Chicken house door assembly and high-temperature-resistant chicken house framework

By using the plug-in connection of the rotating block in the chicken coop door assembly and the high-temperature resistant coating, the problems of incompatibility and rust between the chicken coop door and the round tube greenhouse are solved, achieving efficient installation and corrosion resistance.

CN223568397UActive Publication Date: 2025-11-21JIANGSU KAIJIAN METAL PROD TECH CO LTD
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Patent Information

Application Number
CN202423272003.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-21
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The existing chicken coop door hinges are not compatible with the round tube greenhouse. Installation requires drilling and they are prone to rusting in high temperature and humidity environments, leading to failure.

Method used

The design of the chicken coop door assembly uses a first rotating block and a second rotating block to connect the uprights and the door post through relative rotation. The round tube door frame is connected to the uprights through a plug-in connection. The frame material is coated with a high-temperature resistant coating to avoid drilling and rusting.

Benefits of technology

This technology enables efficient installation of round tube doors, reduces drilling steps, improves installation efficiency, extends the service life of materials, and reduces installation costs and corrosion risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The henhouse door assembly comprises hinges and a door frame, the door frame comprises two circular-tube-shaped door columns, the door column on one side is connected with a door hinge, the other side of the door hinge is connected with a stand column of a henhouse, the door hinge comprises a first rotating block and a second rotating block, and the first rotating block and the second rotating block are connected through a hinge. A rotating shaft is formed on the second rotating block, a rotating shaft hole is formed in the first rotating block, the first rotating block is connected to the rotating shaft in a sleeving mode through the rotating shaft hole, a first inserting hole is further formed in the first rotating block, a second inserting hole is formed in the second rotating block, and the door column on one side is inserted into the second inserting hole. According to the round tube door frame, the stand column and the door column are connected to the first rotating block and the second rotating block in an inserted mode respectively, connection between the round tube door frame and the round tube stand column is completed, the use requirement of the round tube door is met, punching is not needed in the installation process, and the installation efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to chicken coop door and chicken coop framework technical field, concretely is chicken coop door subassembly and high temperature resistant chicken coop framework. BACKGROUND

[0002] With the popularization and application of assembly type building, the existing poultry breeding greenhouse also uses assembly type steel structure, generally through 6 minute circle pipe as base material, the heat preservation board of the side wall and top surface of the greenhouse is supported, and after the completion of the construction of the greenhouse, because the support column is all round pipe, and the existing door hinge is all connected on square section bar, and needs to punch on the door frame, thereby fixing the hinge on the door frame, and the hinge and the door on the market are square section bar, which is not suitable for the installation of round pipe greenhouse, and the installation needs to punch, and the environment of the chicken coop is humid, and the iron product is prone to rust in the high temperature and humid environment, resulting in the failure of the hinge, therefore, the chicken coop door subassembly and high temperature resistant chicken coop framework are designed to meet the hinging between the door and the round pipe, and the high temperature resistant coating is sprayed on the hinge and the framework to reduce the oxidation and corrosion of the material. SUMMARY

[0003] The utility model discloses a chicken coop door subassembly and high temperature resistant chicken coop framework, through the relative rotation of first rotating block and second rotating block, the stand and the door column are connected on first rotating block and second rotating block respectively, and through the insertion of first jack and stand and the insertion of second jack and door column, the connection between round pipe door frame and round pipe stand is completed, the use demand of round pipe door is met, and the installation does not need to punch, and the installation efficiency is improved.

[0004] The utility model provides the following technical scheme: chicken coop door subassembly, including door hinge and door frame, the door frame includes two round pipe shape door column, the door hinge is connected on one side of door column, the other side of door hinge is connected with the stand of chicken coop, the door hinge includes first rotating block and second rotating block, the second rotating block is formed with the pivot on, the first rotating block is set with pivot hole, the first rotating block is connected on pivot through pivot hole, first jack is also set on the first rotating block, the second rotating block is set with second jack, one side door column is inserted in second jack, and the stand of chicken coop is inserted in first jack.

[0005] Further, the door lock is connected on the stand of the other side of the door frame through the pin shaft, the door lock includes the baffle that distributes before and after, the upper end of both sides baffle is connected with the limit board, when the door lock is locked, the limit board leans on the stand and makes both sides baffle move to both sides of the door column, and the door frame is locked through the rotation of the door lock.

[0006] Further, the outer side of the first rotating block is formed with a first positioning screw hole, the outer side of the second rotating block is formed with a second positioning screw hole, and the first positioning screw hole and the second positioning screw hole are threadedly connected with a screw, so that the height of the first rotating block and the second rotating block is positioned by the screw.

[0007] Further, the baffle is provided with a hinge hole for penetrating a pin shaft, and the hinge hole is located on the outer side of the limiting plate.

[0008] Further, the door frame further comprises a circular tube-shaped bottom beam and a door beam, the door column is connected to the bottom beam through a right-angle two-way connector, and the door beam is installed between the two door columns through a right-angle two-way connector, so that the assembled door frame improves the production efficiency of the door frame.

[0009] The utility model discloses further provide the following technical scheme: high temperature resistant chicken coop skeleton, including bottom frame, a plurality of stand, upper beam and roof truss, the stand one side is connected with above-mentioned chicken coop door subassembly, a plurality of the stand is connected on the bottom frame through right-angle two -way connector, the stand is connected with upper beam and roof truss through obtuse angle three -way connector, the roof truss is located on the upper beam, and the assembled chicken coop skeleton also improves the assembly efficiency of chicken coop skeleton.

[0010] Further, the right-angle two-way connector comprises a straight-through pipe and a side pipe, the straight-through pipe is sleeved on the circular pipe, and the side pipe is formed on the end side surface of the straight-through pipe.

[0011] Further, the corner of the bottom frame is connected with a right-angle three-way connector, the right-angle three-way connector comprises a straight-through pipe and two side pipes, the two side pipes are vertically distributed and connected to the surface of the straight-through pipe.

[0012] Further, the obtuse angle three-way connector comprises a straight-through pipe and two side pipes, the side pipes are formed on the two sides of the straight-through pipe, and the two side pipes are distributed at an obtuse angle of 120 °.

[0013] Further, the surface of the right-angle two-way connector, the right-angle three-way connector and the obtuse angle three-way connector is formed with a boss with a threaded hole, and the boss faces the outer side or the inner side of the chicken coop.

[0014] Compared with the prior art, the utility model has the beneficial effects that:

[0015] (1) by the relative rotation of the first rotating block and the second rotating block, the stand and the door column are connected to the first rotating block and the second rotating block respectively, and by the insertion of the first insertion hole and the stand and the insertion of the second insertion hole and the door column, the connection between the circular pipe door frame and the circular pipe stand is completed, the use requirement of the circular pipe door is met, and the installation efficiency is improved without punching holes;

[0016] (2) The baffle is moved to the two sides of the door column by the turning of the door lock, the door frame is locked, the position of the door lock is limited by the abutting of the limiting plate and the stand column, and the position of the door lock is limited;

[0017] (3) The bosses are formed on the surfaces of the straight two-way, straight three-way and obtuse three-way, the bosses which are all towards the inside or outside of the henhouse are used to fix other plates on the henhouse framework, and the henhouse is closed. BRIEF DESCRIPTION OF DRAWINGS

[0018] The accompanying drawings are used to provide further understanding of the present application, and constitute a part of the specification, and are used to explain the present application together with embodiments of the present application, and do not constitute a limitation to the present application. In the drawings:

[0019] Figure 1 It is a structural schematic view of a henhouse door assembly of the present application;

[0020] Figure 2 It is a structural schematic view of a door hinge of the present application;

[0021] Figure 3 It is an exploded structural schematic view of a door hinge of the present application;

[0022] Figure 4 It is a schematic view of a door lock structure of the present application;

[0023] Figure 5 It is a schematic view of a henhouse framework of the present application;

[0024] Figure 6 It is a structural schematic view of a straight three-way of the present application;

[0025] Figure 7 It is a structural schematic view of a straight two-way of the present application;

[0026] Figure 8 It is a structural schematic view of an obtuse three-way of the present application;

[0027] In the drawings: 1, door hinge; 11, first rotating block; 12, first insertion hole; 13, first positioning screw hole; 14, rotating shaft hole; 15, second rotating block; 16, second positioning screw hole; 17, second insertion hole; 18, rotating shaft; 2, door frame; 21, door column; 22, bottom beam; 23, door beam; 3, stand column; 4, door lock; 41, baffle; 42, hinged hole; 43, limiting plate; 5, bottom frame; 51, straight two-way; 52, straight three-way; 53, obtuse three-way; 501, straight pipe; 502, side pipe; 503, boss; 6, upper beam; 7, roof truss; 71, girder; 72, inclined beam. DETAILED DESCRIPTION

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] Please see Figures 1 to 4 This utility model provides a technical solution: a chicken coop door assembly, including a door hinge 1 and a door frame 2. The door frame 2 includes two cylindrical door posts 21. A door hinge 1 is connected to one side of the door post 21, and the other side of the door hinge 1 is connected to a chicken coop column 3. The door hinge 1 includes a first rotating block 11 and a second rotating block 15. A rotating shaft 18 is formed on the second rotating block 15. A rotating shaft hole 14 is provided on the first rotating block 11. The first rotating block 11 is sleeved on the rotating shaft 18 through the rotating shaft hole 14. The first rotating block 11 rotates around the rotating shaft 18. A first insertion hole 12 is also provided on the first rotating block 11, and a second insertion hole 17 is provided on the second rotating block 15. One side of the door post 21 is inserted into the second rotating shaft 15. Inside the insertion holes, the first insertion hole 12 is into which the chicken coop column 3 is inserted. The column 3 is fixed and inserted into the first rotating block 11, so the first rotating block 11 cannot rotate. When the door assembly is in operation, the second rotating block 15 rotates, driving the cylindrical door post 21 to rotate, thereby opening or closing the chicken coop door assembly. Using the first insertion hole 12 and the second insertion hole 17, the column 3 is inserted into the first insertion hole 12 and the door post 21 is inserted into the second insertion hole 17, realizing the relative rotation of the door post 21 and the column 3. This satisfies the installation of the cylindrical door assembly and does not require drilling. Compared with existing hinges, it reduces the drilling steps, improves installation efficiency, and reduces installation costs.

[0030] like Figure 4 As shown, a door lock 4 is connected to the chicken coop column 3 on the other side of the door frame 2 via a pin. The door lock 4 includes baffles 41 distributed in the front and back. The upper ends of the baffles 41 on both sides are connected to limit plates 43. The door lock 4 is locked by swinging the door lock 4 up and down. At the same time, the limit plates 43 are pressed against the column 3, causing the baffles 41 on both sides to move to both sides of the door column 21, locking the door column 21 between the two baffles 41, so that the door column 21 and the column 3 are on the same plane.

[0031] like Figure 2 and 3 As shown, a first positioning screw hole 13 is formed on the outer side of the first rotating block 11, and a second positioning screw hole 16 is formed on the outer side of the second rotating block 15. Screws are internally threaded into the first positioning screw hole 13 and the second positioning screw hole 16. By tightening the screws, the screws are pressed onto the door post 21 or the column 3 to fix the height position of the second rotating block 15 or the first rotating block 11.

[0032] As shown in Figure 1 and 4 The baffle 41 is provided with a hinge hole 42 for penetrating a pin shaft, the hinge hole 42 is located outside the limiting plate 43, the straight line distance between the edge of the limiting plate 43 and the hinge hole 42 is increased, when the door lock 4 is locked in rotation, the limiting plate 43 is just leaned on the stand column 3, the situation that the baffle 41 falls down and the door cannot be locked due to the over-rotation of the door lock 4 is prevented.

[0033] The door frame 2 further comprises a circular tubular bottom beam 22 and a door beam 23, the door column 21 is connected to the bottom beam 22 through a right-angle two-way pipe 51, the door beam 23 is installed between the two door columns 21 through the right-angle two-way pipe 51, the assembly of the door frame 2 is completed by using the right-angle two-way pipe 51, the reinforcing beams in the door frame 2 can also be connected through the right-angle two-way pipe 51, the right-angle two-way pipe 51 can move up and down along the door column 21, the height of the reinforcing beam is adjusted, and then the height adjustment of the reinforcing beam is completed through screw fixation, the production efficiency of the door frame 2 is greatly improved compared with welding.

[0034] As shown in Figure 5 The utility model also provides technical scheme: high temperature resistant chicken house framework, including bottom frame 5, a plurality of stand columns 3, upper beam 6 and roof truss 7, through setting up high temperature resistant coating on stand column 3, upper beam 6 and roof truss 7 and door assembly, the corrosion resistance of material is improved, the situation of rust is avoided, the service life is prolonged, the door assembly is connected with the above-mentioned chicken house door assembly on one side of stand column 3 through door hinge 1, a plurality of stand columns 3 are connected on bottom frame 5 through right-angle two-way pipe 51, upper beam 6 and roof truss 7 are connected on stand column 3 through obtuse angle three-way pipe 53, roof truss 7 is located on upper beam 6, roof truss 7 includes big beam 71 and two sides' inclined beam 72, inclined beam 72 is connected on both sides of big beam 71 through obtuse angle three-way pipe 53, the assembly of chicken house framework is completed through right-angle two-way pipe 51 and obtuse angle three-way pipe 53, the working strength is greatly reduced, and the production efficiency is improved compared with welding, and the high temperature resistant coating on the surface of the framework is prevented from being invalid due to welding.

[0035] As shown in Figure 6 The right-angle two-way pipe 51 comprises a straight pipe 501 and a side pipe 502, the straight pipe 501 is sleeved on a circular pipe, and the side pipe 502 is formed on the end surface of the straight pipe 501.

[0036] As shown in Figure 7 The corner of the bottom frame 5 is connected with a right-angle three-way pipe 52, the right-angle three-way pipe 52 comprises a straight pipe 501 and two side pipes 502, the two side pipes 502 are vertically distributed and connected to the surface of the straight pipe 501.

[0037] As shown in Figure 8As shown, the obtuse three-way pipe 53 includes a straight pipe 501 and two side pipes 502, the side pipes 502 are formed on two sides of the straight pipe 501, and the two side pipes 502 are distributed at an obtuse angle of 120°.

[0038] The surfaces of the right-angle two-way pipe 51, the right-angle three-way pipe 52 and the obtuse three-way pipe 53 are all formed with bosses 503 with threaded holes, the bosses 503 are all towards the outside or the inside of the henhouse, the connection strength of the round pipe with the right-angle two-way pipe 51, the right-angle three-way pipe 52 and the obtuse three-way pipe 53 is enhanced by connecting screws in the bosses 503, the screws can also adjust the position of the right-angle two-way pipe 51 on the round pipe, meanwhile, the bosses 503 all towards the same side can be connected with other plates or mesh through fasteners to close the henhouse.

[0039] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for the skilled in the art, it still can be modified, or the equivalent replacement of part of the technical features of the technical solutions recorded in the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A poultry house door assembly comprising a door hinge and a door frame, said door frame comprising two circular tubular door posts, said door hinge being attached to one of said door posts, the other side of said door hinge being attached to a vertical post of a poultry house, characterized in that: The door hinge comprises a first rotating block and a second rotating block, a rotating shaft is formed on the second rotating block, a rotating shaft hole is formed on the first rotating block, the first rotating block is sleeved on the rotating shaft through the rotating shaft hole, a first insertion hole is formed on the first rotating block, a second insertion hole is formed on the second rotating block, and a door column on one side is inserted into the second insertion hole.

2. The henhouse door assembly of claim 1, wherein: A door lock is connected to the chicken coop column on the other side of the door frame through a pin shaft, the door lock comprises front and rear baffles, the upper ends of the baffles on both sides are connected to a limiting plate, when the door lock is locked, the limiting plate is abutted against the column to move the baffles on both sides to the two sides of the door column.

3. The henhouse door assembly of claim 1, wherein: First positioning screw holes are formed on the outer side of the first rotating block, second positioning screw holes are formed on the outer side of the second rotating block, and screws are threadedly connected into the first and second positioning screw holes.

4. The henhouse door assembly of claim 2, wherein: A hinge hole for penetrating the pin shaft is formed on the baffle, and the hinge hole is located on the outer side of the limiting plate.

5. The henhouse door assembly of claim 1, wherein: The door frame further comprises a circular pipe-shaped bottom beam and a door beam, the door column is connected to the bottom beam through a right-angle two-way connector, and the door beam is installed between the two door columns through a right-angle two-way connector.

6. A high temperature resistant chicken house framework characterized in that: The chicken coop comprises a bottom frame, a plurality of columns, an upper beam and a roof truss, the columns on one side are connected to the chicken coop door assembly of any one of claims 1 to 5, the plurality of columns are connected to the bottom frame through right-angle two-way connectors, the columns are connected to the upper beam and the roof truss through obtuse-angle three-way connectors, and the roof truss is located on the upper beam.

7. The high temperature resistant chicken house framework according to claim 6, characterized in that: The right-angle two-way connector comprises a straight pipe and a side pipe, the straight pipe is sleeved on the circular pipe, and the side pipe is formed on the end side surface of the straight pipe.

8. The high temperature resistant chicken house framework of claim 6, wherein: The corner of the bottom frame is connected to a right-angle three-way connector, the right-angle three-way connector comprises a straight pipe and two side pipes, the two side pipes are vertically distributed and connected to the surface of the straight pipe.

9. The high temperature resistant chicken house framework of claim 6, wherein: The obtuse-angle three-way connector comprises a straight pipe and two side pipes, the side pipes are formed on the two sides of the straight pipe, and the two side pipes are distributed at an obtuse angle of 120°.

10. The high temperature resistant chicken house framework according to any one of claims 7 to 9, characterized in that: The surfaces of the right-angle two-way connector, the right-angle three-way connector and the obtuse-angle three-way connector are all formed with a boss with a threaded hole, and the boss faces the outer side or the inner side of the chicken coop.