocks 205 are arranged horizontally on the flexible partitions 209. During transmission, eggs sequentially enter the flexible partitions 209 to form multi-region separation, and are individually supported and protected by the flexible blocks 205 to avoid mutual collision.
[0031] Please refer to Figure 4-6, the two-way cleaning component 4 includes a balance box 401, sliders 402, a first driving module 403, a solution box 404, a filling pipe 405, a liquid level strip 406, a water box 407, a spray pipe 408, an extension frame 409, a third driving motor 410, a rotating rod 411, a wiping roller 412, a guiding connecting plate 414, a disinfection lamp 415 and a wiping block 416. Sliders 402 are provided on both sides of the balance box 401, and a first driving module 403 is provided inside the sliders 402. A water box 407 is provided at the center of the balance box 401. A solution box 404 is communicated with the outer end of the water box 407, and a filling pipe 405 and a liquid level strip 406 are provided on the solution box 404. A heating module is provided inside the guiding connecting plate 414 to heat the water liquid by using the heating module, so as to better remove the stains on the transmission component 1 and improve the overall cleaning effect. A plurality of groups of spray pipes 408 are horizontally arranged on the top of the water box 407, and a water pump is provided at the center of the spray pipes 408. Extension frames 409 are provided on both sides of the water box 407, and a rotating rod 411 is provided at one end of the extension frame 409 far away from the water box 407. A wiping roller 412 is sleeved on the rotating rod 411, and wiping blocks 416 are circumferentially arranged on the outer side of the wiping roller 412. The third driving motor 410 drives the rotating rod 411 to drive the wiping roller 412 to rotate. A plurality of groups of guiding connecting plates 414 are distributed at the bottom of the water box 407, and spray holes 413 are longitudinally opened on the guiding connecting plates 414. A disinfection lamp 415 is provided between two guiding connecting plates 414. High-pressure injectors are provided inside the spray holes 413 and the spray pipes 408, and the high-pressure injectors control the water liquid to be sprayed out from the spray holes 413 and the spray pipes 408 to clean the transmission component 1 and the balance box respectively.
[0032] Please refer to Figure 5-7, in this embodiment, the egg counting control component 5 includes a sliding sleeve 501, a second driving module 502, a telescopic push rod 503, a guide sleeve 504, a telescopic cylinder 505, a fixed sleeve 506, a steering rod 507, a rotating motor 508, a mounting box 509, a sleeve 510, a photoelectric inductor 511, a vision laser sensor 512, an electronic control module 513, a counting display board 514 and a flashing indicator light 515. A second driving module 502 is provided at the outer end of the sliding sleeve 501, and a telescopic push rod 503 is provided at the upper end of the sliding sleeve 501. The model of the photoelectric inductor 511 is CPG-TF25N3-2, the model of the vision laser sensor 512 is TF25N3-2, and the model of the electronic control module 513 is S7-1200. Two groups of telescopic push rods 503 are arranged oppositely, and a guide sleeve 504 is provided on the telescopic push rod 503. The telescopic cylinder 505 drives the telescopic push rod 503 to drive the guide sleeve 504 to move. A fixed sleeve 506 is passed through the center of the guide sleeve 504. A steering rod 507 is provided at the center of the fixed sleeve 506, and a mounting box 509 is provided at the center of the steering rod 507. The rotating motor 508 drives the steering rod 507 to drive the mounting box 509 to turn. Subsequently, the telescopic cylinder 505 drives the telescopic push rod 503 to drive the guide sleeve 504 to move to reach an appropriate height, increasing the visual field range. A plurality of groups of sleeves 510 are arranged along the two sides of the mounting box 509, and a photoelectric inductor 511 is provided at the center of the sleeve 510. A vision laser sensor 512 is arranged along the bottom of the mounting box 509. An electronic control module 513 electrically connected to the photoelectric inductor 511 and the vision laser sensor 512 is provided at the top of the mounting box 509. An electric signal device and a wireless information sensor are provided inside the electronic control module 513. The model of the electric signal device is IA-100-5A, and the model of the wireless information sensor is BT600. A counting display board 514 is provided at the outer end of the electronic control module 513, and a flashing indicator light 515 is provided at the top of the sleeve 510. Then, the electric signal device and the wireless information sensor are electrically driven to feedback information to the background, and synchronously feedback to the counting display board 514 and the flashing indicator light 515 for counting display, improving the overall counting control performance.
[0033] When working, the first separated egg conveying component 2 and the second separated egg conveying component 3 are used to separately convey and separate eggs. The control motor 203 drives the adjusting rod 204 to drive the guide frame 201 and the protective sleeve 202 to turn and adjust to reach the corresponding angular position, so that the eggs can be better conveyed. The second driving motor 207 drives the transmission shaft 206 to drive the conveying module to operate. As the eggs are conveyed, the eggs sequentially enter the flexible partition 209 to form multi-region separation, and are separately supported and protected by the flexible blocks 205.
[0034] The first driving motor 103 drives the conduction shaft 104 to drive the transmission module 101 for conveying operation. Eggs are successively pressed on the conveyor belt 109, and its flexible waterproof layer 105 provides pressure-bearing protection. The synchronous multi-group of strip partition grooves 110 can limit the eggs.
[0035] When performing the counting operation, the second driving module 502 drives the sliding sleeve 501 to slide along the slide rail 106, enabling a comprehensive all-round counting operation on the eggs. Subsequently, the telescopic cylinder 505 drives the telescopic push rod 503 to drive the guide sleeve 504 to move to a suitable height. The rotating motor 508 drives the steering rod 507 to drive the mounting box 509 to turn, enabling its electronic control module 513 to control the photoelectric sensor 511 and the vision laser sensor 512 to perform observation and counting operations. Then, it electrically drives the signal device and the wireless information sensor, feeds back the information to the background, and synchronously feeds it back to the counting display board 514 and the flashing indicator light 515 for counting display.
[0036] Select the corresponding sliders 402 and install them on both sides of the two-way cleaning component 4, corresponding to the sliding grooves 108. When not in use, disassemble them using tools, add the corresponding solution through the filling pipe 405, observe the filling situation of the liquid level strip 406. The first driving module 403 drives the slider 402 along the sliding groove 108 and quickly slides to the corresponding position. The water pump lifts the liquid into the spray pipe 408, and the high-pressure injector controls the liquid to be sprayed out from the spray holes 413 and the spray pipe 408 to clean the transmission component 1 and the balance box respectively. The third driving motor 410 drives the rotating rod 411 to drive the wiping roller 412 to rotate to clean and wipe the photoelectric sensor 511 and the vision laser sensor 512. The heating module heats the liquid to better remove the stains on the transmission component 1.
[0037] Through the above steps, the first egg separation and conveying component 2 and the second egg separation and conveying component 3 are used to separately convey and separate eggs to avoid the eggs from colliding with each other. The egg counting control component 5 can slide along to perform the egg counting operation. While counting, the two-way cleaning component 4 can be used to perform two-way cleaning operations on the egg counting control component 5 and the transmission component 1 for convenient counting observation. When conveying, the first driving motor 103 drives the conduction shaft 104 to drive the transmission module 101 for conveying operation. Eggs are successively pressed on the conveyor belt 109, and its flexible waterproof layer 105 provides pressure-bearing protection. The synchronous multi-group of strip partition grooves 110 can limit the eggs, reducing the continuous rolling of the eggs and forming an effective protective performance for convenient overall counting operation.
[0038] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments, and various changes can be made without departing from the gist of the present utility model within the scope of knowledge possessed by those skilled in the art.
Claims
1. An egg counter with a counting and detecting head cleaning structure, comprising a transmission component (1); characterized in that: The invention also comprises a first egg separation conveying component (2), a second egg separation conveying component (3), a two-way cleaning component (4) and an egg counting control component (5); the first egg separation conveying component (2) and the second egg separation conveying component (3) are respectively provided at both ends of the conveying component (1) for stable protection of egg separation conveying and avoiding accumulation and collision; the conveying component (1) is provided with an egg counting control component (5) which can slide along the edge for egg counting operation; and the conveying component (1) is provided with a two-way cleaning component (4) which can slide along the inner side for two-way cleaning operation of the egg counting control component (5) and the conveying component (1) for easy counting and observation.
2. The egg counter with a counting and detecting head cleaning structure according to claim 1, characterized in that: The transmission component (1) comprises a transmission module (101), a ferrule (102), a first driving motor (103), a transmission shaft (104), a flexible waterproof layer (105), a slide rail (106), a shock-absorbing bracket (107) and a transmission belt (109). Both sides of the transmission module (101) are provided with ferrules (102), a strip-shaped partition groove (110) is provided on the transmission belt (109), a slide groove (108) for sliding of a bidirectional cleaning component (4) is provided on the inner side of the ferrule (102), and a slide rail (106) for sliding of an egg counting control component (5) is provided on the top of the ferrule (102).
3. The egg counter with a counting and detecting head cleaning structure according to claim 2, characterized in that: A shock-absorbing bracket (107) is provided at the lower end of the ferrule (102); a first driving motor (103) drives a transmission shaft (104) to drive a transmission module (101) to perform a conveying operation; a transmission belt (109) is provided on the outer side of the transmission module (101); and a flexible waterproof layer (105) is coated on the transmission belt (109).
4. The egg counter with a counting and detecting head cleaning structure according to claim 1, characterized in that: The first egg separation conveying assembly (2) and the second egg separation conveying assembly (3) have the same structural arrangement. Both the first egg separation conveying assembly (2) and the second egg separation conveying assembly (3) comprise a conveying module, a guide frame (201), a protective cover (202), a control motor (203), an adjustment rod (204), a flexible block (205), a transmission shaft (206), a second drive motor (207), a conveyor belt (208) and a flexible partition (209). Both sides of the conveying module are sleeved with protective covers (202). The outer side of the protective cover (202) is provided with a guide frame (201) connected to the transmission assembly (1). An adjustment rod (204) is provided between the guide frame (201) and the protective cover (202). The control motor (203) drives the adjustment rod (204) to drive the guide frame (201) and the protective cover (202) to perform a steering adjustment operation.
5. The egg counter with a counting and detecting head cleaning structure according to claim 4, characterized in that: A transmission shaft (206) is provided at one end of the conveying module, and a second driving motor (207) drives the transmission shaft (206) to drive the conveying module to operate. A conveying belt (208) is sleeved on the outer side of the conveying module, and a plurality of groups of flexible partitions (209) are provided along the upper edge of the conveying belt (208), and a plurality of groups of flexible blocks (205) are provided laterally on the upper side of the flexible partition (209).
6. The egg counter with a counting and detecting head cleaning structure according to claim 1, characterized in that: The bidirectional cleaning component (4) comprises a balance box (401), a slider (402), a first driving module (403), a solution box (404), a filling pipe (405), a liquid level bar (406), a water box (407), a spray pipe (408), an extension frame (409), a third driving motor (410), a rotating rod (411), a wiping roller (412), a guide plate (414), a disinfection lamp (415) and a wiping block (416). Both sides of the balance box (401) are provided with sliders (402), the interior of the slider (402) is provided with the first driving module (403), the center of the balance box (401) is provided with a water box (407), the outer end of the water box (407) is connected to the solution box (404), the filling pipe (405) and the liquid level bar (406) are provided on the water box (407), and the interior of the guide plate (414) is provided with a heating module.
7. The egg counter with a counting and detecting head cleaning structure according to claim 6, characterized in that: The top box of the water box (407) is laterally provided with a plurality of spray pipes (408), the center of the spray pipe (408) is provided with a water pump, both sides of the water box (407) are provided with extension frames (409), one end of the extension frame (409) away from the water box (407) is provided with a rotating rod (411), a wiping roller (412) is sleeved on the rotating rod (411), a wiping block (416) is circumferentially provided on the outer side of the wiping roller (412), a third driving motor (410) drives the rotating rod (411) to drive the wiping roller (412) to rotate, a plurality of guide plates (414) are distributed at the bottom of the water box (407), a spray hole (413) is opened along the guide plate (414), a disinfection lamp (415) is provided between the two guide plates (414), and a high-pressure ejector is provided inside the spray hole (413) and the spray pipe (408).
8. The egg counter with a counting and detecting head cleaning structure according to claim 1, characterized in that: The egg counting control assembly (5) comprises a sliding sleeve (501), a second driving module (502), a telescopic push rod (503), a guide sleeve (504), a telescopic cylinder (505), a fixed sleeve (506), a steering rod (507), a rotating motor (508), a mounting box (509), a sleeve (510), a photoelectric sensor (511), a visual laser sensor (512), an electric control module (513), a counting display board (514) and a flashing indicator light (515). The outer end of the sliding sleeve (501) is provided with the second driving module (502). 01) is provided with a telescopic push rod (503) at the upper end, the telescopic push rod (503) is arranged in two groups opposite to each other, a guide sleeve (504) is provided on the telescopic push rod (503), a telescopic cylinder (505) drives the telescopic push rod (503) to drive the guide sleeve (504) to move, a fixed sleeve (506) is passed through the center of the guide sleeve (504), a steering rod (507) is provided at the center of the fixed sleeve (506), a mounting box (509) is provided at the center of the steering rod (507), and a rotating motor (508) drives the steering rod (507) to drive the mounting box (509) to turn.
9. The egg counter with a counting and detecting head cleaning structure according to claim 8, characterized in that: Multiple sets of sleeves (510) are arranged along the edges of both sides of the installation box (509), a photoelectric sensor (511) is arranged at the center of the sleeve (510), a visual laser sensor (512) is arranged along the bottom edge of the installation box (509), an electric control module (513) electrically connected to the photoelectric sensor (511) and the visual laser sensor (512) is arranged at the top of the installation box (509), an electric signal device and a wireless information sensor are arranged inside the electric control module (513), a counting display board (514) is arranged at the outer end of the electric control module (513), and a flashing indicator light (515) is arranged at the top of the sleeve (510).