Sliding plug-in mounting limiting connector and dip net

By using sliding insertion limit connectors in the cushion net, the problem of loose rotation at the cushion net connection is solved, and the stable support of the net pocket and the overall use of the cushion net are achieved.

CN222929066UActive Publication Date: 2025-06-03CHENGDU KONGHOU WUDAO FISHING GEAR CO LTD
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Patent Information

Application Number
CN202421651038.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-06-03
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

During the use of existing buzz nets, the threaded connections and snaps are prone to loosening and rotating, resulting in unstable support in the net bag, affecting the overall stability of the buzz net.

Method used

The sliding insertion limit connector is adopted, including the net connector and the handle connector. Through the coordination of the connecting sleeve and the slide, stable protection and limit of the fastening connection are achieved to prevent loose rotation.

Benefits of technology

It effectively prevents the slack rotation at the connection of the scribing net, ensures the stable support of the net bag, and improves the overall stability and reliability of the scribing net.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of fishing gear, in particular to a sliding plug-in mounting limit connector and a dip net, which comprise a dip net connector, a handle connector, a first connector and a second connector, the end part of the first connector is buckled and connected with the end part of the second connector, the dip net further comprises a connecting sleeve, and the connecting sleeve is coaxially sleeved on the second connector in a sliding manner; the sliding block is installed between the connecting sleeve and the second connector, a sliding groove allowing the sliding block to slide in the axial direction of the second connector is formed in the outer wall of the second connector, and the end, close to the first connector, of the sliding groove is bent in the circumferential direction of the second connector; the connecting sleeve can cover the buckling connection position of the first connector and the second connector. According to the scheme, the connecting sleeve can cover, protect and limit the buckling connection position of the first connector and the second connector, so that the connection position of the first connector and the second connector is stably matched with the anti-rotation position, and the dip net connector and the handle connector are stably connected.
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Description

Technical Field

[0001] The utility model relates to the technical field of fishing gear, in particular to a sliding plug-in limiting connector and a scoop net. Background Art

[0002] The scoop net plays an important role in fishing. It can not only improve the efficiency and success rate of fishing, but also protect fishing gear and fish to a great extent. The reasonable use of the scoop net is an important guarantee for a successful fishing trip. The correct selection and use of the scoop net can bring more fun and higher safety to fishing activities. The structure of the scoop net is complex and diverse. Each component has its specific function and design considerations. Users should choose the appropriate material, size and shape according to the specific needs of fishing to ensure the efficiency and effectiveness of fishing.

[0003] A scoop net is generally composed of a net bag, a frame and a handle. In order to facilitate the storage of the scoop net, the frame and the handle of the scoop net are generally connected by a detachable connection. The most common detachable connection method is the threaded method. However, after long-term use, the threaded connection and the buckle are prone to loose rotation when the scoop net is in use, causing the net bag to deflect relative to the handle during use, resulting in the net bag of the scoop net being easily unstable, which also affects the overall stability of the scoop net. Utility Model Content

[0004] In view of the deficiencies in the prior art, the utility model provides a sliding plug-in limiting connector and a scoop net to solve the problem that the threaded connection and the buckle are prone to loose rotation when the scoop net is in use, resulting in unstable support of the net bag of the scoop net.

[0005] In order to achieve the above-mentioned purpose, the basic scheme of the utility model is as follows: a sliding plug-in limit connector, including a scoop net connector and a handle connector, and also includes:

[0006] A first connector, which is fixedly mounted on an end of the scoop net connector or the handle connector;

[0007] The second connector is fixedly mounted on the end of the scoop net connector or the handle connector, the first connector and the second connector are not located on the scoop net connector at the same time, the first connector and the second connector are not located on the handle connector at the same time, and the end of the first connector is buckled and connected with the end of the second connector;

[0008] A connecting sleeve, the connecting sleeve is coaxially slidably sleeved on the second connecting head;

[0009] A slider is installed between the connecting sleeve and the second connecting head. A sliding groove is provided on the outer wall of the second connecting head for the slider to slide axially along the second connecting head. One end of the sliding groove close to the first connecting head is bent toward the circumference of the second connecting head.

[0010] One end of the slider away from the sliding groove is fixedly connected to the connecting sleeve, and the connecting sleeve can cover the buckling connection part of the first connecting head and the second connecting head.

[0011] The technical principle of the utility model is as follows: When holding the connecting sleeve, rotate circumferentially around the second connecting head along the bending part at the upper end of the sliding groove. The connecting sleeve synchronously drives the slider to slide horizontally in the sliding groove. When the slider moves to the top of the vertical section of the sliding groove, the human hand can sense that the slider abuts against the side wall of the sliding groove. At this time, hold the connecting sleeve and drive the slider to move down along the sliding groove, so that the buckling connection part of the first connecting head and the second connecting head covered by the connecting sleeve is exposed, and then the buckling connection part of the first connecting head and the second connecting head can be buckled or disassembled.

[0012] Then push the connecting sleeve back. The connecting sleeve can cover and protect and limit the buckling connection part of the first connecting head and the second connecting head, so that the connection part and the anti-rotation part of the first connecting head and the second connecting head are stably matched, and the connection between the net connecting head and the handle connecting head is also stable.

[0013] Furthermore, a first arc surface is provided at one end of the first connecting head close to the second connecting head, and a second arc surface that can be buckled and abutted against the first arc surface is provided at one end of the second connecting head close to the first connecting head.

[0014] Through the above settings, when connecting the first connecting head and the second connecting head, the end of the first arc surface of the first connecting head can be inclined, so that the buckle at the first arc surface fits onto the second arc surface, realizing the preliminary locking of the net connecting head and the handle connecting head. And after the first arc surface and the second arc surface are matched, it can play a good anti-rotation role.

[0015] Furthermore, a sheet-like limiting protrusion is provided at the middle part of the second arc surface of the second connecting head close to the first connecting head, and a sheet-like groove for the limiting protrusion to be embedded is provided at the middle part of the first arc surface of the first connecting head close to the second connecting head.

[0016] Through the above settings, when connecting the first connecting head and the second connecting head, the sheet-like protrusion is embedded into the sheet-like groove. After the sheet-like protrusion and the sheet-like groove are matched, they have a good anti-rotation effect.

[0017] Furthermore, an insertion hole is provided on the side wall of the connecting sleeve for the end of the slider away from the sliding groove to be inserted.

[0018] Through the above settings, the slider can be stably fixed and installed on the side wall of the connecting sleeve through the insertion hole, so that the cooperation between the connecting sleeve and the slider is stable.

[0019] Furthermore, the connecting sleeve can cover the first connecting head and the second connecting head at the same time.

[0020] With the above settings, the connecting sleeve more stably and completely covers and is installed on the first connecting head and the second connecting head, making the connection between the first connecting head and the second connecting head more stable and the installation of the net connecting head and the handle connecting head more beautiful.

[0021] Furthermore, it further includes a spring. The spring is coaxially sleeved between the second connecting head and the connecting sleeve. One end of the spring can abut against the end of the slider, and the other end of the spring abuts against the middle part or the end of the second connecting head.

[0022] With the above settings, when sliding the connecting sleeve, the connecting sleeve drives the slider to compress the spring; when loosening the connecting sleeve, under the action of the spring, the spring pushes the connecting sleeve to move back along the sliding groove to the end of the sliding groove through the slider. The spring can assist the backward movement of the connecting sleeve, making the backward movement adjustment of the connecting sleeve more convenient; when the connecting sleeve drives the slider to rotate circumferentially along the second connecting head to the end of the sliding groove, the elastic force of the spring presses the slider against the inner wall of the sliding groove, making the installation of the slider and the connecting sleeve stable.

[0023] Furthermore, the slider is a bolt, and the bolt is threadedly connected to the jack of the connecting sleeve.

[0024] With the above settings, it is more convenient to disassemble and install the bolt at the jack of the connecting sleeve, facilitating the cleaning of impurities between the connecting sleeve and the second connecting head or the replacement and repair of the spring, and making the adjustability of the sliding plug-in limit connecting head better.

[0025] Furthermore, a ring-shaped groove is coaxially arranged at the middle part of the net connecting head, and a rubber ring is snap-fitted and installed at the ring-shaped groove of the net connecting head.

[0026] With the above settings, the net connecting head will transmit the vibration from the end of the net. At this time, the rubber ring can buffer this vibration, making the connection between the net connecting head and the handle connecting head more stable and reliable during use.

[0027] Furthermore, a plurality of anti-slip grooves are arranged on the outer wall of the connecting sleeve.

[0028] With the above settings, when a person holds the connecting sleeve and moves it along the sliding groove, it is more convenient to apply force, making the control of the connecting sleeve more convenient.

[0029] The present utility model also aims to provide a net, including a foldable net body, a handle body and a sliding plug-in limit connecting head. A first mounting hole for detachably connecting with the net body is provided at the end of the net connecting head away from the handle connecting head; a second mounting hole for detachably connecting with the handle body is provided at the end of the handle connecting head away from the net connecting head, and a pin for connecting the handle connecting head and the handle body is provided at the second mounting hole.

[0030] The technical principle of the present utility model is as follows: When assembling and using the dip net, only by connecting the dip net connector and the handle connector on the sliding plug-in limit connector, the connection between the dip net body and the handle body can be achieved; when it is necessary to fold the dip net, it is only necessary to disassemble the dip net connector and the handle connector. The folding and installation of the dip net are both convenient, and it is also convenient for storage and use. Description of the Drawings

[0031] Figure 1 It is a schematic structural diagram of a sliding plug-in limit connector in the axial direction in Embodiment 1 of the present utility model.

[0032] Figure 2 It is an exploded view of a sliding plug-in limit connector in the axial direction in Embodiment 1 of the present utility model.

[0033] Figure 3 It is a schematic structural diagram of a sliding plug-in limit connector in the axial direction in Embodiment 2 of the present utility model.

[0034] Figure 4 It is an exploded view of a sliding plug-in limit connector in the axial direction in Embodiment 2 of the present utility model.

[0035] Figure 5 It is a schematic structural diagram of a sliding plug-in limit connector in the axial direction in Embodiment 3 of the present utility model.

[0036] Figure 6 It is an exploded view of a sliding plug-in limit connector in the axial direction in Embodiment 3 of the present utility model.

[0037] Figure 7 It is a schematic structural diagram of a sliding plug-in limit connector in the axial direction in Embodiment 4 of the present utility model.

[0038] Figure 8 It is an exploded view of a sliding plug-in limit connector in the axial direction in Embodiment 4 of the present utility model.

[0039] Figure 9 It is a schematic structural diagram of a sliding plug-in limit connector in the axial direction in Embodiment 5 of the present utility model.

[0040] Figure 10 It is an exploded view of a sliding plug-in limit connector in the axial direction in Embodiment 5 of the present utility model.

[0041] Figure 11 It is a schematic structural diagram of a dip net in the axial direction in Embodiment 6 of the present utility model.

[0042] In the above-mentioned drawings: the net scooping connector 10, the first mounting hole 101, the annular groove 102, the rubber ring 103, the handle connector 20, the bolt 201, the first connector 30, the first arc surface 301, the flaky groove 302, the second connector 40, the second arc surface 401, the limiting protrusion 402, the sliding groove 403, the connecting sleeve 50, the slider 501, the insertion hole 502, the spring 503, the anti-slip groove 504, the net scooping body 601, the handle body 602. Detailed implementation mode

[0043] The technical solutions in the present utility model will be further described below with reference to the drawings and embodiments.

[0044] Embodiment 1

[0045] This embodiment is basically as Figure 1 and Figure 2 shown. An embodiment of the present utility model provides a sliding plug-in limiting connector, including a net scooping connector 10, a handle connector 20, a first connector 30, a second connector 40, a connecting sleeve 50 and a slider 501. Both the first connector 30 and the second connector 40 are columnar. The first connector 30 is integrally formed coaxially at the lower end of the net scooping connector 10, and the outer wall of the first connector 30 is smoothly transitioned with the outer wall of the net scooping connector 10. The second connector 40 is integrally formed coaxially at the upper end of the handle connector 20.

[0046] As Figure 2 shown, a first arc surface 301 is provided at one end of the first connector 30 close to the second connector 40, and a second arc surface 401 that can be buckled and abutted against the first arc surface 301 is provided at one end of the second connector 40 close to the first connector 30; a flaky limiting protrusion 402 is provided at the middle part of the second arc surface 401 of the second connector 40 close to the first connector 30, and a flaky groove 302 for the limiting protrusion 402 to be embedded is provided at the middle part of the first arc surface 301 of the first connector 30 close to the second connector 40.

[0047] As Figure 1 and 2 shown, the connecting sleeve 50 is coaxially and slidably sleeved on the second connector 40; a sliding groove 403 for the slider 501 to slide axially along the second connector 40 is provided on the outer wall of the second connector 40, and one end of the sliding groove 403 close to the first connector 30 is bent circumferentially towards the second connector 40; the slider 501 is cylindrical, the slider 501 is installed between the connecting sleeve 50 and the second connector 40, an insertion hole 502 for the end of the slider 501 far from the sliding groove 403 to be inserted is provided on the side wall of the connecting sleeve 50 and is fixedly connected to the insertion hole 502 of the connecting sleeve 50, and the connecting sleeve 50 can cover the buckling connection part of the first connector 30 and the second connector 40.

[0048] When installing a sliding plug-in limit connector in this embodiment, first hold the connection sleeve 50 and rotate it circumferentially around the second connector 40 along the bent part at the upper end of the sliding groove 403. The connection sleeve 50 synchronously drives the slider 501 to slide horizontally in the sliding groove 403. When the slider 501 moves to the top of the vertical section of the sliding groove 403, the human hand can sense that the slider 501 abuts against the side wall of the sliding groove 403. At this time, hold the connection sleeve 50 and drive the slider 501 to move down along the sliding groove 403, so that the first arc surface 301 and the second arc surface 401 covered by the connection sleeve 50 are exposed. At this time, tilt the end of the first arc surface of the net connecting head 10 so that the buckle on the first arc surface fits onto the second arc surface, realizing the preliminary locking of the net connecting head 10 and the handle connecting head 20. At the same time, the sheet-like protrusion is embedded into the sheet-like groove 302, and the sheet-like protrusion and the sheet-like groove 302 have a good anti-rotation effect after cooperation.

[0049] Then push the connection sleeve 50 vertically upward. After the slider 501 moves to the upper end of the sliding groove 403, rotate the connection sleeve 50 horizontally so that the slider 501 is fixed in position at the bent part of the sliding groove 403 around the circumference of the second connector 40. When the net connecting head 10 and the handle connecting head 20 are subjected to an axial tensile force, the slider 501 abuts against the inner wall of the sliding groove 403 of the second connector 40, which can stably support the net connecting head 10 and the handle connecting head 20. During this process, the connection sleeve 50 can cover and protect the first arc surface and the second arc surface of the first connector 30 and the second connector 40 for limit, so that the connection part and the anti-rotation part of the first connector 30 and the second connector 40 are stably matched, and the connection between the net connecting head 10 and the handle connecting head 20 is also stable.

[0050] Embodiment 2

[0051] The difference between Embodiment 2 and Embodiment 1 is basically as shown in the appendix Figure 3 and 4 As shown, a sliding plug-in limit connector is provided. A ring-shaped groove 102 is coaxially arranged in the middle of the net connecting head 10, and a rubber ring 103 is snap-fitted and installed in the ring-shaped groove 102 of the net connecting head 10.

[0052] When using a sliding plug-in limit connector in this embodiment, the net connecting head 10 will transmit the vibration from the end of the net. At this time, the rubber ring 103 can buffer this vibration, making the connection between the net connecting head 10 and the handle connecting head 20 more stable and reliable during use.

[0053] Embodiment 3

[0054] The difference between Embodiment 3 and Embodiment 1 is basically as shown in the appendix Figure 5 and 6As shown in the figure, a sliding plug-in limit connector is provided, which further includes a spring 503. The spring 503 is coaxially sleeved between the second connector 40 and the connecting sleeve 50. One end of the spring 503 can abut against the end of the slider 501, and the other end of the spring 503 abuts against the middle or end of the second connector 40.

[0055] In addition, the connecting sleeve 50 can cover both the first connector 30 and the second connector 40 at the same time. A plurality of anti-slip grooves 504 are provided on the outer wall of the connecting sleeve 50.

[0056] When a sliding plug-in limit connector in this embodiment is in use, the connecting sleeve 50 is slid downward. The connecting sleeve 50 drives the slider 501 to compress the spring 503. At this time, the slider 501 moves downward along the sliding groove 403, so that the second arc surface of the handle connector 20 is exposed; when the connecting sleeve 50 is loosened, under the action of the spring 503, the spring 503 pushes the connecting sleeve 50 to move back along the sliding groove 403 to the top of the sliding groove 403 through the slider 501. During this process, the spring 503 can assist the return movement of the connecting sleeve 50, making the return adjustment of the connecting sleeve 50 more convenient; when the connecting sleeve 50 drives the slider 501 to rotate circumferentially along the second connector 40 to the right end of the sliding groove 403, the elastic force of the spring 503 presses the slider 501 against the inner wall of the sliding groove 403, so that the slider 501 is stably installed in the sliding groove 403, making the connecting sleeve 50 more stably and completely cover and install on the first connector 30 and the second connector 40, making the connection between the first connector 30 and the second connector 40 more stable, and the installation of the net connecting head 10 and the handle connecting head 20 more beautiful.

[0057] The setting of the anti-slip grooves 504 makes it more convenient to apply force when a person holds the connecting sleeve 50 and moves it along the sliding groove 403, making the control of the connecting sleeve 50 more convenient.

[0058] Embodiment 4

[0059] The difference between Embodiment 4 and Embodiment 1 is basically as shown in the appendix Figure 7 and 8 As shown in the figure, a sliding plug-in limit connector is provided. The slider 501 is a bolt 505, and the bolt 505 is threadedly connected to the jack 502 of the connecting sleeve 50.

[0060] When a sliding plug-in limit connector in this embodiment is installed, it is more convenient to disassemble and install the bolt 505 at the jack 502 of the connecting sleeve 50, which is convenient for cleaning the impurities between the connecting sleeve 50 and the second connector 40 or replacing and repairing the spring 503, making the adjustability of the sliding plug-in limit connector better.

[0061] Embodiment 5

[0062] The difference between Embodiment 5 and Embodiment 4 is basically as shown in the appendix Figure 9 and 10 As shown, a sliding plug-in limit connector is provided. There is no annular groove 102 on the netting connector 10, there is no limit protrusion 402 at the middle part of the second arc surface 401 of the second connector 40 close to the first connector 30, and there is no sheet groove 302 at the middle part of the first arc surface 301 of the first connector 30 close to the second connector 40.

[0063] When the sliding plug-in limit connector in this embodiment is in use, the second arc surface 401 can be snap-fitted with the first arc surface 301 to achieve the effects of anti-rotation and stable connection; the whole structure is simple, the processing cost is lower, and it has more practical value.

[0064] Embodiment 6

[0065] The difference between Embodiment 6 and Embodiment 1 is basically as shown in the appendix Figure 1-10 As shown, a netting is provided, which includes a foldable netting body 601, a handle body 602 and a plug-in connector. The netting body 601 is formed by connecting three rods end to end, and connecting parts are detachably connected to the ends of the rods, which can realize the end-to-end connection and detachable folding between the three rods.

[0066] The end of the netting connector 10 away from the handle connector 20 is provided with a first mounting hole 101 detachably connected to the netting body 601; the end of the handle connector 20 away from the netting connector 10 is provided with a second mounting hole detachably connected to the handle body 602, and a pin 201 connecting the handle connector 20 and the handle body 602 is provided at the second mounting hole.

[0067] The lower left connecting part is provided with a third mounting hole that can coincide with the first mounting hole 101 of the netting connector 10, which can realize the continuous and stable connection between the netting connector 10 and the connecting part.

[0068] When installing the netting, the netting connector 10 is connected to the lower left connecting part of the netting body 601, and screws are installed at the coincident first mounting hole 101 and third mounting hole; the handle connector 20 is stably connected to the right end of the handle body 602 through the pin 201; when assembling and using the netting, only by connecting the netting connector 10 and the handle connector 20 on the internally threaded connector, the connection between the netting body 601 and the handle body 602 can be realized; when it is necessary to fold the netting, it is only necessary to disassemble the netting connector 10 and the handle connector 20. The folding and installation of the netting are both convenient, and it is also convenient for storage and use.

[0069] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.

Claims

1. A sliding plug-in limit connector, comprising a scoop net connector and a handle connector, characterized in that: Also includes: A first connector, which is fixedly mounted on an end of a scoop net connector or a handle connector; A second connector, wherein the second connector is fixedly mounted on an end of the scoop net connector or the handle connector, the first connector and the second connector are not located on the scoop net connector at the same time, the first connector and the second connector are not located on the handle connector at the same time, and an end of the first connector is buckled and connected with an end of the second connector; A connecting sleeve, the connecting sleeve is coaxially slidably sleeved on the second connecting head; A slider, the slider is installed between the connecting sleeve and the second connecting head, and a sliding groove is provided on the outer wall of the second connecting head for the slider to slide axially along the second connecting head, and an end of the sliding groove close to the first connecting head is bent toward the circumference of the second connecting head; One end of the sliding block away from the sliding groove is fixedly connected to the connecting sleeve, and the connecting sleeve can cover the buckled connection between the first connecting head and the second connecting head.

2. A sliding plug-in limit connector as claimed in claim 1, characterized in that: A first arc surface is provided on one end of the first connector close to the second connector, and a second arc surface that can be buckled and abutted against the first arc surface is provided on one end of the second connector close to the first connector.

3. A sliding plug-in limited connector as claimed in claim 1, characterized in that: A sheet-shaped limiting protrusion is provided on the second arc surface of the second connector near the middle of the first connector, and a sheet-shaped groove for the limiting protrusion to be embedded is provided on the first arc surface of the first connector near the middle of the second connector.

4. A sliding plug-in limited connector as claimed in claim 1, characterized in that: The side wall of the connecting sleeve is provided with a plug hole for inserting the end of the sliding block away from the sliding groove.

5. The sliding plug-in limit connector according to claim 1, characterized in that: The connecting sleeve can cover the first connecting head and the second connecting head at the same time.

6. A sliding plug-in limited connector as claimed in claim 1, characterized in that: It also includes a spring, which is coaxially sleeved between the second connector and the connecting sleeve, one end of the spring can abut against the end of the slider, and the other end of the spring abuts against the middle or end of the second connector.

7. A sliding plug-in limited connector as claimed in claim 4, characterized in that: The sliding block is a bolt, and the bolt is threadedly connected to the insertion hole of the connecting sleeve.

8. A sliding plug-in limited connector as claimed in claim 7, characterized in that: An annular groove is coaxially arranged at the middle of the scoop net connector, and a rubber ring is embedded and installed at the annular groove of the scoop net connector.

9. A sliding plug-in limited connector as claimed in claim 8, characterized in that: A plurality of anti-slip grooves are arranged on the outer wall of the connecting sleeve.

10. A scoop net, characterized in that: It comprises a foldable scoop net body, a handle body and a sliding plug-in limiting connector as described in any one of claims 1 to 9, wherein a first mounting hole detachably connected to the scoop net body is provided on the end of the scoop net connector away from the handle connector; a second mounting hole detachably connected to the handle body is provided on the end of the handle connector away from the scoop net connector, and a pin connecting the handle connector and the handle body is provided at the second mounting hole.