CN110999878A - Device for catching fish by electric energy - Google Patents

Device for catching fish by electric energy Download PDF

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Publication number
CN110999878A
CN110999878A CN202010019106.1A CN202010019106A CN110999878A CN 110999878 A CN110999878 A CN 110999878A CN 202010019106 A CN202010019106 A CN 202010019106A CN 110999878 A CN110999878 A CN 110999878A
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CN
China
Prior art keywords
cavity
shaft
gear
fish
end wall
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Withdrawn
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CN202010019106.1A
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Chinese (zh)
Inventor
不公告发明人
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Quzhou Stiffness Intelligent Technology Co ltd
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Quzhou Stiffness Intelligent Technology Co ltd
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Priority to CN202010019106.1A priority Critical patent/CN110999878A/en
Publication of CN110999878A publication Critical patent/CN110999878A/en
Withdrawn legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K79/00Methods or means of catching fish in bulk not provided for in groups A01K69/00 - A01K77/00, e.g. fish pumps; Detection of fish; Whale fishery
    • A01K79/02Methods or means of catching fish in bulk not provided for in groups A01K69/00 - A01K77/00, e.g. fish pumps; Detection of fish; Whale fishery by electrocution

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Marine Sciences & Fisheries (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Mechanical Means For Catching Fish (AREA)

Abstract

The invention discloses a device for catching fish by utilizing electric energy, which comprises an outer shell, wherein a fish box to be always taken is fixedly arranged at the right side of the outer shell, a rotary cavity is arranged in the outer shell, a fishing component is arranged in the rotary cavity, a fish guiding cavity is arranged below the rotary cavity, the opening of the first bevel gear fish leading cavity of the stop block is leftward, a magnet cavity is arranged above the fish leading cavity, a spring is fixedly arranged above the magnet cavity, the magnet is fixedly arranged below the spring, the closed block fixedly arranged on the magnet is arranged on the right side of the magnet cavity, the device has high fishing success rate, and a push plate which can not enter small fish is arranged, the container can be closed when the current is generated, and the current required by the close distance is small, so that the device can not generate any other influence except corona fish, and the liquid prevents the ecological damage caused by the adverse effect on the small fish, and prevents the ecological damage while automatically fishing.

Description

Device for catching fish by electric energy
Technical Field
The invention relates to the technical field of electric energy, in particular to a device for catching fish by utilizing electric energy.
Background
In China, the fishing industry is a long-standing industry, rivers are rich in China, and a large number of oceans are required to be owned, so that the fishing industry is very flourishing, but most fishing modes in China still depend on fishing or fishing nets to catch fish, so that operators are required to pay much labor force, the operators are very tired, and the caught fishes are too small to eat.
Therefore, there is a need for an automatic fishing device, which is dangerous and destructively attacks small fish in a river by using high voltage electric fish for a large water area in the prior art which uses a small current corona alone in a short distance by using a large fish trapping device and places the small fish trapping device.
Disclosure of Invention
Aiming at the technical defects, the invention provides a device for fishing by utilizing electric energy, which can overcome the defects.
The device for catching fish by utilizing electric energy comprises an outer shell, wherein a fish box is always required to be taken when the right side of the outer shell is fixedly installed, a rotating cavity is formed in the outer shell, a fish catching assembly is arranged in the rotating cavity, a fish guiding cavity is arranged below the rotating cavity, a first bevel gear of a stop block leads a fish cavity to be opened leftwards, a magnet cavity is arranged above the fish guiding cavity, a spring is fixedly installed above the magnet cavity, a magnet is fixedly installed below the spring, and a sealing block fixedly installed on the magnet is arranged on the right side of the magnet cavity;
a filter plate is arranged at the opening of the left side of the first helical gear fish leading cavity of the stop block, the filter plate is rotatably arranged in the upper end wall of the fish leading cavity through a rotating shaft, a return spring is fixedly arranged on the right end surface of the filter plate, the upper end of the return spring is fixedly arranged in the upper end wall of the fish leading cavity, an electromagnet cavity is arranged below the fish leading cavity, and the electromagnet cavity is communicated with the fish leading cavity;
the fish attracting device is characterized in that a gravity spring is fixedly installed on the lower end wall of the electromagnet cavity, the electromagnet cavity is fixedly installed above the gravity spring, a lower conducting rod is fixedly installed on the lower end wall of the fish attracting cavity, the right end of the lower conducting rod is electrically connected to the lower end face of an electric energy source, the electric energy source is installed in the outer shell, the left end face of the electric energy source is electrically connected with an upper conducting rod, and the left end of the upper conducting rod extends into the fish attracting cavity and is electrically connected with an electric coil.
Preferably, fixed mounting is equipped with first fixed block on the lower conducting rod up end, fixed mounting is equipped with the dog spring in the first fixed block, dog spring below fixed mounting is equipped with the dog, dog lower extreme wall with draw fish chamber lower extreme wall contact, it is equipped with the transmission chamber to draw fish chamber right side, transmission chamber below is equipped with the gear chamber, gear chamber below is equipped with intermittent type chamber, intermittent type chamber below is equipped with the pulley chamber, pulley chamber right side is equipped with out the water cavity, it is equipped with to go out the water cavity top be located get the chamber of depositing of fish incasement, it upwards is equipped with the apron and seals to deposit the chamber opening, pulley chamber below is equipped with the helical gear chamber, helical gear chamber right side is equipped with the fan blade chamber, the pulley intracavity is equipped with the removal subassembly, the intermittent type intracavity is equipped with drainage component.
Preferably, the fishing subassembly is installed including rotating the turning block in the end wall about the rotation chamber, turning block fixed mounting is on the primary shaft, the primary shaft is changeed and is installed rotate the chamber with between the transmission chamber, the primary shaft extends to second belt pulley is established to transmission intracavity and fixed mounting, second belt pulley right side is equipped with the third belt pulley, the third belt pulley with the second belt pulley is connected by driving belt, third belt pulley fixed mounting is on the secondary shaft, the secondary shaft rotates to be installed the transmission chamber with between the gear chamber.
Preferably, the lower end of the second shaft extends into the gear cavity and is fixedly provided with a fourth helical gear, the right end of the fourth helical gear is provided with a first helical gear in a gear meshing connection manner, the first helical gear is fixedly arranged on a third shaft, the left end of the third shaft is in power connection with a motor fixedly arranged in the left end wall of the gear cavity, a fifth helical gear is arranged below the first helical gear in a meshing connection manner, the fifth helical gear is fixedly arranged on a fourth shaft, the fourth shaft is rotatably arranged between the gear cavity and the intermittent cavity, the fourth shaft extends into the intermittent cavity and is fixedly provided with a sixth helical gear, a seventh helical gear is arranged below the sixth helical gear in a meshing connection manner, the seventh helical gear is fixedly arranged on a fifth shaft, and the front end and the rear end of the fifth shaft are respectively rotatably arranged in the front end wall and the rear end wall of the, the front side of the seventh bevel gear is provided with an eighth belt pulley fixedly mounted on the fifth shaft, and the front side of the eighth belt pulley is provided with a ninth gear fixedly mounted on the fifth shaft.
Preferably, the drainage assembly comprises a tenth gear which is located in the intermittent cavity and located below and meshed with the ninth gear, the tenth gear is fixedly mounted on a sixth shaft, the front end and the rear end of the sixth shaft are respectively rotatably mounted in the front end wall and the rear end wall of the intermittent cavity, a right semicircular gear fixedly mounted on the sixth shaft is arranged on the front side of the tenth gear, an eleventh gear is arranged on the left side of the tenth gear in a meshed connection manner, the eleventh gear is fixedly mounted on a seventh shaft, the front end and the rear end of the seventh shaft are respectively rotatably mounted in the front end wall and the rear end wall of the intermittent cavity, a left semicircular gear fixedly mounted on the seventh shaft is arranged on the front side of the eleventh gear, a twelfth gear is arranged below and meshed with the right semicircular gear in a connected manner, the twelfth gear is fixedly mounted on an eighth shaft, and the front end and the rear end of the eighth shaft are respectively rotatably mounted in the front end wall and the rear end wall of the intermittent cavity, a rack is arranged below the twelfth gear in a meshed and connected mode, the rack is installed in the lower end wall of the moving cavity communicated with the intermittent cavity in a sliding mode, the right end of the rack is fixedly connected with a push plate positioned in the water outlet cavity, the lower end wall of the left side of the water outlet cavity is fixedly provided with a limit block, the push plate is arranged in the water outlet cavity in a sliding way, the opening of the water outlet cavity is rightwards and is provided with a waterproof plate, the waterproof board is rotatably arranged in the upper end wall of the right side of the water outlet cavity through a rotating shaft, a water outlet spring is fixedly arranged on the left end surface of the waterproof board, an isolation plate fixedly arranged in the left end wall and the right end wall of the water outlet cavity is arranged between the water outlet cavity and the storage cavity for separation, the upper end of the water outlet spring is fixedly arranged on the lower end face of the isolation plate, and a water filter plate is further arranged in the isolation plate to enable water in the storage cavity to flow into the water outlet cavity.
Preferably, the moving assembly includes a belt pulley cavity, the moving assembly is connected to the eighth belt pulley through a rotating belt, the moving assembly is fixedly mounted on a ninth shaft, the front end and the rear end of the moving assembly are respectively rotatably mounted in the front end wall and the rear end wall of the belt pulley cavity, a thirteenth helical gear fixedly mounted on the ninth shaft is arranged on the front side, a fourteenth helical gear is arranged below the thirteenth helical gear in a meshing connection manner, the fourteenth helical gear is fixedly mounted on a tenth shaft, the tenth shaft is rotatably mounted between the belt pulley cavity and the helical gear cavity, a fifteenth helical gear is fixedly mounted in the helical gear cavity by extending the tenth shaft, a sixteenth helical gear is arranged on the right side of the fifteenth helical gear in a meshing connection manner, the sixteenth helical gear is fixedly mounted on the tenth shaft, and the eleventh shaft is rotatably mounted between the helical gear cavity and the fan blade cavity, the eleventh shaft extends to the fan blade cavity and is fixedly provided with fan blades, the opening of the fan blade cavity is arranged rightwards, and fish placing plates fixedly arranged in the upper end wall and the lower end wall of the fan blade cavity are arranged at the opening.
The beneficial effects are that: the device has high fishing success rate, is provided with the push plate which can not be entered by small fish, can seal the container when generating current, can not generate any other influence except corona fish due to the fact that the current required by the distance is small, and can prevent ecological damage caused by the bad influence on the small fish, thereby preventing the damage to the ecology while automatically fishing.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is an enlarged schematic view of the structure at A in FIG. 1 according to an embodiment of the present invention;
FIG. 3 is an enlarged schematic view of the structure at B in FIG. 1 according to an embodiment of the present invention;
FIG. 4 is a schematic view of C-C in FIG. 1 according to an embodiment of the present invention.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
The invention will now be described in detail with reference to fig. 1-4, for convenience of description, the following orientations will now be defined: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
The invention relates to a device for catching fish by utilizing electric energy, which comprises an outer shell 10, wherein a fish box 22 is always required to be taken and fixedly arranged at the right side of the outer shell 10, a rotating cavity 15 is arranged in the outer shell 10, a fishing component is arranged in the rotating cavity 15, a fish guiding cavity 65 is arranged below the rotating cavity 15, a first bevel gear 66 of a baffle 5 is provided with a left opening for guiding the fish cavity 65, a magnet cavity 11 is arranged above the fish guiding cavity 65, a spring 12 is fixedly arranged above the magnet cavity 11, a magnet 61 is fixedly arranged below the spring 12, a sealing block 13 fixedly arranged on the magnet 61 is arranged at the right side of the magnet cavity 11, a filter plate 58 is arranged at the left opening of the fish guiding cavity 65 of the first bevel gear 66 of the baffle 5, the filter plate 58 is rotatably arranged in the upper end wall of the fish guiding cavity 65 through a rotating shaft, and a return spring 60 is, the upper end of the reset spring 60 is fixedly installed in the upper end wall of the fish leading cavity 65, the electromagnet cavity 54 is arranged below the fish leading cavity 65, the electromagnet cavity 54 is communicated with the fish leading cavity 65, the lower end wall of the electromagnet cavity 54 is fixedly provided with a gravity spring 81, the electromagnet cavity 55 is fixedly installed above the gravity spring 81, the lower end wall of the fish leading cavity 65 is fixedly provided with a lower conducting rod 52, the right end of the lower conducting rod 52 is electrically connected to the lower end face of the electric energy source 26, the electric energy source 26 is installed in the outer shell 10, the left end face of the electric energy source 26 is electrically connected with an upper conducting rod 49, and the left end of the upper conducting rod 49 extends into the fish leading cavity 65 and is electrically connected with an electric coil 51.
Beneficially, a first fixing block 53 is fixedly installed on the upper end face of the lower conducting rod 52, a block spring 57 is fixedly installed in the first fixing block 53, a block 56 is fixedly installed below the block spring 57, the lower end wall of the block 56 is in contact with the lower end wall of the fish leading cavity 65, a transmission cavity 23 is arranged on the right side of the fish leading cavity 65, a gear cavity 62 is arranged below the transmission cavity 23, an intermittent cavity 82 is arranged below the gear cavity 62, a pulley cavity 46 is arranged below the intermittent cavity 82, a water outlet cavity 33 is arranged on the right side of the pulley cavity 46, a storage cavity 20 located in the fish taking box 22 is arranged above the water outlet cavity 33, the storage cavity 20 is opened upwards and is provided with a cover plate 24 for sealing, a bevel gear cavity 38 is arranged below the pulley cavity 46, a fan blade cavity 32 is arranged on the right side of the bevel gear cavity 38, and a moving component is arranged in the pulley cavity 46, a drain assembly is provided within the intermittent chamber 82.
Advantageously, the fishing assembly comprises a rotary block 14 rotatably mounted in the left and right end walls of the rotary cavity 15, the rotary block 14 is fixedly mounted on a first shaft 18, the first shaft 18 is rotatably mounted between the rotary cavity 15 and the transmission cavity 23, the first shaft 18 extends into the transmission cavity 23 and is fixedly mounted with a second belt pulley 19, a third belt pulley 69 is arranged at the right side of the second belt pulley 19, the third belt pulley 69 is connected with the second belt pulley 19 by a transmission belt 25, the third belt pulley 69 is fixedly mounted on a second shaft 68, and the second shaft 68 is rotatably mounted between the transmission cavity 23 and the gear cavity 62.
Advantageously, the lower end of the second shaft 68 extends into the gear cavity 62 and is fixedly installed with a fourth bevel gear 67, the right end of the fourth bevel gear 67 is connected with a first bevel gear 66 in a gear meshing manner, the first bevel gear 66 is fixedly installed on a third shaft 59, the left end of the third shaft 59 is dynamically connected with the motor 35 fixedly installed in the left end wall of the gear cavity 62, a fifth bevel gear 64 is connected with the lower side of the first bevel gear 66 in a meshing manner, the fifth bevel gear 64 is fixedly installed on a fourth shaft 63, the fourth shaft 63 is rotatably installed between the gear cavity 62 and the intermittent cavity 82, the fourth shaft 63 extends into the intermittent cavity 82 and is fixedly installed with a sixth bevel gear 76, a seventh bevel gear 73 is connected with the lower side of the sixth bevel gear 76 in a meshing manner, the seventh bevel gear 73 is fixedly installed on a fifth shaft 78, and the front end and the rear end of the fifth shaft 78 are respectively rotatably installed in the front end wall and the rear end wall, an eighth belt pulley 75 fixedly mounted on the fifth shaft 78 is arranged on the front side of the seventh bevel gear 73, and a ninth gear 74 fixedly mounted on the fifth shaft 78 is arranged on the front side of the eighth belt pulley 75.
Advantageously, the drainage assembly comprises a tenth gear 86 located in the intermittent chamber 82 and located below and meshed with the ninth gear 74, the tenth gear 86 is fixedly mounted on a sixth shaft 80, front and rear ends of the sixth shaft 80 are respectively rotatably mounted in front and rear end walls of the intermittent chamber 82, a right semicircular gear 85 fixedly mounted on the sixth shaft 80 is arranged in front of the tenth gear 86, an eleventh gear 72 is arranged on the left side of the tenth gear 86 in a meshed manner, the eleventh gear 72 is fixedly mounted on a seventh shaft 70, front and rear ends of the seventh shaft 70 are respectively rotatably mounted in front and rear end walls of the intermittent chamber 82, a left semicircular gear 71 fixedly mounted on the seventh shaft 70 is arranged on the front of the eleventh gear 72, a twelfth gear 87 is arranged below and meshed with the left semicircular gear 71 and the right semicircular gear 85, the twelfth gear 87 is fixedly arranged on the eighth shaft 88, the front end and the rear end of the eighth shaft 88 are respectively rotatably arranged in the front end wall and the rear end wall of the intermittent cavity 82, a rack 47 is arranged below the twelfth gear 87 in a meshed connection manner, the rack 47 is slidably arranged in the lower end wall of the movable cavity 48 communicated with the intermittent cavity 82, the right end of the rack 47 is fixedly connected with a push plate 34 positioned in the water outlet cavity 33, a limit block 36 is fixedly arranged on the lower end wall on the left side of the water outlet cavity 33, the push plate 34 is slidably arranged in the water outlet cavity 33, the water outlet cavity 33 is provided with a right opening and is provided with a waterproof plate 27, the waterproof plate 27 is rotatably arranged in the upper end wall on the right side of the water outlet cavity 33 through a rotating shaft, a water outlet spring 28 is fixedly arranged on the left end surface of the waterproof plate 27, an isolation plate 21 fixedly arranged between the water outlet cavity 33 and the storage cavity 20 and in, the upper end of the water outlet spring 28 is fixedly arranged on the lower end surface of the isolation plate 21, and a water filtering plate 29 is further arranged in the isolation plate 21 to enable water in the storage cavity 20 to flow into the water outlet cavity 33.
Advantageously, said moving assembly comprises a pulley 44 located in said pulley cavity 46, said pulley 44 and said eighth pulley 75 are connected by a rotating belt 79, said pulley 44 is fixedly mounted on a ninth shaft 43, said front and rear ends are rotatably mounted in front and rear end walls of said pulley cavity 46, said front side of said pulley 44 is provided with a thirteenth bevel gear 45 fixedly mounted on said ninth shaft 43, a gear engagement connection below said thirteenth bevel gear 45 is provided with a fourteenth bevel gear 42, said fourteenth bevel gear 42 is fixedly mounted on a tenth shaft 41, said tenth shaft 41 is rotatably mounted between said pulley cavity 46 and said bevel gear cavity 38, said tenth shaft 41 extends into said bevel gear cavity 38 and is fixedly mounted with a fifteenth bevel gear 40, a right side gear engagement of said fifteenth bevel gear 40 is provided with a sixteenth bevel gear 39, said sixteenth bevel gear 39 is fixedly mounted on a tenth shaft 37, eleventh axle 37 rotate install the helical gear chamber 38 with between the flabellum chamber 32, eleventh axle 37 extends to in the flabellum chamber 32 and fixed mounting be equipped with flabellum 31, flabellum chamber 32 opening right and be equipped with fixed mounting at the opening part put fish plate 30 in the end wall about the flabellum chamber 32.
In the initial state, the gravity spring 81 is in a compressed state, and the remaining springs are in a normal state.
When the work is started:
1. when the device is fixedly installed on a fishing boat, the device can capture adult fish in a river while providing power for the fishing boat, firstly, the motor 35 is started, the motor 35 rotates to drive the third shaft 59 to rotate, the third shaft 59 rotates to drive the first bevel gear 66 to rotate, the first bevel gear 66 rotates to drive the fifth bevel gear 64 and the fourth bevel gear 67 to rotate, the fourth bevel gear 67 rotates to drive the second shaft 68 to rotate, the second shaft 68 rotates to drive the third belt pulley 69 to rotate, the third belt pulley 69 rotates to drive the second belt pulley 19 to rotate through the transmission belt 25, the second belt pulley 19 rotates to drive the first shaft 18 to rotate, and the first shaft 18 rotates to drive the rotating block 14 to rotate.
2. At the same time, the fifth helical gear 64 rotates to rotate the fourth shaft 63, the fourth shaft 63 rotates to rotate the sixth helical gear 76, the sixth helical gear 76 rotates to rotate the seventh helical gear 73, the seventh helical gear 73 rotates to rotate the fifth shaft 78, the fifth shaft 78 rotates to rotate the ninth gear 74 and the eighth belt pulley 75, and the eighth belt pulley 75 rotates to rotate the belt 79 to rotate the shaft 44.
3. Said shaft 44 rotates to rotate said ninth shaft 43, said ninth shaft 43 rotates to rotate said thirteenth bevel gear 45, said thirteenth bevel gear 45 rotates to rotate said fourteenth bevel gear 42, said fourteenth bevel gear 42 rotates to rotate said tenth shaft 41, said tenth shaft 41 rotates to rotate said fifteenth bevel gear 40, said fifteenth bevel gear 40 rotates to rotate said sixteenth bevel gear 39, said sixteenth bevel gear 39 rotates to rotate said eleventh shaft 37, said eleventh shaft 37 rotates to rotate said fan blade 31, thereby moving forward.
4. The ninth gear 74 rotates to drive the tenth gear 86 to rotate, the tenth gear 86 rotates to drive the sixth shaft 80 and the eleventh gear 72 to rotate, the sixth shaft 80 rotates to drive the right circular gear 85 to rotate, the eleventh gear 72 rotates to drive the seventh shaft 70 to rotate, the seventh shaft 70 rotates to drive the left circular gear 71 to rotate, the left circular gear 71 and the right circular gear 85 rotate to drive the twelfth gear 87 to reciprocate left and right, the twelfth gear 87 reciprocates left and right to drive the rack 47 to move left and right, the rack 47 moves right to push out the water in the water outlet cavity 33 from the water filtering plate 29 to the right, the rack 47 moves right to push the water preventing plate 27 to rotate right through the push plate 34 and compress the water outlet spring 28, thereby pushing water out of the water outlet cavity 33, when the eleventh shaft 37 moves leftwards, the compressed water outlet spring 28 will drive the waterproof board 27 to rotate leftwards to return to the initial position, so that the waterproof board 27 blocks the right opening of the water outlet cavity 33 again, and water cannot enter.
5. The feeding chamber 50 is filled with fish bait to attract fish, when the small fish swims, the force is too small to push the filter plate 58, when the weight of the fish reaches a certain degree, the filter plate 58 is pushed to rotate rightwards and the return spring 60 is compressed, so that after the fish enters the fish guiding chamber 65, the filter plate 58 is not pushed any more, so that the return spring 60 generates elasticity to rebound leftwards to drive the filter plate 58 to rotate leftwards to drive the filter plate 58 to return to the initial position, when the fish enters the fish guiding chamber 65, the pressure applied to the electromagnet chamber 54 is lightened to drive the electromagnet chamber 55 to move upwards, the electromagnet chamber 55 moves upwards to push the stopper 56 and compress the stopper spring 57, when the electromagnet chamber 55 is connected with the lower conducting rod 52, the electric energy source 26 generates electricity, so as to electrify the electromagnet cavity 55 to generate magnetic force, thus attracting the magnet 61 and moving it downwards and stretching the spring 12 to make the closing block 13 seal the fish guiding cavity 65, meanwhile, the electric coil 51 is electrified to generate small electric power to temporarily corona fish, the fish is electrified upwards and upwards to enter the placing cavity 16, then the fish is driven into the storing cavity 20 by the rotation of the rotating block 14, the fish and water fish in the storing cavity 20 can stay on the isolating plate 21, the excessive water can enter the water outlet cavity 33 through the water filtering plate 29 and then is pushed out of the device by the push plate 34, thus preventing the water in the storing cavity 20 from being excessive, when the fish is driven out of the fish guiding cavity 65 by the rotating block 14, the gravity in the fish guiding cavity 65 is recovered to lower the electromagnet cavity 55, thus separating the lower conductive rod 52 from the electromagnet cavity 55 and powering off the electromagnet source 26, the magnet 61 is pulled by the spring 12 to return to the initial position.
6. When fishing is complete, the electrical energy source 26 and the motor 35 are turned off, the fisherman can open the cover 24 to remove the fish, and the device is reset.
The above description is only an embodiment of the invention, but the scope of the invention is not limited thereto, and any changes or substitutions that are not thought of through the inventive work should be included in the scope of the invention. Therefore, the protection scope of the invention should be subject to the protection scope defined by the claims.

Claims (6)

1. The utility model provides an utilize device of electric energy fishing, includes the shell body, its characterized in that: the right side of the outer shell is fixedly provided with a fish taking box, a rotating cavity is arranged in the outer shell, a fish catching assembly is arranged in the rotating cavity, a fish guiding cavity is arranged below the rotating cavity, the opening of the first bevel gear fish guiding cavity of the stop block is towards the left, a magnet cavity is arranged above the fish guiding cavity, a spring is fixedly arranged above the magnet cavity, a magnet is fixedly arranged below the spring, and a sealing block fixedly arranged on the magnet is arranged on the right side of the magnet cavity;
a filter plate is arranged at the opening of the left side of the first helical gear fish leading cavity of the stop block, the filter plate is rotatably arranged in the upper end wall of the fish leading cavity through a rotating shaft, a return spring is fixedly arranged on the right end surface of the filter plate, the upper end of the return spring is fixedly arranged in the upper end wall of the fish leading cavity, an electromagnet cavity is arranged below the fish leading cavity, and the electromagnet cavity is communicated with the fish leading cavity;
the fish attracting device is characterized in that a gravity spring is fixedly installed on the lower end wall of the electromagnet cavity, the electromagnet cavity is fixedly installed above the gravity spring, a lower conducting rod is fixedly installed on the lower end wall of the fish attracting cavity, the right end of the lower conducting rod is electrically connected to the lower end face of an electric energy source, the electric energy source is installed in the outer shell, the left end face of the electric energy source is electrically connected with an upper conducting rod, and the left end of the upper conducting rod extends into the fish attracting cavity and is electrically connected with an electric coil.
2. An apparatus for catching fish using electric energy as claimed in claim 1, wherein: fixed mounting is equipped with first fixed block on the lower conducting rod up end, fixed mounting is equipped with the dog spring in the first fixed block, dog spring below fixed mounting is equipped with the dog, dog lower extreme wall with draw fish chamber lower extreme wall contact, it is equipped with the transmission chamber to draw fish chamber right side, transmission chamber below is equipped with the gear chamber, gear chamber below is equipped with intermittent type chamber, intermittent type chamber below is equipped with the pulley chamber, pulley chamber right side is equipped with out the water cavity, it is equipped with to go out the water cavity top be located get fish incasement deposit the chamber, it upwards is equipped with the apron and seals to deposit the chamber opening, pulley chamber below is equipped with the helical gear chamber, helical gear chamber right side is equipped with the fan blade chamber, the pulley intracavity is equipped with the removal subassembly, the intermittent type intracavity is equipped with drainage component.
3. An apparatus for catching fish using electric energy as claimed in claim 1, wherein: fishing subassembly is installed including rotating the turning block in the end wall about the rotation chamber, turning block fixed mounting is on the primary shaft, the primary shaft is changeed and is installed rotate the chamber with between the transmission chamber, the primary shaft extends to second belt pulley is established to transmission intracavity and fixed mounting, second belt pulley right side is equipped with the third belt pulley, the third belt pulley with the second belt pulley is connected by driving belt, third belt pulley fixed mounting is on the secondary shaft, the secondary shaft rotates to be installed the transmission chamber with between the gear chamber.
4. An apparatus for catching fish using electric energy as claimed in claim 3, wherein: the lower end of the second shaft extends into the gear cavity and is fixedly provided with a fourth helical gear, the right end of the fourth helical gear is provided with a first helical gear in a gear meshing connection manner, the first helical gear is fixedly arranged on a third shaft, the left end of the third shaft is in power connection with a motor fixedly arranged in the left end wall of the gear cavity, a fifth helical gear is arranged below the first helical gear in a meshing connection manner, the fifth helical gear is fixedly arranged on a fourth shaft, the fourth shaft is rotatably arranged between the gear cavity and the intermittent cavity, the fourth shaft extends into the intermittent cavity and is fixedly provided with a sixth helical gear, a seventh helical gear is arranged below the sixth helical gear in a meshing connection manner, the seventh helical gear is fixedly arranged on a fifth shaft, the front end and the rear end of the fifth shaft are respectively rotatably arranged in the front end wall and the rear end wall of the intermittent cavity, and an eighth belt pulley fixedly arranged on the fifth shaft is arranged on, and a ninth gear fixedly mounted on a fifth shaft is arranged on the front side of the eighth belt pulley.
5. An apparatus for catching fish using electric energy as claimed in claim 2, wherein: the drainage assembly comprises a tenth gear which is positioned in the intermittent cavity and positioned below the ninth gear and is in meshed connection with the ninth gear, the tenth gear is fixedly arranged on a sixth shaft, the front end and the rear end of the sixth shaft are respectively rotatably arranged in the front end wall and the rear end wall of the intermittent cavity, the front side of the tenth gear is provided with a right semicircular gear fixedly arranged on the sixth shaft, the left side of the tenth gear is in meshed connection with an eleventh gear which is fixedly arranged on a seventh shaft, the front end and the rear end of the seventh shaft are respectively rotatably arranged in the front end wall and the rear end wall of the intermittent cavity, the front side of the eleventh gear is provided with a left semicircular gear fixedly arranged on the seventh shaft, the left semicircular gear is in meshed connection with the lower part of the right semicircular gear and is provided with a twelfth gear which is fixedly arranged on an eighth shaft, the front end and the rear end of the eighth shaft are respectively rotatably arranged in the front end wall and the rear end wall of the intermittent cavity, a rack is arranged below the twelfth gear in a meshed and connected mode, the rack is installed in the lower end wall of the moving cavity communicated with the intermittent cavity in a sliding mode, the right end of the rack is fixedly connected with a push plate positioned in the water outlet cavity, the lower end wall of the left side of the water outlet cavity is fixedly provided with a limit block, the push plate is arranged in the water outlet cavity in a sliding way, the opening of the water outlet cavity is rightwards and is provided with a waterproof plate, the waterproof board is rotatably arranged in the upper end wall of the right side of the water outlet cavity through a rotating shaft, a water outlet spring is fixedly arranged on the left end surface of the waterproof board, an isolation plate fixedly arranged in the left end wall and the right end wall of the water outlet cavity is arranged between the water outlet cavity and the storage cavity for separation, the upper end of the water outlet spring is fixedly arranged on the lower end face of the isolation plate, and a water filter plate is further arranged in the isolation plate to enable water in the storage cavity to flow into the water outlet cavity.
6. An apparatus for catching fish using electric energy as claimed in claim 2, wherein: the moving assembly comprises a moving assembly, the moving assembly is positioned in the belt pulley cavity, the moving assembly is connected with the eighth belt pulley through a rotating belt, the moving assembly is fixedly installed on a ninth shaft, the front end and the rear end of the moving assembly are respectively and rotatably installed in the front end wall and the rear end wall of the belt pulley cavity, a thirteenth helical gear fixedly installed on the ninth shaft is arranged on the front side of the moving assembly, a fourteenth helical gear is fixedly installed below the thirteenth helical gear in a meshing connection mode, the fourteenth helical gear is fixedly installed on a tenth shaft, the tenth shaft is rotatably installed between the belt pulley cavity and the helical gear cavity, a fifteenth helical gear is fixedly installed in the helical gear cavity in an extending mode, a sixteenth helical gear is arranged on the right side of the fifteenth helical gear in a meshing connection mode, the sixteenth helical gear is fixedly installed on the tenth shaft, and the eleventh shaft is rotatably installed between the helical gear cavity and the fan, the eleventh shaft extends to the fan blade cavity and is fixedly provided with fan blades, the opening of the fan blade cavity is arranged rightwards, and fish placing plates fixedly arranged in the upper end wall and the lower end wall of the fan blade cavity are arranged at the opening.
CN202010019106.1A 2020-01-08 2020-01-08 Device for catching fish by electric energy Withdrawn CN110999878A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010019106.1A CN110999878A (en) 2020-01-08 2020-01-08 Device for catching fish by electric energy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010019106.1A CN110999878A (en) 2020-01-08 2020-01-08 Device for catching fish by electric energy

Publications (1)

Publication Number Publication Date
CN110999878A true CN110999878A (en) 2020-04-14

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202010019106.1A Withdrawn CN110999878A (en) 2020-01-08 2020-01-08 Device for catching fish by electric energy

Country Status (1)

Country Link
CN (1) CN110999878A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111990449A (en) * 2020-07-28 2020-11-27 浙江省海洋水产研究所 Fish fresh and alive classification device with cleaning function

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111990449A (en) * 2020-07-28 2020-11-27 浙江省海洋水产研究所 Fish fresh and alive classification device with cleaning function

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