CN216567767U - Multifunctional fishpond - Google Patents
Multifunctional fishpond Download PDFInfo
- Publication number
- CN216567767U CN216567767U CN202120866789.4U CN202120866789U CN216567767U CN 216567767 U CN216567767 U CN 216567767U CN 202120866789 U CN202120866789 U CN 202120866789U CN 216567767 U CN216567767 U CN 216567767U
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- water supply
- fish
- fixing
- supply pipe
- columns
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/80—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management
- Y02A40/81—Aquaculture, e.g. of fish
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Abstract
The utility model discloses a multifunctional fishpond, comprising: the bottom wall, two first perpendicular walls and two second perpendicular walls, two equal vertical installation of four edges of first perpendicular wall has the support column, and is adjacent equal horizontal installation has a fixed column between the support column, two it is connected with the bearing post to slide between the fixed column, two the top of fixed column all is provided with and is used for the drive the first drive assembly of bearing post motion, the slide has been seted up at the top of bearing post, the slide internal slipping is connected with the slider, the bottom surface of slider sets up dress fish subassembly, the top of bearing post is provided with second drive assembly. When a breeder catches the fish, the fishnet is convenient for the breeder to load the supplemented fish into the fishnet, the workload of the workers is reduced, and time and labor are saved.
Description
Technical Field
The utility model relates to the technical field of fishponds, in particular to a multifunctional fishpond.
Background
The fish pond is also used for culturing fish. The water is the environment for the fish to live in, and the better water can reduce the occurrence of fish diseases and is more beneficial to the growth and the survival of the fish. And the fish in the fishpond can be appreciated. Especially for the aquaculture industry, fish ponds are indispensable.
However, in the prior art, after the fish culture is successful, a breeder often needs to hold the fishing net by hand to fish, and since the fishpond is relatively large, after the breeder finishes fishing, the breeder needs to turn back and run to place the caught fish to a place to be stored, which inevitably increases the workload of the breeder, and needs to be further improved.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a multifunctional fishpond, which is convenient for a breeder to load supplemented fish into a fish net when the breeder catches fish, reduces the workload of the worker and saves time and labor.
In order to solve the technical problems, the technical scheme of the utility model is as follows:
a multi-functional aquarium comprising: the outer side of the first vertical wall is provided with a plurality of first connecting rods, the outer ends of the first connecting rods are horizontally provided with fixed rods, the top side of each fixed rod is provided with a sliding groove along the length direction of the corresponding fixed rod, a moving block is connected in the sliding groove in a sliding manner along the length direction of the sliding groove, the top of the moving block is provided with a water supply assembly, supporting columns are vertically arranged at four corners of each first vertical wall, a fixed column is horizontally arranged between every two adjacent supporting columns, a bearing column is connected between every two fixed columns in a sliding manner along the length direction of the corresponding fixed column, the top of each fixed column is provided with a first driving assembly for driving the bearing column to move, the top of each bearing column is provided with a sliding way along the length direction of the corresponding bearing column, and a sliding block is connected in the sliding way in the length direction of the sliding way in a sliding manner, the bottom surface of slider is provided with the dress fish subassembly that is used for adorning the fish, the top of bearing the post is provided with and is used for driving the second drive assembly of slider motion.
Preferably, the water supply assembly includes: the first water supply pipe is vertically arranged at the top of the moving block, and one end of the first water supply pipe is connected with a water source; a second water supply pipe installed at a top end of the first water supply pipe; and the spray head is arranged at one end of the second water supply pipe, which is far away from the first water supply pipe.
Preferably, the bottom of the sliding groove is provided with a plurality of fixing grooves along the length direction of the sliding groove, the top of the moving block is provided with a second through hole, and a fixing pin extending into the fixing grooves from the bottom end is inserted into the second through hole.
Preferably, the first drive assembly comprises: two fixed blocks which are arranged at the tops of the fixed columns in parallel; the rotating rods are arranged on one sides of the two fixed blocks; chain wheels arranged on the peripheral sides of the two rotating rods; the chain is arranged between the two chain wheels; the first servo motor is arranged at one end, far away from the chain wheel, of one rotating rod; and the second connecting rod is arranged on one side of the chain, which is far away from the rotating rod, and is fixed with the bearing column.
Preferably, the second drive assembly comprises: supporting blocks arranged at four corners of the bearing column; the rotating shaft is arranged between the adjacent supporting blocks; the belt wheel is arranged on the periphery of the two rotating shafts and is positioned between the two supporting blocks; the belt is arranged between the two belt wheels, and the bottom side of the belt is fixed with the sliding block; and the second servo motor is arranged at the outer end of one of the rotating shafts.
Preferably, the fish loading assembly comprises: the connecting plate is arranged at the bottom side of the sliding block; connecting columns vertically arranged at four corners of the connecting plate; and the fish net is bound at the bottom ends of the four connecting columns and is used for containing fish.
Adopt above-mentioned technical scheme, when raising the fish and catching the fish, can drive through first drive assembly and bear the motion that the post made vertical direction, adjust the position of the vertical direction of fishnet, drive the fishnet through second drive assembly and make the horizontal direction motion, adjust the position of fishnet horizontal direction, breeder can be according to the position of self position control fishnet, and the fish that will catch is put in the fishnet, has reduced staff's work load, labour saving and time saving.
Drawings
FIG. 1 is a top view of the present invention;
fig. 2 is a front view of the present invention.
In the figure, 1, a first vertical wall; 11. fixing the rod; 12. a chute; 13. a moving block; 52. a second water supply pipe; 53. a spray head; 7. A drain pipe; 8. an on-off valve; 9. a first connecting rod; 61. fixing grooves; 62. a second through hole; 63. a fixing pin; 111. a support pillar; 112. fixing a column; 121. a rotating rod; 141. a chain; 151. a first servo motor; 161. a second connecting rod; 311. a load bearing column; 331. a support block; 332. a rotating shaft; 333. a pulley; 334. a belt; 335. a second servo motor; 411. a slideway; 511. a slider; 551. a connecting plate; 552. connecting columns; 553. a fish net; 171. and (5) fixing blocks.
Detailed Description
The following further describes embodiments of the present invention with reference to the drawings. It should be noted that the description of the embodiments is provided to help understanding of the present invention, but the present invention is not limited thereto. In addition, the technical features involved in the embodiments of the present invention described below may be combined with each other as long as they do not conflict with each other.
Referring to fig. 1 to 2, a multi-functional fishpond includes: the device comprises a bottom wall, a first vertical wall 1, a second vertical wall, a drain pipe 7, a switch valve 8, a first connecting rod 9, a fixed rod 11, a moving block 13, a supporting column 111, a fixed column 112, a bearing column 311, a sliding block 511, a fish loading assembly, a first driving assembly and a second driving assembly.
In the embodiment, the number of the first vertical walls 1 is two, the number of the second vertical walls is two, the two first vertical walls 1 and the two second vertical walls are arranged at intervals, the two first vertical walls 1 and the two second vertical walls are vertically arranged at the top of the bottom wall, and meanwhile, the two first vertical walls 1 and the two second vertical walls are connected end to form a cavity for containing fish;
the quantity of drain pipe is two, and two drain pipes are installed in the outside of one of them first vertical wall, and when needs traded water, the water in the cavity can be discharged in the external world through the drain pipe.
The number of the switch valves is two, and the two switch valves are respectively arranged on the peripheral sides of the two drain pipes.
The number of the first connecting rods 9 is plural, and in the present embodiment, four first connecting rods 9 are horizontally installed at the outer side of one of the first vertical walls 1.
The fixing rod 11 is horizontally arranged at the outer ends of the four first connecting rods 9, meanwhile, a sliding groove 12 is formed in the top of the fixing rod 11, and the sliding groove 12 is formed in the length direction of the fixing rod 11.
The moving block 13 is connected in the sliding groove 12 in a sliding manner along the length direction of the sliding groove 12, and a water supply assembly is arranged at the top of the moving block 13 and can supply water for the cavity.
In this embodiment, the water supply assembly includes: a first water supply pipe, a second water supply pipe 52, and a spray head 53. The first water supply pipe is L-shaped, and is arranged at the top of the moving block 13, the moving block 13 is moved, the moving block 13 drives the first water supply pipe to move, and meanwhile, one end of the first water supply pipe is communicated with a water source;
the second water supply pipe 52 is horizontally arranged at the top end of the first water supply pipe, and one end of the second water supply pipe 52 far away from the first water supply pipe extends into the cavity, so that the water source entering the first water supply pipe can enter the second water supply pipe 52;
the spray nozzle 53 is installed at one end of the second water supply pipe 52 far from the first water supply pipe, and water entering the second water supply pipe 52 can enter the cavity through the spray nozzle 53;
in order to fix the moving block 13, a plurality of fixing grooves 61 are formed in the bottom of the slide groove 12 along the longitudinal direction of the slide groove 12, a second through hole 62 is formed in the top of the moving block 13, the second through hole 62 corresponds to one of the fixing grooves 61, a fixing pin 63 extending into the fixing groove 61 is inserted into the second through hole 62, and the fixing pin 63 can fix the moving block 13 in the slide groove 12.
The quantity of support column 111 is four, and four support columns 111 are respectively vertical and are installed at four corners of first vertical wall 1, moreover, parallel arrangement between two adjacent support columns 111.
The number of the fixed columns 112 is two, two fixed columns 112 are installed between two adjacent supporting columns 111, and the two fixed columns 112 are arranged in parallel.
Bearing post 311 slides and connects between two fixed columns 112, and moreover, bearing post 311 can slide along fixed column 112's length direction, and simultaneously, bearing post 311's top surface is higher than fixed column 112's top surface, and two fixed column 112's top all is provided with first drive assembly, and first drive assembly can drive bearing post 311 along linear motion.
In this embodiment, the number of the first driving assemblies is two, and taking one of the first driving assemblies as an example, the first driving assembly includes: fixed block 171, rotating rod 121, sprocket, chain 141, first servo motor 151 and second connecting rod 161. The number of the fixed blocks 171 is two, and the two fixed blocks 171 are symmetrically arranged at the tops of the bearing columns 311; the number of the rotating rods 121 is two, the two rotating rods 121 are respectively installed at the inner sides of the two fixing blocks 171, and the outer end of one of the rotating rods 121 can extend out of the corresponding fixing block 171.
The number of sprocket is two, and two sprockets are installed respectively on two bull sticks 121, rotate two bull sticks 121, and two bull sticks 121 drive two sprocket rotations respectively.
The chain 141 is disposed between the two sprockets, and the chain 141 is engaged with the two sprockets to rotate one of the sprockets, so that the chain 141 can move linearly.
The first servo motor 151 is installed at an outer side of one of the fixing blocks 171, and an output shaft of the first servo motor 151 is fixed to an outer end of the rotating rod 121, and the output shaft of the first servo motor 151 can drive the rotating rod 121 to rotate by rotation of the output shaft of the first servo motor 151.
One end of the second connecting rod 161 is fixed to the side of the chain 141 far away from the first servo motor 151, the side of the second connecting rod 161 far away from the chain 141 is fixed to the top surface of the bearing column 311, the chain 141 drives the second connecting rod 161 to move linearly through the linear movement of the chain 141, the second connecting rod 161 is fixed to the bearing column 311, and the second connecting rod 161 drives the bearing column 311 to move linearly.
In this embodiment, a slide way 411 is disposed on the top of the bearing column 311 along the length direction of the bearing column 311, the slider 511 is slidably connected in the slide way 411, and the slider 511 can slide along the length direction of the slide way 411.
The second driving assembly is disposed on the top of the bearing column 311, and the second driving assembly can drive the sliding block 511 to move linearly. In this embodiment, the second driving assembly includes: the supporting blocks 331, the rotating shaft 332, the pulleys 333, the belt 334 and the second servo motor 335, the number of the supporting blocks 331 is four, and the four supporting blocks 331 are respectively installed at four corners of the bearing column 311.
The number of the rotating shafts 332 is two, the two rotating shafts 332 are respectively installed between two adjacent supporting blocks 331 along the vertical direction, and the outer end of one of the rotating shafts 332 can extend out of the supporting block 331 corresponding thereto.
The number of the pulleys 333 is two, the two pulleys 333 are respectively installed on the peripheral sides of the two rotating shafts 332, and the pulleys 333 are located between the two adjacent supporting blocks 331, so that the rotating shafts 332 are rotated, and the rotating shafts 332 drive the pulleys 333 to move.
The belt 334 is disposed between the two pulleys 333, the pulleys 333 drive the belt 334 to move linearly by the movement of the pulleys 333, the bottom sides of the pulleys 333 are fixed to the top of the slider 511, and the pulleys 333 drive the slider 511 to move linearly by the linear movement of the belt 334.
The second servo motor 335 is installed at the outer end of the rotating shaft 332, and the rotating shaft 332 is driven to rotate by the output shaft of the second servo motor 335 through the rotation of the output shaft of the second servo motor 335.
The fish loading assembly is arranged at the bottom of the sliding block 511, and the sliding block 511 can drive the fish loading assembly to do linear motion through the linear motion of the sliding block 511. In this embodiment, dress fish subassembly includes: a connecting plate 551, a connecting column 552 and a fishing net 553.
The connecting plate 551 has a rectangular parallelepiped shape, and the connecting plate 551 is installed on the bottom side of the slider 511, and the slider 511 drives the connecting plate 551 to move linearly by the linear movement of the slider 511.
The number of the connecting posts 552 is four, and the four connecting posts 552 are vertically arranged at four corners of one side of the connecting plate 551 far away from the slider 511.
Four corners of the fishing net 553 are tied to the four connection posts 552, respectively, so that the fishing net 553 forms a cavity for holding fish, and when the fish is held, a worker places the caught fish into the cavity.
When feeding fish and catching fish, can drive the motion that bears post 311 to make vertical direction through first drive assembly, adjust the position of fish net 553 vertical direction, drive the fish net 553 through second drive assembly and make the horizontal direction motion, adjust the position of fish net 553 horizontal direction, breeder can be according to the position regulation fish net 553's of self position, put in fish net 553 between the fish that will supply, reduced staff's work load, labour saving and time saving.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. It will be apparent to those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, and the scope of protection is still within the scope of the utility model.
Claims (6)
1. A multi-functional aquarium comprising: end wall, two first perpendicular walls (1) and two second perpendicular walls (2), its characterized in that: a plurality of first connecting rods (9) are installed on the outer side of the first vertical wall (1), a fixing rod (11) is horizontally installed at the outer end of each first connecting rod (9), a sliding groove (12) is formed in the top side of each fixing rod (11) along the length direction of the corresponding fixing rod (11), a moving block (13) is connected in the sliding groove (12) in a sliding mode along the length direction of the corresponding sliding groove (12), a water supply assembly is arranged at the top of each moving block (13), supporting columns (111) are vertically installed at four corners of each first vertical wall (1), a fixing column (112) is horizontally installed between every two adjacent supporting columns (111), a bearing column (311) is connected between every two fixing columns (112) in a sliding mode along the length direction of the corresponding fixing column (112), and first driving assemblies used for driving the bearing column (311) to move are arranged at the tops of the two fixing columns (112), slide (411) have been seted up along the length direction of bearing post (311) at the top of bearing post (311), follow in slide (411) the length direction of slide (411) slides and is connected with slider (511), the bottom surface of slider (511) is provided with the dress fish subassembly that is used for adorning the fish, the top of bearing post (311) is provided with and is used for the drive the second drive assembly of slider (511) motion.
2. The multi-functional aquarium of claim 1, wherein: the water supply assembly includes: the first water supply pipe is vertically arranged at the top of the moving block (13), and one end of the first water supply pipe is connected with a water source; a second water supply pipe (52) installed at a top end of the first water supply pipe; and a spray head (53) mounted on an end of the second water supply pipe (52) remote from the first water supply pipe.
3. The multi-functional aquarium of claim 1, wherein: the bottom of the sliding groove (12) is provided with a plurality of fixing grooves (61) along the length direction of the sliding groove (12), the top of the moving block (13) is provided with a second through hole (62), and fixing pins (63) extending into the fixing grooves (61) from the bottom end are inserted into the second through holes (62).
4. The multi-functional aquarium of claim 1, wherein: the first drive assembly includes: two fixed blocks (171) which are arranged on the tops of the fixed columns (112) in parallel; a rotating rod (121) arranged at one side of the two fixed blocks (171); a sprocket wheel for installing the peripheral sides of the two rotating rods (121); a chain (141) disposed between the two sprockets; a first servo motor (151) arranged at one end of one of the rotating rods (121) far away from the chain wheel; and the second connecting rod (161) is arranged on one side of the chain (141) far away from the rotating rod (121) and is fixed with the bearing column (311).
5. The multi-functional aquarium of claim 1, wherein: the second drive assembly includes: supporting blocks (331) mounted at four corners of the bearing column (311); a rotating shaft (332) disposed between the adjacent supporting blocks (331); a pulley (333) mounted on the periphery of the two rotating shafts (332) and located between the two supporting blocks (331); a belt (334) disposed between the two pulleys (333) and having a bottom side fixed to the slider (511); and the second servo motor (335) is arranged at the outer end of one of the rotating shafts (332).
6. The multi-functional aquarium of claim 1, wherein: the dress fish subassembly includes: a connecting plate 551 mounted on the bottom side of the slider 511; connecting columns (552) vertically mounted at four corners of the connecting plate (551); a fishing net (553) which is tied at the bottom ends of the four connecting columns (552) and is used for containing fish.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120866789.4U CN216567767U (en) | 2021-04-26 | 2021-04-26 | Multifunctional fishpond |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120866789.4U CN216567767U (en) | 2021-04-26 | 2021-04-26 | Multifunctional fishpond |
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CN216567767U true CN216567767U (en) | 2022-05-24 |
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CN202120866789.4U Active CN216567767U (en) | 2021-04-26 | 2021-04-26 | Multifunctional fishpond |
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2021
- 2021-04-26 CN CN202120866789.4U patent/CN216567767U/en active Active
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