Movable epidemic prevention injection fence
By using lightweight fence frames and flexible barriers, combined with rotatable supports and display areas, the problems of bulky and unclear signage of existing metal fences have been solved, achieving improved portability and promotional effectiveness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2026-03-06
AI Technical Summary
The metal fences currently used in aquaculture are heavy, difficult to move, and the signs are weathered and fall off, with low visibility and limited effectiveness in warning or disease prevention publicity.
The fence frame is made of a material with a density less than that of metal, and is equipped with flexible fencing and detachable support. The fencing has a display area for labeling, and the support can rotate to adapt to different conditions.
The weight and carrying difficulty of the fence have been reduced, the visibility of the signs and the effectiveness of epidemic prevention publicity have been improved, and the portability and storage convenience have been enhanced.
Smart Images

Figure CN223969182U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of aquaculture technology, and in particular to a mobile vaccination pen. Background Technology
[0002] Animal diseases in livestock farming not only lead to a decline in the price of livestock products, but also pose a potential threat to human health. Therefore, animal disease prevention is an extremely important task. Disease prevention can eliminate animal diseases, maintain public health and safety, and ensure the health of the public.
[0003] The main means of livestock disease prevention are injection and oral administration of vaccines and drugs, as well as wearing disease-traceable ear tags. Given that livestock farming in the livestock industry is mostly free-range or large-scale, disease prevention and control facilities such as fences or enclosures are needed to temporarily restrain a small number of livestock, so that the operation can be carried out in a smaller and relatively closed space.
[0004] However, most existing fences or railings are made of metal, and the signs are formed by painting. Not only are the fences heavy and bulky and difficult to move, but the signs are also prone to weathering or detachment and become less visible. Furthermore, the reuse rate is low, and the effect of warning or epidemic prevention publicity is limited. Utility Model Content
[0005] This application provides a mobile injection and disease prevention fence to solve the problems in the existing aquaculture industry where the fences are made of metal and the markings are formed by painting. Not only are the fences heavy and bulky and difficult to move, but the markings also weather and fall off and have low visibility, thus limiting their effectiveness in warning or disease prevention publicity.
[0006] To address the aforementioned technical problems, this application provides the following technical solutions:
[0007] The first aspect of this application provides a mobile vaccination injection station, which includes...
[0008] At least one fence frame, wherein a movable connecting portion is provided on a first and / or second side frame extending along the height direction for detachably connecting adjacent fence frames so that adjacent fence frames can rotate relative to each other; the density of the fence frame is less than the density of metal;
[0009] At least one fence, which corresponds one-to-one with the fence frame and is detachably installed on the fence frame to form a shielding surface between the first frame and the second frame; the fence is flexible; at least a first display area and a second display area are provided on the first surface of the fence, the first display area and the second display area are placed inside the shielding surface, and the first display area and the second display area are used to display the first graphic and the second graphic respectively;
[0010] At least one support portion is provided, which is rotatably disposed at the bottom of the fence frame in a one-to-one correspondence with the fence frame, so that the support portion has a first state and a second state; when the support portion is in the first state, the support portion is parallel to the shielding surface, and when the support portion is in the second state, the support portion and the shielding surface form a specified angle.
[0011] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination bar, wherein the first frame and the second frame are retractable rods.
[0012] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination fence is provided in which a first receiving sleeve and a second receiving sleeve are formed on at least a first side and a second side opposite to each other on the fence, and the first receiving sleeve and the second receiving sleeve are respectively adapted to fit and connect with the first frame and the second frame.
[0013] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination bar is provided with a first adhesive area on the second surface of the bar.
[0014] The first side and the second side are respectively provided with a second adhesive area that is adapted to the first adhesive area, for movably adhesively bonding the first adhesive area;
[0015] The second surface is opposite to the first surface.
[0016] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination station is provided with a third adhesive area in the first display area and / or the second display area for movably adhesiveing display pieces having the first graphic and / or the second graphic.
[0017] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination station includes a support component and a leg;
[0018] The first end of the connecting component is detachably connected to the third frame at the bottom of the fence frame, and the second end of the connecting component is rotatably connected to the support leg;
[0019] When the support is in the first state, the orthographic projection of the fence frame along its height direction at least completely covers the orthographic projection of the support leg along the height direction of the fence frame.
[0020] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination station includes a connecting component comprising a connecting tube, an intermediate insert, and a limiting member.
[0021] The connecting tube has openings at both ends, which are parallel to the third frame and can be movably inserted into the middle of the third frame.
[0022] The intermediate post extends from the connecting pipe along the height direction of the fence frame towards the fourth side of the fence frame, and the end of the intermediate post away from the third side is rotatably connected to the support leg.
[0023] The middle insert is provided with a first limiting member and a second limiting member in its radial direction at one end facing the support leg, and the radial direction of the first limiting member and the radial direction of the second limiting member satisfy the perpendicular condition.
[0024] The fourth border is parallel to and opposite to the third border.
[0025] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination bar includes a third frame, a fourth frame, a first crossbar, and a second crossbar.
[0026] The third and fourth borders are respectively located at both ends of the fence frame in the height direction. Both ends of the third and fourth borders can be detachably connected to the first and second borders to form a quadrilateral fence frame.
[0027] The first crossbar and the second crossbar are arranged parallel to the third frame and spaced apart along the height direction of the fence frame between the third frame and the fourth frame;
[0028] The third and fourth sides of the fence along the height direction of the fence frame are detachably connected to the first and second horizontal bars, respectively.
[0029] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination bar is wherein the distance between the fourth side of the fence facing the ground and the ground is at most 20cm.
[0030] The dimensions of the enclosure along the height of the fence frame are at least 100 cm.
[0031] In some modified embodiments of the first aspect of this application, the aforementioned mobile vaccination booth further includes a plurality of the fence frames, which are sequentially rotatably connected.
[0032] Adjacent fence frames can rotate relative to each other to form a circular enclosed space; or
[0033] Adjacent fence frames can rotate relative to each other so that the multiple fence frames and the target building form a ring-shaped enclosed space.
[0034] Compared to existing technologies, the mobile vaccination pen provided in this embodiment uses a material with a density lower than that of metal to make the fence frame, effectively reducing the overall weight of the vaccination pen. A detachable flexible barrier is installed corresponding to the fence frame, further reducing the overall weight and improving portability during movement. The barrier features a first and second display area for relevant graphics and text, enhancing the labeling effect. A rotatable support unit provides stable support when the vaccination pen is in operation and reduces space occupation when stored, improving the ease of storage. This effectively solves the problems in existing aquaculture systems where fences are made of metal and labels are applied with paint, resulting in bulky and difficult-to-move fences, labels that weather and peel off, low visibility, and limited effectiveness for warning or epidemic prevention publicity. Attached Figure Description
[0035] The above and other objects, features, and advantages of exemplary embodiments of this application will become readily understood by reading the following detailed description with reference to the accompanying drawings. In the drawings, several embodiments of this application are illustrated by way of example and not limitation, with the same or corresponding reference numerals denoteing the same or corresponding parts, wherein:
[0036] Figure 1 A schematic diagram of the structure of the mobile vaccination station provided in this embodiment is shown.
[0037] Figure 2 A schematic rear view of the mobile vaccination station provided in this embodiment is shown.
[0038] Figure 3 A second rear view of the mobile vaccination station provided in this embodiment is schematically shown;
[0039] Figure 4 A schematic diagram of the second structure of the mobile vaccination station provided in this embodiment is shown.
[0040] Figure 5 The diagram illustrates the usage status of the mobile vaccination station provided in this embodiment.
[0041] Figure 6 A schematic diagram of the second structure of the mobile vaccination station provided in this embodiment is shown.
[0042] Figure 7 A schematic diagram of a third structure of the mobile vaccination station provided in this embodiment is shown.
[0043] The following are the reference numerals: 1. Fence frame; 11. First frame; 12. Second frame; 13. Connecting part; 14. Third frame; 15. Fourth frame; 16. Bend; 17. First tube body; 18. Second tube body; 2. Enclosure; 21. First display area; 22. Second display area; 23. First bonding area; 3. Support part; 31. Leg; 32. Connecting tube; 33. Middle post; 4. First crossbar; 5. Second crossbar. Detailed Implementation
[0044] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
[0045] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application shall have the ordinary meaning as understood by one of ordinary skill in the art to which this application pertains.
[0046] The technical solution of this application embodiment is to solve the above-mentioned technical problems, and the general idea is as follows:
[0047] Example 1
[0048] Reference Appendix Figure 1 The mobile injection quarantine barrier provided in this application includes at least one fence frame 1, at least one enclosure 2, and at least one support 3. The fence frame 1 has a movable connecting part 13 on a first side frame 11 and / or a second side frame 12 extending along the height direction, for detachably connecting adjacent fence frames 1, so that adjacent fence frames 1 can rotate relative to each other. The density of the fence frame 1 is less than the density of metal. The enclosure 2 corresponds one-to-one with the fence frame 1 and is detachably disposed on the fence frame 1 to form a shielding surface between the first side frame 11 and the second side frame 12. The enclosure 2 is flexible. At least the enclosure 2... The first surface is provided with a first display area 21 and a second display area 22, which are placed within the shielding surface. The first display area 21 and the second display area 22 are used to display the first graphic and the second graphic respectively. The support part 3 is rotatably disposed at the bottom of the fence frame 1 in a one-to-one correspondence with the fence frame 1, so that the support part 3 has a first state and a second state. When the support part 3 is in the first state, the support part 3 is parallel to the shielding surface. When the support part 3 is in the second state, the support part 3 and the shielding surface form a specified angle.
[0049] Specifically, to address the problems in existing aquaculture where fences are made of metal and signs are applied with paint, resulting in bulky and difficult-to-move fences, signs that weather and peel off, low visibility, and limited effectiveness in warning or disease prevention publicity, this embodiment provides a mobile disease prevention injection fence. The fence frame 1 is made of a material with a density lower than that of metal, significantly reducing its weight and improving portability and mobility. Correspondingly, the enclosure 2 is made of a flexible material to further reduce the overall weight of the injection fence. Simultaneously, a first display area 21 and a second display area 22 are provided on the enclosure 2 to improve the visibility of the signs. The rotatable support 3 can be adjusted in position according to the working and storage states to reduce the space occupied.
[0050] The mobile vaccination pen provided in this embodiment can be used, but is not limited to, in animal husbandry, such as for raising sheep, pigs, and cattle. Of course, there are no technical barriers to applying the mobile vaccination pen provided in this embodiment to poultry farming. The following description will use sheep as an example for detailed explanation. The mobile vaccination pen provided in this embodiment can be used, but is not limited to, in pastoral areas, urban farming areas, etc. For example, it can be used in conjunction with tents, fences, and walls to create a relatively enclosed space for livestock or poultry to carry out subsequent vaccinations and other restraint work. Of course, the mobile vaccination pen can also be used alone to create enclosed spaces. The mobile vaccination pen provided in this embodiment can be used, but is not limited to, for fencing and protection in vaccination, isolation, and observation work. For example, the mobile vaccination pen, in conjunction with pen walls, can create a relatively enclosed space to enclose a small number of sheep, allowing farmers to enter the space for vaccination.
[0051] The fence frame 1 can be a rigid frame structure, and the fence frame 2 can be, but is not limited to, rectangular, circular, trapezoidal, etc. The size of the fence frame 1 can be designed and adjusted according to actual needs, as long as the height of the fence frame 2 can block the sheep's line of sight, reduce the sheep's fear, and achieve a better restraining effect. In this embodiment, the fence frame 1 can be a quadrilateral structure including a first frame 11, a second frame 12, a third frame 14, and a fourth frame 15. Of course, the four frames can all be integrally formed or spliced. The four frames are all hollow cylinders with a density less than that of metal, such as polyvinyl chloride (PVC), thereby effectively reducing the weight of the fence frame 1 and facilitating handling and movement; for example: Figure 1As shown, adjacent frames are detachably connected via bent pipes 16. In this embodiment, the injection bar may include one fence frame 1; when corresponding to a U-shaped alleyway space, only one fence frame 1 can be used to enclose the space. In this embodiment, the injection bar may include two fence frames 1; when corresponding to a corner wall, two fence frames 1 can be used together to surround and isolate the space. In this embodiment, the injection bar may include multiple fence frames 1; when corresponding to a single wall or a corner wall, multiple fence frames 1 can be used to surround and isolate the space in a gently curved or irregular shape to form an enclosed space, for example... Figure 5 The state shown.
[0052] The connecting part 13 can be rigid or flexible, such as a butterfly buckle, Velcro, cable, magnet, etc. Butterfly buckles are easily understood and utilized by those skilled in the art, and will not be elaborated upon here. Velcro and cables connect adjacent fence frames 1 through flexible winding. Magnets can be attached inside the first frame 11 and the second frame 12, allowing adsorption when adjacent fence frames 1 are close together. The strength of the magnets can be designed and adjusted according to actual needs to ensure stable adsorption. The magnet method also effectively improves assembly and disassembly efficiency, eliminating the need for manual connection and locking. When the connecting part 13 is in the form of a butterfly buckle, it can be set separately on the first frame 11 or the second frame 12. One annular space of the butterfly buckle fits onto the first frame 11 or the second frame 12, and the other annular space is reserved for adjacent fence frames 1.
[0053] The enclosure 2 is flexible and can be made of plastic or cloth. In this embodiment, it can be made of Oxford cloth, which has good waterproof properties, is resistant to sun and rain, and is windproof. The shape and size of the enclosure 2 are not limited; it simply needs to be fitted with the first frame 11 and the second frame 12 in the width direction of the fence frame 1. The height of the fence frame 1 can be designed and adjusted according to actual needs; it can be the same height as the fence frame 1 or lower. Accordingly, to ensure effective blocking of the sheep's line of sight, in this embodiment, the distance between the fourth side of the enclosure 2 facing the ground and the ground can be set to a maximum of 20cm; the dimension of the enclosure 2 along the height direction of the fence frame 1 is at least 100cm, so that the line of sight of both lambs and adult sheep can be blocked by the enclosure 2. Of course, it is understood that the size of the enclosure 2 can be designed and adjusted according to actual needs for different restraint targets. The enclosure 2 and the fence frame 1 can be detachably connected by adhesive, adsorption, etc., for example: refer to the attached... Figure 3Magnets, Velcro, or adhesive are provided at the edges and center of the second surface of the fence 2. The magnets, Velcro, or adhesive at the edges bypass the first frame 11 and the second frame 12 and then attract or adhere to the magnets, Velcro, or adhesive at the center. Of course, the fence 2 can also be set as a one-piece molded structure, see attached figure. Figure 2 The air sleeve is installed on the back of the fence frame 1, which is also a complete surface 2. Under this setting method, the fence 2 can be installed by disassembling the fence frame 1.
[0054] The shape, size, and arrangement of the first display area 21 and the second display area 22 on the enclosure 2 are not limited here and can be designed and adjusted according to actual needs. For example, they can be arranged as follows: Figure 1 As shown, the first display area 21 and the second display area 22 can be arranged vertically, or horizontally, or diagonally, etc.; the shapes of the first display area 21 and the second display area 22 can be as follows: Figure 1 The shapes shown include circles, rectangles, inverted triangles, trapezoids, parallelograms, etc. The corresponding first and second images / texts can be, but are not limited to, patterns, text, logos, textures, shapes, etc., such as: brand logos, slogans like "Animal disease prevention in progress, implementing the Animal Disease Prevention Law, cracking down on illegal operators, fulfilling main responsibilities, standardizing breeding practices, enhancing disease prevention awareness, improving disease prevention levels, immunization required for breeding, quarantine required for sale, no ambiguity in protection, handwashing after work, regular environmental disinfection, no slaughter of diseased or dead animals, no sale of diseased meat, rapid reporting of outbreaks, prompt reporting of violations, strengthening management measures, and improving management levels." The first display area 21 and the second display area 22 can be special colors, and the first and second images / texts can also be special colors, such as: red, fluorescent colors, and reflective colors.
[0055] The support part 3 can be a rigid structure, and can be, but is not limited to, a leg structure or a counterweight structure. The support part 3 can work with the fence frame 1 to provide stable support. In this embodiment, the support part 3 can be configured to rotate relative to the fence frame 1. When the fence frame 1 needs to be surrounded, the support part 3 is rotated to a state where it forms a specified angle with the shielding surface to achieve stable support for the fence frame 1. The specified angle can be, but is not limited to, 90 degrees, 60 degrees, 45 degrees, etc. When the fence frame 1 needs to be stored, the support part 3 is rotated to a state parallel to the shielding surface, so that multiple fence frames 1 can be stored parallel to each other, reducing the space occupied and improving the convenience of storage management.
[0056] As described above, the mobile vaccination pen provided in this embodiment uses a material with a density lower than that of metal to make the fence frame 1, effectively reducing the overall weight of the vaccination pen. A detachable flexible enclosure 2 is provided corresponding to the fence frame 1, further reducing the overall weight of the vaccination pen and improving portability during movement. The enclosure 2 is equipped with a first display area 21 and a second display area 22 for displaying relevant graphics and text, improving the labeling effect. A rotatable support part 3 is provided, allowing for stable support when the vaccination pen is in operation and reducing space occupation when stored, improving the ease of storage. This effectively solves the problem in existing aquaculture practices where fences are made of metal and labels are formed by painting, resulting in bulky and difficult-to-move fences with low label visibility and limited effectiveness in warning or epidemic prevention publicity.
[0057] In this article, the term "and / or" is merely a description of the relationship between related objects, indicating that there can be three relationships, such as A and / or B. Specifically, it can be understood as: A and B can be included at the same time, A can exist alone, or B can exist alone, and any of the above three situations can be met.
[0058] Further, see Appendix Figure 3 In the mobile vaccination station provided in this embodiment, the first frame 11 and the second frame 12 are telescopic rods.
[0059] Understandably, to broaden the usability and application scenarios of the mobile vaccination pen, this embodiment sets the first frame 11 and the second frame 12 to be telescopic. For example, a telescopic rod formed by sequentially connecting multiple tube sections, or a hydraulic push-out rod at the end of a single tube section. This allows the height of the fence frame 1 to be adjusted according to different application scenarios. For instance, when dealing with smaller animals such as sheep, pigs, and poultry, the first frame 11 and the second frame 12 can maintain a lower height, allowing the fence 2 to remain slightly wrinkled. Figure 4 As shown in the diagram; when dealing with objects that are relatively tall, such as cows, the first border 11 and the second border 12 are extended, and the enclosure 2 is then flattened.
[0060] Further, see Appendix Figure 1 and attached Figure 2 In the mobile vaccination barrier provided in this embodiment, in specific implementation, a first receiving sleeve and a second receiving sleeve are formed on at least the first and second opposite sides of the enclosure 2, and the first receiving sleeve and the second receiving sleeve are respectively adapted to be connected to the first frame 11 and the second frame 12.
[0061] It is understandable that, in order to achieve a stable fit between the enclosure 2 and the fence frame 1, in this embodiment, a first receiving sleeve and a second receiving sleeve can be formed on the opposite first and second sides of the enclosure 2. The number of the first receiving sleeve and the second receiving sleeve can be designed and adjusted according to actual needs. For example, multiple first receiving sleeves can be set at intervals along the first frame 11, or a single first receiving sleeve can be set corresponding to the first frame 11. The first receiving sleeve and the second receiving sleeve can be formed by bending the edge of the enclosure 2 towards the second surface when the enclosure 2 is a single-layer structure, or they can be formed between the two layers when the enclosure 2 is a double-layer structure. The first receiving sleeve and the second receiving sleeve can be integrated and non-removable, or they can be flexible and openable. They can be simultaneously fitted into the ends of the first frame 11 and the second frame 12, or they can be wrapped around from one side of the first frame 11 and the second frame 12 to the second side.
[0062] Furthermore, in the specific implementation of the mobile epidemic prevention injection barrier provided in this embodiment, a first adhesive area (not shown in the figure) is provided on the second surface of the enclosure 2; a second adhesive area (not shown in the figure) adapted to the first adhesive area is provided on the first side and the second side respectively, for movably adhesively bonding the first adhesive area; wherein, the second surface is opposite to the first surface.
[0063] Understandably, to improve the flexibility and detachability of the fence 2, a first adhesive area 23 is provided on the second surface in this embodiment. This can be achieved through Velcro or adhesive bonding. The first adhesive area can be located at one point in the middle of the second surface, or two points can be located on the second surface corresponding to the positions of the first and second borders 11 and 12. Correspondingly, a second adhesive area is provided on the second surface of the fence 2 at positions corresponding to the first and second sides. When the first and second sides are flipped onto the second surface, the second adhesive area engages with the first adhesive area, completing the installation and flattening of the fence 2. Alternatively, refer to the attached diagram. Figure 3 A first bonding area is set at the corner of the first surface corresponding to the third and fourth sides of the fence 2, and a second bonding area is set at the corner of the second surface of the first and second sides. After the four sides are folded around the fence frame 1 and simultaneously folded towards the second surface, the first bonding area and the second bonding area can be bonded to each other. Moreover, with this setting, the fence 2 is easy to assemble and disassemble and can be replaced or adjusted at any time according to actual needs.
[0064] Furthermore, in the specific implementation of the mobile vaccination booth provided in this embodiment, the first display area 21 and / or the second display area 22 are provided with a third adhesive area for movably adhesiveing the display piece (not shown in the figure) having the first graphic and / or the second graphic.
[0065] It is understandable that, in order to improve the applicability and scenarios of the hoarding 2, in this embodiment, the first display area 21 or the second display area 22, or both the first display area 21 and the second display area 22, can be set as the third bonding area. It can be a Velcro bonding method or an adhesive bonding method. Correspondingly, an adhesive surface adapted to the third bonding area is set on the display piece, and the corresponding graphics and text are placed in the first display area 21 and the second display area 22 by adhesive bonding. This improves flexibility, and the display content can be changed at any time according to actual needs. The hoarding 2 can be reused, and the display pieces can be changed according to different periods and requirements, which greatly reduces the production cost.
[0066] Further, see Appendix Figure 1 In this embodiment, the mobile vaccination bar includes a support 3 comprising a connecting component and a leg 31. The first end of the connecting component is detachably connected to the third frame 13 at the bottom of the fence frame 1, and the second end of the connecting component is rotatably connected to the leg 31. When the support 3 is in the first state, the orthographic projection of the fence frame 1 along its height direction at least completely covers the orthographic projection of the leg 31 along the height direction of the fence frame 1.
[0067] Understandably, to achieve the rotatability and support function of the support part 3, in this embodiment, the support part 3 can be configured to include a connecting component and a support leg 31, both of which are rigid structures. The support leg 31 can be a square pyramidal support leg, an oblique cone-shaped support leg, a frustum-shaped support leg, a triangular base, a U-shaped support leg, etc. Furthermore, to improve the ease of storage of the fence frame 1, in this embodiment, the support leg 31 can be configured as... Figure 1 The U-shaped frame shown ensures that when the support 3 is in the first state (parallel obstruction), the orthographic projection of the fence frame 1 along its height direction completely covers the orthographic projection of the support leg 31 along its height direction. This means that when multiple fence frames 1 are stored parallel to each other, the support leg 31 will not interfere with adjacent fence frames 1 or affect storage. In this embodiment, a strap can also be provided corresponding to the stored state. The strap can be secured using Velcro, snaps, or buckles. In this configuration, to ensure the overall stability of the injection station, this embodiment can... Figure 7 As shown, the first frame 11 and the second frame 12 are set to be flush with the bottom of the support leg 31, so that they can work together with the support leg 31 to provide support and improve the stability of the support. This embodiment can also be further described as follows: Figure 6 As shown, the support leg 31 is designed as a trough structure, which can be made from locally available materials. By placing sand, gravel, or heavy objects into the trough, a counterweight support leg can be formed.
[0068] Further, see Appendix Figure 1In this embodiment, the mobile vaccination booth includes a connecting component comprising a connecting pipe 32 and a central insert 33. The connecting pipe 32 has openings at both ends, parallel to the third frame 13 and movably inserted into the middle of the third frame 13. The central insert 33 extends from the connecting pipe 32 along the height direction of the fence frame 1 towards the fourth frame 14 away from the fence frame 1. One end of the central insert 33 away from the third frame 13 is rotatably connected to the support leg 31. The end of the central insert 33 facing the support leg 31 is provided with a first limiting member (not shown in the figure) and a second limiting member (not shown in the figure) in its radial direction. The radial directions of the first and second limiting members satisfy a perpendicular condition. The fourth frame 14 is parallel to and opposite to the third frame 13.
[0069] It is understandable that, to achieve the rotatable connection between the support leg 31 and the third frame 13, the connecting component in this embodiment can be configured to include a connecting tube 32 and an intermediate post 33. The connecting tube 32 can be sleeved on the third frame 13, and the two ends of the connecting tube 32 can respectively cooperate with the first tube body 17 and the second tube body 18 to form the third frame 13. The intermediate post 33 can be columnar or tubular, and the intermediate post 33 and the connecting tube 32 can be an integrated structure or a detachable plug-in structure. The intermediate post 33 is provided with a first limiting member and a second limiting member. Both the first limiting member and the second limiting member are rigid structures and can be in the form of a sheet, block, strip, etc. They can be perpendicular to each other or approximately perpendicular. Correspondingly, the support leg 31 is provided with a corresponding third limiting member. When the support leg 31 rotates to the point where the third limiting member and the first or second limiting member abut against each other, it cannot continue to rotate to the first or second state of the support part 3. This configuration is easily understood by those skilled in the art and will not be elaborated further here.
[0070] Further, see Appendix Figure 1 In this embodiment, the mobile vaccination barrier is provided in a specific implementation where the fence frame 1 further includes a first horizontal bar 4 and a second horizontal bar 5. The first horizontal bar 4 and the second horizontal bar 5 are arranged parallel to the third frame 13 and spaced apart along the height direction of the fence frame 1 between the third frame 13 and the fourth frame 14. The enclosure 2 is detachably connected to the first horizontal bar 4 and the second horizontal bar 5 along the third and fourth sides along the height direction of the fence frame 1, respectively.
[0071] Understandably, to improve the flatness of the fence 2 and ensure clear and obvious markings, a first horizontal bar 4 and a second horizontal bar 5 are provided on the fence frame 1 in this embodiment. Both the first horizontal bar 4 and the second horizontal bar 5 are rigid structures, and can be, but are not limited to, spatial tubular, thin rod-shaped, etc. In this embodiment, the two ends of the first horizontal bar 4 and the second horizontal bar 5 can be connected to the bend pipe 16 and the first frame 11 or the second frame 12 through T-shaped pipes or T-joints. In this embodiment, the third and fourth sides of the fence 2 are detachably connected to the first horizontal bar 4 and the second horizontal bar 5. The relevant detachable method can be referred to the detachable method of the first side and the second side corresponding to the first frame 11 and the second frame 12, which will not be elaborated here.
[0072] Further, see Appendix Figure 5 The mobile vaccination booth provided in this embodiment includes multiple fence frames 1, which are sequentially rotatably connected; adjacent fence frames 1 can rotate relative to each other to form a circular closed space; or adjacent fence frames 1 can rotate relative to each other to form a circular closed space with the target building.
[0073] It is understandable that the specifications of the injection pen in this embodiment can be set and adjusted according to actual needs. For example, it can be selected according to the characteristics of the usage scenario. When used in livestock areas where there is a lack of fixed supporting buildings, multiple fence frames 1 can be connected end to end to form a circular space, which can be a regular shape such as a quadrilateral or an irregular shape. When used in urban or rural livestock areas, it can be used in conjunction with the walls of the pen for surrounding isolation, such as... Figure 5 As shown, multiple fence frames 1 are separated end to end and can form semi-enclosed structures such as arcs, semicircles, and U-shapes. When combined with walls, they can form a relatively closed ring space. Similarly, this space can be a regular shape or an irregular shape.
[0074] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A mobile epidemic prevention injection fence, characterized in that, The mobile epidemic prevention injection fence comprises at least one fence frame, a first frame and / or a second frame of the fence frame being provided with a movable connecting part in a height direction, and the movable connecting part being used for detachably connecting adjacent fence frames so that the adjacent fence frames can rotate relative to each other; and the density of the fence frame being less than the density of metal. At least one fence is provided with the fence frame one by one and is detachably arranged on the fence frame to form a shielding surface between the first frame and the second frame; the fence has flexibility; at least a first display area and a second display area are arranged on a first surface of the fence, the first display area and the second display area are arranged in the shielding surface, and the first display area and the second display area are used for displaying a first graphic and a second graphic, respectively. At least one supporting part is arranged on the bottom of the fence frame one by one and rotates to form a first state and a second state; when the supporting part is in the first state, the supporting part is parallel to the shielding surface; and when the supporting part is in the second state, the supporting part forms a specified angle with the shielding surface.
2. The mobile epidemic prevention injection fence according to claim 1, wherein the first frame and the second frame are telescopic rods.
3. The mobile epidemic prevention injection fence according to claim 1, wherein first accommodating sleeves and second accommodating sleeves are formed on at least a first side and a second side of the fence, and the first accommodating sleeves and the second accommodating sleeves are respectively matched with the first frame and the second frame.
4. The mobile epidemic prevention injection fence according to claim 3, wherein a first adhesive area is arranged on a second surface of the fence; the first side and the second side are respectively provided with a second adhesive area matched with the first adhesive area, and the first adhesive area is movably adhered; and the second surface is opposite to the first surface.
5. The mobile epidemic prevention injection fence according to claim 1, wherein the first display area and / or the second display area is provided with a third adhesive area for movably adhering a display piece with the first graphic and / or the second graphic.
6. The mobile epidemic prevention injection fence according to claim 1, wherein the supporting part comprises a connecting assembly and a supporting leg; a first end of the connecting assembly is detachably connected to a third frame at the bottom of the fence frame, and a second end of the connecting assembly is rotatably connected to the supporting leg; and when the supporting part is in the first state, a vertical projection of the fence frame along the height direction completely covers a vertical projection of the supporting leg along the height direction of the fence frame.
7. The mobile epidemic prevention injection fence according to claim 6, wherein the connecting assembly comprises a connecting pipe, an intermediate column and a limiting piece; the connecting pipe is open at both ends and is movably inserted into the middle part of the third frame parallel to the third frame; and the limiting piece is arranged on the connecting pipe and is used for limiting the movement of the connecting pipe. The intermediate column is extended by the connecting pipe along the height direction of the fence frame to a direction away from the fourth frame of the fence frame, and an end of the intermediate column away from the third frame is rotationally connected to the support leg; The end of the intermediate column toward the support leg is provided with a first limiting member and a second limiting member along a radial direction thereof, and the radial direction of the first limiting member and the radial direction of the second limiting member satisfy a perpendicular condition; The fourth frame is parallel to and opposite to the third frame.
8. The mobile epidemic prevention injection fence according to claim 1, characterized in that: The fence frame further comprises a third frame, a fourth frame, a first horizontal rod and a second horizontal rod; The third frame and the fourth frame are respectively arranged at two ends of the height direction of the fence frame, and both ends of the third frame and both ends of the fourth frame are detachably connected to the first frame and the second frame to form a quadrilateral fence frame; The first horizontal rod and the second horizontal rod are arranged in parallel to the third frame and along the height direction of the fence frame between the third frame and the fourth frame; The third side and the fourth side of the fence along the height direction of the fence frame are detachably connected to the first horizontal rod and the second horizontal rod, respectively.
9. The mobile epidemic prevention injection fence according to claim 1, characterized in that: The distance between the fourth side of the fence toward the ground and the ground is at most 20 cm; The size of the fence along the height direction of the fence frame is at least 100 cm.
10. The mobile epidemic prevention injection fence according to claim 1, characterized in that: A plurality of fence frames are rotationally connected in sequence; The adjacent fence frames can relatively rotate to form a ring-shaped closed space with the plurality of fence frames; or The adjacent fence frames can relatively rotate to form a ring-shaped closed space with the plurality of fence frames and a target building.