Fish controller
By improving the transmission mechanism of the fish controller, the push rod is reset at the handle, which solves the problems of complex and unsmooth drive mechanism, and achieves more convenient fish control operation and stable clamping effect.
Patent Information
- Application Number
- CN202423217121.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-25
AI Technical Summary
The existing fish control device has a relatively complex drive mechanism, which makes the movement uneven and prone to jamming, resulting in inconvenience in fish control operation.
The design employs a transmission mechanism, with the push rod movably passing through the mounting arm and handle. The front end of the push rod is connected to the linkage clamping mechanism, and the rear end is fitted with a first elastic element. The push assembly movably passes through the movable slot, and the push rod resets at the handle. The force is concentrated at the handle, making it easy for the user to control the opening and closing of the clamping mechanism.
It improves the convenience and stability of fish control operations, reduces jamming, allows users to better control the clamping force, and enhances the user experience.
Smart Images

Figure CN223626784U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to fishing gear field, especially relate to a fish control device. BACKGROUND
[0002] When a fisher uses a fishing rod to fish, the fisher needs to take the caught fish off the fishing rod. The fish control device is widely used in modern fishing activities, which can avoid the fisher's hand being scratched by fish teeth, fish spines, fish hooks and the like when taking the fish, and can reduce the damage to the fish.
[0003] Generally, the fish control device comprises two oppositely arranged clamping jaws at the front end, a driving mechanism for driving the two clamping jaws to open and close, and a handle, etc. When in use, the palm of the user holds the handle, and the two clamping jaws can be opened by pushing the driving mechanism with the thumb, then one of the clamping jaws is put into the mouth of the caught fish, and the two clamping jaws are closed by the driving mechanism, so as to clamp the caught fish.
[0004] However, in some fish control devices, the force for resetting the driving mechanism is not located at the handle at the rear end of the fish control device. When the caught fish is clamped at the front end of the fish control device and the driving mechanism needs to be reset to make the clamping jaws close, the force at other places may be too large, which may affect the user's force to hold the handle. TECHNICAL CONTENT
[0005] The utility model provides a kind of fish control device, to solve the technical problems that the driving mechanism of some existing fish control devices is more complex, or the driving mechanism is not designed enough reasonable, movement is not enough smooth in driving process, prone to jamming situation, lead to its fish control operation is more inconvenient.
[0006] The utility model is realized as follows: a kind of fish control device, comprising:
[0007] mounting arm, the movable slot is equipped on the mounting arm;
[0008] linkage clamping mechanism arranged at the front end of the mounting arm;
[0009] handle arranged at the end of the mounting arm;And
[0010] drive mechanism is passed through the mounting arm and the handle, the drive mechanism includes the push rod movably passed through the mounting arm and the handle and the push component arranged on the push rod, the front end of the push rod is in transmission with the linkage clamping mechanism, rear end is located in the handle and is equipped with the first elastic element for urging the push rod to move back, the push component is movably passed through the mounting arm and at least part is exposed from the movable slot, the push component can drive the push rod to move back and forth, to drive the linkage clamping mechanism to open or close.
[0011] Further, the fish controller further comprises a mounting member and a mounting assembly respectively arranged at the front end and the terminal end of the mounting arm, the linkage clamping mechanism is arranged on the mounting member, the front end of the push rod is in transmission connection with the linkage clamping mechanism after penetrating through the mounting member, and the handle is arranged on the mounting assembly.
[0012] Further, the mounting assembly comprises:
[0013] a first mounting member in threaded connection with the terminal end of the mounting arm, and the push rod is movably penetrating through the first mounting member; and
[0014] a second mounting member arranged in cooperation with the first mounting member, the handle is arranged at the terminal end of the second mounting member, and part of the first mounting member penetrates through the second mounting member.
[0015] Further, the first mounting member comprises:
[0016] a docking portion in threaded connection with the terminal end of the mounting arm; and
[0017] an extension portion connected with the docking portion and extending towards the terminal end of the push rod, the extension portion penetrates through the second mounting member, and the push rod is movably penetrating through the docking portion and the extension portion.
[0018] Further, the mounting assembly further comprises:
[0019] a fixing nut in threaded connection with the terminal end of the first mounting member; and
[0020] a first limiting member sleeved on the push rod, the first limiting member penetrates into the fixing nut and is limited by the fixing nut, the terminal end of the push rod is provided with a limiting nut, one end of the first elastic element abuts against the limiting nut, and the other end abuts against the first limiting member.
[0021] Further, the mounting assembly further comprises:
[0022] a second limiting member and a third limiting member sleeved on the first mounting member and arranged oppositely, the second limiting member corresponds to the first mounting member, and the third limiting member corresponds to the second mounting member;
[0023] a second elastic element sleeved on the second limiting member and the third limiting member and abutting against the two limiting members; and
[0024] a fourth limiting member sleeved on the push rod and embedded in the first mounting member, the fourth limiting member is located at the front end of the second limiting member.
[0025] Further, the second mounting member is provided with a plurality of grooves on the inner side of the end away from the first mounting member, and the end of the first mounting member is further provided with a touch feedback assembly, which is rotatably fitted with the plurality of grooves.
[0026] Further, the touch feedback assembly comprises:
[0027] A fixing member is provided with a limiting hole, and the end of the first mounting member is provided with a limiting surface, the end of the first mounting member is provided through the limiting hole, and the limiting surface is limitedly matched with the limiting hole.
[0028] A touch member is detachably provided on the fixing member, both ends of the touch member are respectively provided with a fitting part and a clamping part, the fitting part is rotatably fitted with the plurality of grooves, both ends of the touch member are provided with clamping holes, the fitting part is provided through one of the clamping holes, and the clamping part is elastically clamped in the other clamping hole.
[0029] Further, the linkage clamping mechanism comprises:
[0030] An installation plate is provided on the mounting member, the installation plate is provided with a first sliding groove extending along the length direction of the installation plate and two second sliding grooves symmetrically arranged with the first sliding groove;
[0031] A first clamping jaw and a second clamping jaw are cooperatively provided in the installation plate, the first clamping jaw and the second clamping jaw are exposed from the front end of the installation plate, the front end of the installation plate is provided with a first positioning shaft and a second positioning shaft at intervals, the middle part of the first clamping jaw is rotatably connected with the first positioning shaft, the middle part of the second clamping jaw is rotatably connected with the second positioning shaft, and the end of the first clamping jaw and the end of the second clamping jaw are respectively provided with a third sliding groove and a fourth sliding groove; and
[0032] A first connecting rod and a second connecting rod are located in the installation plate, one end of the first connecting rod and one end of the second connecting rod are rotatably connected with the push rod through a first rotating shaft, the other end of the first connecting rod and the other end of the second connecting rod are respectively movably connected with the third sliding groove and the fourth sliding groove through a second rotating shaft, and the end part of the first rotating shaft is movably embedded in the first sliding groove, and the end part of the second rotating shaft is movably embedded in the second sliding groove.
[0033] Further, the push assembly comprises a boosting member matched with the longitudinal sectional shape of the installation arm, and the boosting member is located in the installation arm and in sliding contact with the inner wall of the installation arm.
[0034] The utility model embodiment's fish controller, transmission mechanism passes and sets up arm and handle, wherein, the push rod in transmission mechanism passes and sets up arm and handle movably, makes the stress of self can be distributed on whole fish controller relatively evenly, and the part of push rod in handle is equipped with the first elastic element that can make push rod reset back, that is, the strength that makes push rod reset concentrates in handle place, because the handle place is the place that user grips in actual use, makes user more to control the stress of whole fish controller, and push assembly exposes at least part from the movable slot on the installation arm, more convenient for user to force to push or pull back push assembly, more easily control the opening or folding of linkage clamping mechanism. BRIEF DESCRIPTION OF DRAWINGS
[0035] Figure 1 It is the three-dimensional schematic view of the fish controller provided by the utility model embodiment;
[0036] Figure 2 It is another three-dimensional schematic view of the fish controller provided by the utility model embodiment;
[0037] Figure 3 It is still another three-dimensional schematic view of part of the fish controller provided by the utility model embodiment;
[0038] Figure 4 It is still another three-dimensional schematic view of part of the fish controller provided by the utility model embodiment;
[0039] Figure 5 It is the three-dimensional disassembly schematic view of part of the fish controller provided by the utility model embodiment;
[0040] Figure 6 It is another three-dimensional disassembly schematic view of part of the fish controller provided by the utility model embodiment;
[0041] Figure 7 It is the three-dimensional schematic view of the touch feedback assembly provided by the utility model embodiment.
[0042] Main element symbol explanation:
[0043] Mounting arm-10; movable slot-11; mounting-12; linkage clamping mechanism-20; mounting plate-21; first clamping jaw-22; second clamping jaw-23; first positioning shaft-24; second positioning shaft-25; first connecting rod-26; second connecting rod-27; first rotating shaft-28; second rotating shaft-29; handle-30; transmission mechanism-40; push rod-41; push assembly-42; booster-421; first elastic element-43; limiting nut-44; mounting assembly-50; first mounting member-51; butt joint-511; extension-512; limiting surface-5121; second mounting member-52; groove-521; fixing nut-53; first limiting member-54; second limiting member-55; third limiting member-56; second elastic element-57; fourth limiting member-58; touch feedback assembly-60; fixing member-61; limiting hole-611; detent hole-612; touch member-62; fitting part-621; detent part-622; fish controller-100. DETAILED DESCRIPTION
[0044] In order to make the purpose, technical scheme and advantages of the present application more clear, the following further describes the present application in conjunction with the accompanying drawings and embodiments. The embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present application and cannot be understood as limiting the present application. In addition, it should be understood that the specific embodiments described herein are only used to explain the present application and cannot be used to limit the present application.
[0045] In the description of the present application, it should be understood that the orientation or position relationship indicated in the description of the direction and position relationship is based on the orientation or position relationship shown in the drawings, which is only for the purpose of describing the present application and simplifying the description, and does not indicate or imply that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present application.
[0046] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0047] The disclosure below provides many different embodiments or examples for implementing different structures of the present application. In order to simplify the disclosure of the present application, the components and settings of specific examples are described below. Of course, they are only examples and the purpose is not to limit the present application.
[0048] In addition, the present application can repeatedly refer to numbers and / or letters in different examples, and such repetition is for the purpose of simplification and clarity, which itself does not indicate the relationship between the various embodiments and / or settings discussed. In addition, the present application provides examples of various specific processes and materials, but those skilled in the art can realize the application of other processes and / or the use of other materials.
[0049] Please refer to Figures 1 to 7 The fish controller 100 of the embodiment of the present application comprises:
[0050] The mounting arm 10 is provided with a movable slot 11.
[0051] The linkage clamping mechanism 20 is arranged at the front end of the mounting arm 10.
[0052] The handle 30 is arranged at the end of the mounting arm 10.
[0053] The transmission mechanism 40 is arranged through the mounting arm 10 and the handle 30, and the transmission mechanism 40 comprises a push rod 41 movably arranged through the mounting arm 10 and the handle 30 and a pushing assembly 42 arranged on the push rod 41, the front end of the push rod 41 is in transmission connection with the linkage clamping mechanism 20, the rear end is located in the handle 30 and is sleeved with a first elastic element 43 for moving the push rod 41 rearward, the pushing assembly 42 is movably arranged through the mounting arm 10 and at least partially exposed from the movable slot 11, the pushing assembly 42 can drive the push rod 41 to move forward and backward to drive the linkage clamping mechanism 20 to open or close.
[0054] In the fish controller 100 of the embodiment of the present application, the transmission mechanism 40 is arranged through the mounting arm 10 and the handle 30, wherein the push rod 41 in the transmission mechanism 40 is movably arranged through the mounting arm 10 and the handle 30, so that the stress on itself can be relatively evenly distributed on the entire fish controller 100, and the part of the push rod 41 located in the handle 30 is sleeved with the first elastic element 43 capable of moving the push rod 41 rearward, that is, the force for moving the push rod 41 back is concentrated at the handle 30, so that the user can better control the stress on the entire fish controller 100 because the handle 30 is the place for the user to grasp in actual use, and the pushing assembly 42 is at least partially exposed from the movable slot 11 on the mounting arm 10, which is more convenient for the user to apply force to push or pull the pushing assembly 42 forward or backward, and it is easier to control the opening or closing of the linkage clamping mechanism 20.
[0055] In the embodiment, the mounting arm 10 is a mounting, bearing structure of the fish controller 100, and the linkage clamping mechanism 20, the handle 30 and the transmission mechanism 40 are all mounted on the mounting arm 10. The mounting arm 10 can be in a hollow cylindrical shape (tubular shape), a prism shape, etc., and the cylindrical mounting arm 10 is taken as an example for illustration in the embodiment.
[0056] The upper and lower sides of the mounting arm 10 can be provided with movable grooves 11, and correspondingly, the upper and lower ends of the pushing assembly 42 are exposed on the upper and lower sides of the mounting arm 10 after passing through the upper and lower movable grooves 11, so that the pushing assembly 42 can move smoothly forward and backward along the two movable grooves 11, and the user can conveniently control the pushing assembly 42 by rotating the fish controller 100 to any side.
[0057] In addition, the upper and lower ends of the pushing assembly 42 exposed outside the mounting arm 10 can be provided with rough surfaces, textures or other anti-skid structures, so that when the user touches any end, the accidental slipping of the user's fingers can be reduced, which is beneficial to the user to use the fish controller 100 and improves the user experience.
[0058] In the embodiment, the linkage clamping mechanism 20 includes a clamping part at the front end of the fish controller 100 and a linkage part between the clamping part and the push rod 41, that is, the push rod 41 is in transmission connection with the clamping part through the linkage part, and the push rod 41 makes corresponding actions when being driven by the driving force provided by the pushing assembly 42, and the linkage part transmits the action of the push rod 41 to the clamping part to open and close to clamp the fish.
[0059] The user can push the pushing assembly 42 to the front end of the mounting arm 10 by the thumb of one hand, so that the linkage clamping mechanism 20 is pushed to open, and since the first elastic element 43 exerts a rearward pulling force on the push rod 41, the linkage clamping mechanism 20 can be automatically folded by being pulled backward by the push rod 41 when the pushing assembly 42 is released, which greatly improves the operation convenience of the fish controller 100.
[0060] When the pushing assembly 42 is pushed to move forward, the first elastic element 43 is compressed forward by the push rod 41, and when the pushing assembly 42 is released, the first elastic element 43 can generate a rearward pushing force on the push rod 41, so that the pushing assembly 42 moves backward along the movable groove 11 on the mounting arm 10 to reset, and the push rod 41 resets in the handle 30 and the mounting arm 10.
[0061] The first elastic element 43 can be a spring, and the size of the spring can be selected according to the required pushing force.
[0062] In the embodiment, the push rod 41 can be a long rod or composed of two or more short rods connected by threads. The push rod 41 passes through the handle 30 and the mounting arm 10, i.e. the push rod 41 basically passes through the main body of the fish controller 100, so that the force applied to the push rod 41 can be distributed to the main body of the fish controller 100, facilitating the balance of the force.
[0063] It can be understood that the handle 30 is a part of the fish controller 100 for the user to hold with the palm. After holding the handle 30, the user can extend the thumb to push the push assembly 42. The first elastic element 43 is arranged in the handle 30, so that the force applied to the first elastic element 43 when compressed and stretched is applied to the handle 30, i.e. the relatively rear half of the fish controller 100, and forms a force balance with the front end of the fish controller 100. Moreover, the handle 30 is the force applying part of the user, and the user can better control the fish controller 100.
[0064] The surface of the handle 30 can be provided with a friction structure for increasing the friction of the palm of the user, so that the user can hold the fish controller 100 more stably. Exemplarily, the friction structure can be a structure such as a plastic sleeve, a rubber sleeve, etc. that can provide a certain friction and is sleeved on the handle 30, or can be a pattern, a protrusion or a depression, etc. arranged on the surface of the handle 30.
[0065] Please refer to Figures 1 to 3 Further, the push assembly 42 comprises a boosting piece 421 adapted to the longitudinal sectional shape of the mounting arm 10. The boosting piece 421 is located in the mounting arm 10 and in sliding contact with the inner wall of the mounting arm 10.
[0066] In the embodiment, the longitudinal sectional shape of the mounting arm 10 is circular, and the shape of the boosting piece 421 is like a round cake. The circumference of the boosting piece 421 is in sliding contact with the inner surface of the mounting arm 10, so that the boosting piece 421 is movably embedded in the mounting arm 10, helping the movement of the push assembly 42 in the mounting arm 10, i.e. promoting the stable transmission of the transmission mechanism 40 in the fish controller 100.
[0067] Please refer to Figures 1 to 6 Further, the fish controller 100 further comprises a mounting piece 12 and a mounting assembly 50 arranged at the front end and the tail end of the mounting arm 10 respectively. The linkage clamping mechanism 20 is arranged on the mounting piece 12. The front end of the push rod 41 is in transmission connection with the linkage clamping mechanism 20 after passing through the mounting piece 12. The handle 30 is arranged on the mounting assembly 50. The push rod 41 movably passes through the mounting assembly 50.
[0068] Specifically, the mounting piece 12 and the mounting assembly 50 are both threadedly connected with the mounting arm 10, wherein the front end of the mounting piece 12 is provided with two connecting portions connected with the linkage clamping mechanism 20, the two connecting portions are embedded in the linkage clamping mechanism 20 and are stably arranged with the linkage clamping mechanism 20 through a screw rod, and the rear end of the mounting piece 12 is provided with a first fixing portion threadedly connected with the mounting arm 10, and the outer peripheral surface of the first fixing portion is provided with a threaded structure which can be embedded in the mounting arm 10 and stably threadedly connected with the threaded structure on the inner surface of the front end of the mounting arm 10.
[0069] The outer peripheral surface of the front end of the mounting assembly 50 is provided with a threaded structure which can be embedded in the mounting arm 10 and stably threadedly connected with the threaded structure on the inner surface of the rear end of the mounting arm 10, and the outer peripheral surface of the rear end of the mounting assembly 50 is also provided with a threaded structure which can be embedded in the handle 30 and stably threadedly connected with the threaded structure on the inner surface of the front end of the handle 30.
[0070] In this way, the linkage clamping mechanism 20, the mounting arm 10 and the handle 30 are all threadedly connected, which not only facilitates the disassembly and assembly of the whole fish controller 100, and further facilitates replacement and maintenance, but also can ensure the structural stability of the whole fish controller 100.
[0071] Please refer to Figures 3 to 6 Further, the mounting assembly 50 comprises:
[0072] a first mounting member 51 threadedly connected with the end of the mounting arm 10, and the push rod 41 movably passes through the first mounting member 51; and
[0073] a second mounting member 52 cooperatively arranged with the first mounting member 51, and the handle 30 is arranged at the end of the second mounting member 52, and part of the first mounting member 51 passes through the second mounting member 52.
[0074] In the embodiment, the mounting assembly 50 is mainly divided into the first mounting member 51 and the second mounting member 52, wherein the first mounting member 51 is threadedly connected with the mounting arm 10, and the second mounting member 52 is threadedly connected with the handle 30, so as to realize the stable connection between the mounting arm 10 and the handle 30.
[0075] Specifically, the first mounting member 51 comprises a butt joint portion 511 and an extension portion 512 connected with the butt joint portion 511 and extending towards the end of the push rod 41, and the push rod 41 movably passes through the butt joint portion 511 and the extension portion 512.
[0076] The docking portion 511 is circular in structure, and a threaded structure is arranged on the outer circumferential surface thereof to be screwed with the end of the mounting arm 10. The extension portion 512 is a hollow columnar structure, which penetrates through the second mounting member 52, so that the push rod 41, after penetrating through the docking portion 511 and the extension portion 512, also penetrates into the second mounting member 52 to extend rearward, so that the movement of the push rod 41 between the handle 30 and the mounting arm 10 is more stable.
[0077] Please refer to Figures 4 to 6 Furthermore, the mounting assembly 50 further comprises:
[0078] A fixing nut 53 screwed with the end of the first mounting member 51; and
[0079] A first limiting member 54 sleeved on the push rod 41, the first limiting member 54 penetrates into the fixing nut 53 and is limited by the fixing nut 53, the end of the push rod 41 is provided with a limiting nut 44, one end of the first elastic element 43 abuts against the limiting nut 44, and the other end abuts against the first limiting member 54.
[0080] Specifically, a threaded structure is arranged on the outer surface of the end of the first mounting member 51, and a threaded structure is also arranged on the inner circumferential surface of the fixing nut 53, so that the fixing nut 53 can be screwed with the end of the first mounting member 51.
[0081] Since the volume of the fixing nut 53 is larger than that of the end of the first mounting member 51, on the one hand, the push rod 41 can be kept compact with the mounting assembly 50, and on the other hand, the force of the first elastic element 43 can act on the mounting assembly 50. In this embodiment, the first limiting member 54 is arranged at the fixing nut 53, and the push rod 41 extends to the end of the handle 30 after movably penetrating through the first limiting member 54. A threaded structure is arranged on the outer circumferential surface of the end of the push rod 41, and the limiting nut 44 is detachably arranged on the end of the push rod 41 by screwing, so that one end of the first elastic element 43 abuts against the limiting nut 44 at the end of the push rod 41, and the other end abuts against the first limiting member 54.
[0082] When the pushing assembly 42 drives the push rod 41 to move forward, the limiting nut 44 pushes the first elastic element 43 forward, and the first elastic element 43 is compressed under the limitation of the first limiting member 54, and the two ends thereof act on the limiting nut 44 and the first limiting member 54, respectively. When the pushing assembly 42 is released, the first elastic element 43 is stretched to push the limiting nut 44, and drives the push rod 41 to move backward to reset.
[0083] Please continue to refer to Figures 4 to 6 Furthermore, the mounting assembly 50 further comprises:
[0084] The second limiting member 55 and the third limiting member 56 are sleeved on the first mounting member 51 and oppositely arranged, the second limiting member 55 corresponds to the first mounting member 51, and the third limiting member 56 corresponds to the second mounting member 52;
[0085] The second elastic element 57 is sleeved on the second limiting member 55 and the third limiting member 56 and abuts against the two members;
[0086] The fourth limiting member 58 is sleeved on the push rod 41 and embedded in the first mounting member 51, and the fourth limiting member 58 is located at the front end of the second limiting member 55.
[0087] Specifically, the second limiting member 55 and the third limiting member 56 are the same structural elements, both of which are sleeved on the extension part 512 and located between the butt joint part 511 and the second mounting member 52 and surrounded by the second mounting member 52, wherein the second limiting member 55 corresponds to the butt joint part 511, the third limiting member 56 corresponds to the second mounting member 52, and the second limiting member 55 and the third limiting member 56 are sleeved with the second elastic element 57, one end of the second elastic element 57 abuts against the second limiting member 55, and the other end abuts against the third limiting member 56, so that the second limiting member 55 can abut against the first mounting member 51, and the third limiting member 56 can abut against the second mounting member 52.
[0088] Since the mounting assembly 50 is located at the connection between the handle 30 and the mounting arm 10 and is an intermediate structure for connecting the handle 30 and the mounting arm 10, when the fish gripper 100 holds the fish, the second elastic element 57 can be elastically deformed to a certain extent, so that the combination of the second limiting member 55, the third limiting member 56 and the second elastic element 57 provides a certain elastic strain for the connection between the first mounting member 51 and the second mounting member 52 to offset a certain external force.
[0089] The fourth limiting member 58 is embedded at the connection between the butt joint part 511 and the extension part 512, and since the size of the extension part 512 is slightly larger than the size of the push rod 41, the fourth limiting member 58 is sleeved on the push rod 41 and embedded at the connection, so that the push rod 41 and the first mounting member 51 are more compact and less likely to shake, promoting the stable movement of the push rod 41.
[0090] Compared with other existing fish grippers, in the fish gripper 100 of the embodiment, the connection assembly (i.e., this part of the mounting assembly 50) between the mounting arm 10 and the handle 30 is simpler and more compact in structure, the overall structure of the fish gripper 100 is optimized, and the overall structural complexity is reduced.
[0091] Please refer to Figures 4 to 7Further, the inner side of the end of the second mounting member 52 away from the first mounting member 51 is provided with a plurality of grooves 521 distributed along the circumference, and the end of the first mounting member 51 is further sleeved with a touch feedback assembly 60, which is located in the second mounting member 52 and can be rotationally fitted with the plurality of grooves 521.
[0092] It can be understood that when the fish holder 100 is used to clamp the fish, the fish holder 100 will generally become inclined or relative to the vertical state, at which time the cooperation of the touch feedback assembly 60 and the plurality of grooves 521 on the second mounting member 52 can give the user clamping feedback, and the touch feedback assembly 60 will rotate and switch between the plurality of grooves 521, thereby producing a sound like "tata", improving the user's auditory perception and tactile feedback from the palm.
[0093] Please refer to Figures 5 to 7 Further, the touch feedback assembly 60 comprises:
[0094] The fixing member 61 is provided with a limiting hole 611, the end of the first mounting member 51 is provided with a limiting surface 5121, the end of the first mounting member 51 is sleeved with the limiting hole 611, and the limiting surface 5121 is limitedly matched with the limiting hole 611; and
[0095] The touch member 62 is detachably arranged on the fixing member 61, both ends of the touch member 62 are respectively provided with a fitting part 621 and a clamping part 622, the fitting part 621 is rotationally fitted with the plurality of grooves 521, both ends of the touch member 62 are provided with clamping holes 612, the fitting part 621 passes through one of the clamping holes 612, and the clamping part 622 is elastically clamped in the other clamping hole 612.
[0096] In the embodiment, the user's control feedback when using the fish holder 100 is realized by the cooperation of the touch feedback assembly 60 and the second mounting member 52, the touch feedback assembly comprises a detachable fixing member 61 and a touch member 62, the fixing member 61 is provided with a racetrack-shaped limiting hole 611, and correspondingly, the upper and lower sides of the end of the first mounting member 51 are provided with limiting surfaces 5121, so that the longitudinal section shape of the end of the first mounting member 51 is also racetrack-shaped, thereby enabling the end of the first mounting member 51 to stably pass through the limiting hole 611 and stably combine and install with the fixing member 61, preventing the fixing member 61 from rotating and shaking.
[0097] The touch member 62 is used to cooperate with the plurality of grooves 521 on the second mounting member 52, the two ends of the fixing member 61 are upwardly bent and formed with two opposite clamping holes 612, the touch member 62 is clamped between the two clamping holes 612, and the detachable arrangement of the touch member 62 on the fixing member 61 is realized.
[0098] Specifically, the trigger 62 is substantially annular, one end of which protrudes outward to form a fitting portion 621, which passes through the corresponding clamping hole 612 and corresponds to the groove 521 on the inner circumferential surface of the second mounting member 52, and can rotate relative to the plurality of grooves 521 to generate a trigger feedback. The clamping portion 622 at the other end of the trigger 62 is a non-closed structure, which constitutes the two ends of the trigger 62.
[0099] Under the pressure of external force, the clamping portion 622 can approach to reduce the size of the trigger 62, so as to be clamped into the corresponding another clamping hole 612. When the clamping portion 622 returns to the original shape, it stably abuts against the hole wall of the clamping hole 612, realizing the stable clamping installation of the trigger 62 on the fixing member 61.
[0100] Please refer to Figures 3 to 6 Further, the linkage clamping mechanism 20 comprises:
[0101] The mounting plate 21 is provided on the mounting member 12, and the first sliding groove and the two second sliding grooves are provided in the mounting plate 21 and extend along the length direction of the mounting plate 21;
[0102] The first clamping jaw 22 and the second clamping jaw 23 are cooperatively provided in the mounting plate 21, the first clamping jaw 22 and the second clamping jaw 23 are exposed from the front end of the mounting plate 21, the first positioning shaft 24 and the second positioning shaft 25 are provided at the front end of the mounting plate 21, the middle part of the first clamping jaw 22 is rotationally connected with the first positioning shaft 24, the middle part of the second clamping jaw 23 is rotationally connected with the second positioning shaft 25, and the end of the first clamping jaw 22 and the end of the second clamping jaw 23 are respectively provided with the third sliding groove and the fourth sliding groove; and
[0103] The first connecting rod 26 and the second connecting rod 27 are located in the mounting plate 21, one end of the first connecting rod 26 and one end of the second connecting rod 27 are rotationally connected with the push rod 41 through the first rotating shaft 28, the other end of the first connecting rod 26 and the other end of the second connecting rod 27 are movably connected with the third sliding groove and the fourth sliding groove through the second rotating shaft 29, and the end part of the first rotating shaft 28 is movably embedded in the first sliding groove, and the end part of the second rotating shaft 29 is movably embedded in the second sliding groove.
[0104] In the embodiment, the mounting plate 21 is a clamping plate structure composed of two plates arranged oppositely, the inner sides of the two plates are respectively provided with the first sliding groove and the two second sliding grooves, the first sliding groove and the second sliding groove are blind grooves, so that the two end parts of the first rotating shaft 28 are stably slidably embedded in the two oppositely arranged first sliding grooves, and the two end parts of the second rotating shaft 29 are stably slidably embedded in the two oppositely arranged second sliding grooves, and the two second rotating shafts 29 are respectively slidably arranged in the corresponding two second sliding grooves, so as to ensure smooth and stable linkage of the linkage clamping mechanism 20.
[0105] The first clamping jaw 22 and the second clamping jaw 23 are located between the two plates of the mounting plate 21, and the front ends of the first clamping jaw 22 and the second clamping jaw 23 exposed to the mounting plate 21 are matched with each other for clamping the fish mouth, and the two are cross-stacked near the tail end to form a scissors-like shape, and the opening and closing actions of the first clamping jaw 22 and the second clamping jaw 23 are also similar to the opening and closing actions of the scissors under the restriction of the first positioning shaft 24 and the second positioning shaft 25.
[0106] When the first clamping jaw 22 and the second clamping jaw 23 are opened, the rear ends of the first clamping jaw 22 and the second clamping jaw 23 can extend from the gap between the plates of the mounting plate 21, solving the problem that the mounting plate 21 may hinder the opening of the first clamping jaw 22 and the second clamping jaw 23. When the first clamping jaw 22 and the second clamping jaw 23 are closed, the rear ends of the first clamping jaw 22 and the second clamping jaw 23 can be retracted and stored in the mounting plate 21 from the gap between the plates of the mounting plate 21.
[0107] In the embodiment, the push rod 41 is connected with the first connecting rod 26 and the second connecting rod 27 through the first rotating shaft 28, the action of the push rod 41 can drive the first connecting rod 26 and the second connecting rod 27 to act simultaneously, and the first connecting rod 26 and the third sliding groove and the second connecting rod 27 and the fourth sliding groove are connected through two second rotating shafts 29 respectively, that is, the first connecting rod 26 and the first clamping jaw 22 and the second connecting rod 27 and the second clamping jaw 23 are connected through two second rotating shafts 29 respectively, wherein the third sliding groove and the fourth sliding groove are through grooves, when the push rod 41 drives the first connecting rod 26 and the second connecting rod 27 to drive the two second rotating shafts 29 to slide forward and backward along the third sliding groove and the fourth sliding groove respectively, the two second rotating shafts 29 act on the first clamping jaw 22 and the second clamping jaw 23 respectively, and the first clamping jaw 22 and the second clamping jaw 23 rotate outward or inward under the restriction of the first positioning shaft 24 and the second positioning shaft 25, so that the first clamping jaw 22 and the second clamping jaw 23 realize the opening and closing actions.
[0108] In the description of the specification, the description referring to the terms "embodiment one", "embodiment two" and the like means that the specific features, structures, materials or characteristics described in combination with the embodiments or examples are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0109] The above only describes the preferred embodiments of the utility model, and does not limit the utility model, and any modification, equivalent replacement and improvement made within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A fish control device, characterized by, The device comprises: a mounting arm, which is provided with a movable slot; a linkage clamping mechanism arranged at the front end of the mounting arm; a handle arranged at the end of the mounting arm; and a transmission mechanism arranged through the mounting arm and the handle, which comprises a push rod movably arranged through the mounting arm and the handle and a pushing assembly arranged on the push rod, the front end of the push rod is in transmission connection with the linkage clamping mechanism, the rear end of the push rod is located in the handle and is sleeved with a first elastic element for urging the push rod to move rearward, the pushing assembly is movably arranged through the mounting arm and is at least partially exposed from the movable slot, the pushing assembly can drive the push rod to move forward and backward to drive the linkage clamping mechanism to open or close. The fish controller further comprises a mounting member and a mounting assembly arranged at the front end and the end of the mounting arm respectively, the linkage clamping mechanism is arranged on the mounting member, the front end of the push rod passes through the mounting member and is in transmission connection with the linkage clamping mechanism, and the handle is arranged on the mounting assembly, the push rod is movably arranged through the mounting assembly.
2. The fish controller according to claim 1, wherein The mounting assembly comprises:
3. The fish tender of claim 2, wherein, a first mounting member in threaded connection with the end of the mounting arm, the push rod is movably arranged through the first mounting member; and a second mounting member arranged in cooperation with the first mounting member, the handle is arranged at the end of the second mounting member, and part of the first mounting member passes through the second mounting member. The first mounting member comprises:
4. The fish tender of claim 3, wherein, a butt joint portion in threaded connection with the end of the mounting arm; and an extension portion connected with the butt joint portion and extending toward the end of the push rod, the extension portion passes through the second mounting member, and the push rod is movably arranged through the butt joint portion and the extension portion. The mounting assembly further comprises:
5. The fish tender of claim 3, wherein, a fixing nut in threaded connection with the end of the first mounting member; and a first limiting member sleeved on the push rod, the first limiting member passes into the fixing nut and is limited by the fixing nut, the end of the push rod is provided with a limiting nut, one end of the first elastic element abuts against the limiting nut, and the other end of the first elastic element abuts against the first limiting member. The mounting assembly further comprises:
6. The fish tender of claim 5, wherein, a second limiting member and a third limiting member sleeved on the first mounting member and arranged oppositely, the second limiting member corresponds to the first mounting member, and the third limiting member corresponds to the second mounting member; a second elastic element sleeved on the first limiting member and the second limiting member and abutting against the first limiting member and the second limiting member; and a fourth limiting member sleeved on the push rod and embedded in the first mounting member, the fourth limiting member is located at the front end of the second limiting member. The inner side of the end of the second mounting member away from the first mounting member is provided with a plurality of grooves distributed along the circumference, and the end of the first mounting member is further sleeved with a touch feedback assembly, and the touch feedback assembly can be rotationally embedded and matched with the plurality of grooves.
7. The fish tender of claim 3, wherein, The touch feedback assembly comprises:
8. The fish tender of claim 7, wherein, a fixing member, which is provided with a limiting hole, the end of the first mounting member is provided with a limiting surface, the end of the first mounting member passes through the limiting hole, and the limiting surface is in limiting cooperation with the limiting hole; and A touch member detachably arranged on the fixing member, two ends of the touch member are respectively provided with an embedding part and a clamping part, the embedding part can be rotatably embedded and matched with the plurality of grooves, both ends of the touch member are provided with clamping holes, the embedding part passes through one of the clamping holes, and the clamping part is elastically clamped in the other clamping hole.
9. The fish manager of claim 2, wherein, The linkage clamping mechanism comprises: An installation plate arranged on the mounting member, the installation plate is provided with a first sliding groove extending along the length direction of the installation plate and two second sliding grooves symmetrically arranged with the first sliding groove; A first clamping jaw and a second clamping jaw cooperatively arranged in the installation plate, the first clamping jaw and the second clamping jaw are exposed from the front end of the installation plate, the front end of the installation plate is provided with a first positioning shaft and a second positioning shaft at intervals, the middle part of the first clamping jaw is rotatably connected with the first positioning shaft, the middle part of the second clamping jaw is rotatably connected with the second positioning shaft, the end of the first clamping jaw is provided with a third sliding groove, and the end of the second clamping jaw is provided with a fourth sliding groove; and A first connecting rod and a second connecting rod located in the installation plate, one end of the first connecting rod and one end of the second connecting rod are rotatably connected with the push rod through a first rotating shaft, the other end of the first connecting rod and the other end of the second connecting rod are movably connected with the third sliding groove and the fourth sliding groove through a second rotating shaft respectively, and the end part of the first rotating shaft is movably embedded in the first sliding groove, and the end part of the second rotating shaft is movably embedded in the second sliding groove.
10. The fisherman of claim 1, wherein, The push assembly comprises a boosting member matched with the longitudinal sectional shape of the mounting arm, the boosting member is located in the mounting arm and in sliding contact with the inner wall of the mounting arm.