Cesarean operation bin

By introducing an automatic water supply system, an electric cleaning device, and a modular component design into the cesarean section surgical chamber, the problems of low cleaning efficiency and difficulty in space adjustment of existing devices have been solved, achieving efficient cleaning and personalized management, and improving the sterility of the surgical environment and ease of operation.

CN120959154APending Publication Date: 2025-11-18JIANGSU LINGKANG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511326559.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Existing cesarean section surgical pod devices are inefficient in cleaning animal excrement, making it difficult to achieve accurate collection and timely sewage discharge. Furthermore, the isolation area has a fixed structure, making spatial adjustment difficult. It cannot be personalized according to individual differences and postoperative recovery status, resulting in high maintenance costs and complex operation.

Method used

A cesarean section surgical chamber was designed, which includes a breeding isolation area, a feeding isolation room, and cesarean section surgical components. The chamber features automatic water supply through a water pump linked to a drinking trough, automatic waste removal by an electric push rod, space adjustment through a sliding trough and components, a segmented connection structure between the disinfection chamber, assembly pipe, and temperature-controlled feeding chamber, and a disinfection system consisting of ultraviolet lamps and exhaust fans to ensure the sterility of the surgical environment and the continuity of the process.

Benefits of technology

It improves cleaning efficiency, reduces the risk of contamination, enhances the sterility of the surgical environment and the continuity of operations, adapts to different animal individuals and surgical needs, and reduces maintenance costs and operational complexity.

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Patent Text Reader

Abstract

The invention relates to the technical field of breeding isolation, in particular to a cesarean operation bin which comprises a breeding isolation area, a monitor is arranged at one end of the breeding isolation area, ventilation fans are arranged on the two sides of the breeding isolation area, and a breeding isolation chamber is arranged in the breeding isolation area. A cesarean operation assembly is arranged on one side of the feeding isolation chamber. According to the designed cesarean operation bin, by arranging the feeding isolation chamber and the cesarean operation assembly in different areas of the breeding isolation area, cross contamination is avoided, the sterile requirement of the operation environment is guaranteed, the maternal postoperative infection risk is reduced, and the operation success rate and the animal survival rate are increased; the linkage design of the water pump and the drinking trough realizes automation of water supply, frequent manual intervention is not needed, the risk of artificial pollution is reduced, clean and continuous supply of water sources is ensured, and the cleaning plate is driven by the electric push rod to automatically treat excrement.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of feeding isolation, in particular to a cesarean section operation warehouse. BACKGROUND

[0002] With the continuous advancement of the intensification and automation of the livestock breeding industry, the animal breeding management level continues to improve, especially in the field of economic animal breeding, cesarean section surgery as an auxiliary breeding method is increasingly widely used, and in order to protect the safety of the mother and the young during the operation, the common way is to set up a cesarean section operation room and an isolation feeding area in the breeding farm for preoperative management, intraoperative operation and postoperative care, which has gradually become one of the standard configurations of livestock and poultry farms.

[0003] But the existing cesarean section operation warehouse device in use, animal excrement cleaning depends on manual operation, low cleaning efficiency, difficult to realize precise collection and timely pollution, easy to cause environmental pollution, increase labor burden, at the same time, the isolation area structure of the existing cesarean section operation warehouse device is fixed, the space adjustment is difficult, the animal activity range is uncontrollable, the individual difference and postoperative recovery state cannot be managed individually, and some parts are damaged or need to be adjusted, which often needs to be replaced or disassembled on a large scale, so the maintenance cost is high and the operation is complex, therefore, a cesarean section operation warehouse is provided to overcome the above defects. SUMMARY

[0004] The present application aims to solve the problems in the prior art and provides a cesarean section operation warehouse.

[0005] In order to achieve the above purpose, the present application adopts the following technical scheme: a cesarean section operation warehouse, comprising a breeding isolation area, one end of the breeding isolation area is provided with a monitor, both sides of the breeding isolation area are provided with air exchange fans, the inside of the breeding isolation area is provided with a breeding isolation chamber, and one side of the breeding isolation chamber is provided with a cesarean section operation assembly.

[0006] As a further description of the above technical scheme: the breeding isolation chamber comprises a breeding isolation warehouse arranged inside the breeding isolation area, the top of the breeding isolation warehouse is provided with a breeding isolation assembly, one end of the breeding isolation warehouse is provided with a breeding door, one side of the breeding isolation warehouse is provided with a water pump and an electric push rod, and the other side of the breeding isolation warehouse is provided with a waste collection warehouse, the breeding isolation warehouse prevents group infection, the water pump and the drinking trough are linked to ensure automatic water supply, avoid manual intervention and reduce pollution risk, the electric push rod automatically pushes the cleaning plate to handle the excrement, improves the cleaning efficiency, and the waste collection warehouse collects and stores the excrement, reduces the spread of bacteria.

[0007] As a further description of the above technical scheme: the feeding isolation wall is provided with a sliding groove at the top of both ends, and the sliding groove is matched with the feeding isolation assembly; a plurality of insertion holes are formed at one side of the top of the feeding isolation assembly; a clamping groove and a put-in hole are arranged at the other side of the top of the feeding isolation assembly, and the feeding isolation assembly is matched with the clamping groove; a feeding groove is arranged at the inner bottom of the feeding isolation wall; a discharge groove is formed at the bottom of the side of the feeding isolation wall close to the insertion hole, and the feeding groove is connected with the waste collection bin through the discharge groove; a drinking water groove is arranged at the bottom of one end of the feeding isolation wall and connected with a water pump; a pass-through hole is formed at the middle of the side of the feeding isolation wall close to the cesarean section assembly, and the pass-through hole is connected with the cesarean section assembly. The modular isolation is realized by the cooperation of the sliding groove and the assembly, the space utilization is improved, the waste bin is connected with the feeding groove through the discharge groove, the excrement is treated by the cleaning plate automatically pushed by the electric push rod, the closed-loop cleaning mechanism is formed, the pollution backflow is avoided, the water supply automation is ensured by the linkage of the water pump and the drinking water groove, the manual intervention is avoided, the pollution risk is reduced.

[0008] As a further description of the above technical scheme: the feeding isolation assembly includes a moving rod arranged at the top of the feeding isolation wall, a plurality of limiting plates are arranged at the side of the moving rod close to the feeding groove, and a plurality of assembly rods are movably arranged at the top of the moving rod and matched with the put-in hole. The size or open-closed state of the isolation space is adjusted by the combination of the moving rod and the limiting plate, and the assembly rods are adjusted in position to adapt to different specifications of animal individuals.

[0009] As a further description of the above technical scheme: the two ends of the moving rod are provided with sliding blocks, the top of the moving rod is provided with a plurality of handles, one side of the moving rod is provided with a rotating groove, the inside of the rotating groove is provided with a plurality of limiting blocks, the two ends of the limiting block are provided with rotating holes, the side of the limiting block away from the moving rod is provided with an assembly hole, the top of the limiting plate is provided with rotating rods at both ends, and the rotating rods are matched with the rotating holes, one side of the assembly rod is provided with a splicing rod, the other side of the assembly rod is provided with a splicing groove, and the splicing rod is matched with the splicing groove, a plurality of blocking holes are provided in the middle of the assembly rod, and the splicing rod is matched with the blocking hole, the outside of the splicing rod is provided with threads, and the inside of the splicing groove and the blocking hole is provided with a threaded groove, and the threads are matched with the threaded groove. The sliding block is matched with the track to make the moving rod move smoothly, which is convenient for quickly opening or adjusting the isolation assembly. The handle design makes manual adjustment more convenient, enhances the operation experience, and at the same time, the limiting block is arranged to install the limiting plate, and the limiting plate can only enter in one direction to prevent the animals from running out. At the same time, the splicing rod and the splicing groove are arranged to make the assembly rod convenient for horizontal assembly according to the needs of use, and the splicing rod and the blocking hole are matched to make vertical assembly, so that the feeding isolation assembly is convenient for combination and adjustment of the space in the feeding isolation chamber.

[0010] As a further description of the above technical scheme: the top of the feeding door is provided with a matching groove, and the matching groove is matched with the sliding block. The side of the electric push rod close to the feeding groove is provided with a cleaning plate, and the cleaning plate is matched with the exclusion groove. The matching groove is arranged to make the feeding isolation assembly convenient for moving adjustment. At the same time, the electric push rod drives the cleaning plate to automatically remove the excrement or waste, reducing the labor workload, and the feeding groove and the exclusion groove are communicated to make the garbage and feces quickly flow to the waste bin, ensuring the clean environment of the feeding groove.

[0011] As a further description of the above technical scheme: the cesarean section operation assembly comprises a disinfection bin arranged on one side of the feeding isolation chamber, one end of the disinfection bin is provided with a first assembly pipe, the end of the first assembly pipe away from the disinfection bin is provided with a second assembly pipe, the end of the second assembly pipe away from the first assembly pipe is provided with a temperature control feeding bin, the outside of the first assembly pipe is provided with a fastening ring, and the fastening ring is connected with the second assembly pipe. The sequential connection structure of the disinfection bin, the first assembly pipe, the second assembly pipe and the temperature control feeding bin realizes the functional partition layout of the cesarean section operation area, guarantees the seamless connection from disinfection to operation process, improves the continuity and cleanliness of the overall operation process, the setting of the fastening ring enhances the stability and sealing of the connection, prevents leakage of pollutants, ensures the sterile safety of the operation environment, and can be used independently or in combination according to the needs of use.

[0012] As a further description of the above technical scheme: the disinfection bin includes a disinfection box arranged at one end of the first assembly pipe, the bottom of the disinfection box is provided with a plurality of placing rods, the middle of one side of the disinfection box is provided with a disinfection door, the side of the disinfection box away from the disinfection door is provided with an air inlet fan and an ultraviolet lamp, a plurality of air outlet holes are formed in the inner bottom end of the disinfection box, an air exhaust groove is arranged in the inner bottom of the disinfection box and matched with the air outlet holes, a plurality of air exhaust fans are arranged at the bottom of one side of the disinfection box and matched with the air exhaust groove, a plurality of fixing belts are arranged in the disinfection box, first adjusting holes are formed in the middle of the two ends of the disinfection box close to the first assembly pipe, a plurality of first assembly holes are arranged on the circumferential outer side of the first adjusting holes, the multi-element disinfection system composed of the ultraviolet lamp, the air inlet fan, the air outlet hole, the air exhaust groove and the air exhaust fan realizes all-round disinfection of surgical instruments and related operation areas, improves the air circulation and sterilization effect of the disinfection bin, the fixing belt is used to stabilize the disinfection object, avoids secondary pollution caused by movement and interference during operation, and the cooperation of the adjusting hole and the assembly hole facilitates the installation and disassembly of the first assembly pipe, improves the structural flexibility and maintenance convenience.

[0013] As a further description of the above technical scheme: the first assembly pipe includes a first mounting frame arranged at one end of the disinfection box, a first moving pipe is arranged in the middle of the first mounting frame and matched with the first adjusting hole, a plurality of first mounting holes are formed in one side of the first mounting frame and matched with the first assembly hole, a first electromagnetic valve is arranged in the middle of the first moving pipe, a first docking ring is arranged at one end of the first moving pipe away from the first mounting frame, a plurality of first connecting holes and a sealing groove are arranged at one end of the first docking ring, the cooperation of the first moving pipe and the adjusting hole makes the assembled connection have good adjustability and sealing performance, facilitates fine operation adjustment according to actual needs, the arrangement of the electromagnetic valve realizes the automation of the switch, improves the intelligent degree of the device during use, and the first docking ring is provided with the sealing groove and the connecting hole, which enhances the docking sealing and connecting strength between components, prevents external pollution during use, and guarantees the airtightness and reliability of the disinfection and operation process.

[0014] As a further description of the above technical scheme: the second assembly pipe comprises a second butt joint ring arranged at one end of the first butt joint ring, a sealing gasket is arranged at one end of the second butt joint ring close to the first butt joint ring, the sealing gasket is matched with the sealing groove, a plurality of second connecting holes are arranged at one end of the second butt joint ring outside the circumference of the sealing gasket, a second moving pipe is arranged at one end of the second butt joint ring away from the first butt joint ring, a second electromagnetic valve is arranged at the middle part of the second moving pipe, a second assembly frame is arranged at one end of the second moving pipe away from the second butt joint ring, a plurality of second mounting holes are arranged at one end of the second assembly frame, the sealing reliability of the second assembly pipe during butt joint is improved by matching the sealing gasket with the sealing groove, cross contamination between the disinfection area and the external environment is avoided, the control accuracy of the subsequent surgical cabin section is improved by the structure of the second electromagnetic valve matched with the moving pipe, the second assembly frame is arranged to facilitate quick butt joint with the surgical cabin module, the assembly efficiency and the disassembly convenience are improved, and the configuration requirements of various surgical environments are met.

[0015] As a further description of the above technical scheme: the temperature control feeding cabin comprises a temperature control feeding box arranged at one end of the second assembly pipe, a second adjusting hole is arranged at one end of the second assembly frame close to the temperature control feeding box, a plurality of second assembly holes are arranged outside the circumference of the second adjusting hole, and the second assembly holes are matched with the second mounting holes, a plurality of operation gloves are movably arranged on one side of the temperature control feeding box, an air outlet fan is arranged at the top of the other side of the temperature control feeding box, a plurality of supporting rods are arranged at the bottom of the temperature control feeding box, and a feeding pipe is arranged at one end of the temperature control feeding box away from the second assembly pipe, the temperature control feeding box and the adjusting hole and the assembly hole matched with the temperature control feeding box are arranged, quick connection and high modularity of the temperature control feeding box are realized, the operation gloves are arranged to ensure that the user completes the operation without directly contacting the animal, the controllability of the sterile operation is improved, the air outlet fan at the top of the temperature control feeding box ensures air circulation and constant temperature environment in the surgical cabin, the supporting rods at the bottom provide overall structural stability, and the feeding pipe at the far end realizes quick feeding treatment during and after the operation, and the continuity and convenience of postoperative animal care are improved.

[0016] The application has the following beneficial effects:

[0017] The cesarean section operation warehouse designed by the application avoids cross contamination to ensure the sterility of the operation environment, reduces the risk of infection during maternal surgery, improves the success rate of surgery and the survival rate of animals, and realizes the automation of water supply through the linkage design of the water pump and the drinking trough, without frequent manual intervention, reducing the risk of human contamination, ensuring clean and continuous water supply, and automatically processing excrement through the electric push rod driving the cleaning plate, forming a closed loop cleaning mechanism with the exclusion groove and the waste collection bin, the excrement is quickly diverted to the dedicated storage space, avoiding pollution backflow, improving cleaning efficiency and reducing the risk of bacterial transmission, and when the assembly rod is not in use, it can be stored in the storage hole, improving the convenience of use and improving the deployment efficiency of the device, filling the technical gap of flexible isolation equipment for large experimental animals.

[0018] The cesarean section operation warehouse designed by the application realizes quick opening and closing or space adjustment of the isolation assembly through the cooperation of the sliding block and the sliding groove, adapts to different animal individuals or surgical needs, and the assembly rod is connected through the thread connection of the splicing rod and the splicing groove horizontally and the cooperation of the splicing rod and the blocking hole vertically, supporting multi-directional free combination, flexible division of isolation area, and one-way limiting design of the limiting plate and the rotating rod to prevent animal escape and facilitate disassembly and maintenance, while the handle design simplifies manual adjustment process and improves operation convenience, and the precise docking of the cooperating groove and the sliding block ensures the stability of the movement of the isolation assembly, and the monitor arranged at the top of the breeding isolation area monitors the whole process of breeding and surgery in real time, facilitating timely problem discovery and operation adjustment, ensuring animal welfare and surgical standardization.

[0019] The cesarean section operation warehouse designed by the application realizes the spatial function partitioning of cesarean section process from disinfection surgery, pipeline transportation, and precise temperature control feeding through the segmented connection structure of the disinfection warehouse, the first assembly pipe, the second assembly pipe, and the temperature control feeding warehouse, ensuring the cleanliness of the environment and the continuity of the process during the whole operation process, reducing the pollution and infection risk during the operation process, improving the controllability of the overall operation and the postoperative recovery rate of animals, and the modular connection mode of the assembly pipe and the fastening ring between the components supports unit disassembly and flexible combination, adapts to various experimental needs and space deployment conditions, improves equipment adaptability and system construction efficiency, and through the active disinfection system composed of ultraviolet lamps, air inlet fans, exhaust holes, exhaust grooves, and exhaust fans, realizes dynamic circulation and efficient sterilization of internal air, covers possible contaminated areas such as surgical tools and animal passages, improves disinfection efficiency, and the combination design of the disinfection door, the placement rod, and the fixing belt ensures the position stability of the instruments during the disinfection process, avoids cross contamination caused by movement, ensures the consistency of disinfection effect, and the cooperation structure of the adjusting hole and the assembly hole simplifies the subsequent assembly process, improves the disassembly and assembly convenience and maintenance efficiency.

[0020] The cesarean section operation warehouse designed by the application realizes fine positioning and high sealing connection between components through the cooperation of the first moving pipe and the adjusting hole, ensures that the sterilization warehouse and the subsequent unit avoid sealing failure at the interface, and through the setting of the first electromagnetic valve to improve the automation level, it is convenient to realize operation linkage through system instructions, and the multiple connection holes and sealing grooves of the first connecting ring are used in cooperation, which strengthens the interface sealing performance and mechanical strength, guarantees the cleanliness and stability of the overall system operation, and through the flexible cooperation of the sealing pad and the sealing groove, the air tightness of the connection is enhanced, which prevents external air from entering or sterilization gas from leaking, maintains the stability of the sterile space, the second electromagnetic valve controls the gas path in the second moving pipe, accurately controls the parameter adjustment of the operation environment, and the second assembly frame and the mounting hole structure are set, which is convenient for efficient docking with the temperature control breeding warehouse, reduces the manual intervention time, improves the system building efficiency and supports quick disassembly and replacement, and adapts to different experimental conditions. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a schematic diagram of the overall structure of the application;

[0022] Figure 2 It is a sectional view of the overall structure of the application;

[0023] Figure 3 It is a schematic diagram of the breeding isolation chamber structure in the application;

[0024] Figure 4 It is a schematic diagram of the breeding isolation chamber structure in the application;

[0025] Figure 5 It is a schematic diagram of the breeding isolation chamber structure in the application;

[0026] Figure 6 It is a schematic diagram of the breeding isolation chamber structure in the application;

[0027] Figure 7 It is a sectional view of the breeding isolation chamber structure in the application;

[0028] Figure 8 It is a sectional view of the breeding isolation chamber structure in the application;

[0029] Figure 9 It is a schematic diagram of the breeding isolation assembly structure in the application;

[0030] Figure 10 It is a schematic diagram of the moving rod structure in the application;

[0031] Figure 11 It is a schematic diagram of the limiting plate structure in the application;

[0032] Figure 12 It is a sectional view of the assembly rod structure in the application;

[0033] Figure 13 It is a structure schematic view of the cesarean section operation assembly in the application;

[0034] Figure 14 It is a structure schematic view of the cesarean section operation assembly in the application;

[0035] Figure 15 It is a structure schematic view of the disinfection bin in the application;

[0036] Figure 16 It is a sectional view of the disinfection bin structure in the application;

[0037] Figure 17 It is a structure schematic view of the first assembly pipe in the application;

[0038] Figure 18 It is a sectional view of the temperature-controlled feeding bin structure in the application.

[0039] Legend:

[0040] 1, breeding isolation area; 2, monitor; 3, ventilation fan; 4, breeding isolation room; 41, breeding isolation bin; 411, breeding isolation wall; 412, sliding groove; 413, insertion hole; 414, clamping groove; 415, put-in hole; 416, feeding groove; 417, exclusion groove; 418, water trough; 419, access hole; 42, breeding isolation assembly; 421, moving rod; 4211, sliding block; 4212, handle; 4213, rotating groove; 4214, limiting block; 4215, rotating hole; 4216, assembly hole; 422, limiting plate; 4221, rotating rod; 423, assembly rod; 4231, splicing rod; 4232, splicing groove; 4233, blocking hole; 43, feeding door; 44, water pump; 45, electric push rod; 451, cleaning plate; 46, waste collection bin; 5, cesarean section operation assembly; 51, disinfection bin; 511, disinfection box; 512, placing rod; 513, disinfection door; 514, air inlet fan; 515, ultraviolet lamp; 516, exhaust hole; 517, exhaust groove; 518, exhaust fan; 519, fixing belt; 5110, first adjusting hole; 5111, first assembly hole; 52, first assembly pipe; 521, first mounting frame; 522, first moving pipe; 523, first mounting hole; 524, first electromagnetic valve; 525, first butt joint ring; 526, first connecting hole; 527, sealing groove; 53, second assembly pipe; 531, second butt joint ring; 532, sealing pad; 533, second connecting hole; 534, second moving pipe; 535, second electromagnetic valve; 536, second assembly frame; 537, second mounting hole; 54, temperature-controlled feeding bin; 541, temperature-controlled feeding box; 542, second adjusting hole; 543, second assembly hole; 544, operating glove; 545, air outlet fan; 546, support rod; 547, feeding pipe; 55, fastening ring. DETAILED DESCRIPTION

[0041] SUMMARY Figures 1 to 18 The application provides a cesarean section operation warehouse, which comprises a breeding isolation area 1, one end of the breeding isolation area 1 is provided with a monitor 2, both sides of the breeding isolation area 1 are provided with air exchanger fans 3, the inside of the breeding isolation area 1 is provided with a feeding isolation chamber 4, and one side of the feeding isolation chamber 4 is provided with a cesarean section operation assembly 5.

[0042] As a further implementation of the above technical scheme: the feeding isolation chamber 4 comprises a feeding isolation bin 41 arranged in the breeding isolation area 1, the top of the feeding isolation bin 41 is provided with a feeding isolation assembly 42, one end of the feeding isolation bin 41 is provided with a feeding door 43, one side of the feeding isolation bin 41 is provided with a water pump 44 and an electric push rod 45, and the other side of the feeding isolation bin 41 is provided with a waste collection bin 46; in use, the feeding isolation bin 41 is limited in an independent space, which is convenient for preoperative and postoperative management and monitoring, the feeding door 43 is used as an access channel for animals or personnel, is combined with a matching groove and a sliding structure to realize linkage control, can automatically supplement water through an automatic water feeding head to save labor, and can realize cleaning of a feeding tank 416 or pushing of excrement through reciprocating movement of a cleaning plate 451 driven by the electric push rod 45, and the waste collection bin 46 is communicated with an exclusion tank 417, so that feces and garbage can be collected in a centralized manner, and the environment is prevented from being polluted.

[0043] As a further implementation solution of the above technical solution: the feeding isolation wall 411 is provided inside the breeding isolation area 1, the feeding isolation wall 411 is provided with a sliding groove 412 at the top of both ends, and the sliding groove 412 is matched with the feeding isolation assembly 42, the feeding isolation assembly 42 is provided with a plurality of insertion holes 413 on one side of the top, the feeding isolation assembly 42 is provided with a clamping groove 414 and a put-in hole 415 on the other side of the top, the feeding isolation assembly 42 is matched with the clamping groove 414, the inner bottom of the feeding isolation wall 411 is provided with a feeding groove 416, the bottom of the feeding isolation wall 411 is provided with an exclusion groove 417 near the insertion hole 413, and the feeding groove 416 is connected with the waste collection bin 46 through the exclusion groove 417, the drinking water groove 418 is connected with the water pump 44, the feeding isolation wall 411 is provided with an access hole 419 in the middle of the side near the cesarean section operation assembly 5, a plurality of through holes are arranged on the circumferential outer side of the access hole 419 and connected with the first assembly pipe 52, and the access hole 419 is connected with the cesarean section operation assembly 5, and the first assembly pipe 52, the second assembly pipe 53 and the fastening ring 55 are connected with the access hole 419, the sliding groove 412 is used to install the moving rod 421 of the feeding isolation assembly 42, so that it can smoothly slide along the track, the feeding groove 416 is used for breeding animals, the exclusion groove 417 is used to guide the waste to the waste collection bin 46 below when the feeding groove 416 is cleaned, and the drinking water groove 418 is connected with the water pump 44 to realize automatic drinking water circulation and maintain the stability of animal drinking water supply.

[0044] As a further implementation solution of the above technical solution: the feeding isolation assembly 42 includes a moving rod 421 arranged on the top of the feeding isolation wall 411, the moving rod 421 is provided with a plurality of limiting plates 422 on one side near the feeding groove 416, the moving rod 421 is movably provided with a plurality of assembly rods 423 on the top, and the assembly rods 423 are matched with the put-in hole 415, the moving rod 421 is moved along the sliding groove 412 during use, so as to adjust the size of the feeding area or realize the opening and closing isolation function, the limiting plates 422 limit the movement range of the animals, and also serve as adjustable partition devices, and the assembly rods 423 are inserted into the put-in hole 415 to reinforce the structure, so as to realize modular installation, replacement or maintenance.

[0045] As a further implementation solution of the above technical scheme: the two ends of the moving rod 421 are provided with sliding blocks 4211, the top of the moving rod 421 is provided with a plurality of handles 4212, one side of the moving rod 421 is provided with a rotating groove 4213, the inside of the rotating groove 4213 is provided with a plurality of limiting blocks 4214, the two ends of the limiting block 4214 are provided with rotating holes 4215, and the side of the limiting block 4214 away from the moving rod 421 is provided with an assembly hole 4216. The top of the limiting plate 422 is provided with rotating rods 4221, and the rotating rods 4221 are matched with the rotating holes 4215. In use, the sliding blocks 4211 cooperate with the sliding grooves to enable the moving rod 421 to slide smoothly on the top of the feeding isolation wall 411, the handles 4212 facilitate the operator to manually push the moving rod 421 for adjustment, and the cooperation of the rotating groove 4213 and the limiting block 4214 can adjust the position and angle of the limiting block 4214, limit the activity angle of the assembly, prevent accidental movement, and at the same time, the cooperation of the rotating hole 4215 and the rotating rod 4221 forms a hinged structure, so that the limiting plate 422 can rotate around the rotating rod 4221 for folding, unfolding or adjusting the opening size.

[0046] As a further implementation solution of the above technical scheme: the one side of the assembly rod 423 is provided with a splicing rod 4231, the other side of the assembly rod 423 is provided with a splicing groove 4232, and the splicing rod 4231 cooperates with the splicing groove 4232. The middle part of the assembly rod 423 is provided with a plurality of blocking holes 4233, and the splicing rod 4231 cooperates with the blocking holes 4233. The outside of the splicing rod 4231 is provided with threads, and the inside of the splicing groove 4232 and the blocking hole 4233 is provided with a threaded groove, and the threads cooperate with the threaded groove. In use, the blocking hole 4233 structure is used to enhance the stability after splicing to prevent falling off, and the cooperation of the threads and the threaded groove enables the assembly rod 423 to be connected by screwing, thereby improving the firmness after connection and assembly, and facilitating disassembly, maintenance and assembly of the assembly rod 423.

[0047] As a further implementation solution of the above technical scheme: the top of the feeding door 43 is provided with a matching groove, and the matching groove cooperates with the sliding block 4211. The side of the electric push rod 45 close to the feeding groove 416 is provided with a cleaning plate 451, and the cleaning plate 451 cooperates with the exclusion groove 417. In use, the matching groove and the sliding block 4211 match to facilitate the moving rod 421 assembly to adjust from the top of the feeding door 43 when the door is closed, thereby improving the convenience of the moving rod 421 in use. The cleaning plate 451 and the exclusion groove 417 are connected, the waste and feces are pushed into the exclusion groove 417 by pushing the cleaning plate 451 by the push rod, directional cleaning operation is realized, and the need for manual cleaning is reduced.

[0048] As a further description of the above technical scheme: the cesarean section assembly 5 comprises a disinfection bin 51 arranged on one side of the breeding isolation chamber 4, one end of the disinfection bin 51 is provided with a first assembly pipe 52, the other end of the first assembly pipe 52 is provided with a second assembly pipe 53, the other end of the second assembly pipe 53 is provided with a temperature-controlled breeding bin 54, the outer side of the first assembly pipe 52 is provided with a fastening ring 55, and the fastening ring 55 is connected with the second assembly pipe 53. When in use, the modules of the disinfection bin 51, the first assembly pipe 52, the second assembly pipe 53 and the temperature-controlled breeding bin 54 are arranged in sequence, the standardized space distribution of the whole cesarean section process is realized, each part is connected through the assembly pipe, and mechanical locking and sealing fixation are realized by means of the fastening ring 55, the first assembly pipe 52 is connected with the disinfection bin 51, the second assembly pipe 53 is coupled with the first assembly pipe 52 through the fastening ring 55 and connected with the temperature-controlled breeding bin 54, and a closed operation channel is formed.

[0049] As a further description of the above technical scheme: the disinfection bin 51 comprises a disinfection box 511 arranged at one end of the first assembly pipe 52, a plurality of placing rods 512 are arranged at the bottom of the disinfection box 511, a disinfection door 513 is arranged at the middle of one side of the disinfection box 511, an air inlet fan 514 and an ultraviolet lamp 515 are arranged at the inside of the disinfection box 511 away from the disinfection door 513, a plurality of air outlet holes 516 are arranged at the inner bottom end of the disinfection box 511, an air exhaust groove 517 is arranged at the inner bottom of the disinfection box 511 and matched with the air outlet holes 516, a plurality of air exhaust fans 518 are arranged at the bottom of one side of the disinfection box 511 and matched with the air exhaust groove 517, a plurality of fixing belts 519 are arranged in the disinfection box 511, first adjusting holes 5110 are arranged at the middle of both ends of the disinfection box 511 close to the first assembly pipe 52, a plurality of first assembly holes 5111 are arranged at the circumferential outer side of the first adjusting holes 5110. When in use, the air inlet fan 514 introduces external air, the internal ultraviolet lamp 515 performs surface sterilization, the air outlet holes 516 and the air exhaust groove 517 form an air passage, and the air exhaust fan 518 drives to form negative pressure to quickly exhaust the dirty air, the animal is restrained by the fixing belt 519 during disinfection to prevent displacement during the operation, and the first adjusting hole 5110 and the first assembly hole 5111 are used for precise butt joint with the subsequent assembly structure.

[0050] As a further description of the above technical solutions: the first assembly pipe 52 comprises a first mounting frame 521 arranged at one end of the sterilization box 511, a first moving pipe 522 arranged at the middle of the first mounting frame 521, and the first moving pipe 522 is matched with the first adjusting hole 5110, a plurality of first mounting holes 523 are arranged at one side of the first mounting frame 521, and the first mounting holes 523 are matched with the first assembly hole 5111, a first electromagnetic valve 524 is arranged at the middle of the first moving pipe 522, a first butt joint ring 525 is arranged at the end of the first moving pipe 522 away from the first mounting frame 521, a plurality of first connecting holes 526 and a sealing groove 527 are arranged at one end of the first butt joint ring 525, in use, the first mounting frame 521 is connected with the sterilization box 511 to provide a fixed base, the first moving pipe 522 at the middle is inserted into the adjusting hole of the sterilization box 511, and the first mounting holes 523 at the two sides are fixed through threads and assembly holes to realize quick assembly, the first electromagnetic valve 524 is arranged at the middle of the moving pipe to control the opening and closing of gas circulation, and the first butt joint ring 525 is provided with connecting holes and a sealing groove 527 to butt joint the sealing gasket 532 in the second assembly pipe 53 to ensure the sealing of the interface.

[0051] As a further description of the above technical solutions: the second assembly pipe 53 comprises a second butt joint ring 531 arranged at one end of the first butt joint ring 525, a sealing gasket 532 arranged at the end of the second butt joint ring 531 close to the first butt joint ring 525, and the sealing gasket 532 is matched with the sealing groove 527, a plurality of second connecting holes 533 are arranged at the end of the second butt joint ring 531 and outside the circumference of the sealing gasket 532, a second moving pipe 534 is arranged at the end of the second butt joint ring 531 away from the first butt joint ring 525, a second electromagnetic valve 535 is arranged at the middle of the second moving pipe 534, a second mounting frame 536 is arranged at the end of the second moving pipe 534 away from the second butt joint ring 531, a plurality of second mounting holes 537 are arranged at one end of the second mounting frame 536, in use, the second butt joint ring 531 is inserted into the first butt joint ring 525, the sealing gasket 532 arranged around the circumference is inserted into the sealing groove 527 to form an airtight interface, and the second connecting holes 533 arranged around are fixed by screws or buckles to enhance the joint strength, and the second electromagnetic valve 535 arranged at the middle of the second moving pipe 534 can be linked to control the fluid passage.

[0052] As a further description of the above technical scheme: the temperature control feeding bin 54 comprises a temperature control feeding box 541 arranged at one end of the second assembly pipe 53, the temperature control feeding box 541 is provided with a second adjusting hole 542 at one end close to the second assembly frame 536, the outer side of the circumference of the second adjusting hole 542 is provided with a plurality of second assembly holes 543, and the second assembly holes 543 are matched with the second mounting holes 537, a plurality of operation gloves 544 are movably arranged at one side of the temperature control feeding box 541, an air outlet fan 545 is arranged at the top of the other side of the temperature control feeding box 541, a plurality of supporting rods 546 are arranged at the bottom of the temperature control feeding box 541, and a feeding pipe 547 is arranged at the end of the temperature control feeding box 541 away from the second assembly pipe 53, when in use, the temperature control feeding box 541 is provided with the second adjusting hole 542 and the assembly hole at one end, which is used for precise butt joint with the second assembly pipe 53, and a plurality of operation gloves 544 are arranged on the side wall, so that the operator can operate the animal in a closed environment to perform cesarean section collection, and the air outlet fan 545 is arranged at the top of the temperature control feeding box 541, forming an internal circulation airflow, ensuring that the internal air is constant temperature, and the feeding pipe 547 is arranged at the tail of the temperature control feeding box 541, facilitating the rapid delivery of nutrients or liquid medicine during and after the operation.

[0053] Working principle:

[0054] When the present application is used, the operator first disassembles the breeding isolation area 1, the operator enters the breeding isolation chamber 4, and drives the animals in the breeding isolation chamber 4 into the cesarean section operation assembly 5, at the same time, the air exchange fan 3 at the top of the breeding isolation area 1 exchanges air for the breeding isolation chamber 4, and a plurality of monitors 2 are installed at the top of the breeding isolation area 1 to monitor the state of the animals in real time, and the breeding isolation chamber 4 manages the animals to be operated separately from other animals, and the breeding isolation chamber 4 comprises a breeding isolation bin 41, which is provided with a breeding isolation assembly 42 at the top, and the breeding isolation assembly 42 is quickly assembled and spatially arranged through the sliding structure and the clamping groove 414, when the animals are arranged into the breeding bin, the breeding door 43 serves as an import and export passage and cooperates with the sliding block 4211 to ensure safe passage and structural stability.

[0055] Meanwhile, in order to realize the automatic management of animals before and after operation, the side of the feeding isolation bin 41 is equipped with a water pump 44 in communication with the water trough 418, to build an automatic water supply system, ensure the stability of water source and reduce the frequency of manual intervention, and the other side is provided with an electric push rod 45 and a cleaning plate 451, the electric push rod 45 drives the cleaning plate 451 to reciprocating push movement, pushes the excrement and waste in the feeding tank 416 into the exclusion tank 417, and then flows to the waste collection bin 46 below, to complete the centralized collection and storage of excrement, avoid environmental pollution and improve the cleaning efficiency, and the moving rod 421 is arranged at the top of the feeding isolation assembly 42, both ends of the moving rod 421 are embedded in the sliding groove 412 at the top of the feeding isolation wall 411 through the sliding block 4211, to realize the smooth sliding of the assembly, and a plurality of limiting plates 422 are arranged on one side of the moving rod 421, to delimit the animal activity area and be clamped with the insertion hole 415 on the isolation wall, to further improve the structural stability and the flexibility of module replacement, and a handle 4212 is arranged at the top of the moving rod 421 for manual pushing to adjust the position, and a rotating groove 4213 is arranged on one side of the handle 4212, and the limiting block 4214 arranged in the rotating groove 4213 changes the opening angle of the isolation assembly by rotating, to control the opening and closing state, and forms a hinged connection with the rotating hole 4215 and the rotating rod 4221, so that the limiting plate 422 has the functions of overturning, folding and adjusting, to adapt to different feeding requirements, and the assembling rod 423 is provided with a splicing rod 4231 and a splicing groove 4232 at both ends, which can be combined horizontally through the cooperation of threads and thread grooves, and the blocking hole 4233 is arranged in the middle of the assembling rod 423, which can also be used for vertical splicing, to realize the modular adjustment of the isolation assembly through multi-angle connection, to enhance the combination flexibility and space adaptation ability of the system.

[0056] After the preoperative isolation preparation is completed, the animal enters the surgical process through a cesarean section surgical assembly 5 connected to one side of a breeding isolation chamber 4. The animal first enters a sterilization bin 51 arranged at the front end of the assembly, and the sterilization bin 51 is closed by a sterilization door 513. An air inlet fan 514 and an ultraviolet lamp 515 are arranged inside to form a combination of air flow driving and sterilization. An air outlet hole 516 and an air outlet groove 517 are arranged at the bottom, and a negative pressure exhaust environment is formed by an exhaust fan 518 to realize rapid exhaust of contaminated air. The animal is restrained in position to avoid movement interference by a fixing belt 519 inside the sterilization bin 511, and a cesarean section operation is performed on the animal. A first adjusting hole 5110 and a plurality of first assembly holes 5111 are arranged at the middle of the first assembly tube 52 close to one end, and the first assembly tube 52 is accurately connected. The first assembly tube 52 is fixed at the end of the sterilization bin through a first mounting frame 521. A first moving tube 522 is arranged at the center and is inserted into the adjusting hole and is screwed with the assembly hole. A first electromagnetic valve 524 is arranged at the middle of the moving tube to realize automatic control of the passage gas. A first docking ring 525 is arranged at the end, and a connecting hole 526 and a sealing groove 527 are used to realize precise sealing connection with the second assembly tube 53. The front end of the second assembly tube 53 is provided with a second docking ring 531. The sealing pad 532 arranged in the ring is inserted into the sealing groove 527 to build an airtight interface. A plurality of second connecting holes 533 are arranged outside the ring body for mechanical fastening connection. A second moving tube 534 is arranged at the rear segment, and a second electromagnetic valve 535 is arranged at the middle to realize secondary control management of the flow. The tail end is a second assembly frame 536, which is connected with a temperature-controlled breeding bin 54 through a second mounting hole 537 to form the whole cesarean passage.

[0057] The pups after cesarean section are placed in a temperature-controlled breeding box 541. The temperature-controlled breeding box 541 is provided with a second adjusting hole 542 and a second assembly hole 543 at one end for sealing docking with the second assembly tube 53. An operating glove 544 is installed on the side to facilitate the operator to complete a sterile operation in a closed environment. A temperature-controlled breeding box 541 is provided with an air outlet fan 545 at the top to form a constant temperature circulating air system to ensure a constant temperature clean environment inside the box. The bottom is supported by a support rod 546 to maintain structural stability. A feeding pipe 547 is arranged at the distal end to facilitate postoperative nutrition supply or liquid injection.

[0058] Finally, it should be noted that the above is only a preferred embodiment of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent replacements to some technical features within the spirit and principles of the present application. Any modification, equivalent replacement, improvement, etc. made within the scope of the present application shall be included in the protection scope of the present application.

Claims

1. A cesarean section surgical chamber, characterized in that, It includes a breeding isolation area (1), a monitor (2) is installed at the bottom of the breeding isolation area (1), a ventilation fan (3) is installed at the top of the breeding isolation area (1), a feeding isolation room (4) is installed at the bottom of the breeding isolation area (1), and a cesarean section surgical assembly (5) is installed on one side of the feeding isolation room (4).

2. The cesarean section surgical chamber according to claim 1, characterized in that: The breeding isolation room (4) includes a breeding isolation chamber (41) set at the bottom of the breeding isolation area (1), a breeding isolation component (42) is set on the top of the breeding isolation chamber (41), and a breeding door (43) is set at one end of the breeding isolation chamber (41). A water pump (44) and an electric push rod (45) are provided on one side of the breeding isolation chamber (41), and a waste collection chamber (46) is provided on the other side of the breeding isolation chamber (41).

3. The cesarean section surgical chamber according to claim 2, characterized in that: The breeding isolation chamber (41) includes a breeding isolation wall (411) set at the bottom of the breeding isolation area (1). The top two ends of the breeding isolation wall (411) are provided with sliding grooves (412), and the sliding grooves (412) cooperate with the breeding isolation component (42). The top side of the breeding isolation component (42) is provided with several insertion holes (413), and the other side of the top of the breeding isolation component (42) is provided with a snap-fit ​​groove (414) and an insertion hole (415). The breeding isolation component (42) cooperates with the snap-fit ​​groove (414). The bottom of the feeding isolation wall (411) is provided with a feeding trough (416). The feeding isolation wall (411) has a discharge trough (417) on the bottom side near the insertion hole (413). The feeding trough (416) is connected to the waste collection bin (46) through the discharge trough (417). A drinking trough (418) is inserted at the bottom of one end of the feeding isolation wall (411). The drinking trough (418) is connected to the water pump (44). An inlet and outlet hole (419) is opened in the middle of the feeding isolation wall (411) near the cesarean section surgical component (5). The inlet and outlet hole (419) is connected to the cesarean section surgical component (5).

4. The cesarean section surgical chamber according to claim 3, characterized in that: The feeding isolation assembly (42) includes a movable rod (421) disposed on the top of the feeding isolation wall (411). Several limiting plates (422) are provided on the side of the movable rod (421) near the feeding trough (416). Several assembly rods (423) are movably disposed on the top of the movable rod (421), and the assembly rods (423) cooperate with the insertion holes (415). Sliding blocks (4211) are provided at both ends of the movable rod (421). Several handles (4212) are provided on the top of the movable rod (421). A rotating groove (4213) is opened on one side of the movable rod (4211). Several limiting blocks (4214) are provided inside the rotating groove (4213). Rotating holes (4215) are opened at both ends of the limiting blocks (4214). An assembly hole (4216) is provided on the side of the limiting blocks (4214) away from the movable rod (421).

5. A cesarean section surgical chamber according to claim 4, characterized in that: The top two ends of the limiting plate (422) are provided with rotating rods (4221), and the rotating rods (4221) cooperate with the rotating holes (4215). One side of the assembly rod (423) is provided with a splicing rod (4231), and the other side of the assembly rod (423) is provided with a splicing groove (4232), and the splicing rod (4231) cooperates with the splicing groove (4232). Several obstructions are provided in the middle of the assembly rod (423). Hole (4233), and the splicing rod (4231) cooperates with the blocking hole (4233). The splicing rod (4231) is provided with a thread on the outside. The splicing groove (4232) and the blocking hole (4233) are both provided with threaded grooves, and the thread and the threaded groove cooperate. The electric push rod (45) is provided with a cleaning plate (451) on the side near the feeding tank (416), and the cleaning plate (451) cooperates with the discharge tank (417).

6. A cesarean section surgical chamber according to claim 5, characterized in that: The cesarean section surgical assembly (5) includes a disinfection chamber (51) located on one side of the feeding isolation room (4). One end of the disinfection chamber (51) is provided with a first assembly tube (52). The end of the first assembly tube (52) away from the disinfection chamber (51) is provided with a second assembly tube (53). The end of the second assembly tube (53) away from the first assembly tube (52) is provided with a temperature-controlled feeding chamber (54). A fastening ring (55) is provided on the outside of the first assembly tube (52), and the fastening ring (55) is connected to the second assembly tube (53).

7. A cesarean section surgical chamber according to claim 6, characterized in that: The disinfection chamber (51) includes a disinfection box (511) located at one end of the first assembly tube (52). The bottom of the disinfection box (511) is provided with several placement rods (512). A disinfection door (513) is provided in the middle of one side of the disinfection box (511). An air intake fan (514) and an ultraviolet lamp (515) are provided on the side of the inside of the disinfection box (511) away from the disinfection door (513). The disinfection box (511) has several exhaust holes (516) at its inner bottom end. The disinfection box (511) has an exhaust groove (517) at its inner bottom, and the exhaust groove (517) cooperates with the exhaust holes (516). The disinfection box (511) has several exhaust fans (518) at one bottom side, and the exhaust fans (518) cooperate with the exhaust groove (517). The disinfection box (511) has several fixing straps (519) inside. The disinfection box (511) has a first adjustment hole (5110) at the middle of both ends. The first adjustment hole (5110) has several first assembly holes (5111) on the outer circumference of the first adjustment hole (5110).

8. A cesarean section surgical chamber according to claim 7, characterized in that: The first assembly tube (52) includes a first mounting frame (521) disposed at one end of the disinfection box (511). A first moving tube (522) is disposed in the middle of the first mounting frame (521), and the first moving tube (522) cooperates with the first adjusting hole (5110). A plurality of first mounting holes (523) are opened on one side of the first mounting frame (521), and the first mounting holes (523) cooperate with the first assembly hole (5111). A first solenoid valve (524) is disposed in the middle of the first moving tube (522). A first docking ring (525) is disposed at the end of the first moving tube (522) away from the first mounting frame (521). A plurality of first connecting holes (526) and a sealing groove (527) are disposed at one end of the first docking ring (525).

9. A cesarean section surgical chamber according to claim 8, characterized in that: The second assembly tube (53) includes a second docking ring (531) disposed at one end of the first docking ring (525). A sealing gasket (532) is disposed at one end of the second docking ring (531) near the first docking ring (525), and the sealing gasket (532) cooperates with the sealing groove (527). A plurality of second connecting holes (533) are disposed at one end of the second docking ring (531) and on the outer circumference of the sealing gasket (532). The second docking ring (531) is provided with a second moving tube (534) at one end away from the first docking ring (525), a second solenoid valve (535) is provided in the middle of the second moving tube (534), a second assembly frame (536) is provided at one end away from the second docking ring (531), and a plurality of second mounting holes (537) are provided at one end of the second assembly frame (536).

10. A cesarean section surgical chamber according to claim 9, characterized in that: The temperature-controlled feeding chamber (54) includes a temperature-controlled feeding box (541) disposed at one end of the second assembly tube (53). The temperature-controlled feeding box (541) has a second adjustment hole (542) at one end near the second assembly frame (536). A plurality of second assembly holes (543) are disposed on the outer circumference of the second adjustment hole (542), and the second assembly holes (543) cooperate with the second mounting holes (537). Several operating gloves (544) are movably installed on one side of the temperature-controlled feeding box (541), a blower (545) is installed on the top of the other side of the temperature-controlled feeding box (541), several support rods (546) are installed at the bottom of the temperature-controlled feeding box (541), and a feeding tube (547) is installed at the end of the temperature-controlled feeding box (541) away from the second assembly tube (53).