A breeding pig isolation device

By setting up a transferable isolation wall group and automatically laid rainproof cloth and side barrier cloth in the pigpen, the problem of bacterial infection after the introduction of new breeding pigs is solved, and the dual benefits of efficient isolation and site utilization are achieved.

CN116569845BActive Publication Date: 2025-06-24LINWU COUNTY CHUANGYAO AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202310522088.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-10
Publication Date
2025-06-24
Estimated Expiration
2043-05-10

AI Technical Summary

Technical Problem

In pig breeding, the introduction of new breeding pigs is likely to lead to bacterial infection between the original pig herd and the new breeding pigs. The existing isolation measures are not only inconvenient to operation, but also lead to a reduction in site utilization.

Method used

A breeding isolation device for breeding is designed. By setting up a transferable isolation wall group in the pigpen, it is automatically laid with rainproof cloth and side barrier cloth to form an independent isolation area to avoid bacterial infection and hide when not in use to save the site.

Benefits of technology

Effective isolation between breeding pigs and the original pig herds is achieved, bacterial infection is avoided, and the convenience of breeding operations is improved. The site is fully utilized when cropping is not fertilized, reducing breeding costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of breeding technology, and specifically to an isolation device for breeding breeding pigs, which includes a wall body and indoor side walls symmetrically arranged inside the wall body. Between a pair of indoor side walls, there is an isolation wall group that can be transferred between the inside and outside of the wall body. The isolation wall group includes a double-layer board wall that is clamped with an isolation opening, sleeves embedded at the inner corners of the board wall, several floor boards sleeved on the lower sleeves, and several support boards sleeved on the upper sleeves. By pushing the board wall as a whole to the outside of the wall body, during this process, the rainproof cloth and the side baffle cloth are both pulled out as the board wall moves outward, and are automatically laid along their respective predetermined surfaces, thereby closing the top surface and both side surfaces of the isolation wall group, so that the isolation wall group is independently separated to the outside of the wall body and separated from the piglets indoors for captive breeding, directly avoiding the mutual infection of germs, and it has operability.
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Description

Technical Field

[0001] The present invention relates to the technical field of breeding, and particularly to an isolation device for breeding breeding pigs. Background Art

[0002] In pig breeding, a phenomenon is often found: after introducing new breeds, the original pig groups constantly get sick, or the introduced breeding pigs constantly get sick, and even the new and old breeding pigs infect each other and all get sick.

[0003] Each pig group may be a relatively independent complex of pathogenic microorganisms, and the body immune levels or titers of protective antibodies of each pig group are also different; whenever we introduce a new population, it is possible to introduce a new pathogen complex, and once the pig group is in a stress state, diseases may occur. Therefore, when introducing a new population into a pigsty, isolation is required.

[0004] The existing solution is to specially build an isolation shed outside the pigsty to separate and breed the breeding pigs from the original piglets. Although this method is effective, considering the breeding methods of the breeders, it will be found that the breeders have to breed and clean the pigsty at both ends, and all breeding tools have to be transferred back and forth, resulting in inconvenience in breeding; in addition, the specially built isolation shed is in a long-term vacant state when not in use for breeding, resulting in a reduction in the utilization rate of the site, which is not conducive to saving breeding costs. Summary of the Invention

[0005] In order to overcome the defects in the prior art, the purpose of the present invention is to provide an isolation device for breeding breeding pigs to solve the problems raised in the above background art.

[0006] To achieve the above purpose, the present invention provides an isolation device for breeding breeding pigs, including a wall and indoor side walls symmetrically arranged inside the wall. Between a pair of the indoor side walls, there is an isolation wall group that can be transferred between the inside and outside of the wall. An isolation opening is provided in the lower half of the wall and between the pair of indoor side walls. When the isolation wall group is located inside the wall, it is in a retracted state, and when the isolation wall group is located outside the wall, it is in an unfolded state. When in the unfolded state, a rainproof cloth and side baffle cloth are automatically laid on the top surface and both sides of the isolation wall group respectively.

[0007] The isolation wall group includes a double-layer board wall that is clamped with the isolation opening, sleeves embedded at the inner corners of the board wall, a plurality of floorboards sleeved on the lower sleeves, and a plurality of support plates sleeved on the upper sleeves. A door wall is provided at the outer ends of a plurality of the sleeves. A rotating plate is rotatably connected to the middle of the board wall, and a sealing plate is rotatably connected to the upper end of the rotating plate. After the rotating plate and the sealing plate are flattened, they are clamped and matched with two rows of a plurality of floorboards.

[0008] One side of the rain shield is adhered to the top surface of the panel wall, and a winding shaft is adhered to the other side of the rain shield. The winding shaft is embedded in the outer wall of the wall, and suspension springs are hung above both ends thereof. The upper ends of the suspension springs are embedded at the top of the outer wall of the wall.

[0009] One side of the side baffle is adhered to the inner side of the isolation opening, and the other side thereof is arranged inside the side end of the panel wall. An activity rod that can slide towards the side end of the panel wall is vertically arranged inside the panel wall. The activity rod is located inside the side baffle and a pair of elastic rods are arranged towards the side surface of the panel wall.

[0010] As a further improvement of this technical solution, a guide shaft perpendicular to the wall is suspended inside the top of the indoor side wall. The sleeve is sleeved with the guide shaft and can slide.

[0011] As a further improvement of this technical solution, a number of annular grooves are equidistantly arranged on the outer side of the sleeve. One ends of the floor and the support plate are both welded with collar rings, and the collar rings are sleeved with the annular grooves and can rotate.

[0012] As a further improvement of this technical solution, when the support plate rotates to the horizontal or vertical position, the collar rings at its ends can be fixedly connected with the annular grooves through bolts. Ribs are symmetrically arranged on the lower surface of the floor. The support plate is in clamping fit with the pair of ribs.

[0013] As a further improvement of this technical solution, a bayonet is arranged in the middle of the panel wall. The bayonet penetrates the bottom surface of the panel wall. The integral of the rotating plate and the sealing plate in the closed state is in clamping fit with the bayonet.

[0014] As a further improvement of this technical solution, locking blocks are welded towards the inside at the tops of the panel wall and the door wall. The locking blocks are of a T-shaped structure. A pair of pins are rotatably connected inside the wall and above the isolation opening. The pair of pins are respectively in clamping fit with both sides of the locking blocks.

[0015] As a further improvement of this technical solution, a wall groove is arranged on the outer wall of the wall and above the isolation opening. The wall groove extends to the top of the wall. A strip-shaped groove into which the end of the winding shaft is inserted is arranged on the inner side wall of the wall groove. The suspension spring is of a spiral structure with a large upper end and a small lower end. The upper end of the suspension spring is adhered to the top surface of the wall groove. A circular ring sleeved with the winding shaft is welded to the lower end of the suspension spring.

[0016] As a further improvement of this technical solution, a gear is closely sleeved on the end of the winding shaft. Rack teeth meshing with the gear are fixedly connected to both sides of the front of the wall groove through bolts. A guide plate is clamped at the outer port of the wall groove. The bottom surface of the guide plate is higher than the bottom surface of the wall groove.

[0017] As a further improvement of the technical solution, a groove is provided inside the isolation opening for bonding with the outer extension end of the side baffle cloth, sliding grooves for inserting the upper and lower ends of the movable rod are provided on the upper and lower surfaces of the plate wall, and a slot for inserting the side baffle cloth is provided at the side end of the plate wall.

[0018] As a further improvement of the technical solution, a fixing rod is bonded to one end of the side baffle cloth disposed inside the plate wall. The fixing rod is vertically embedded between the upper and lower surfaces of the plate wall and is close to the side end of the plate wall. The elastic rod is made of spring steel and is in a V-shaped rod shape, and the corner thereof is rounded. The rounded corners of a pair of elastic rods are welded. Arc-shaped openings are provided at the upper and lower ends of one of the elastic rods and the arc-shaped openings abut against the side surface of the movable rod and slide, and the upper and lower ends of the other elastic rod abut against the inner wall of the side end of the plate wall and slide.

[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0020] 1. For this kind of breeding pig isolation device, through the isolation wall group arranged in one or more pig pens of the original pigsty, the plate wall is integrally pushed out to the outside of the wall. During this process, the rainproof cloth and the side baffle cloth are both pulled out as the plate wall moves outward and are automatically laid along their respective predetermined surfaces, thereby closing the top surface and both side surfaces of the isolation wall group; several floor boards are turned over flat to the ground outside the wall to provide a rest table for the breeding pigs and avoid being invaded by external moisture; thus, the isolation wall group is integrally separated to the outside of the wall and separated from the piglets indoors for captive breeding, directly avoiding the mutual infection of germs, and it has operability.

[0021] 2. For this kind of breeding pig isolation device, through the arranged isolation wall group, during the period when breeding is not required, the isolation wall group is integrally pushed back between a pair of indoor side walls, and the floor board is erected and clamped with the support plate and leaned against the indoor side wall, so that they can be hidden and do not occupy space when not in use, so as to use the isolation wall group placed indoors as the original piglet captive breeding site, thereby making full use of the site and not requiring a separate site to be vacant during the period when breeding is not required.

[0022] 3. For this kind of breeding pig isolation device, by using the support plates at both ends of the sleeve to turn up and support the rainproof cloth, and using the support plate at the middle part of the sleeve to turn to a vertical state and bond with the side baffle cloth through Velcro, the wind resistance of the side baffle cloth is enhanced. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The drawings described herein are only for the purpose of explanation and are not intended to limit the scope of the disclosure of the present invention in any way. In addition, the shapes and proportional dimensions of the components in the drawings are only schematic and are used to help understand the present invention, and do not specifically limit the shapes and proportional dimensions of the components of the present invention. Those skilled in the art can choose various possible shapes and proportional dimensions according to specific situations to implement the present invention under the teaching of the present invention.

[0024] Figure 1 Schematic diagram of the overall initial state of the present invention;

[0025] Figure 2 One of the schematic diagrams of the overall isolated state of the present invention;

[0026] Figure 3 Another schematic diagram of the overall isolated state of the present invention;

[0027] Figure 4 Schematic diagram of the wall structure of the present invention;

[0028] Figure 5 Schematic diagram of the external unfolded state of the isolation wall group of the present invention;

[0029] Figure 6 Schematic diagram of the internal unfolded state of the isolation wall group of the present invention;

[0030] Figure 7 Schematic diagram of the partial assembly structure of the isolation wall group of the present invention;

[0031] Figure 8 Schematic diagram of the combined state of several floors and rotating plates of the present invention;

[0032] Figure 9 Schematic diagram of the state where the rotating plates are closed and split of the present invention;

[0033] Figure 10 Split view of one end of the winding shaft of the present invention;

[0034] Figure 11 Schematic diagram of the state where the side baffle is pulled out of the present invention;

[0035] Figure 12 Schematic diagram of the state where a pair of elastic rods are squeezed of the present invention;

[0036] Figure 13 Schematic diagram of the state where the side baffle is retracted of the present invention;

[0037] Figure 14 Schematic diagram of the initial state of a pair of elastic rods of the present invention.

[0038] The meanings of each label in the figure are as follows:

[0039] 100, wall; 101, isolation opening; 102, wall groove; 103, grooved belt; 110, indoor side wall; 120, guide shaft; 130, snap pin;

[0040] 200, isolation wall group; 210, panel wall; 211, bayonet; 212, sliding groove; 213, through groove; 214, lock block;

[0041] 220. Sleeve; 221. Ring groove; 230. Floor; 240. Support plate; 250. Door wall; 260. Rotating plate; 261. Sealing plate; 262. Connecting rod;

[0042] 300. Rainproof cloth; 310. Reel; 311. Gear; 320. Suspension spring; 330. Rack; 340. Guide plate;

[0043] 400. Side baffle cloth; 410. Fixed rod; 420. Movable rod; 430. Elastic rod. Detailed implementation manners

[0044] Combined with the description of the drawings and the specific implementation manners of the present invention, the details of the present invention can be more clearly understood. However, the specific implementation manners of the present invention described herein are only for the purpose of explaining the present invention and cannot be construed in any way as a limitation of the present invention. Under the teaching of the present invention, those skilled in the art can conceive any possible variations based on the present invention, and these should all be regarded as belonging to the scope of the present invention. The terms "installation" and "connection" should be understood in a broad sense, which can be directly connected or indirectly connected through an intermediate medium.

[0045] The terms "central axis", "vertical", "horizontal", "front", "rear", "upper", "lower", "left", "right", "top", "bottom", "inner", "outer", etc. used herein indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation of the present invention. In addition, in the description of the present invention, the meaning of "several" is two or more, unless otherwise clearly and specifically defined.

[0046] Please refer to Figures 1 - 14 As shown, the present invention provides a breeding isolation device for breeding pigs, including a wall body 100 and indoor side walls 110 symmetrically arranged inside it; the indoor side walls 110 are arranged side by side as long as the wall body 100 extends, so as to enclose and raise pigs; an isolation wall group 200 that can be transferred between the inner and outer sides of the wall body 100 is arranged between a pair of indoor side walls 110, and an isolation opening 101 is opened in the lower half of the wall body 100 and between a pair of indoor side walls 110, and the isolation opening 101 communicates with the outside.

[0047] When the isolation wall group 200 is located inside the wall body 100, it is in a retracted state, and at this time it can be used to breed the original pigs.

[0048] When the isolation wall group 200 is located outside the wall body 100, it is in an unfolded state, and at this time it is used to breed the introduced breeding pigs, so that the breeding pigs are led to the outside and isolated from the original pigs in the pigsty, avoiding the spread of germs and preventing piglets from getting sick.

[0049] In addition, a rainproof cloth 300 and side rainproof cloths 400 are automatically laid on the top surface and both sides of the isolation wall group 200 in the unfolded state respectively, which are used to seal the isolation wall group 200 placed outside the wall 100, so that the breeding pigs inside can be protected from cold, rain and sun. Windows can be opened in the designated areas on the top surface of the rainproof cloth 300, and then bonded and closed with sewing magic tapes, which is beneficial for the breeding pigs to bask in the sun and breathe fresh air.

[0050] Furthermore, the isolation wall group 200 includes a double-layer board wall 210 clamped with the isolation opening 101, sleeves 220 embedded at the inner corners of the board wall 210, a number of floorboards 230 sleeved on the lower sleeves 220, and a number of support plates 240 sleeved on the upper sleeves 220. The floorboards 230 are turned down flat to the ground outside the wall 100 to provide a rest surface for the breeding pigs and avoid being invaded by external moisture. The support plates 240 at both ends of the sleeves 220 are turned up to support the rainproof cloth 300, and the support plates 240 in the middle of the sleeves 220 are turned to the vertical state and adhered to the side rainproof cloths 400 through magic tapes, thereby enhancing the wind resistance of the side rainproof cloths 400.

[0051] A door wall 250 is arranged at the outer ends of a number of sleeves 220, and a door panel is hinged to one side of the door wall 250. A rotating plate 260 is rotatably connected to the middle of the board wall 210, and a sealing plate 261 is rotatably connected to the upper end of the rotating plate 260. After the rotating plate 260 and the sealing plate 261 are flattened, they are clamped and matched with two rows of a number of floorboards 230. When the board wall 210 is too long, the rotating plate 260 and the sealing plate 261 can make up for the gap between a pair of floorboards 230 turned to the horizontal state, so that the breeding pigs can move on it. Among them, ribs are welded to the lower surfaces of the floorboards 230, the rotating plate 260 and the sealing plate 261 to form a supporting and strengthening effect for weighing.

[0052] Furthermore, stainless steel sheets are wrapped and welded on the exteriors of the board wall 210, the floorboards 230, the support plates 240, the door wall 250, the rotating plate 260 and the sealing plate 261 to enhance the overall strength, avoid rusting and facilitate flushing and cleaning.

[0053] In addition, a guide shaft 120 perpendicular to the wall 100 is suspended inside the top of the indoor side wall 110. One end of the guide shaft 120 away from the wall 100 is tightly inserted into the vertical wall surface of the indoor side wall 110. The sleeve 220 is sleeved with the guide shaft 120 and can slide, so that the whole board wall 210 and the door wall 250 can move along the guide shaft 120.

[0054] Specifically, a number of annular grooves 221 are equally spaced on the outer side of the sleeve 220. One end of each of the floorboards 230 and the support plates 240 is welded with a sleeve ring, and the sleeve ring is sleeved with the annular groove 221 and can rotate. The upper and lower floorboards 230 and support plates 240 are arranged in one-to-one correspondence.

[0055] When the pallet 240 rotates to the horizontal or vertical position, the collar at its end can be fixedly connected to the annular groove 221 through bolts, so that the pallet 240 maintains a stable supporting function; the lower surface of the floor 230 is symmetrically provided with ribs, and the pallet 240 is snap-fitted with a pair of ribs, so that when the floor 230 is erected upward, it can be restricted by the pallet 240 and lean against the indoor side wall 110 to avoid occupying space.

[0056] Furthermore, a bayonet 211 is formed in the middle of the panel wall 210. The bayonet 211 penetrates through the bottom surface of the panel wall 210. The rotating plate 260 and the sealing plate 261 in the closed state are integrally snap-fitted with the bayonet 211, so that they can be hidden and do not occupy space when not in use, so that the isolation wall group 200 can be used as the original piglet penning area, thus making full use of the site;

[0057] The bottom end of the rotating plate 260 is rotatably connected to the bayonet 211 through a pin, as Figure 9 shown, a connecting rod 262 is hinged between the top ends of the rotating plate 260 and the sealing plate 261, so that the rotating plate 260 and the sealing plate 261 can not only be folded and closed but also be unfolded and aligned and engaged.

[0058] It should be noted that locking blocks 214 are welded to the inner sides of the tops of the panel wall 210 and the door wall 250. The locking blocks 214 are of a T-shaped structure. A pair of latch pins 130 are rotatably connected to the inner side of the wall body 100 and above the isolation opening 101. The pair of latch pins 130 are respectively snap-fitted with both sides of the locking block 214, so that the isolation wall group 200 can be limited and stably form a penning space whether it is inside or outside the wall body 100.

[0059] Specifically, one side of the rainproof cloth 300 is bonded to the top surface of the panel wall 210. The other side of the rainproof cloth 300 is bonded with a winding shaft 310. The winding shaft 310 is embedded in the outer wall of the wall body 100, and suspension springs 320 are hung above both ends thereof. The upper ends of the suspension springs 320 are embedded at the top of the outer wall of the wall body 100;

[0060] A wall groove 102 is formed in the outer wall of the wall body 100 and above the isolation opening 101. The wall groove 102 extends to the top of the wall body 100. A strip-shaped groove for inserting the end of the winding shaft 310 is formed in the inner side wall of the wall groove 102. The suspension spring 320 is of a spiral structure with a large upper end and a small lower end. The upper end of the suspension spring 320 is bonded to the top surface of the wall groove 102. The lower end of the suspension spring 320 is welded with a ring sleeved on the winding shaft 310, so that the suspension spring 320 generates a relatively long return force on the winding shaft 310;

[0061] When the panel wall 210 is moved outward from the wall body 100, the rainproof cloth 300 is driven to move out of the wall groove 102 and automatically cover between the panel wall 210 and the door wall 250;

[0062] Furthermore, a gear 311 is tightly sleeved on the end of the take-up reel 310. On both sides of the front surface of the wall groove 102, racks 330 meshing with the gear 311 are fixedly connected by bolts. A guide plate 340 is clamped at the outer port of the wall groove 102, and the bottom surface of the guide plate 340 is higher than the bottom surface of the wall groove 102.

[0063] When moving the panel wall 210 into the wall body 100, the resilience of the suspension spring 320 is used to lift the take-up reel 310 upwards to retract the rain shield 300 and hide it inside the outer wall of the wall body 100. During this process, the gear 311 meshes with the rack 330, causing the take-up reel 310 to rotate and wind up the rain shield 300.

[0064] It should be noted that one side of the side rain shield 400 is adhered to the inner side of the isolation opening 101. A belt groove 103 adhered to the outer extending end of the side rain shield 400 is opened on the inner side of the isolation opening 101. The other side of the side rain shield 400 is arranged inside the side end of the panel wall 210. An activity rod 420 that can slide towards the side end of the panel wall 210 is vertically arranged inside the panel wall 210. The activity rod 420 is located inside the side rain shield 400 and a pair of elastic rods 430 are arranged towards the side surface of the panel wall 210.

[0065] The upper and lower surfaces of the panel wall 210 are sealed. Chute grooves 212 inserted with the upper and lower ends of the activity rod 420 are opened on the upper and lower surfaces of the panel wall 210, enabling the activity rod 420 to slide in a defined direction. A through groove 213 inserted with the side rain shield 400 is opened at the side end of the panel wall 210 for the side rain shield 400 to pass through. At the same time, rollers are vertically embedded at the port of the through groove 213 for guiding the smooth turning movement of the side rain shield 400, which is beneficial to protecting the side rain shield 400 from abrasion.

[0066] Specifically, a fixing rod 410 is adhered to one end of the side rain shield 400 placed inside the panel wall 210. The fixing rod 410 is vertically embedded between the upper and lower surfaces of the panel wall 210 and is close to the side end of the panel wall 210. The elastic rod 430 is made of spring steel and is in a V-shaped rod shape, and its corner is rounded. The rounded corners of the pair of elastic rods 430 are welded. Arc openings are opened at the upper and lower ends of one of the elastic rods 430 and the arc openings abut against the side surface of the activity rod 420 to slide, and the upper and lower ends of the other elastic rod 430 abut against the inner wall of the side end of the panel wall 210 to slide. Since the side rain shield 400 limits both sides of the elastic rod 430, the elastic rod 430 can always abut between the activity rod 420 and the inner wall of the side end of the panel wall 210.

[0067] As Figure 14 , the pair of elastic rods 430 are used to push the activity rod 420 away from the fixing rod 410 in the natural state. Then, when the panel wall 210 moves back, it drives the side rain shield 400 to hide inside the panel wall 210. When the panel wall 210 moves towards the outside of the wall body 100, it automatically pulls the side rain shield 400 out of the panel wall 210, causing the activity rod 420 to slide to the position of the fixing rod 410 and simultaneously squeezing the pair of elastic rods 430 to form Figure 12Status.

[0068] When the breeding pig isolation device of the present invention is in isolation, the limit on the plate wall 210 is released by the upper rotating pin 130, and then the plate wall 210 is integrally pushed to the outside of the wall body 100 until the door wall 250 is placed at the isolation opening 101, and then the lower rotating pin 130 catches the lock block 214 on the door wall 250;

[0069] During this process, the rainproof cloth 300 and the side baffle cloth 400 are both pulled out as the plate wall 210 moves outward, and are automatically laid along their respective predetermined surfaces, thereby closing the top surface and both side surfaces of the isolation wall group 200; several floor boards 230 are turned downward to the ground outside the wall body 100 to provide a rest table surface for the breeding pigs to avoid being invaded by external moisture; the rainproof cloth 300 is supported by turning up the support plates 240 at both ends of the sleeve 220, and the support plates 240 at the middle part of the sleeve 220 are turned to the vertical state and adhered to the side baffle cloth 400 through Velcro, thereby enhancing the wind resistance of the side baffle cloth 400;

[0070] That is to say, the isolation wall group 200 is integrally separated to the outside of the wall body 100 and separated from the piglets indoors for captive breeding, directly avoiding the mutual infection of germs;

[0071] In addition, during the period when breeding is not required, the isolation wall group 200 is integrally pushed back between a pair of indoor side walls 110, and the floor 230 is erected and clamped with the support plate 240 and leaned against the indoor side wall 110, so that they can be hidden and do not occupy space when not in use, so as to use the isolation wall group 200 placed indoors as the original piglet captive breeding site, thus making full use of the site and not requiring a separate site to be vacant during the period when breeding is not required.

[0072] It should be noted that the above embodiments are only for explaining the technical concept and characteristics of the present invention, and the purpose is to enable those familiar with this technology to understand the content of the present invention and implement it accordingly, and cannot be used to limit the protection scope of the present invention. Any equivalent changes or modifications made according to the spirit and essence of the present invention should be covered within the protection scope of the present invention.

Claims

1. A breeding pig isolation device, comprising a wall body (100) and indoor side walls (110) symmetrically arranged on the inner side thereof, characterized in that: A partition wall group (200) that can be transferred between the inner and outer sides of the wall body (100) is provided between a pair of the indoor side walls (110). An isolation opening (101) is formed in the lower half of the wall body (100) and between a pair of indoor side walls (110). When the partition wall group (200) is located inside the wall body (100), it is in a closed state. When the partition wall group (200) is located outside the wall body (100), it is in an unfolded state. A rainproof cloth (300) and side baffle cloth (400) are automatically laid on the top surface and both sides of the partition wall group (200) in the unfolded state respectively; The partition wall group (200) includes a double-layered plate wall (210) that is clamped with the isolation opening (101), sleeves (220) embedded at the four corners of the inner side surface of the plate wall (210), a plurality of floor boards (230) sleeved on the lower sleeves (220), and a plurality of support plates (240) sleeved on the upper sleeves (220). A door wall (250) is provided at the outer ends of the plurality of sleeves (220). A rotating plate (260) is rotatably connected to the middle of the plate wall (210). The upper end of the rotating plate (260) is rotatably connected to a sealing plate (261). After the rotating plate (260) and the sealing plate (261) are flattened, they are clamped and matched with two rows of a plurality of floor boards (230); One side of the rainproof cloth (300) is bonded to the top surface of the plate wall (210). A winding shaft (310) is bonded to the other side of the rainproof cloth (300). The winding shaft (310) is embedded in the outer wall of the wall body (100), and suspension springs (320) are hung above both ends thereof. The upper ends of the suspension springs (320) are embedded at the top of the outer wall of the wall body (100); One side of the side baffle cloth (400) is bonded to the inner side of the isolation opening (101), and the other side is arranged inside the side end of the plate wall (210). An activity rod (420) that can slide towards the side end of the plate wall (210) is vertically arranged inside the plate wall (210). A pair of elastic rods (430) are arranged on the activity rod (420) facing the side surface of the plate wall (210) and inside the side baffle cloth (400).

2. The breeding pig isolation device according to claim 1, wherein: A guide shaft (120) perpendicular to the wall body (100) is suspended inside the top of the indoor side wall (110). The sleeve (220) is sleeved with the guide shaft (120) and can slide.

3. The breeding sow isolation device according to claim 1, wherein: A plurality of annular grooves (221) are equidistantly formed on the outer side of the sleeve (220). A sleeve ring is welded to one end of each of the floor board (230) and the support plate (240), and the sleeve ring is sleeved with the annular groove (221) and can rotate.

4. The breeding pig isolation device according to claim 3, wherein: When the support plate (240) is rotated to be horizontal or vertical, the sleeve rings at its ends can be fixedly connected to the annular groove (221) by bolts. Ribs are symmetrically arranged on the downward-facing surface of the floor board (230). The support plate (240) is clamped and matched with a pair of ribs.

5. The breeding sow isolation device according to claim 4, characterized in that: A bayonet (211) is formed in the middle of the plate wall (210). The bayonet (211) penetrates through the bottom surface of the plate wall (210). The whole of the rotating plate (260) and the sealing plate (261) in the closed state is clamped and matched with the bayonet (211).

6. The breeding pig isolation device according to claim 5, characterized in that: At the top of the said panel wall (210) and door wall (250), locking blocks (214) are welded inward. The locking blocks (214) are of T-shaped structure. Inside the wall body (100) and above the isolation opening (101), a pair of latch pins (130) are rotatably connected. The pair of latch pins (130) are respectively in clamping fit with both sides of the locking blocks (214).

7. The breeding pig breeding isolation device according to claim 1, characterized in that: On the outer wall of the wall body (100) and above the isolation opening (101), a wall groove (102) is opened. The wall groove (102) extends to the top of the wall body (100). On the inner side wall of the wall groove (102), a strip-shaped groove for inserting the end of the winding shaft (310) is opened. The suspension spring (320) is of a spiral structure with a larger upper end and a smaller lower end. The upper end of the suspension spring (320) is bonded to the top surface of the wall groove (102), and the lower end of the suspension spring (320) is welded with a ring sleeved on the winding shaft (310).

8. The breeding pig breeding isolation device according to claim 7, characterized in that: At the end of the winding shaft (310), a gear (311) is tightly sleeved. On both sides of the front of the wall groove (102), racks (330) meshing with the gear (311) are fixedly connected by bolts. A guide plate (340) is clamped at the outer port of the wall groove (102), and the bottom surface of the guide plate (340) is higher than the bottom surface of the wall groove (102).

9. The breeding sow isolation device according to claim 1, characterized in that: Inside the isolation opening (101), a belt groove (103) for bonding the outer extension end of the side baffle cloth (400) is opened. On the upper and lower surfaces of the panel wall (210), sliding grooves (212) for inserting the upper and lower ends of the movable rod (420) are opened. On the side end of the panel wall (210), a through groove (213) for inserting the side baffle cloth (400) is opened.

10. The breeding sow isolation device according to claim 1, characterized in that: At one end of the side baffle cloth (400) placed inside the panel wall (210), a fixing rod (410) is bonded. The fixing rod (410) is vertically embedded between the upper and lower surfaces of the panel wall (210) and near the side end of the panel wall (210). The elastic rod (430) is made of spring steel and is in a V-shaped rod shape with a rounded corner at its corner. The rounded corners of the pair of elastic rods (430) are welded. Arc openings are opened at the upper and lower ends of one of the elastic rods (430), and the arc openings are in sliding contact with the side surface of the movable rod (420). The upper and lower ends of the other elastic rod (430) are in contact with the inner side wall of the side end of the panel wall (210) and slide.

Citation Information

Patent Citations

  • Pigsty separating device for sick pigs

    CN211020449U

  • Isolation device for healthy pig farm

    CN213214743U