Integrated trapping device for underwater fishing
By designing an integrated trapping device, the poor induction ability and impurity accumulation caused by the fixed setting of bait and fish collecting lamps in the prior art are solved, and a more efficient aquatic biological trapping and fishing effect is achieved.
Patent Information
- Application Number
- CN202510222403.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-02-27
AI Technical Summary
In the prior art, the bait and fish collecting lamp are fixedly arranged, and the induction ability is poor. The bait is easily ineffective after being placed for a long time. The accumulation of impurities on the surface of the fish collecting lamp affects the induction, and the small collection frame port makes it difficult for aquatic organisms to enter or escape.
An integrated trapping device for underwater fishing is designed, including aquatic biological fishing mechanism and trapping mechanism. The fishing mechanism realizes the opening and closing of the fishing cage through the driving component and is equipped with a cleaning component to automatically clean the fish lure lamp. The trapping mechanism uses agitating components and reciprocating components to simulate prey movements, increase the appetite of aquatic organisms, and realizes automatic cleaning of cleaning components through hydraulic control components.
It improves the trapping effect, extends the effective use time of bait, reduces impurities accumulation, enhances the induction and aggregation ability of aquatic organisms, and ensures effective fishing of aquatic organisms.
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Figure CN119969355A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of fishing industry, and in particular to an integrated trapping device for underwater fishing. Background Art
[0002] The purpose of using fish attracting lights in fishing operations is to gather as many target organisms as possible from the wider sea area around the boat to the operating range of the fishing gear and catch them. The fishing operation process consists of the process of detecting target organisms (fish detection), the process of attracting and concentrating (fish attracting), and the process of catching (fish catching). The light of the fish attracting lights is an important factor that affects the efficiency of fishing.
[0003] At present, the prior art often uses fish-collecting lights or baits to attract underwater aquatic organisms, and then collects the aquatic organisms through fishing nets. However, the baits and fish-collecting lights are generally fixed, which not only have poor induction ability, but also easily lose the induction effect when the bait is placed for a long time. Moreover, after the fish-collecting lights have been underwater for a long time, their surface is prone to adsorb more impurities, affecting the induction ability of aquatic organisms. In addition, the collection frame in the prior art is generally provided with a small opening to facilitate the entry of aquatic organisms, but some aquatic organisms are more sensitive and may realize the danger when touching the collection frame and do not drill into it. Even if the aquatic organisms drill into the fishing cage, they may find the exit, affecting the trapping effect. In response to the above problems, the present invention document proposes an integrated trapping device for underwater fishing. Summary of the invention
[0004] The purpose of the present invention is to solve the problems in the prior art that baits and fish attracting lights are generally fixed, which not only have poor inducing ability, but also easily lose the inducing effect when the bait is left for a long time. In addition, after the fish attracting lights have been underwater for a long time, their surfaces are prone to adsorb more impurities, affecting the inducing ability to aquatic organisms. In addition, the collection frame in the prior art is generally provided with a small opening for the convenience of aquatic organisms to enter, but some aquatic organisms do not drill into it, and even if the aquatic organisms drill into the fishing cage, they may find the exit, affecting the entrapment effect. An integrated entrapment device for underwater fishing is proposed.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions: An integrated trapping device for underwater fishing comprises an aquatic organism fishing mechanism, on which a trapping mechanism is mounted; The aquatic life catching mechanism comprises an aquatic life catching component and four closing components, wherein a fishing cage is formed between the aquatic life catching component and the four closing components, and a driving component is arranged below the aquatic life catching component, wherein the driving component is connected to the four aquatic life catching components, and the opening and closing of the fishing cage is realized by the driving component, and a cleaning component capable of cleaning the aquatic life catching component is also connected to the driving component; The trapping mechanism includes a feeding assembly and a hydraulic control assembly. The feeding assembly is arranged above the aquatic life capturing assembly. A stirring assembly is arranged in the feeding assembly. A reciprocating moving assembly is connected to the stirring assembly. The reciprocating moving assembly is arranged above the feeding assembly. A cleaning assembly is arranged outside the feeding assembly. The cleaning assembly cooperates with the hydraulic control assembly to clean the fish attracting lamp. The fish attracting lamp is arranged below the feeding assembly.
[0006] Preferably, the aquatic organism capture assembly includes an upper grid and a lower grid, four reinforcement rods are fixedly connected between the upper grid and the lower grid, an underwater camera is installed in the middle above the lower grid to observe whether aquatic organisms enter the fishing cage, and a lifting ring is fixedly connected above the upper grid for lifting the trapping device.
[0007] Preferably, the driving assembly includes a waterproof motor, which is installed below the lower grille. The output shaft of the waterproof motor is fixedly connected to a cross, and four openings are provided on the cross. A connecting shaft is provided in the opening, and one end of the connecting shaft is fixedly connected to a gear rod, and a support seat is slidably provided on the gear rod. The support seat is fixedly connected to the bottom of the lower grille, and the cross is driven to rotate by the waterproof motor to achieve synchronous opening of the four closing components.
[0008] Preferably, the cleaning assembly includes a horizontal bar, which is fixedly connected to one of the gear rods, one end of the horizontal bar is fixedly connected to a movable frame, the movable frame is U-shaped, and the movable frame passes through a lower grid, the upper wall of the movable frame is fixedly connected to a rubber strip, and the rubber strip is located on one side of the underwater camera. The rotation of the cross is used to drive the rubber strip on the movable frame to move to clean the underwater camera.
[0009] Preferably, the closing assembly includes a rotating rod and a side grille, one side of the side grille is fixedly connected to a connecting piece, the connecting piece is fixedly connected to the rotating rod, a gear is fixedly connected to the rotating rod, the gear is meshed with the gear rod, the rotating rod is rotatably mounted with two fixing pieces via two first bearings, and both fixing pieces are fixedly connected to the lower grille.
[0010] Preferably, the hydraulic control assembly is connected to a cylinder, the cylinder is fixedly connected to the bottom of the upper grille, one side of the cylinder is fixedly connected to a bracket, the middle part of the cylinder is a retractable bellows structure, a first piston and a second piston are arranged inside the cylinder, a movable rod is fixedly connected to the bottom of the second piston, the movable rod passes through the cylinder and is fixedly connected to the first ball bearing; A connecting rod is fixedly connected to one side of the first piston, and the connecting rod passes through the other end of the connecting tube. A first spring is fixedly connected between the first piston and the end wall of the connecting tube. During the flipping process of the side grille, the side grille squeezes the connecting rod to drive the first piston to move. The first piston squeezes the liquid to flow, so that the second piston drives the movable rod and the first ball to move, and the first ball controls the rotation of the annular ring through the arc groove, and the cleaning strip is used to clean the fish attracting light.
[0011] Preferably, the discharge assembly includes a bait bin, a feed inlet is provided above the bait bin, a discharge outlet is provided below the bait bin, the bracket is fixedly connected to the top of the bait bin, the fish attracting light is installed above the bait bin, an upper shell is fixedly connected above the bait bin, and the upper shell is fixedly connected to the bottom of the upper grille.
[0012] Preferably, the cleaning assembly comprises an annular ring and a third bearing, the annular ring is rotatably mounted on the bait bin via the third bearing, a cleaning strip is fixedly connected below the annular ring, and the cleaning strip is arranged below the fish attracting light; An arc groove is formed outside the annular ring, and the first ball slides in the arc groove.
[0013] Preferably, the stirring assembly includes a first motor, which is installed in the upper shell. The output shaft of the first motor is fixedly connected to a rotating shaft, and the rotating shaft is rotatably installed on the bait bin through a second bearing. A plurality of stirring blades are fixedly connected to the outside of the rotating shaft, and the stirring blades are arranged in the bait bin. A spiral blade is fixedly connected below the rotating shaft, and the spiral blade is arranged in the discharge port.
[0014] Preferably, the reciprocating assembly includes a plurality of support rods, which are fixedly connected to the rotating shaft, and one end of the plurality of support rods is fixedly connected to a petal cam, and a plurality of support plates are vertically fixedly provided below the upper grille, and a connecting rod is horizontally provided at the lower end of the support plate, and the connecting rod is inserted into the upper shell, and the connecting rod extends into the upper shell and has a second ball at the end thereof, and the second ball overlaps the outer side of the petal cam, and a second spring is fixedly connected to the support plate, and one end of the second spring is fixedly connected to the upper shell, and an extrusion movement is generated between the petal cam and the second ball when the petal cam rotates. Since the position of the second ball is fixed, the upper shell is displaced, and the vibration of the upper shell can be realized in cooperation with the second spring, and the upper shell drives the bait bin to vibrate, and the movement of prey can be simulated by combining vibration and throwing bait downward.
[0015] Compared with the prior art, the present invention provides an integrated trapping device for underwater fishing, which has the following beneficial effects: 1. The integrated trapping device for underwater fishing rotates and stirs the bait through the stirring component, so that the bait is in a flowing state in the bait bin, avoiding the phenomenon of the bait being suspended and affecting the bait throwing operation. Secondly, the bait can be uniformly and quantitatively discharged from top to bottom through the spiral blade, so that by continuously providing the bait, the smell, taste and other signals emitted by it can be transmitted to a longer distance in the water, especially in the case of flowing water, the trapping effect is better, and the bait accumulates at the lower grid, which can form an aggregation effect of aquatic organisms. Secondly, the stirring component is matched with the reciprocating moving component, so that the stirring component can achieve a vibration effect. The combination of vibration and downward bait throwing can simulate the movement of prey, which is conducive to increasing the feeding appetite of aquatic organisms. In addition, the vibration slows down the throwing speed of the bait, improves the trapping effect, and forms an aggregation signal. In addition, the vibration combined with the light of the fish attracting lamp can produce a more attractive signal; 2. The integrated trapping device for underwater fishing drives the cross to rotate through a waterproof motor, so that the cross drives the connecting shaft to move through the opening, the connecting shaft drives the gear rod to move, the gear rod and the gear are transmitted, the rotating rod drives the side grilles to flip, and the four side grilles are closed with the upper grille and the lower grille to form a fish cage structure, thereby preventing aquatic organisms from escaping. At the same time, during the flipping process of the side grille, the side grille squeezes the connecting rod to drive the first piston to move, the first piston squeezes the liquid to flow, the second piston drives the movable rod and the first ball to move, the first ball controls the annular ring to rotate through the arc groove, the annular ring drives the cleaning bar to rotate, and the cleaning bar automatically cleans the fish attracting light; 3. The integrated trapping device for underwater fishing can realize the vibration of the upper shell by rotating the stirring component in coordination with the reciprocating moving component, so that the upper shell drives the bait bin to vibrate. Secondly, the driving component drives the closing component and the aquatic life capturing component to close to catch fish. At the same time, the closing component squeezes the hydraulic control component, so that the hydraulic control component can drive the cleaning component to clean the fish attracting light, and the vibration makes the cleaning effect better. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a three-dimensional view of an integrated trapping device for underwater fishing proposed by the present invention after being unfolded; Figure 2 A three-dimensional view of an integrated trapping device for underwater fishing proposed by the present invention when unfolded and viewed from above; Figure 3 A closed stereoscopic view of an integrated trapping device for underwater fishing proposed by the present invention; Figure 4 A view showing the connection between the aquatic organism capturing component and the driving component of the integrated trapping device for underwater fishing proposed by the present invention; Figure 5 A three-dimensional view of a driving assembly of an integrated trapping device for underwater fishing proposed by the present invention; Figure 6 A three-dimensional view of a closed component of an integrated trapping device for underwater fishing proposed by the present invention; Figure 7 A three-dimensional view of a water organism capturing component of an integrated trapping device for underwater fishing proposed by the present invention; Figure 8 A view showing the connection between a hydraulic control component and a cleaning component of an integrated trapping device for underwater fishing proposed by the present invention; Fig. 9 A three-dimensional view of a cross section of a hydraulic control assembly of an integrated trapping device for underwater fishing proposed by the present invention; Fig.10 A three-dimensional view of a cross section of a discharging component of an integrated trapping device for underwater fishing proposed by the present invention; Fig.11 A three-dimensional view of a cross-section of a bait bin of an integrated trapping device for underwater fishing proposed by the present invention when viewed from above.
[0017] In the figure: 100, aquatic organism fishing mechanism; 101, aquatic organism capturing component; 1011, upper grille; 1012, reinforcing rod; 1013, lifting ring; 1014, lower grille; 102, closing component; 1021, side grille; 1022, connecting piece; 1023, rotating rod; 1024, fixing piece; 1025, gear; 1026, first bearing; 103, driving component; 1031, waterproof motor; 1032, cross; 1033, opening; 1034, connecting shaft; 1035, gear rod; 1036, supporting seat; 104, underwater camera; 105, cleaning component; 1051, horizontal bar; 1052, movable frame; 1053, rubber strip; 200, trapping mechanism; 201, feeding component; 2011, bait bin; 2012, discharge port; 20 13. upper shell; 2014. feed port; 202. hydraulic control assembly; 2021. connecting cylinder; 2022. first piston; 2023. first spring; 2024. connecting rod; 2025. second piston; 2026. movable rod; 2027. first ball; 2028. bracket; 203. stirring assembly; 2031. stirring blade; 2032. spiral blade; 2033. rotating shaft; 2034. first motor; 2035. second bearing; 204. fish attracting light; 205. reciprocating assembly; 2051. second spring; 2052. support plate; 2053. second ball; 2054. support rod; 2055. petal cam; 206. cleaning assembly; 2061. annular ring; 2062. arc groove; 2063. third bearing; 2064. cleaning strip. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0019] Example 1, reference Figure 1-Figure 4 and Figure 7-Figure 11 , an integrated trapping device for underwater fishing, comprising an aquatic organism fishing mechanism 100, on which a trapping mechanism 200 is mounted; The aquatic life catching mechanism 100 includes an aquatic life catching component 101 and four closing components 102. A driving component 103 is disposed below the aquatic life catching component 101. The driving component 103 is connected to the four aquatic life catching components 101. A cleaning component 105 is also connected to the driving component 103. The trapping mechanism 200 includes a discharge assembly 201 and a hydraulic control assembly 202. The discharge assembly 201 includes a bait bin 2011. An upper shell 2013 is fixedly connected to the upper portion of the bait bin 2011. The upper shell 2013 is fixedly connected to the lower portion of the upper grille 1011. A feed inlet 2014 is provided above the bait bin 2011. The bait bin 2011 can temporarily store the bait. The feed inlet 2014 is convenient for injecting the bait into the bait bin 2011. The feed inlet 2014 is equipped with a sealing plug for sealing to prevent the bait bin 2011 from being thrown into the water and discharged from the feed inlet 2014. A discharge port 2012 is provided below the bait bin 2011. The discharge port 2012 can conveniently throw the bait downward, thereby facilitating the operation of trapping aquatic organisms. The bracket 2028 is fixedly connected to the upper part of the bait bin 2011, and the fish attracting light 204 is installed above the bait bin 2011. The fish attracting light 204 can emit light to attract aquatic organisms, thereby achieving the effect of aquatic organisms gathering; The feeding assembly 201 is arranged above the aquatic organism capturing assembly 101, and a stirring assembly 203 is arranged in the feeding assembly 201. The stirring assembly 203 includes a first motor 2034, and the first motor 2034 is installed in the upper shell 2013. The upper shell 2013 can protect the first motor 2034 to ensure the stable operation of the first motor 2034. The output shaft of the first motor 2034 is fixedly connected with a rotating shaft 2033, and the rotating shaft 2033 is rotatably installed on the bait bin 2011 through a second bearing 2035. The second bearing 2035 can assist the rotating shaft 2033 to rotate stably, so that the rotating shaft 2033 can drive the stirring blade 2031 and the spiral blade 2032 rotate stably, and a plurality of stirring blades 2031 are fixedly connected to the outside of the rotating shaft 2033. The rotation of the rotating shaft 2033 can drive the stirring blade 2031 to rotate, so that the stirring blade 2031 can stir the bait to flow, thereby avoiding the bait being suspended. The stirring blade 2031 is arranged in the bait bin 2011, and the spiral blade 2032 is fixedly connected below the rotating shaft 2033. The spiral blade 2032 is arranged in the discharge port 2012. The rotation of the rotating shaft 2033 can drive the spiral blade 2032 to rotate. The spiral blade 2032 can stably and quantitatively transport the bait downward, delay the bait throwing time, and thus improve the attraction to aquatic organisms. The stirring assembly 203 is connected to a reciprocating assembly 205, which is arranged above the discharge assembly 201. The reciprocating assembly 205 includes a plurality of support rods 2054, which are fixedly connected to the rotating shaft 2033, and a petal cam 2055 is fixedly connected to one end of the plurality of support rods 2054. The support rods 2054 connect the petal cam 2055 to the rotating shaft 2033, so that the rotation of the rotating shaft 2033 can drive the petal cam 2055 to rotate through the support rods 2054. A plurality of second balls 2053 are overlapped on the outside of the petal cam 2055, and the convex surface of the petal cam 2055 can generate an extrusion movement with the second balls 2053. Since the second balls 2053 are connected to the support plate 2052 to keep a fixed position, the second balls 2053 can push the petal cam 2055 back to move, thereby controlling the upper shell 213. The purpose of the activity is achieved, and the second ball 2053 can reduce the friction resistance with the petal cam 2055, and maintain the smooth movement of the petal cam 2055. The second ball 2053 passes through the upper shell 2013 and is fixedly connected to the support plate 2052. The support plate 2052 is fixedly connected to the bottom of the upper grille 1011. A second spring 2051 is fixedly connected to one side of the support plate 2052. One end of the second spring 2051 is fixedly connected to the upper shell 2013. The upper shell 2013 can be reset by the reset force of the second spring 2051. The squeezing movement between the second cam and the second ball 2053 can move the upper shell 2013, so that the second spring 2051 cooperates with the second cam to realize the vibration of the upper shell 2013, and the bait bin 2011 vibrates, thereby realizing the operation of vibrating bait throwing, improving the attractiveness to aquatic organisms, and facilitating the trapping effect of aquatic organisms. A cleaning component 206 is disposed outside the discharging component 201 . The cleaning component 206 cooperates with the hydraulic control component 202 to clean the fish-attracting light 204 . The fish-attracting light 204 is disposed below the discharging component 201 .
[0020] In this embodiment, the first motor 2034 drives the rotating shaft 2033 to rotate, and the rotating shaft 2033 drives the stirring blade 2031 to rotate, so that the stirring blade 2031 rotates to stir the bait, so that the bait is in a flowing state in the bait bin 2011, so as to avoid the bait being suspended and affecting the bait throwing operation. Secondly, the rotating shaft 2033 also drives the spiral blade 2032 to rotate, and the spiral blade 2032 can evenly discharge the bait from top to bottom in a quantitative manner through rotation. In this way, by continuously providing bait, the smell, taste and other signals it emits can be transmitted to a longer distance in the water, especially in the case of flowing water, and the trapping effect is better. Moreover, the bait accumulates at the lower grille 1014, which can form an aggregation of aquatic organisms. The petal cam 2055 and the second ball 2053 generate a squeezing motion. As the second ball 2053 is fixed in position, the upper shell 2013 is displaced. The upper shell 2013 can vibrate in cooperation with the second spring 2051. The upper shell 2013 drives the bait bin 2011 to vibrate. The vibration and the downward casting of bait can simulate the movement of prey, which is beneficial to increase the feeding appetite of aquatic organisms. The vibration slows down the casting speed of bait, improves the trapping effect, and forms a gathering signal. The vibration combined with the light of the fish attracting lamp 204 can generate a more attractive signal.
[0021] Example 2, reference Figure 5-Figure 9 An integrated trapping device for underwater fishing includes a driving assembly 103, the driving assembly 103 includes a waterproof motor 1031, the waterproof motor 1031 is waterproof, so as to avoid short circuit damage to the waterproof motor 1031 and ensure the operation of the waterproof motor 1031, the waterproof motor 1031 is installed below the lower grille 1014, the output shaft of the waterproof motor 1031 is fixedly connected to a cross 1032, and the cross 1032 is provided with four openings 1033, and the openings 1033 can be connected to the shaft 10 34 provides a movable space so that the cross 1032 can rotate smoothly and the cross 1032 can smoothly drive the connecting shaft 1034 to move. The connecting shaft 1034 is provided in the opening 1033. One end of the connecting shaft 1034 is fixedly connected to a gear rod 1035. The gear rod 1035 slides on the support seat 1036. The support seat 1036 can guide the gear rod 1035 so that the gear rod 1035 can stably contact the gear 1025. The support seat 1036 is fixedly connected to the bottom of the lower grille 1014. The cleaning assembly 206 includes an annular ring 2061 and a third bearing 2063. The third bearing 2063 can fix the position of the annular ring 2061, and the annular ring 2061 can maintain stable rotation through the third bearing 2063. The annular ring 2061 is rotatably installed on the bait bin 2011 through the third bearing 2063. A cleaning strip 2064 is fixedly connected to the lower part of the annular ring 2061. The cleaning strip 2064 is arranged below the fish attracting light 204. An arc groove 2062 is provided outside the annular ring 2061. The arc surface of the arc groove 2062 is arranged so that when the first ball 2027 slides in the arc groove 2062, the annular ring 2061 can be controlled to rotate through the arc surface of the arc groove 2062, so that the cleaning strip 2064 can be controlled to rotate to automatically clean the fish attracting light 204. In addition, the first ball 2027 can reduce the movement resistance between the first ball 2027 and the arc groove 2062. The first ball 2027 slides in the arc groove 2062. The aquatic life capturing component 101 comprises an upper grid 1011 and a lower grid 1014, four reinforcing rods 1012 are fixedly connected between the upper grid 1011 and the lower grid 1014, and the reinforcing rods 1012 can connect the upper grid 1011 and the lower grid 1014, so as to maintain the stability of the upper grid 1011 and the lower grid 1014, an underwater camera 104 is installed in the middle above the lower grid 1014, and the underwater camera 104 is convenient for observing the internal conditions of the water body, a lifting ring 1013 is fixedly connected above the upper grid 1011, and the lifting ring 1013 can be connected to a rope, so that the device can be thrown into the water body through the rope, and a fishing cage is formed between the aquatic life capturing component 101 and the four closing components 102; The cleaning assembly 105 includes a horizontal bar 1051, which is fixedly connected to one of the gear rods 1035. One end of the horizontal bar 1051 is fixedly connected to a movable frame 1052. The movable frame 1052 is U-shaped. The movable frame 1052 can pass through the gap of the lower grid 1014, so that the movable frame 1052 can move smoothly on the lower grid 1014, so that the movable frame 1052 can drive the rubber strip 1053 to move, and the rubber strip 1053 can clean the underwater camera 104. The movable frame 1052 passes through the lower grid 1014, and the upper wall of the movable frame 1052 is fixedly connected to the rubber strip 1053, and the rubber strip 1053 is located on one side of the underwater camera 104. The hydraulic control assembly 202 includes a connecting cylinder 2021, which is fixedly connected to the bottom of the upper grille 1011. A bracket 2028 is fixedly connected to one side of the connecting cylinder 2021. The middle part of the connecting cylinder 2021 is a retractable bellows structure. The bellows structure is retractable so that the bait bin 2011 can smoothly perform vibration operations. A first piston 2022 and a second piston 2025 are arranged inside the connecting cylinder 2021. A movable rod 2026 is fixedly connected to the bottom of the second piston 2025. The movable rod 2026 passes through the connecting cylinder 2021 and is fixedly connected to the first ball 2027. One side of the first piston 2022 A connecting rod 2024 is fixedly connected. After the first piston 2022 is reset by the first spring 2023, one end of the connecting rod 2024 extends out of the upper grille 1011, so that after the side grille 1021 is turned over and closed with the upper grille 1011, the connecting rod 2024 can be smoothly pushed to move. The connecting rod 2024 passes through the other end of the connecting cylinder 2021. A first spring 2023 is fixedly connected between the first piston 2022 and the end wall of the connecting cylinder 2021. The first spring 2023 drives the first piston 2022 to reset, so that the first piston 2022 can drive the second piston 2025 to reset upward through hydraulic pressure. The closing component 102 includes a rotating rod 1023 and a side grille 1021. A connecting piece 1022 is fixedly connected to one side of the side grille 1021. The connecting piece 1022 is fixedly connected to the rotating rod 1023. A gear 1025 is fixedly connected to the rotating rod 1023. The gear 1025 is meshed with a toothed rod 1035. The toothed rod 1035 is meshed with the gear 1025 to drive the rotating rod 1023 to perform a flipping motion. The rotating rod 1023 is rotatably mounted on two fixing pieces 1024 through two first bearings 1026 respectively. The first bearings 1026 can assist the rotating rod 1023 to rotate smoothly, so that the side grille 1021 can perform a smooth flipping operation. The fixing piece 1024 is fixedly connected to the lower grille 1014.
[0022] In this embodiment, the waterproof motor 1031 drives the cross 1032 to rotate, so that the cross 1032 drives the connecting shaft 1034 to move through the opening 1033, and the connecting shaft 1034 drives the gear rod 1035 to move, so that the gear rod 1035 and the gear 1025 are transmitted, and the rotating rod 1023 drives the side grille 1021 to flip, so that the four side grilles 1021 are closed with the upper grille 1011 and the lower grille 1014 to form a fish cage structure, thereby preventing aquatic organisms from escaping. During the flipping process of the side grille 1021, the side grille 1021 squeezes the connecting rod 2024 to drive the first piston 2022 to move. The first piston 2022 squeezes the liquid to flow, so that the second piston 2025 drives the movable rod 2026 and the first ball 2027 to move, so that the first ball 2027 controls the annular ring 2061 to rotate through the arc groove 2062, and the annular ring 2061 drives the cleaning strip 2064 to rotate, so that the cleaning strip 2064 automatically cleans the fish attractant light 204.
[0023] Example 3, reference Figure 1-Figure 4 and Figure 7-Figure 8 An integrated trapping device for underwater fishing includes a water creature fishing mechanism 100, the water creature fishing mechanism 100 includes a water creature capturing component 101 and four closing components 102, a fishing cage is formed between the water creature capturing component 101 and the four closing components 102, a driving component 103 is arranged below the water creature capturing component 101, the driving component 103 is connected to the four water creature capturing components 101, a feeding component 201 is arranged above the water creature capturing component 101, a stirring component 203 is arranged in the feeding component 201, a reciprocating moving component 205 is connected to the stirring component 203, the reciprocating moving component 205 is arranged above the feeding component 201, a cleaning component 206 is arranged outside the feeding component 201, the cleaning component 206 cooperates with the hydraulic control component 202 to realize the cleaning of the fish attracting light 204, and the fish attracting light 204 is arranged below the feeding component 201.
[0024] In this embodiment, the upper shell 2013 can be vibrated by rotating the stirring component 203 in coordination with the reciprocating moving component 205, so that the upper shell can drive the bait bin 2011 to vibrate. Secondly, the driving component 103 drives the closing component 102 and the aquatic life capturing component 101 to close to catch fish. At the same time, the closing component 102 squeezes the hydraulic control component 202, so that the hydraulic control component 202 can drive the cleaning component 206 to clean the fish attracting light 204, and the vibration makes the cleaning effect better.
[0025] Working principle: When conducting underwater fishing, the device is put into the water body, and then the underwater motor drives the cross 1032 to rotate, the cross 1032 drives the connecting shaft 1034 to move through the opening 1033, the connecting shaft 1034 drives the gear rod 1035 to move, the gear rod 1035 and the gear 1025 transmit, the gear 1025 drives the rotating rod 1023 to rotate, the rotating rod 1023 drives the connecting piece 1022 to rotate, the connecting piece 1022 drives the side grille 1021 to flip downward, so that the side grille 1021 is opened, and after the side grille 1021 is opened, the first spring 2023 drives the first piston 2022 to reset, the first piston 2022 pulls the second piston 2025 to move through the liquid negative pressure, so that the second piston 2025 drives the movable rod 2026 and the first ball 2027 to reset upward; Then, the first motor 2034 is controlled to drive the rotating shaft 2033 to reverse, and the rotating shaft 2033 drives the stirring blade 2031 to rotate. The stirring blade 2031 stirs the bait flow, and the rotating shaft 2033 also drives the spiral blade 2032 to rotate. The spiral blade 2032 conveys the bait downward, so that the bait is thrown downward, and the rotating shaft 2033 drives the support rod 2054 and the petal cam 2055 to rotate. Since the position of the support plate 2052 is fixed, the convex surface of the petal cam 2055 squeezes the belt with the second ball 2053. The upper shell 2013 moves, and the upper shell 2013 drives the second spring 2051 to deform. When the convex surface of the petal cam 2055 is away from the second ball 2053, the second spring 2051 drives the upper shell 2013 to reset, until the petal cam 2055 and the second ball 2053 produce an extrusion movement again, so that the petal cam 2055 can cooperate with the second spring 2051 to realize the vibration of the upper shell 2013, so as to vibrate and cast bait, which is convenient for the operation of trapping aquatic organisms, and at the same time cooperates with the fish-attracting light 204 to trap; After staying for a period of time, or after observing the gathering of aquatic organisms through the underwater camera 104, the waterproof motor 1031 drives the cross 1032 to rotate forward, so that the gear rod 1035 drives the horizontal bar 1051 and the movable frame 1052 to move, and the movable frame 1052 drives the rubber strip 1053 to clean the underwater camera 104. At the same time, the side grille 1021 flips upward and closes with the upper grille 1011 and the lower grille 1014, so as to catch aquatic organisms. When the side grille 1021 is closed, the side grille 1021 drives the connecting rod 2024 and the first piston 2022 to move, so that the first piston 2022 squeezes the liquid to flow, and the second piston 2025 drives the movable rod 2026 and the first ball 2027 to move downward, so that the first ball 2027 drives the annular ring 2061 to rotate through the arc groove 2062, and the annular ring 2061 drives the cleaning strip 2064 to rotate, so that the cleaning strip 2064 cleans the fish attracting light 204.
[0026] The above are only preferred specific implementation modes of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solutions and inventive concepts of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An integrated trapping device for underwater fishing, comprising an aquatic organism trapping mechanism (100), characterized in that: The aquatic organism catching mechanism (100) is equipped with a trapping mechanism (200); The aquatic organism catching mechanism (100) comprises an aquatic organism catching component (101) and four closing components (102), wherein a fishing cage is formed between the aquatic organism catching component (101) and the four closing components (102), a driving component (103) is arranged below the aquatic organism catching component (101), the driving component (103) is connected to the four aquatic organism catching components (101), and a cleaning component (105) is also connected to the driving component (103); The trapping mechanism (200) comprises a feeding assembly (201) and a hydraulic control assembly (202); the feeding assembly (201) is arranged above the aquatic organism capturing assembly (101); a stirring assembly (203) is arranged in the feeding assembly (201); a reciprocating assembly (205) is connected to the stirring assembly (203); the reciprocating assembly (205) is arranged above the feeding assembly (201); a cleaning assembly (206) is arranged outside the feeding assembly (201); the cleaning assembly (206) cooperates with the hydraulic control assembly (202) to clean a fish attracting light (204); and the fish attracting light (204) is arranged below the feeding assembly (201).
2. An integrated trapping device for underwater fishing according to claim 1, characterized in that: The aquatic organism capture assembly (101) comprises an upper grille (1011) and a lower grille (1014); four reinforcement rods (1012) are fixedly connected between the upper grille (1011) and the lower grille (1014); an underwater camera (104) is installed in the middle above the lower grille (1014); and a lifting ring (1013) is fixedly connected above the upper grille (1011).
3. An integrated trapping device for underwater fishing according to claim 2, characterized in that: The driving assembly (103) comprises a waterproof motor (1031), the waterproof motor (1031) being mounted below the lower grille (1014), the output shaft of the waterproof motor (1031) being fixedly connected to a cross (1032), the cross (1032) being provided with four openings (1033), a connecting shaft (1034) being provided in the opening (1033), one end of the connecting shaft (1034) being fixedly connected to a gear rod (1035), a support seat (1036) being slidably provided on the gear rod (1035), and the support seat (1036) being fixedly connected below the lower grille (1014).
4. An integrated trapping device for underwater fishing according to claim 3, characterized in that: The cleaning assembly (105) comprises a horizontal bar (1051), the horizontal bar (1051) being fixedly connected to one of the gear rods (1035), one end of the horizontal bar (1051) being fixedly connected to a movable frame (1052), the movable frame (1052) being U-shaped, and the movable frame (1052) being provided with a lower grille (1014), the upper wall of the movable frame (1052) being fixedly connected to a rubber strip (1053), and the rubber strip (1053) being located on one side of the underwater camera (104).
5. An integrated trapping device for underwater fishing according to claim 4, characterized in that: The closing assembly (102) comprises a rotating rod (1023) and a side grille (1021); a connecting piece (1022) is fixedly connected to one side of the side grille (1021); the connecting piece (1022) is fixedly connected to the rotating rod (1023); a gear (1025) is fixedly connected to the rotating rod (1023); the gear (1025) is meshed with a gear rod (1035); the rotating rod (1023) is rotatably mounted with two fixing pieces (1024) via two first bearings (1026); the two fixing pieces (1024) are fixedly connected to the lower grille (1014).
6. An integrated trapping device for underwater fishing according to claim 5, characterized in that: The hydraulic control component (202) is connected to a connecting cylinder (2021), and the connecting cylinder (2021) is fixedly connected to the bottom of the upper grille (1011). A bracket (2028) is fixedly connected to one side of the connecting cylinder (2021). The middle part of the connecting cylinder (2021) is a retractable bellows structure. A first piston (2022) and a second piston (2025) are arranged inside the connecting cylinder (2021). A movable rod (2026) is fixedly connected to the bottom of the second piston (2025). The movable rod (2026) passes through the connecting cylinder (2021) and is fixedly connected to the first ball (2027). A connecting rod (2024) is fixedly connected to one side of the first piston (2022), and the connecting rod (2024) passes through the other end of the connecting cylinder (2021). A first spring (2023) is fixedly connected between the first piston (2022) and the end wall of the connecting cylinder (2021).
7. An integrated trapping device for underwater fishing according to claim 6, characterized in that: The feeding assembly (201) comprises a bait bin (2011), a feeding port (2014) is arranged above the bait bin (2011), a feeding port (2012) is arranged below the bait bin (2011), the bracket (2028) is fixedly connected to the top of the bait bin (2011), the fish attracting light (204) is installed above the bait bin (2011), an upper shell (2013) is fixedly connected to the top of the bait bin (2011), and the upper shell (2013) is fixedly connected to the bottom of the upper grille (1011).
8. An integrated trapping device for underwater fishing according to claim 7, characterized in that: The cleaning assembly (206) comprises an annular ring (2061) and a third bearing (2063); the annular ring (2061) is rotatably mounted on the bait bin (2011) via the third bearing (2063); a cleaning strip (2064) is fixedly connected below the annular ring (2061); and the cleaning strip (2064) is disposed below the fish attracting light (204); An arc-shaped groove (2062) is formed outside the annular ring (2061), and the first rolling ball (2027) slides in the arc-shaped groove (2062).
9. An integrated trapping device for underwater fishing according to claim 8, characterized in that: The stirring assembly (203) comprises a first motor (2034), the first motor (2034) being mounted in the upper shell (2013), the output shaft of the first motor (2034) being fixedly connected to a rotating shaft (2033), the rotating shaft (2033) being rotatably mounted on the bait bin (2011) via a second bearing (2035), a plurality of stirring blades (2031) being fixedly connected to the outside of the rotating shaft (2033), the stirring blades (2031) being arranged in the bait bin (2011), and a spiral blade (2032) being fixedly connected below the rotating shaft (2033), the spiral blade (2032) being arranged in the discharge port (2012).
10. An integrated trapping device for underwater fishing according to claim 9, characterized in that: The reciprocating moving component (205) comprises a plurality of support rods (2054), the plurality of support rods (2054) are fixedly connected to the rotating shaft (2033), one end of the plurality of support rods (2054) is fixedly connected to a petal cam (2055), a plurality of support plates (2052) are vertically fixedly arranged below the upper grille (1011), a connecting rod is horizontally arranged at the lower end of the support plate (2052), the connecting rod is inserted into the upper shell (2013), the connecting rod extends into the upper shell (2013) and a second ball (2053) is arranged at the end thereof, the second ball (2053) overlaps the outer side of the petal cam (2055), a second spring (2051) is fixedly connected to the support plate (2052), and one end of the second spring (2051) is fixedly connected to the upper shell (2013).
Citation Information
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