Splicing structure and splicing type white goose brooding cage
Technical Field
The invention belongs to the technical field of brooding cages, and particularly relates to a spliced structure and a spliced white goose brooding cage.
Background
With the steady promotion of agricultural industry structure adjustment, the meat goose cultivation based on grass and feeding is more and more favored by vast farmers, and the grass-cultivated goose is an advantageous cultivation project with less investment, quick effect and good economic benefit, and is a good way for farmers to increase income and become rich. The key of goose breeding is that the breeding management level before brooding and removing temperature directly determines the success and failure of goose breeding, so that the good goose Miao Yochu is important. The brooding is to carry out scientific and reasonable feeding management on 1-7 week-old broods, so that the broods grow normally, and the good productivity and the seed value are ensured to be good later, and the quality of the feeding management of the brood stages is directly related to the success or failure of the goose.
The cage of brooding is the essential equipment of goose in-process, and present cage of brooding is mostly fixed multilayer structure, and it is inconvenient to splice, comparatively loaded down with trivial details in the dismouting in-process.
Disclosure of Invention
The invention aims to provide a splicing structure and a splicing type white goose brooding cage, which are used for solving the problems in the prior art in the background art.
In order to achieve the above purpose, the invention adopts the following technical scheme:
The spliced white goose brooding cage comprises two groups of frames and a plurality of groups of net cages, wherein the ends of the net cages are connected between the two groups of frames through a splicing structure;
The splicing structure comprises a first connecting plate and a connecting block, wherein the first connecting plate is fixed at the end part of the net cage, the connecting block is fixed on the side wall of the frame, a connecting groove matched with the connecting block is formed in the surface of the first connecting plate, the first connecting plate is sleeved outside the connecting block through the connecting groove, a positioning component is arranged inside the connecting block, and the first connecting plate is fixed with the connecting block through the positioning component;
The connecting block includes:
the rectangular pipe is matched with the connecting groove, the connecting strip is fixed on the outer side of the rectangular pipe and is fixed on the frame, and the positioning assembly is positioned in the rectangular pipe;
The feeding device also comprises a feeding groove, wherein the end part of the feeding groove is connected with the edge part of the first connecting plate through a hanging component;
The hitch assembly includes:
A hanging groove formed at one side of the connecting plate and a hook movably inserted in the hanging groove, wherein the end part of the hook is fixed at the side of the feeding groove;
The net cages are arranged in a step-type manner;
the positioning assembly comprises an adjusting rod connected inside the rectangular pipe and a positioning rod connected to the end part of the adjusting rod, through holes matched with the positioning rod are formed in the top and the bottom of the rectangular pipe, positioning holes matched with the positioning rod are formed in the inner side of the connecting groove, and the adjusting rod can drive the positioning rod to be inserted into the positioning holes;
The adjusting rod comprises a screw rod and a conical head fixed at the end part of the screw rod, the end part of the rectangular pipe is connected with a second connecting plate, and the second connecting plate is provided with a threaded hole for connecting the screw rod;
The positioning rod comprises a rod body and a ball body fixed at the end part of the rod body, the surface of the ball body is attached to the surface of the conical head, a compression spring is sleeved outside the rod body, and the rod body is movably inserted into the through hole.
The excrement collecting device comprises a frame, and is characterized by further comprising an excrement collecting plate, wherein a sliding rail is fixedly connected to the bottom of the side face of the frame, and the excrement collecting plate is movably connected to the sliding rail.
The spliced structure and the spliced white goose brooding cage provided by the invention have the following advantages compared with the prior art:
1. The invention is mainly composed of two groups of frames, a plurality of groups of net cages, a splicing structure and other components, the splicing structure is composed of a connecting plate and a connecting block, the net cages and the frames are connected together through the connecting plate and the connecting block, thereby facilitating the fixation between the frames and the net cages, facilitating the assembly of the brooding cage and the disassembly thereof;
2. According to the invention, the connecting plate is fixed at the end part of the net cage, the connecting block is fixed on the frame, the connecting groove is formed in the surface of the connecting plate and is used for being butted with the connecting block, locking is carried out through the positioning component, and meanwhile, the surface of the connecting plate is stuck with the surface of the frame, so that the integral connection strength can be improved, and the shaking condition of the connecting plate is avoided.
Drawings
FIG. 1 is a schematic diagram of a spliced structure and a spliced white goose brooding cage of the invention;
FIG. 2 is a schematic view of the bottom view of the netpen of the present invention;
FIG. 3 is a schematic view of the structure of the frame of the present invention;
FIG. 4 is a schematic view of the structure of the connecting plate and the connecting block of the present invention;
FIG. 5 is a schematic view of the structure of the connecting groove and rectangular tube of the present invention;
FIG. 6 is a schematic view of a positioning assembly according to the present invention;
FIG. 7 is a schematic view of a hitching assembly of the present invention;
FIG. 8 is a schematic view of the structure of the fecal collection sheet of the present invention.
In the figure:
1. frame, 2, net cage, 3, splicing structure, 301, first connecting plate, 302, connecting block, 303, connecting groove, 304, rectangular pipe, 305, connecting bar, 4, positioning component, 401, adjusting rod, 402, positioning rod, 403, through hole, 404, positioning hole, 405, screw, 406, conical head, 407, second connecting plate, 408, threaded hole, 409, rod body, 410, sphere, 411, compression spring, 5, feeding groove, 6, hanging component, 601, hanging groove, 602, hook, 7, excrement collecting plate, 8 and slide rail.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. The specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Example 1
The invention provides a spliced structure and a spliced white goose brooding cage, and the spliced structure and the spliced white goose brooding cage are exemplified as shown in fig. 1-6. Mainly be to among the prior art brood cage mostly fixed multilayer structure, it is inconvenient to splice, comparatively loaded down with trivial details problem in the dismouting process.
In this embodiment, through setting up two sets of frames 1 and multiunit cylinder mould 2, the tip of multiunit cylinder mould 2 passes through mosaic structure 3 and connects between two sets of frames 1 to make things convenient for the fixed between frame 1 and the cylinder mould 2, thereby made things convenient for the equipment of brooding cage, be convenient for its dismantlement simultaneously. It should be noted that the multiple groups of nettings 2 are arranged in a stepwise manner, mainly for facilitating the cleaning of faeces and sundries.
Specifically, the splicing structure 3 includes a first connecting plate 301 and a connecting block 302, the first connecting plate 301 is fixed at the end of the netpen 2, and the connecting block 302 is fixed at the side wall of the frame 1. The end of the netpen 2 is conveniently connected with the side wall of the frame 1 through the arrangement of the first connecting plate 301 and the connecting block 302. And a connecting groove 303 matched with the connecting block 302 is formed in the surface of the first connecting plate 301, the first connecting plate 301 is sleeved outside the connecting block 302 through the connecting groove 303, a positioning component 4 is arranged inside the connecting block 302, and the first connecting plate 301 and the connecting block 302 are fixed together through the positioning component 4. The first connecting plate 301 and the connecting block 302 are locked through the positioning assembly 4, and meanwhile, the surface of the first connecting plate 301 is attached to the surface of the frame 1, so that the strength of integral connection can be improved, and the shaking condition of the first connecting plate is avoided.
Further, the connecting block 302 includes a rectangular tube 304 matching with the connecting groove 303 and a connecting strip 305 fixed on the outer side of the rectangular tube 304, the connecting strip 305 is fixed on the frame 1, and the positioning assembly 4 is located inside the rectangular tube 304.
The width of the connecting strip 305 is smaller than that of the rectangular pipe 304, so that the first connecting plate 301 can be sleeved outside the rectangular pipe 304 through the connecting groove 303, and the splicing of the net cage 2 is facilitated through the cooperation of the connecting groove 303 and the rectangular pipe 304, and after the first connecting plate 301 is sleeved outside the rectangular pipe 304 through the connecting groove 303, the first connecting plate 301 and the rectangular pipe 304 are locked together through the positioning assembly 4.
Specifically, the positioning assembly 4 includes an adjustment bar 401 connected inside the rectangular tube 304 and a positioning bar 402 connected to an end of the adjustment bar 401. The top and bottom of the rectangular tube 304 are provided with through holes 403 matched with the positioning rods 402, the inner side of the connecting groove 303 is provided with positioning holes 404 matched with the positioning rods 402, and the adjusting rod 401 can drive the positioning rods 402 to be inserted into the positioning holes 404.
Through adjusting the pole 401 and remove to can drive locating lever 402 and insert in locating hole 404, and then can link together rectangular pipe 304 and connecting block 302, avoid droing, can improve overall stability.
The adjustment bar 401 includes a screw 405 and a conical head 406 fixed to an end of the screw 405. The end of the rectangular pipe 304 is connected with a second connecting plate 407, and the second connecting plate 407 is provided with a threaded hole 408 for connecting the screw 405.
The screw 405 is positioned by the arrangement of the second connecting plate 407, and the screw 405 moves in the threaded hole 408 by rotating, so that the conical head 406 can be driven to extrude the positioning rod 402 to extend out of the through hole 403 and be inserted into the positioning hole 404. The cone 406 is provided in a conical configuration.
In addition, in order to make the positioning rod 402 automatically separate from the positioning hole 404, the positioning rod 402 includes a rod 409 and a sphere 410 fixed at the end of the rod 409, the surface of the sphere 410 is attached to the surface of the conical head 406, a compression spring 411 is sleeved outside the rod 409, and the rod 409 is movably inserted into the through hole 403.
The conical head 406 can squeeze the sphere 410 in the moving process so as to drive the rod 409 to extend, and friction between the conical head 406 and the sphere 410 is reduced by the arrangement of the conical head 406 and the sphere 410. After the cone 406 is withdrawn, the compression spring 411 springs back so that the end of the rod 409 is disengaged from the positioning hole 404. In addition, the end of the rod 409 is configured in an arc-shaped structure, which facilitates its insertion into the positioning hole 404.
Example two
To facilitate assembly of the feeding trough 5, the ends of the feeding trough 5 are connected to the sides of the first connection plate 301 by a hitch assembly 6, as shown in fig. 1 and 7.
Specifically, the hooking component 6 includes a hooking groove 601 formed at the edge of the first connecting plate 301, and a hook 602 movably inserted into the hooking groove 601, where the end of the hook 602 is fixed at the edge of the feeding groove 5. In this embodiment, the hanging groove 601 and the hook 602 are both in an L-shaped structure, and when the feeding groove 5 is connected, the hook 602 is inserted into the hanging groove 601, so that the feeding groove 5 is convenient to disassemble and assemble.
Example III
As shown in fig. 1 and 8, for convenience in collecting the feces and the sundries, a feces collecting plate 7 is arranged between the bottoms of the two groups of frames 1, a sliding rail 8 is fixedly connected to the bottom of the side face of the frame 1, and the feces collecting plate 7 is movably connected to the sliding rail 8, so that the feces collecting plate is pulled out to be cleaned. Because the multi-group net cages 2 are arranged in a step-type manner, no shielding object exists below the net cages, so that the excrement and the sundries can smoothly fall on the excrement collecting plate 7, and the excrement and the sundries can be conveniently collected.
During assembly, the steps are as follows:
(a) Firstly, connecting two ends of a lower layer net cage 2 with two groups of frames 1;
(b) The first connecting plate 301 is sleeved outside the rectangular pipe 304 through the connecting groove 303;
(c) The conical head 406 can be driven to squeeze the positioning rod 402 to extend out of the through hole 403 and be inserted into the positioning hole 404 by rotating the screw 405 to move in the threaded hole 408;
(d) Then referring to the steps, splicing the upper layer of net cage 2;
(e) Assembling the feeding groove 5, inserting a hook 602 at the end of the feeding groove into a hanging groove 601, and hanging the feeding groove 5 at the edge of the net cage 2;
(f) Assemble excrement and urine collecting plate 7, connect excrement and urine collecting plate 7 on slide rail 8 for excrement and urine, debris can be smooth drop on excrement and urine collecting plate 7, and then have made things convenient for collecting excrement and urine, debris.
It should be noted that, although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood that modifications, equivalents, and improvements to some of the technical features described in the foregoing embodiments may be made by those skilled in the art, and all modifications, equivalents, improvements and modifications are intended to be included in the scope of the present invention.