CN211832324U - High-strength captive breeding frame structure - Google Patents

High-strength captive breeding frame structure Download PDF

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Publication number
CN211832324U
CN211832324U CN202020037776.1U CN202020037776U CN211832324U CN 211832324 U CN211832324 U CN 211832324U CN 202020037776 U CN202020037776 U CN 202020037776U CN 211832324 U CN211832324 U CN 211832324U
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CN
China
Prior art keywords
fence
installation
captive
subassembly
frame structure
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Expired - Fee Related
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CN202020037776.1U
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Chinese (zh)
Inventor
姚达艮
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Xuzhou Zhenfang Textile Co ltd
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Xuzhou Zhenfang Textile Co ltd
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Priority to CN202020037776.1U priority Critical patent/CN211832324U/en
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Abstract

The utility model relates to the technical field of captive breeding, in particular to a high-strength captive breeding frame structure, which comprises a mounting soil layer, a mounting wall and a captive breeding mechanism, wherein the captive breeding mechanism comprises a fixing component, a buffering component, a first fence component and two groups of second fence components, the first fence component and the two groups of second fence components are respectively arranged on three mounting bases and run through the mounting soil layer, the fixing component is obliquely arranged on the two second fence components, and the buffering component is fixedly arranged on the first fence component. Meanwhile, the time for a farmer to install and disassemble the captive breeding mechanism is saved.

Description

High-strength captive breeding frame structure
Technical Field
The utility model relates to a captive breeding technical field, concretely relates to high strength captive breeding frame construction.
Background
Animal husbandry is a production department for obtaining animal products such as meat, eggs, milk, wool, cashmere, leather, silk and medicinal materials by utilizing the physiological functions of animals such as livestock and poultry which are domesticated by human beings or wild animals such as deer, musk, fox, marten, otter and quail and converting the plant energy such as pasture and feed into animal energy through artificial feeding and breeding, and is one of the most important links for exchanging substances between human beings and the nature, and the animal husbandry is one of the components of agriculture and is two major pillars for agricultural production together with the planting industry.
In order to provide better feeding and breeding environment and convenient management for livestock and poultry, a captive frame is generally required to be built as a breeding shed and a house of the livestock and poultry, but the existing captive frame is simple in structure, when animals such as cattle, porcupines and horses with large body sizes are fed, the animals are easily collided by the livestock and poultry and are damaged, after the captive frame is damaged, the livestock and poultry can be lost, the difficulty is caught again, the captive frame is built again and consumes time and labor, a farmer can suffer from serious loss, meanwhile, the existing captive mechanism is mostly built manually, the installation and the disassembly are complex, and the convenience is brought, so that a large amount of time and energy of the farmer are wasted.
In view of the deficiencies of the prior art, there is a need for a high strength containment frame structure that effectively prevents the destruction of large livestock and is easy to install and remove.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high strength captive breeding frame construction.
To achieve the purpose, the utility model adopts the following technical proposal:
the utility model provides a high strength captive breeding frame construction, including installation soil layer and installation wall, still include captive breeding mechanism, captive breeding mechanism establishes on the installation soil layer and with installation wall fixed connection in order to captive large-scale livestock, captive breeding mechanism is including fixed subassembly, buffering subassembly, first rail subassembly and two sets of second rail subassemblies, the inside on installation soil layer is the angle level through the rivet and is provided with three installation base, and first rail subassembly and two sets of second rail subassemblies set up respectively on three installation base and run through the installation soil layer, fixed subassembly slope sets up on two second rail subassemblies, the buffering subassembly is fixed to be set up on first rail subassembly.
Preferably, the first fence component comprises a plurality of positive fences, each positive fence is in threaded connection with the mounting base, and a first enclosing rod is inserted into the tops of the plurality of positive fences.
Preferably, each group of second fence assemblies comprises a plurality of side fences, each side fence is in threaded connection with the mounting base, and a second enclosing rod is inserted into the tops of the side fences.
Preferably, the one end that first rail was kept away from to every second rail all passes through gasket fixed connection with the installation wall, the both ends of first rail are all fixed and are equipped with first nestedly, and the one end that the gasket was kept away from to every second rail all is fixed and is equipped with the second nestedly, first nestedly and the nested inside of second are inserted and are equipped with "L" shape abaculus, "L" shape abaculus is made by metal material.
Preferably, the buffering component comprises two elastic plates, and each elastic plate is fixedly connected with the outer walls of the plurality of positive fences.
Preferably, the fixed component comprises two connecting rods, each connecting rod is fixedly provided with a plurality of inserting columns, and each inserting column is inserted and connected with a plurality of side fences.
Preferably, each side fence is provided with a jack for inserting the insertion column.
The utility model has the advantages that: when carrying out the installation of captive mechanism, at first bury three installation base level in the inside of installation soil layer, three installation base is ninety degrees in proper order and puts, the rethread rivet is fixed, and expose a plurality of screw that sets up on the installation base, three installation base is fixed the back, screw a plurality of positive fence along the screw on one of them installation base in proper order after that, the bottom and the laminating of installation soil layer top of the positive fence of a plurality of until, then insert the top of establishing a plurality of positive fence with first rail level, the hand is dabbed in order to close tightly after the installation.
After a plurality of positive fence is installed, install a plurality of side fence respectively on two other installation bases again, then insert the second rail level and establish the top at a plurality of side fence, install the back and pat with the hand in order closing tightly, after first rail and two second rails are installed, insert first nested inside with the second is nested with "L" shape abaculus, in order to close first rail and two second rails, then install two gaskets respectively on two installation walls with the connection of fastening two second rails and wall, the "L" shape abaculus that the metal material made, can effectively weaken the impact force that large-scale livestock caused to the mechanism of housing a pen, close first rail and two second rails simultaneously, be favorable to tightly connecting the three as an organic whole, strengthen the whole fastness of the mechanism of housing a pen, and then promote the intensity of the framework structure of housing a pen.
After a plurality of side fences are installed on the installation base, two connecting rods are respectively installed on the side fences at the two ends of the captive breeding mechanism in an inclined mode, and when the connecting rods are installed, the inserting posts are sequentially inserted into the inserting holes in the side fences, so that the connecting rods can be installed on the plurality of side fences in an inclined mode.
When some livestock were raised in captivity, because the mood is irritated etc. can collide to the captivity mechanism and run away, when the livestock collided the captivity mechanism, two elastic plates can reduce the destruction dynamics of livestock to the captivity mechanism to prevent that the captivity mechanism from being destroyed, elastic plate self possesses elasticity simultaneously, can protect the livestock health, and is injured when preventing the livestock from colliding.
The utility model discloses a high strength captive breeding frame construction, through design installation soil layer, installation wall and captive breeding mechanism, and mutually support through the three, compare in current captive breeding technique, intensity is higher, can prevent effectively that large-scale livestock from offeing and damaging the captive breeding frame, prevent escaping or even wandering away of animal, the economic loss of breeder has been reduced, the elastic plate has been designed simultaneously, when large-scale livestock striking, the striking dynamics has been reduced, captive breeding mechanism has been protected, and can protect the livestock health, prevent the injury of livestock, and compare in current captive breeding technique, it is very convenient to install and dismantle, the migration of the breeder of being convenient for to the captive breeding place, the time of breeder installation and dismantlement captive breeding mechanism has been saved simultaneously.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings in the embodiments of the present invention are briefly described below.
Fig. 1 is a schematic perspective view of the present invention;
fig. 2 is a schematic perspective view of the present invention;
FIG. 3 is an enlarged view taken at A in FIG. 2;
fig. 4 is a schematic three-dimensional structure diagram of the present invention;
FIG. 5 is an enlarged view of FIG. 4 at B;
FIG. 6 is an enlarged view at C in FIG. 4;
FIG. 7 is a three-dimensional exploded view of the containment mechanism of the present invention;
FIG. 8 is an enlarged view of FIG. 7 at D;
fig. 9 is a schematic perspective exploded view of the elastic plate of the present invention;
in the figure: the building construction method comprises the following steps of installing a soil layer 1, installing a wall 2, a captive breeding mechanism 3, a fixing component 4, a buffering component 5, a first fence component 6, a second fence component 7, rivets 8, an installing base 9, a front fence 10, a first surrounding rod 11, a side fence 12, a second surrounding rod 13, a gasket 14, a first nesting sleeve 15, a second nesting sleeve 16, an 'L' -shaped embedded block 17, an elastic plate 18, a connecting rod 19, a plug-in column 20 and a plug hole 21.
Detailed Description
The technical scheme of the invention is further explained by the specific implementation mode in combination with the attached drawings.
Wherein the showings are for the purpose of illustration only and are shown by way of illustration only and not in actual form, and are not to be construed as limiting the present patent; to better illustrate the embodiments of the present invention, some components of the drawings may be omitted, enlarged or reduced, and do not represent the size of an actual product.
Referring to fig. 1 to 9, shown a high strength captive frame construction, including installation soil layer 1 and installation wall 2, still include captive mechanism 3, captive mechanism 3 establishes on installation soil layer 1 and with installation wall 2 fixed connection in order to captivate large-scale livestock, captive mechanism 3 includes fixed subassembly 4, buffering subassembly 5, first rail subassembly 6 and two sets of second rail subassembly 7, the inside of installation soil layer 1 is angle level through rivet 8 and is provided with three installation base 9, and first rail subassembly 6 and two sets of second rail subassembly 7 set up respectively on three installation base 9 and run through installation soil layer 1, the slope of fixed subassembly 4 sets up on two second rail subassemblies 7, buffering subassembly 5 is fixed to be set up on first rail subassembly 6.
First rail subassembly 6 includes the positive fence 10 of a plurality of, every equal threaded connection of positive fence 10 is on installation base 9, the top of the positive fence 10 of a plurality of is inserted and is equipped with a first rail 11, when carrying out the installation of captive breeding mechanism 3, at first bury the inside at installation soil layer 1 with three installation base 9 level, three installation base 9 is ninety degrees in proper order and puts, and then fix through rivet 8, and expose a plurality of screw that sets up on the installation base 9, three installation base 9 is fixed the back, then screw a plurality of positive fence 10 along the screw on one of them installation base 9 in proper order, the bottom and the installation soil layer 1 top laminating of the positive fence 10 of a plurality of, then insert the top of establishing at the positive fence 10 of a plurality of with first rail 11 level, with the hand tap in order to close tightly after the installation.
Every group second rail subassembly 7 includes a plurality of side fence 12, and every side fence 12 is threaded connection on installation base 9 all, and a second rail 13 is equipped with in the top of a plurality of side fence 12 insertion, and after a plurality of positive fence 10 was installed, install a plurality of side fence 12 respectively on two other installation bases 9 again, then insert second rail 13 level and establish the top at a plurality of side fence 12, and the hand is dabbed in order to close tightly after the installation.
One end of each second surrounding rod 13, which is far away from the first surrounding rod 11, is fixedly connected with the mounting wall 2 through a gasket 14, two ends of the first surrounding rod 11 are fixedly provided with a first nesting 15, one end of each second surrounding rod 13, which is far away from the gasket 14, is fixedly provided with a second nesting 16, an "L" -shaped insert 17 is inserted into the first nesting 15 and the second nesting 16, the "L" -shaped insert 17 is made of metal material, after the first surrounding rod 11 and the two second surrounding rods 13 are mounted, the "L" -shaped insert 17 is inserted into the first nesting 15 and the second nesting 16 to close the first surrounding rod 11 and the two second surrounding rods 13, then the two gaskets 14 are respectively mounted on the two mounting walls 2 to fasten the two second surrounding rods 13 to the walls, and the "L" -shaped insert 17 made of metal material can effectively weaken the impact force of large livestock on the housing mechanism 3, close first enclosing pole 11 and two second enclosing poles 13 tightly simultaneously, be favorable to tightly connecting the three as an organic whole, strengthen the whole fastness of captive breeding mechanism 3, and then promote the intensity of captive breeding frame construction.
Buffer unit 5 includes two elastic plates 18, every elastic plate 18 all with the outer wall fixed connection of the positive fence 10 of a plurality of, when partial livestock is captivated, because the mood is irritated etc., can collide and run away to the captive organ 3, when the livestock collides the captive organ 3, two elastic plates 18 can reduce the livestock to the destruction dynamics of the captive organ 3, thereby prevent that the captive organ 3 from being destroyed, elastic plate 18 self possesses elasticity simultaneously, can protect the livestock health, be injured when preventing the livestock from colliding.
The fixing component 4 comprises two connecting rods 19, each connecting rod 19 is fixedly provided with a plurality of inserting columns 20, each inserting column 20 is connected with a plurality of side fences 12 in an inserting mode, and after the side fences 12 are installed on the installation base 9, the two connecting rods 19 are installed on the side fences 12 at the two ends of the captive breeding mechanism 3 in an inclined mode respectively.
Each side fence 12 is provided with an insertion hole 21 for inserting the insertion post 20, when the connecting rod 19 is installed, the insertion posts 20 are inserted in sequence along the insertion holes 21 on the side fences 12, and then the connecting rods 19 can be installed on a plurality of side fences 12 in an inclined manner.
The utility model discloses a theory of operation: when carrying out the installation of captive mechanism 3, at first bury three installation base 9 level in the inside of installation soil layer 1, three installation base 9 is ninety degrees in proper order and puts, rethread rivet 8 is fixed, and expose a plurality of screw that sets up on the installation base 9, three installation base 9 is fixed the back, screw a plurality of positive fence 10 along the screw on one of them installation base 9 in proper order after that, the bottom and the 1 top laminating of installation soil layer of positive fence 10 of a plurality of, then insert the top of establishing at the positive fence 10 of a plurality of with first rail 11 level, the hand is patted with the tight in order to close after the installation.
After a plurality of front fences 10 are installed, a plurality of side fences 12 are respectively installed on the other two installation bases 9, then second surrounding rods 13 are horizontally inserted at the tops of the plurality of side fences 12 and are lightly tapped by hands after installation, after a first surrounding rod 11 and two second surrounding rods 13 are installed, an L-shaped insert block 17 is inserted into a first nesting sleeve 15 and a second nesting sleeve 16 to tightly close the first surrounding rod 11 and the two second surrounding rods 13, then two gaskets 14 are respectively installed on two installation walls 2 to fasten the two second surrounding rods 13 and the walls, the L-shaped insert block 17 made of metal can effectively weaken the impact force of large livestock on the captive breeding mechanism 3, and meanwhile, the first surrounding rod 11 and the two second surrounding rods 13 are tightly closed to be favorable for tightly connecting the three into a whole and strengthen the integral firmness of the captive breeding mechanism 3, thereby improving the strength of the captive frame structure.
After the side fences 12 are installed on the installation base 9, two connecting rods 19 are respectively installed on the side fences 12 at two ends of the housing mechanism 3 in an inclined mode, and when the connecting rods 19 are installed, the inserting posts 20 are sequentially inserted along the inserting holes 21 in the side fences 12, so that the connecting rods 19 can be installed on the side fences 12 in an inclined mode.
When some livestock were raised in captivity, because the mood is irritated etc. can collide to the mechanism 3 of captivity and run away, when the livestock collided the mechanism 3 of captivity, two elastic plates 18 can reduce the livestock to the destruction dynamics of the mechanism 3 of captivity to prevent that the mechanism 3 of captivity is destroyed, elastic plate 18 self possesses elasticity simultaneously, can protect the livestock health, and is injured when preventing the livestock and collide.

Claims (7)

1. The utility model provides a high strength captive frame construction, includes installation soil layer (1) and installation wall (2), its characterized in that: still include captive breeding mechanism (3), captive breeding mechanism (3) establish on installation soil layer (1) and with installation wall (2) fixed connection in order to captive breed large-scale livestock, captive breeding mechanism (3) are including fixed subassembly (4), buffering subassembly (5), first rail subassembly (6) and two sets of second rail subassembly (7), the inside of installation soil layer (1) is angle level through rivet (8) and is provided with three installation base (9), and first rail subassembly (6) and two sets of second rail subassembly (7) set up respectively on three installation base (9) and run through installation soil layer (1), fixed subassembly (4) slope sets up on two second rail subassemblies (7), buffering subassembly (5) are fixed to be set up on first rail subassembly (6).
2. A high strength containment frame structure as claimed in claim 1, wherein: the first fence component (6) comprises a plurality of positive fences (10), each positive fence (10) is in threaded connection with the mounting base (9), and a first surrounding rod (11) is inserted into the tops of the plurality of positive fences (10).
3. A high strength containment frame structure as claimed in claim 2, wherein: each group of second fence assemblies (7) comprises a plurality of side fences (12), each side fence (12) is in threaded connection with the mounting base (9), and a second fence rod (13) is inserted into the tops of the side fences (12).
4. A high strength containment frame structure as claimed in claim 3, wherein: every second encloses pole (13) and keeps away from the one end of first enclosing pole (11) and all passes through gasket (14) fixed connection with installation wall (2), the both ends of first enclosing pole (11) are all fixed and are equipped with first nested (15), and the one end that gasket (14) were kept away from in every second enclosing pole (13) is all fixed and is equipped with nested (16) of second, the inside of first nested (15) and nested (16) of second is inserted and is equipped with "L" shape abaculus (17), "L" shape abaculus (17) are made by metal material.
5. A high strength containment frame structure as claimed in claim 4, wherein: the buffer assembly (5) comprises two elastic plates (18), and each elastic plate (18) is fixedly connected with the outer walls of the plurality of positive fences (10).
6. A high strength containment frame structure as claimed in claim 5, wherein: the fixed component (4) comprises two connecting rods (19), a plurality of inserting columns (20) are fixedly arranged on each connecting rod (19), and each inserting column (20) is connected with a plurality of side fences (12) in an inserting mode.
7. A high strength containment frame structure as claimed in claim 6, wherein: each side fence (12) is provided with a jack (21) for the insertion of the insertion column (20).
CN202020037776.1U 2020-01-08 2020-01-08 High-strength captive breeding frame structure Expired - Fee Related CN211832324U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020037776.1U CN211832324U (en) 2020-01-08 2020-01-08 High-strength captive breeding frame structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020037776.1U CN211832324U (en) 2020-01-08 2020-01-08 High-strength captive breeding frame structure

Publications (1)

Publication Number Publication Date
CN211832324U true CN211832324U (en) 2020-11-03

Family

ID=73212589

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020037776.1U Expired - Fee Related CN211832324U (en) 2020-01-08 2020-01-08 High-strength captive breeding frame structure

Country Status (1)

Country Link
CN (1) CN211832324U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20201103

CF01 Termination of patent right due to non-payment of annual fee