A free rotating positioning clutch device and a lure handle
The innovative design of the clutch mechanism and the sound tooth structure solves the problem of gaps in the appearance of the lure handle, improving aesthetics and user experience, and adding a sense of technology.
Patent Information
- Application Number
- CN202410342974.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-25
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2044-03-25
AI Technical Summary
The current lure handle design has gaps in its appearance, which affects its aesthetics and lacks a sense of technology and user experience.
The design incorporates a clutch sleeve, clutch spring, clutch plug, clutch drive sleeve, and outer decorative body. Combined with the structure of a sound gear, sound gear sleeve, sound gear spring, and sound gear drive sleeve, it produces a clicking sound when rotating. The gap problem is solved by the rotation and sliding connection of the clutch device.
The design enhances the aesthetics and user experience of the lure handle, adds a touch of technology with its click-clack sound, and resolves the issue of gaps in the exterior.
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Figure CN118020733B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of fishing rod technology, and in particular to a free-rotating positioning clutch device and a lure handle. Background Technology
[0002] Fishing is an ancient and popular recreational activity, and the fishing rod, as one of the most common tools, plays a crucial role in the fishing process. A lure rod is a type of fishing rod; the word "lure" comes from the English word "lure." The main components of a lure rod include line guides, a reel seat, a handle, a tip, a decorative ring, and a hook, among others. The reel seat's function is to secure the fishing line to the reel.
[0003] The patent number is CN202322151565.7, and the invention title is a utility model patent for a polygonal lure handle with a freely rotatable clutch positioning and locking cap. The utility model includes a handle body, a positioning sleeve, a locking cap body, and a drive sleeve. The locking cap body is threadedly engaged with the handle body to axially adjust the position of the positioning sleeve. The drive sleeve is installed on the locking cap body. One end of the drive sleeve is provided with a paddle, and the other end is provided with a drive gear. The force-bearing gear on the locking cap body meshes with the drive gear on the drive sleeve under the elastic force of the spring.
[0004] To achieve the engagement and disengagement of the locking cap body and the drive sleeve, this utility model patent describes a design where the drive sleeve engages with one end of the locking cap body (the drive gear 10 and the force-receiving gear 12 are tightly engaged), while the other end has a pre-reserved movable gap (the end of the paddle 7 is separated from the initial position of the paddle gear 4). This design, due to the gap, affects the aesthetic appearance of the lure handle. To overcome these design flaws, this invention provides a completely new technical solution, with entirely new designs in both structure and functionality. Summary of the Invention
[0005] The purpose of this invention is to provide a freely rotating and positioning clutch device and lure handle. Through the design of the clutch sleeve, clutch spring, clutch plug, clutch drive sleeve, and outer decorative body, the problem of gaps in the appearance of the lure handle is solved. Through the design of the sound gear, sound tooth sleeve, sound tooth spring, and sound tooth drive sleeve, a clicking sound can be emitted when the outer decorative body is rotated, whether it is being moved forward or not, thereby improving the user experience and enhancing the technological feel of the product.
[0006] Therefore, the technical solution of the present invention is a freely rotating and positioning clutch device, comprising an internal threaded sleeve, a front spool inner sleeve, a front spool outer sleeve, an external threaded sleeve, a clutch sleeve, a clutch spring, a clutch plug, a clutch drive sleeve, and an outer decorative body. The front spool inner sleeve and the external threaded sleeve are sequentially installed outside the internal threaded sleeve, and the internal thread of the external threaded sleeve meshes with the external thread of the internal threaded sleeve. The front spool outer sleeve is fitted onto the front spool inner sleeve, and the front spool inner sleeve and the front spool outer sleeve are slidably connected to the internal threaded sleeve. The clutch sleeve, the clutch spring, and the clutch plug are sequentially installed on the outer side of the rear end of the external threaded sleeve, and the clutch sleeve and the clutch plug are fixedly connected to the external threaded sleeve. The clutch drive sleeve is fitted onto the outer side of the clutch sleeve, the clutch spring, and the clutch plug, and the outer decorative body is fixedly installed on the outer side of the clutch drive sleeve.
[0007] Furthermore, a tone gear, a tone gear sleeve, and a tone gear spring are sequentially provided on the outer side of the front end of the external threaded sleeve. A tone gear drive sleeve is installed on the outer side of the tone gear sleeve and the tone gear spring. The tone gear drive sleeve is snapped and fixedly engaged with the clutch drive sleeve and fixedly connected to the outer decorative body.
[0008] Furthermore, the internal threaded sleeve has an external thread in the middle, and the front and rear ends of the internal threaded sleeve are respectively provided with a front connector and a rear connector. The external side of the internal threaded sleeve is provided with an axial threaded sleeve groove.
[0009] Furthermore, the inner sleeve of the front spool has an inner sleeve retaining ring and a spool sleeve slider. The inner sleeve retaining ring divides the internal cavity of the front spool inner sleeve into a front inner sleeve cavity and a rear inner sleeve cavity. The front spool inner sleeve is slidably connected to the inner threaded sleeve through the spool sleeve slider and the spool sleeve groove. The outer sleeve of the front spool has an outer sleeve retaining ring, which divides the internal cavity of the front spool outer sleeve into a front outer sleeve cavity and a rear outer sleeve cavity. The front spool inner sleeve is installed in the rear outer sleeve cavity of the front spool outer sleeve.
[0010] Furthermore, the external threaded sleeve has an internal thread inside, a positioning protrusion ring at the rear end of the external threaded sleeve, and a clutch fixing square tooth on the outer ring surface in the middle of the external threaded sleeve. The positioning protrusion ring of the external threaded sleeve is installed between the inner sleeve retaining ring and the outer sleeve retaining ring.
[0011] Furthermore, the tone gear is fixedly installed in the rear chamber of the outer sleeve of the front threaded wheel. The outer side of the tone gear is provided with a force-bearing tone tooth. The tone tooth sleeve is rotatably connected to the external threaded sleeve. The rear end of the tone tooth sleeve is provided with a driving tone tooth. The front end of the tone tooth sleeve is provided with a tone tooth sleeve driving groove. Under the elastic force of the tone tooth spring, the driving tone tooth of the tone tooth sleeve meshes with the force-bearing tone tooth of the tone gear.
[0012] Furthermore, the inner ring surface at the rear end of the tone tooth drive sleeve is provided with tone tooth drive sliding teeth, and the front end of the tone tooth drive sleeve is provided with tone tooth force groove. The tone tooth drive sleeve is slidably connected to the tone tooth sleeve through the tone tooth drive sliding teeth and the tone tooth drive groove.
[0013] Furthermore, the clutch sleeve has a clutch fixing groove inside the rear end and a clutch force-bearing square tooth at the front end. The clutch sleeve is fixedly connected to the external threaded sleeve through the clutch fixing groove and the clutch fixing square tooth.
[0014] Furthermore, the rear end face of the clutch drive sleeve is provided with clutch drive external teeth, and the inner side of the clutch drive external teeth is provided with clutch drive internal teeth. The clutch drive sleeve and the sound tooth drive sleeve are engaged through the clutch drive external teeth and the sound tooth sleeve force-bearing groove. The clutch drive internal teeth are installed between two adjacent clutch force-bearing square teeth, and the clutch spring is installed between the clutch drive internal teeth and the clutch plug.
[0015] A free-rotating positioning lure handle, employing the free-rotating positioning clutch device described above, further includes a spindle, a handle sleeve, a rear reel sleeve, and a reel holder. The rear end of the spindle is used to sequentially connect the handle sleeve, the rear reel sleeve, the reel holder, and the clutch device, while the front end of the spindle is used to connect the fishing rod.
[0016] The beneficial effects of this invention are that, through the design of the clutch sleeve, clutch spring, clutch plug, clutch drive sleeve, and outer decorative body, the problem of gaps in the appearance of the lure handle is solved. Under the elastic force of the clutch spring, the clutch drive inner teeth and the clutch force-receiving square teeth are engaged. When the clutch drive sleeve rotates, it is driven to rotate by the clutch drive inner teeth and the clutch force-receiving square teeth, which in turn drives the outer threaded sleeve to rotate. The outer decorative body drives the clutch drive sleeve forward, further compressing the clutch spring. The clutch drive inner teeth and the clutch force-receiving square teeth are then separated, allowing the outer decorative body to rotate arbitrarily while the front reel sleeve remains stationary, thus aligning the end faces of the front and rear sides of the fishing reel. In other words, when the outer surface of the handle sleeve and the outer decorative body is set to a multifaceted or other irregular shape, it facilitates the alignment of the end faces of the front and rear sides of the fishing reel, and there are no gaps in its use state.
[0017] Furthermore, whether the outer trim is moved forward or not, because the sound tooth drive sleeve and the sound tooth sleeve are slidably connected, the driving sound tooth of the sound tooth sleeve and the force-bearing sound tooth of the sound gear are always engaged under the elastic force of the sound tooth spring. When the outer trim is rotated, the driving sound tooth of the rotating sound tooth sleeve and the force-bearing sound tooth of the sound gear will misalign and collide under the elastic force of the sound tooth spring, thus producing a clicking sound. In other words, through the design of the sound gear, sound tooth sleeve, sound tooth spring, and sound tooth drive sleeve, a clicking sound can be produced whether the outer trim is moved forward or not, or when the outer trim is rotated, thereby enhancing the user experience and the product's technological feel. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of the lure handle of the present invention;
[0019] Figure 2yes Figure 1 Another structural diagram;
[0020] Figure 3 yes Figure 1 sectional view;
[0021] Figure 4 This is a schematic diagram of the clutch mechanism;
[0022] Figure 5 yes Figure 4 A sectional view;
[0023] Figure 6 yes Figure 5 Exploded view;
[0024] Figure 7 yes Figure 6 Another perspective illustration;
[0025] Figure 8 This is a schematic diagram of the internal threaded sleeve;
[0026] Figure 9 This is a schematic diagram of the structure of the inner sleeve of the front wheel;
[0027] Figure 10 This is a structural diagram of the front wheel sleeve;
[0028] Figure 11 This is a schematic diagram of the structure of an external threaded sleeve;
[0029] Figure 12 This is a schematic diagram of the structure of a sounding gear;
[0030] Figure 13 This is a schematic diagram of the structure of the tone gear sleeve;
[0031] Figure 14 This is a schematic diagram of the clutch sleeve;
[0032] Figure 15 This is a schematic diagram of the sound tooth drive sleeve;
[0033] Figure 16 This is a schematic diagram of the clutch drive sleeve.
[0034] Figure 17 This is a structural diagram of the exterior decorative element.
[0035] Explanation of symbols in the diagram:
[0036] 1. Mandrel; 2. Handle sleeve; 3. Rear reel sleeve; 301. Rear reel inner sleeve; 302. Rear reel outer sleeve; 4. Reel holder; 5. Clutch device; 501. Internal threaded sleeve; 5011. Front connector; 5012. Rear connector; 5013. Reel sleeve groove; 502. Front reel inner sleeve; 5021. Inner sleeve retaining ring; 5022. Reel sleeve slider; 503. Front reel outer sleeve; 5031. Outer sleeve retaining ring; 504. External threaded sleeve; 5041. Positioning convex ring; 5042. Clutch fixing square tooth; 505. Sound gear ; 5051. Forced sound tooth; 506. Sound tooth sleeve; 5061. Drive sound tooth; 5062. Sound tooth sleeve drive groove; 507. Sound tooth spring; 508. Clutch sleeve; 5081. Clutch fixing groove; 5082. Clutch force-bearing square tooth; 509. Clutch spring; 510. Clutch plug; 511. Sound tooth drive sleeve; 5111. Sound tooth sleeve drive slide tooth; 5112. Sound tooth sleeve force-bearing tooth groove; 512. Clutch drive sleeve; 5121. Clutch drive external tooth; 5122. Clutch drive internal tooth; 513. Exterior trim. Detailed Implementation
[0037] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0038] like Figures 1-17 As shown, this invention provides a freely rotating and positioning lure handle, which includes a spindle 1, a handle sleeve 2, a rear reel sleeve 3, a reel holder 4, and a clutch device 5. The rear end of the spindle 1 is used to sequentially connect the handle sleeve 2, the rear reel sleeve 3, the reel holder 4, and the clutch device 5, while the front end of the spindle 1 is used to connect the fishing rod. The handle sleeve 2, the rear reel sleeve 3, and the reel holder 4 are fixedly connected to the spindle 1. The rear reel sleeve 3 includes an inner rear reel sleeve 301 and an outer rear reel sleeve 302, with the outer rear reel sleeve 302 fitted over the inner rear reel sleeve 301. On the side, the inner sleeve 301 of the rear reel has a locking groove for the fishing reel. The clutch device 5 includes a front reel sleeve and an outer decorative body 513. The front reel sleeve is slidably connected to the spindle 1, and the outer decorative body 513 is rotatably connected to the spindle 1. When the outer decorative body 513 rotates, it drives the front reel sleeve to slide along the axial direction of the spindle 1. The front reel sleeve includes an inner sleeve 502 and an outer sleeve 503. The outer sleeve 503 is fitted onto the outside of the inner sleeve 502. The inner sleeve 502 has a locking groove for the fishing reel inside. The rear reel sleeve 3 cooperates with the front reel sleeve for the fixed installation of the fishing reel.
[0039] Furthermore, the clutch device 5 is divided into three layers: inner, middle, and outer. The inner layer is an inner threaded sleeve 501. The middle layer consists of, in sequence, the front cable pulley inner sleeve 502, the outer threaded sleeve 504, the sound gear 505, the sound tooth sleeve 506, the sound tooth spring 507, the clutch sleeve 508, the clutch spring 509, and the clutch plug 510. The outer layer consists of, in sequence, the front cable pulley outer sleeve 503, the sound tooth drive sleeve 511, the clutch drive sleeve 512, and the outer decorative body 513. The inner layer of the clutch device 5 is fixedly connected to the spindle 1, and the middle and outer layers of the clutch device 5 are relatively sliding or rotatingly connected to the inner layer.
[0040] The internal threaded sleeve 501 has an external thread in the middle. The front and rear ends of the internal threaded sleeve 501 are respectively provided with a front connector 5011 and a rear connector 5012. The external part of the internal threaded sleeve 501 is provided with an axial threaded sleeve groove 5013.
[0041] The inner sleeve 502 of the front spool has an inner sleeve retaining ring 5021 and a spool sleeve slider 5022. The inner sleeve retaining ring 5021 divides the internal cavity of the inner sleeve 502 into a front inner sleeve cavity and a rear inner sleeve cavity. The spool sleeve slider 5022 is located behind the inner sleeve retaining ring 5021, that is, the spool sleeve slider 5022 is located in the rear inner sleeve cavity. The initial position of the inner sleeve 502 of the front spool is sleeved on the outside of the front connector 5011 of the internal thread sleeve 501. The spool sleeve slider 5022 matches the spool sleeve groove 5013. The inner sleeve 502 of the front spool is slidably connected to the internal thread sleeve 501 through the spool sleeve slider 5022 and the spool sleeve groove 5013.
[0042] The front wheel outer sleeve 503 has an outer sleeve retaining ring 5031 inside. The outer sleeve retaining ring 5031 divides the internal cavity of the front wheel outer sleeve 503 into a front outer sleeve cavity and a rear outer sleeve cavity. The front wheel inner sleeve 502 is installed in the rear outer sleeve cavity of the front wheel outer sleeve 503.
[0043] The external threaded sleeve 504 has an internal thread inside, which meshes with the external thread of the internal threaded sleeve 501. The external threaded sleeve 504 and the internal threaded sleeve 501 are rotatably connected. The rear end of the external threaded sleeve 504 is provided with a positioning protrusion ring 5041. The outer ring surface in the middle of the external threaded sleeve 504 is provided with a clutch fixing square tooth 5042. The positioning protrusion ring 5041 of the external threaded sleeve 504 is installed between the inner sleeve retaining ring 5021 and the outer sleeve retaining ring 5031.
[0044] During assembly, the inner sleeve 502 and the outer sleeve 504 of the front spool are sequentially installed on the outside of the inner threaded sleeve 501. The positioning protrusion 5041 of the outer threaded sleeve 504 is installed in the inner front cavity of the inner sleeve of the front spool 502. Then, the outer sleeve 503 of the front spool is installed from one end of the outer threaded sleeve 504. The positioning protrusion 5041 of the outer threaded sleeve 504 is limited between the inner sleeve retaining ring 5021 and the outer sleeve retaining ring 5031. The outer sleeve 503 of the front spool is then fixedly connected to the inner sleeve 502 of the front spool, for example, by bolts or adhesive. At this time, the positioning protrusion 5041 is rotatably connected to the outer sleeve 503 and the inner sleeve 502 of the front spool in the limited cavity. Therefore, when the external threaded sleeve 504 rotates on the internal threaded sleeve 501, the positioning convex ring 5041 drives the front reel outer sleeve 503 and the front reel inner sleeve 502 to slide along the axial direction of the internal threaded sleeve 501, thereby realizing the sliding connection between the front reel sleeve and the spindle 1. The fishing reel is disassembled and assembled by the rear reel sleeve 3 cooperating with the front reel sleeve.
[0045] To enhance the fun of lure fishing handles and improve the user experience, this invention designs a sound gear 505 and a sound gear sleeve 506. When the sound gear 505 and the sound gear sleeve 506 rotate relative to each other, they can produce a clicking sound, thereby enhancing the user experience and the technological feel of the product.
[0046] The tone gear 505 is installed in the rear chamber of the outer sleeve of the front cable pulley 503. The tone gear 505 is fixedly connected to the front cable pulley outer sleeve 503. The outer side of the tone gear 505 is provided with a force-bearing tone tooth 5051.
[0047] A toothed sleeve 506, a toothed spring 507, a clutch sleeve 508, a clutch spring 509, and a clutch plug 510 are sequentially fitted onto an external threaded sleeve 504. The toothed sleeve 506 is rotatably connected to the external threaded sleeve 504, and the clutch sleeve 508 is fixedly connected to the external threaded sleeve 504. The rear end of the toothed sleeve 506 is provided with a driving tooth 5061, and the front end of the toothed sleeve 506 is provided with a toothed sleeve driving groove 5062. The rear end of the clutch sleeve 508 is provided with a clutch fixing groove 5081, and the front end of the clutch sleeve 508 is provided with a clutch force-bearing square tooth 5082. The clutch sleeve 508 passes through the clutch fixing groove 5081 and the clutch fixing square tooth 5082. The tooth 5042 is fixedly connected to the external threaded sleeve 504. Under the elastic force of the tooth spring 507, the driving tooth 5061 of the tooth sleeve 506 meshes with the force-bearing tooth 5051 of the tooth gear 505. When the tooth sleeve 506 is rotated, since the tooth gear 505 and the internal threaded sleeve 501 are slidably connected, the tooth gear 505 cannot rotate. The driving tooth 5061 of the rotating tooth sleeve 506 and the force-bearing tooth 5051 of the tooth gear 505 will be misaligned and collide under the elastic force of the tooth spring 507, thus producing a clicking sound to enhance the user experience and the technological feel of the product.
[0048] In order to rotate the sound tooth sleeve 506, the present invention designs a sound tooth drive sleeve 511; at the same time, when the outer surface of the handle sleeve 2 and the outer decorative body 513 is set as a polygon or other irregular shape, such as a tetrahedron, a hexagon, an octagon, etc., in order to ensure the alignment of the end faces of the front and rear sides of the fishing reel, the present invention designs a clutch drive sleeve 512.
[0049] The tooth drive sleeve 511 is sleeved on the outside of the tooth sleeve 506 and the tooth spring 507. The inner ring surface of the rear end of the tooth drive sleeve 511 is provided with a tooth drive slide tooth 5111. The tooth drive slide tooth 5111 is installed in the tooth drive slide groove 5062 of the tooth sleeve 506. The tooth drive sleeve 511 is slidably connected to the tooth sleeve 506. When the tooth drive sleeve 511 rotates, it drives the tooth sleeve 506 to rotate together through the tooth drive slide tooth 5111. The front end of the tooth drive sleeve 511 is provided with a tooth force groove 5112.
[0050] The clutch drive sleeve 512 is sleeved on the outside of the clutch sleeve 508, clutch spring 509 and clutch plug 510. The rear end face of the clutch drive sleeve 512 is provided with a clutch drive external tooth 5121, and the inner side of the clutch drive external tooth 5121 is provided with a clutch drive internal tooth 5122. The clutch drive external tooth 5121 matches the force-bearing groove 5112 of the sound tooth sleeve. The clutch drive sleeve 512 and the sound tooth drive sleeve 511 are engaged by the clutch drive external tooth 5121 and the force-bearing groove 5112 of the sound tooth sleeve, and are fixedly connected to the outer decorative body 513. That is, the clutch drive sleeve 512, the sound tooth drive sleeve 511 and the outer decorative body 513 are fixedly connected to form a whole. The clutch drive internal tooth 5122 is installed between two adjacent clutch force-bearing square teeth 5082. The clutch spring 509 is installed between the clutch drive internal tooth 5122 and the clutch plug 510.
[0051] Under the elastic force of the clutch spring 509, the clutch drive internal tooth 5122 and the clutch force-receiving square tooth 5082 are engaged. When the clutch drive sleeve 512 rotates, it drives the clutch sleeve 508 to rotate through the clutch drive internal tooth 5122 and the clutch force-receiving square tooth 5082, which in turn drives the external threaded sleeve 504 to rotate. When the clutch drive sleeve 512 moves forward, it further compresses the clutch spring 509. The clutch drive internal tooth 5122 and the clutch force-receiving square tooth 5082 are in a disengaged state, so the clutch drive sleeve 512 can be rotated arbitrarily, while the external threaded sleeve 504 remains stationary.
[0052] Since the clutch drive sleeve 512, the sound tooth drive sleeve 511 and the outer decorative body 513 are fixedly connected to form a whole, when the clutch drive inner tooth 5122 and the clutch force-receiving square tooth 5082 are engaged, rotating the outer decorative body 513 will drive the clutch sleeve 508 to rotate through the clutch drive inner tooth 5122 and the clutch force-receiving square tooth 5082, which in turn drives the outer threaded sleeve 504 to rotate. The outer threaded sleeve 504 rotates on the inner threaded sleeve 501, which drives the front reel sleeve (including the front reel inner sleeve 502 and the front reel outer sleeve 503) to slide on the spindle 1, so as to complete the disassembly and assembly of the fishing reel.
[0053] The clutch drive sleeve 512 and the sound tooth drive sleeve 511 of the present invention are designed separately instead of being designed as an integral structure, which facilitates the installation and fixing of the clutch sleeve 508 and reduces the assembly difficulty of the product.
[0054] After the fishing reel is fixedly installed, if the outer surface of the handle sleeve 2 and the outer decorative body 513 is set to a multi-faceted or other irregular shape, there may be a technical problem that the end faces of the front and rear sides of the fishing reel cannot be aligned. At this time, the outer decorative body 513 is pushed forward to further compress the clutch spring 509. The clutch drive internal tooth 5122 and the clutch force-receiving square tooth 5082 are in a separated state, so the outer decorative body 513 can be rotated at will, while the front reel sleeve remains stationary, so as to complete the alignment of the end faces of the front and rear sides of the fishing reel.
[0055] Whether the outer decorative body 513 is moved forward or not, since the sound tooth drive sleeve 511 and the sound tooth sleeve 506 are slidably connected, under the elastic force of the sound tooth spring 507, the driving sound tooth 5061 of the sound tooth sleeve 506 and the force-bearing sound tooth 5051 of the sound gear 505 are always in a meshing state. When the outer decorative body 513 is rotated, the driving sound tooth 5061 of the rotating sound tooth sleeve 506 and the force-bearing sound tooth 5051 of the sound gear 505 will be misaligned and collide under the elastic force of the sound tooth spring 507, thus producing a clicking sound, which enhances the user experience and the technological feel of the product.
[0056] However, the above description is merely a specific embodiment of the present invention and should not be construed as limiting the scope of the present invention. Therefore, any substitution of equivalent components or equivalent changes and modifications made in accordance with the scope of protection of the present invention should still fall within the scope of the claims of the present invention.
Claims
1. A freely rotating and positioning lure handle, comprising a spindle, a handle sleeve, a rear reel sleeve, a reel holder, and a clutch device, wherein the rear end of the spindle is used to sequentially connect the handle sleeve, the rear reel sleeve, the reel holder, and the clutch device, and the front end of the spindle is used to connect a fishing rod, characterized in that, The clutch device includes an internal threaded sleeve, a front cable pulley inner sleeve, a front cable pulley outer sleeve, an external threaded sleeve, a clutch sleeve, a clutch spring, a clutch plug, a clutch drive sleeve, and an outer decorative body. The front cable pulley inner sleeve and the external threaded sleeve are sequentially installed outside the internal threaded sleeve. The internal thread of the external threaded sleeve meshes with the external thread of the internal threaded sleeve. The front cable pulley outer sleeve is fitted onto the front cable pulley inner sleeve. The front cable pulley inner sleeve, the front cable pulley outer sleeve, and the internal threaded sleeve are slidably connected. The clutch sleeve, clutch spring, and clutch plug are sequentially installed outside the internal threaded sleeve. The clutch sleeve and clutch plug are fixedly connected to the external threaded sleeve and installed on the outer side of the rear end of the external threaded sleeve. The clutch drive sleeve is sleeved on the outer side of the clutch sleeve, clutch spring and clutch plug. The outer decorative body is fixedly installed on the outer side of the clutch drive sleeve. The outer side of the front end of the external threaded sleeve is provided with a tone gear, tone gear sleeve and tone gear spring in sequence. The tone gear drive sleeve is installed on the outer side of the tone gear sleeve and tone gear spring. The tone gear drive sleeve is snapped and fixed to the clutch drive sleeve and fixedly connected to the outer decorative body.
2. The lure handle with free rotation and positioning according to claim 1, characterized in that, The internal threaded sleeve has an external thread in the middle, and the front and rear ends of the internal threaded sleeve are respectively provided with a front connector and a rear connector. The external part of the internal threaded sleeve is provided with an axial threaded sleeve groove.
3. A free-rotating and positioning lure handle according to claim 2, characterized in that, The inner sleeve of the front chuck is provided with an inner sleeve retaining ring and a chuck sleeve slider. The inner sleeve retaining ring divides the internal cavity of the front chuck inner sleeve into an inner sleeve front cavity and an inner sleeve rear cavity. The front chuck inner sleeve is slidably connected to the inner threaded sleeve through the chuck sleeve slider and the chuck sleeve groove. The outer sleeve of the front chuck is provided with an outer sleeve retaining ring. The outer sleeve retaining ring divides the internal cavity of the front chuck outer sleeve into an outer sleeve front cavity and an outer sleeve rear cavity. The front chuck inner sleeve is installed in the outer sleeve rear cavity of the front chuck outer sleeve.
4. A free-rotating and positioning lure handle according to claim 3, characterized in that, The external threaded sleeve has an internal thread inside, a positioning protrusion ring at the rear end of the external threaded sleeve, and a clutch fixing square tooth on the outer ring surface in the middle of the external threaded sleeve. The positioning protrusion ring of the external threaded sleeve is installed between the inner sleeve retaining ring and the outer sleeve retaining ring.
5. A free-rotating and positioning lure handle according to claim 1, characterized in that, The tone gear is fixedly installed in the rear chamber of the outer sleeve of the front threaded wheel. The outer side of the tone gear is provided with a force-bearing tone tooth. The tone tooth sleeve is rotatably connected to the external threaded sleeve. The rear end of the tone tooth sleeve is provided with a driving tone tooth. The front end of the tone tooth sleeve is provided with a tone tooth sleeve driving groove. Under the elastic force of the tone tooth spring, the driving tone tooth of the tone tooth sleeve meshes with the force-bearing tone tooth of the tone gear.
6. A free-rotating and positioning lure handle according to claim 5, characterized in that, The inner ring surface at the rear end of the tooth drive sleeve is provided with a tooth drive slide tooth, and the front end of the tooth drive sleeve is provided with a tooth force groove. The tooth drive sleeve is slidably connected to the tooth sleeve through the tooth drive slide tooth and the tooth drive groove.
7. A free-rotating and positioning lure handle according to claim 6, characterized in that, The clutch sleeve has a clutch fixing groove inside its rear end and a clutch force-bearing square tooth at its front end. The clutch sleeve is fixedly connected to the external threaded sleeve through the clutch fixing groove and the clutch fixing square tooth.
8. A free-rotating and positioning lure handle according to claim 7, characterized in that, The rear end face of the clutch drive sleeve is provided with clutch drive external teeth, and the inner side of the clutch drive external teeth is provided with clutch drive internal teeth. The clutch drive sleeve and the sound tooth drive sleeve are engaged through the clutch drive external teeth and the sound tooth sleeve force-bearing groove. The clutch drive internal teeth are installed between two adjacent clutch force-bearing square teeth. The clutch spring is installed between the clutch drive internal teeth and the clutch plug.
Citation Information
Patent Citations
Polygonal lure handle capable of freely rotating to realize clutch positioning of locking cap
CN220343313U