Slide rail bearing type fish pricking device
By adopting the design of slide rails and bearings on both sides of the carrier module in the fish spearing device, combined with the automatic locking mechanism of limit pins and locking springs, the problems of easy detachment and wear of the carrier are solved, the stability and service life are improved, the operation is simplified and the accuracy of locking is improved.
Patent Information
- Application Number
- CN202421700447.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The carrier of the existing fish spearing device is easy to fall off the slide rail, has a short service life, is inconvenient to operate and is easy to wear, and has inaccurate positioning.
The slide rail module and bearing are set on both sides of the carrier module to slide in the support frame. The limit pin and the positioning spring are combined to realize automatic positioning. The button device can realize manual operation without manual operation. The wedge-shaped limit block and reset spring are used to improve stability and service life.
The sliding stability and anti-swing performance are improved, the service life is extended, the cost is reduced, the operation is simple and the positioning is accurate, which prevents the fish hook from falling off.
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Figure CN223298339U_ABST
Abstract
Description
Technical field:
[0001] The utility model relates to the technical field of fishing equipment, in particular to a slide rail bearing type fish spearing device. Background technology:
[0002] A fish spear is an auxiliary device used to support a fishing rod while fishing and prevent it from being unhooked and unloading the hook when a fish is hooked. For example, Chinese Patent Publication No. CN 215074887 U discloses a novel fish spear. To use it, the spear 22 is first positioned perpendicular to a fixing frame 1, and the carrier 2 is moved to the trigger stop 5. The trigger switch 6 is pressed to secure the carrier 2 to the positioning groove 51 of the trigger stop 5. The fishing rod is then placed on the spear 22. When a fish is hooked, the force generated by the struggle of the fish will pull the fishing rod. At this time, the fishing rod will drive the carrier 2 to move forward along the slide rail 3 through the fork 22. After the carrier 2 moves, the trigger switch 6 will disengage from the trigger limit block 5, causing the carrier 2 to be pulled back quickly by the tension spring 4, thereby driving the fishing rod to retreat and allowing the fishhook to penetrate deeply into the fish's mouth, thereby achieving the goal of piercing the fish and increasing the chance of hooking. Further, when the fish is hooked, it will pull the carrier 2 forward. At this time, the tension spring 4 will generate a counter-pulling force to unload the force, making the unloading and anti-tangling effect more effective, thereby achieving the purpose of preventing fish from escaping, preventing line tangling and breaking, and preventing the rod from falling off.
[0003] However, the above existing technical solutions still have the following technical problems:
[0004] 1. A single slide rail 3 at the bottom is used to guide the carrier 2. When the fish exerts force, the carrier 2 will be subjected to a large breaking force, and the slide rail 3 at the bottom cannot provide sufficient bearing capacity for the carrier 2, causing the carrier 2 to easily fall off the slide rail 3 and having a short service life.
[0005] 2. The trigger switch 6 needs to be manually pressed to lock the position, and it cannot be locked automatically. In addition, the trigger switch 6 needs to be in the positioning groove 51 on the trigger limit block 5 before it can be pressed. The operation is inconvenient and it is easy to get stuck or accidentally trigger hair loss.
[0006] 3. The use of unilateral positioning results in uneven force, which accelerates the wear between the trigger switch 6 and the positioning groove 51. After long-term use, the matching gap increases, making it difficult to position the trigger switch 6 and the positioning groove 51, resulting in a short service life.
[0007] In view of this, the inventors propose the following technical solutions. Utility model content:
[0008] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a slide rail bearing type fish piercing device.
[0009] In order to solve the above technical problems, the utility model adopts the following technical solution: the sliding rail bearing type fish piercing device includes: a support frame, a carrier module slidably installed in the support frame, and a horn head installed on the carrier module and used to install a fishing rod, which is characterized in that: a sliding rail module is arranged between one side of the inner wall of the support frame and one side of the carrier module, a bearing docked and installed in a slide groove is arranged on the other side of the carrier module, and a slide groove for the bearing to slide is arranged on the other side of the inner wall of the support frame.
[0010] Furthermore, in the above technical solution, a switch module capable of being extended and locked with the support frame is provided in the carrier module, at least one limit block for matching and locking with the switch module is provided at the bottom of the support frame, and a reset spring for pulling the carrier module to move is provided at one end of the support frame.
[0011] Furthermore, in the above technical solution, the switch module includes a telescopic sleeve floatingly installed in the carrier module, a limit pin installed in the telescopic sleeve and extending at one end for engaging with the limit block, a locking spring arranged in the telescopic sleeve and maintaining a tendency to push the limit pin out, and a reset compression spring installed in the carrier module and keeping the telescopic sleeve pushed upward. The carrier module is also equipped with a button device for pushing the telescopic sleeve downward so that the limit pin can engage with the limit block.
[0012] Furthermore, in the above technical solution, the button device is hingedly mounted on the carrier module, one end of the button device is pressed against the upper end of the telescopic sleeve, and the other end of the button device extends to the front end of the horn head.
[0013] Furthermore, in the above technical solution, the limit block is a wedge-shaped block, the inclined surface of the limit block is located at the front end, and after contacting the limit pin, it can gradually push the limit pin into the telescopic sleeve.
[0014] Furthermore, in the above technical solution, there are two limit blocks, which are installed at intervals at the bottom of the support frame. The two ends of the reset spring are respectively connected to the front end of the support frame and the front end of the carrier module. A unloading spring is also provided at the rear end of the support frame.
[0015] Furthermore, in the above technical solution, the carrier module includes a sliding block installed in the support frame and a mounting seat installed on the sliding block and extending out of the support frame, the switch module is installed through the sliding block, and the horn head is hingedly installed on the mounting seat.
[0016] Furthermore, in the above technical solution, the front end of the carrier module is provided with a limiting slot for the swing of the horn head, and the limiting slot is provided with a locking bolt or button assembly for fixing and adjusting the angle of the horn head, wherein the button assembly includes a button key floating through the limiting slot, a pin provided beside the button key and capable of moving therewith to position the horn head, and a re-compression positioning spring sleeved on the button key and used to push it out so that the pin can penetrate into the limiting slot to position the horn head, and the horn head is provided with at least one positioning hole for the pin to be inserted into the positioning position.
[0017] Furthermore, in the above technical solution, the button key and the latch are connected by a connecting plate, and the connecting plate and the pressing part of the button key are respectively located on both sides of the carrier module, and two locking holes are provided on the horn head, and the limiting groove is used to limit the horn head to only be able to swing forward and be horizontally stored with the support frame.
[0018] Furthermore, in the above technical solution, the support frame is tunnel-shaped, and a travel groove for the carrier module to move is provided at the upper end; the horn head is installed on the carrier module outside the travel groove, and the carrier module is provided with a buffer part for colliding with the end of the travel groove.
[0019] After adopting the above technical solution, the present invention has the following beneficial effects compared with the existing technology: In the present invention, slide rail modules and bearings are respectively provided on both sides of the carrier module to slide within the support frame. By positioning the two sides for sliding, the stability can be greatly improved, the sliding is smoother, derailment is unlikely, the service life is long, and the anti-swing performance is excellent. Secondly, the use of a slide rail module on one side of the carrier module and the combination of a bearing and a slide groove on the other side not only ensures stability and anti-swing performance, but also reduces costs and facilitates assembly. Description of the drawings:
[0020] Figure 1 It is the main view of the utility model;
[0021] Figure 2 It is an exploded view of the utility model;
[0022] Figure 3 It is an internal diagram of the utility model in its initial state;
[0023] Figure 4 It is an internal schematic diagram of the utility model in the triggered state;
[0024] Figure 5 This is a structural diagram of the switch module in the utility model;
[0025] Figure 6 It is a three-dimensional diagram of the button assembly in the vertical state of the present invention;
[0026] Figure 7 This is an exploded view of the button assembly in the present invention in a tilted state;
[0027] Figure 8 It is a three-dimensional diagram of the button assembly in the horizontal state in the utility model. Specific implementation method:
[0028] The present invention will be further described below with reference to specific embodiments and accompanying drawings.
[0029] See Figures 1 to 8 As shown, a slide rail bearing type fish spearing device includes a support frame 1, a carrier module 2 slidably mounted in the support frame 1, and a horn head 3 mounted on the carrier module 2 and used to mount a fishing rod. A slide rail module 4 is provided between one side of the inner wall of the support frame 1 and one side of the carrier module 2. The other side of the carrier module 2 is provided with a bearing 20 docked and mounted in a chute 100. The other side of the inner wall of the support frame 1 is provided with a chute 100 for sliding the bearing 20. The slide rail module 4 and the bearing 20 are respectively provided on both sides of the carrier module 2 to slide in the support frame 1. Sliding by positioning on both sides can greatly improve stability, make sliding smoother, prevent derailment, have a long service life, and have excellent anti-swing performance. Secondly, the slide rail module 4 is used on one side of the carrier module 2, and the bearing 20 is used on the other side to cooperate with the chute 100. This not only ensures stability and anti-swing performance, but also reduces costs and facilitates assembly.
[0030] The carrier module 2 houses a switch module 5 that can be extended and retracted to engage with the support frame 1. The bottom of the support frame 1 is equipped with at least one stopper 50 for engaging the switch module 5. One end of the support frame 1 is provided with a return spring 6 for pulling the carrier module 2 in motion. The stopper 59 at the bottom of the support frame 1, which engages with the switch module 5 on the carrier module 2, prevents wear caused by uneven unilateral engagement and significantly extends the service life of the switch module 5.
[0031] The switch module 5 includes a telescopic sleeve 51 that is floatingly mounted within the carrier module 2; a stop pin 52 mounted within the telescopic sleeve 51 and extending at one end to engage with a stop block 50; a retaining spring 53 disposed within the telescopic sleeve 51 to maintain a tendency to push out the stop pin 52; and a return spring 54 mounted within the carrier module 2 to maintain an upward bias of the telescopic sleeve 51. The carrier module 2 is also equipped with a button device 7 for pushing the telescopic sleeve 51 downward to allow the stop pin 52 to engage with the stop block 50. The stop pin 52 is T-shaped, and the retaining spring 53 is retained within the telescopic sleeve 51 by a screw 55. The switch module 5 is extended and locked with the limit block 50, and the limit pin 52 is extended and retracted by the locking spring 53, so that there is no need to manually lock the position when the horn head 3 is loaded. The limit pin 52 is pushed out by the locking spring 53 to achieve automatic locking, which has high loading efficiency. The upper and lower parts are coordinated for locking, and the reception is balanced after locking, which is not easy to accidentally trigger hair loss and has high accuracy.
[0032] The button device 7 is hingedly mounted on the carrier module 2. One end of the button device 7 presses against the upper end of the telescopic sleeve 51, and the other end of the button device 7 extends to the front end of the horn head 3. The limit block 50 is a wedge-shaped block with an inclined surface at the front end. After contacting the limit pin 52, the limit pin 52 is gradually pushed into the telescopic sleeve 51. The button installation 7 is hingedly installed on the carrier module 2 and located in front of the horn head 3. When the horn head 3 is pushed to slide backward for loading, the button device 7 will be pressed at the same time, so that the button device 7 is in a locked state at the same time. At this time, the limit pin 52 will extend from the bottom of the carrier module 2. When the carrier module 2 moves to the limit block 50, the limit pin 52 will compress the locking spring 53 after contacting the inclined surface of the limit block 50 and retract into the telescopic sleeve 51. After the limit pin 52 passes the limit block 50, it will extend again to the bottom of the carrier module 2 under the action of the locking spring 53. After the carrier module 2 is released, the limit pin 52 will be pressed against the side of the limit block 50 under the pull of the reset spring 6, thereby realizing the loading of the horn head 3.
[0033] Two stoppers 50 are provided, spaced apart and mounted at the bottom of the support frame 1. The two ends of a return spring 6 are connected to the front end of the support frame 1 and the front end of the carrier module 2, respectively. A de-stressing spring 8 is also provided at the rear end of the support frame 1. The first-stage stopper 50 engages the carrier module 2 after it has moved 90mm backward from its initial position, while the second-stage stopper 50 engages the carrier module 2 after it has moved 140mm backward from its initial position. When the carrier module 2 moves 145mm backward from its initial position, it reaches the de-stressing spring 8, whereupon de-stressing begins. The maximum travel of the carrier module 2 is 192mm.
[0034] The carrier module 2 includes a sliding block 21 installed in the support frame 1 and a mounting seat 22 installed on the sliding block 21 and extending out of the support frame 1 . The switch module 5 is installed through the sliding block 21 , and the horn head 3 is hingedly installed on the mounting seat 22 .
[0035] The front end of the carrier module 2 is provided with a limiting slot 221 for the horn head 3 to swing, and the limiting slot 221 is provided with a locking bolt or button assembly 24 for fixing and adjusting the angle of the horn head 3, wherein the button assembly 24 includes a button key 241 floating through the limiting slot 221, a pin 242 provided beside the button key 241 and capable of moving therewith to position the horn head 3, and a re-compression positioning spring 243 sleeved on the button key 241 and used to push it out so that the pin 242 penetrates into the limiting slot 221 to position the horn head 3, and the horn head 3 is provided with at least one positioning hole 31 for the pin 242 to be inserted into the positioning. The button 241 and the latch 242 are connected by a connecting plate 244. The connecting plate 244 and the pressing portion of the button 241 are located on either side of the carrier module 2. The button 241 is fixed to the connecting plate 244 by a screw 245. Two locking holes 31 are provided on the clevis 3. The limiting notch 221 is used to restrict the clevis 3 to swing forward and be stored horizontally with the support frame 1. The clevis 3 is hinged to the carrier module 2 by a hinge screw 25.
[0036] When fishing, the horn head 3 can be selected to be in an upright state or in a 75° tilted state. The adjustment method is: by pressing the button 241, the horn head 3 can be swung. After selecting whether the horn head 3 is in a vertical state, a tilted state, or a horizontal state, release the button 241 to fix the horn head 3. The operation is simple and fast.
[0037] A raised portion 211 is formed in the middle of the sliding block 21, and the switch module 5 is mounted on the raised portion 211. A groove is formed at the bottom of the mounting seat 22 to align with the raised portion 211. The support frame 1 is tunnel-shaped, and a travel groove 10 is provided at the upper end for the movement of the carrier module 2. The horn head 3 is mounted on the carrier module 2 outside the travel groove 10, and the carrier module 2 is provided with a buffer member 23 for colliding with the end of the travel groove 10. In this embodiment, a first clamp 11 and a second clamp 12 are also installed at the bottom of the support frame 1 for fixing. A front cover 13 and a rear cover 14 are provided at both ends of the support frame 1 for fixing the reset spring 6 and the unloading spring 8, respectively.
[0038] When the lever 50 is unlocked, the lever 52 is released and the user is again in a position to unlock the lever 50. When the lever 50 is unlocked, the user is again in a position to unlock the lever 50. When the lever 50 is unlocked, the user is again in a position to unlock the lever 50. The tool module 2 will be pulled to move forward, and the limit pin 52, which extends out of the bottom of the carrier module 2, will be pulled and pressed against the rear end of the limit block 50, thereby maintaining a triggered balance state; further, when the fishing rod placed on the horn head 3 is caught by the fish, the carrier module 2 will move backward under the pull of the fish. At this time, under the action of the reset compression spring 54, the switch module 5 will be pushed upward, causing the limit pin 52 to retract into the carrier module 2, so that the reset tension spring 6 loses its positioning limit and pulls the carrier module 2 to slide forward rapidly, thereby causing the horn head 3 to pull the fishing rod back and pierce the fishhook into the fish's mouth, thereby automatically piercing the fish and preventing the fish from being unhooked; further, in the process of the fish dragging the fishing rod to run, the reset tension spring 6 will first pull the carrier module 2 to unload the force, and when the carrier module 2 moves and contacts the unloading spring 8, the unloading spring 8 will prevent the carrier module 2 from continuing to move backward, thereby achieving further unloading.
[0039] Of course, the above description is only a specific embodiment of the present invention and is not intended to limit the scope of implementation of the present invention. Any equivalent changes or modifications made based on the structure, features and principles described in the scope of the patent application of the present invention should be included in the scope of the patent application of the present invention.
Claims
1. A slide rail bearing type fish spearing device, comprising a support frame (1), a carrier module (2) slidably mounted in the support frame (1), and a horn head (3) mounted on the carrier module (2) and used for mounting a fishing rod, characterized in that: A slide rail module (4) is provided between one side of the inner wall of the support frame (1) and one side of the carrier module (2); a bearing (20) is provided on the other side of the carrier module (2) and is docked and installed in the slide groove (100); and a slide groove (100) for sliding the bearing (20) is provided on the other side of the inner wall of the support frame (1).
2. The slide rail bearing type fish spearing device according to claim 1, characterized in that: The carrier module (2) is provided with a switch module (5) capable of being telescopically engaged with the support frame (1), the bottom of the support frame (1) is provided with at least one limit block (50) for engaging with the switch module (5), and one end of the support frame (1) is provided with a reset spring (6) for pulling the carrier module (2) to move.
3. The slide rail bearing type fish spearing device according to claim 2, characterized in that: The switch module (5) includes a telescopic sleeve (51) installed in a floating manner in the carrier module (2), a limit pin (52) installed in the telescopic sleeve (51) and extending at one end for engaging with the limit block (50), a locking spring (53) arranged in the telescopic sleeve (51) and maintaining a tendency to push out the limit pin (52), and a return compression spring (54) installed in the carrier module (2) and maintaining the telescopic sleeve (51) upward. The carrier module (2) is also provided with a button device (7) for pushing the telescopic sleeve (51) downward so that the limit pin (52) can engage with the limit block (50).
4. The slide rail bearing type fish spearing device according to claim 3, characterized in that: The button device (7) is hingedly mounted on the carrier module (2), one end of the button device (7) is pressed against the upper end of the telescopic sleeve (51), and the other end of the button device (7) extends to the front end of the horn head (3).
5. The slide rail bearing type fish spearing device according to claim 3, characterized in that: The limiting block (50) is a wedge-shaped block, the inclined surface of the limiting block (50) is located at the front end, and after contacting the limiting pin (52), the limiting pin (52) can be gradually pushed into the telescopic sleeve (51).
6. The slide rail bearing type fish spearing device according to claim 5, characterized in that: Two limit blocks (50) are provided and installed at intervals at the bottom of the support frame (1). The two ends of the reset spring (6) are respectively connected to the front end of the support frame (1) and the front end of the carrier module (2). The rear end of the support frame (1) is also provided with a unloading spring (8).
7. The slide rail bearing type fish spearing device according to claim 2, characterized in that: The carrier module (2) includes a sliding block (21) installed in the support frame (1) and a mounting seat (22) installed on the sliding block (21) and extending out of the support frame (1); the switch module (5) is installed through the sliding block (21); and the horn head (3) is hingedly installed on the mounting seat (22).
8. The slide rail bearing type fish spearing device according to claim 1, characterized in that: The front end of the carrier module (2) is provided with a limiting slot (221) for the ram's horn head (3) to swing, and the limiting slot (221) is provided with a locking bolt or a button assembly (24) for fixing and adjusting the angle of the ram's horn head (3), wherein the button assembly (24) includes a button key (241) floating through the limiting slot (221), a latch (242) arranged beside the button key (241) and capable of moving with it to lock the ram's horn head (3), and a re-compression locking spring (243) sleeved on the button key (241) and used to push it out so that the latch (242) penetrates into the limiting slot (221) to lock the ram's horn head (3), and the ram's horn head (3) is provided with at least one locking hole (31) for the latch (242) to be inserted into the locking position.
9. The slide rail bearing type fish spearing device according to claim 8, characterized in that: The button key (241) and the latch (242) are connected via a connecting plate (244), and the connecting plate (244) and the pressing portion of the button key (241) are respectively located on both sides of the carrier module (2), and two positioning holes (31) are provided on the horn head (3), and the limiting notch (221) is used to limit the horn head (3) to only be able to swing forward and be stored horizontally with the support frame (1).
10. The slide rail bearing type fish spearing device according to any one of claims 1 to 9, characterized in that: The support frame (1) is tunnel-shaped, and is provided with a travel groove (10) at the upper end for the carrier module (2) to move; the horn head (3) is installed on the carrier module (2) and is located outside the travel groove (10), and the carrier module (2) is provided with a buffer member (23) for colliding with the end of the travel groove (10).
Citation Information
Patent Citations
A new type of fish stinger
CN215074887U