Multifunctional quick-release hiking stick

CN224654798UActive Publication Date: 2026-08-21武夷学院
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Patent Information

Application Number
CN202522364103.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-07
Publication Date
2026-08-21
Estimated Expiration
2035-11-07

AI Technical Summary

Technical Problem

[0003]有鉴于此,本实用新型的目的在于提出一种多功能快拆登山杖,通过模块化可拆卸结构实现灵活拆装与功能集成,解决传统登山杖便携性不足与功能单一的问题

Benefits of technology

本实用新型提供了一种多功能快拆登山杖,包括把手组、杆组和支脚组。把手组包括第一拆解部与第二拆解部,二者垂直可拆卸连接;杆组包括连接杆,其近握持段与第二拆解部可拆卸连接;支脚组设于连接杆的近接地段,包括支脚本体、反光环、抓地块及可调锥,其中可调锥嵌设于抓地块内,反光环与抓地块沿支脚本体自上而下间隔设置。该登山杖通过各组件间的可拆卸连接实现模块化拆装,便于收纳携带;支脚组中抓地块与可调锥的组合增强地形适应性,反光环提升夜间辨识度与使用安全性。整体结构紧凑、功能多样,适用于多种野外环境,有效提升了登山杖的实用性与便携性。

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Abstract

The utility model discloses a multifunctional quick detach mountaineering pole, including handle group, pole group and support foot group. Handle group includes first disassembling part and second disassembling part, and both perpendicular detachable connection, pole group includes connecting rod, and its near holding section is detachably connected with second disassembling part, and support foot group is located in the near ground section of connecting rod, including support foot body, reflector ring, ground block and adjustable cone, wherein adjustable cone is embedded in ground block, and reflector ring and ground block are arranged interval from top to bottom along support foot body. The mountaineering pole realizes modular dismounting through the detachable connection between each component, and is convenient to store and carry, the combination of ground block and adjustable cone in support foot group enhances the terrain adaptability, and reflector ring improves the recognition degree and use safety at night. The whole compact structure is various in function, is applicable to various field environment, and effectively improves the practicability and portability of mountaineering pole.
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Description

Technical Field

[0001] This utility model relates to the field of outdoor sports equipment, and in particular to a multifunctional quick-release trekking pole. Background Technology

[0002] Trekking poles are commonly used equipment in outdoor activities such as hiking and mountaineering, and their structural design and performance directly affect the user's portability and terrain adaptability. Currently, most trekking poles on the market adopt a fixed length or simple folding design, which, while offering some advantages in terms of support and stability, still has limitations in practical use. Especially in outdoor environments requiring frequent changes in usage scenarios or long treks, users often desire a single piece of equipment that can balance lightweight storage with functional expansion. Existing products have not yet formed a systematic solution in terms of structural integration and modular design, making it difficult to achieve flexible assembly and disassembly and multi-functional expansion while ensuring basic functionality, thus limiting their overall applicability in complex environments. Therefore, how to achieve a balance between portability and functional versatility in the structural design of trekking poles has become a worthwhile direction to explore in this field. Summary of the Invention

[0003] In view of this, the purpose of this utility model is to propose a multifunctional quick-release trekking pole, which achieves flexible assembly and disassembly and functional integration through a modular and detachable structure, thus solving the problems of insufficient portability and single function of traditional trekking poles.

[0004] To achieve the above-mentioned technical objectives, the technical solution adopted by this utility model is as follows: a multi-functional quick-release trekking pole, comprising a handle assembly, a pole assembly, and a foot assembly. The handle assembly includes a first disassembly part and a second disassembly part, which are vertically and detachably connected. The pole assembly includes a connecting rod, which has a near-grip section and a near-ground section, which are detachably connected to the second disassembly part. The foot assembly is located in the near-ground section and includes a foot body, a reflective ring, a grip block, and an adjustable cone. The adjustable cone is embedded in the grip block, and the outer periphery of the foot body is provided with reflective rings and grip blocks spaced apart from top to bottom.

[0005] In some embodiments, the first disassembly part extends horizontally, and one end of the first disassembly part is provided with a first embedding groove opened horizontally. The trekking pole also includes a compass and a chip slot. The compass is disposed in the first embedding groove, and the chip slot is disposed in the first embedding groove for placing a chip.

[0006] In some embodiments, the second disassembly portion extends vertically, and the end of the second disassembly portion near the first disassembly portion is provided with a second embedding groove. The trekking pole also includes a blade, which is disposed in the second embedding groove.

[0007] In some embodiments, the first disassembly part and the second disassembly part are detachably connected by a snap fastener; the end of the first disassembly part is also provided with a pull cord; the periphery of the first disassembly part is provided with a first gripping surface distributed along a first preset trend; the periphery of the second disassembly part is provided with a second gripping surface distributed along a second preset trend; the first gripping surface and / or the second gripping surface are provided with a plurality of anti-slip textures.

[0008] In some embodiments, the connecting rod has a first storage cavity and a second storage cavity, the first storage cavity being located in the near-grip section and the second storage cavity being located in the near-ground section; the trekking pole also includes an indicator light module and a positioning module, the indicator light module being located in the first storage cavity and configured as either a miniature flashlight or an emergency light; the positioning module being located in the second storage cavity and configured as either a Beidou positioning module or a GPS positioning module.

[0009] In some embodiments, the near grip section and the second disassembly section are connected by a threaded connection.

[0010] In some embodiments, the trekking pole further includes a transfer element disposed between the near-ground section and the support body, the transfer element being configured as one of a variable diameter connector, a constant diameter connector, or a telescopic pole.

[0011] In some embodiments, the side wall of the support body is further provided with a switch groove; the adjustable cone includes a cone portion and a mounting portion, the mounting portion is embedded in the support body, and the cone portion is disposed near the grip block; the trekking pole also includes an elastic element and an elastic pin, the elastic element is disposed between the cone portion and the mounting portion; the elastic pin is disposed in the cone portion, the elastic pin protrudes to the outside of the support body through the switch groove, and the elastic pin is used to limit the cone portion.

[0012] In some embodiments, the side of the reflective ring near the handle assembly has an arc-shaped structure; a reflective layer is provided on the arc-shaped structure.

[0013] In some embodiments, the gripping block has a frustum structure and is located at the end of the support body.

[0014] By adopting the above technical solution, the beneficial effects of this utility model compared with the prior art are as follows: This utility model provides a multifunctional quick-release trekking pole, including a handle assembly, a shaft assembly, and a foot assembly. The handle assembly includes a first detachable part and a second detachable part, which are vertically and detachably connected. The shaft assembly includes a connecting rod, the near-grip section of which is detachably connected to the second detachable part. The foot assembly is located on the near-ground section of the connecting rod and includes a foot body, a reflective ring, a grip block, and an adjustable cone, wherein the adjustable cone is embedded in the grip block, and the reflective ring and grip block are spaced apart from top to bottom along the foot body. This trekking pole achieves modular assembly and disassembly through the detachable connection between its components, making it easy to store and carry. The combination of the grip block and the adjustable cone in the foot assembly enhances terrain adaptability, and the reflective ring improves nighttime visibility and safety. The overall structure is compact and versatile, suitable for various outdoor environments, effectively improving the practicality and portability of the trekking pole. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the first structure of the multi-functional quick-release trekking pole described in the specific implementation method; Figure 2 This is a schematic diagram of the second structure of the multi-functional quick-release trekking pole described in the specific implementation method; Figure 3 This is a schematic diagram of the specific structure of the handle assembly described in the specific implementation method; Figure 4 This is a cross-sectional structural diagram of the support leg assembly described in the specific implementation method; Figure 5 This is a schematic diagram of the specific structure of the support leg assembly described in the specific implementation method.

[0017] The reference numerals for the above figures are as follows: 1. Handle assembly; 11. First Disassembly Section; 111. First embedding slot; 112. Chip; 113. Pull the rope; 12. Second disassembly section; 121. Second embedding slot; 122. Blade; 2. Connecting rod; 21. Close grip section; 22. Close to the lot; 23. First storage chamber; 24. Second storage chamber; 3. Support legs assembly; 31. Support body; 32. Reflective ring; 33. Acquire land parcels; 34. Adjustable cone; 341. Conical part; 342. Installation Department; 35. Elastic components; 36. Flexible pin; 4. Indicator light module; 5. Positioning module; 6. Transit shipments. Detailed Implementation

[0018] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be particularly noted that the following embodiments are only for illustrating the present invention and do not limit the scope of the present invention. Similarly, the following embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present invention.

[0019] Please see Figures 1 to 5 This embodiment provides a multi-functional quick-release trekking pole, including a handle assembly 1, a pole assembly, and a foot assembly 3. The handle assembly 1 includes a first disassembly section 11 and a second disassembly section 12, which are vertically and detachably connected. The pole assembly includes a connecting rod 2, which has a near-grip section 21 and a near-ground section 22, which are detachably connected to the second disassembly section 12. The foot assembly 3 is disposed in the near-ground section 22 and includes a foot body 31, a reflective ring 32, a grip block 33, and an adjustable cone 34. The adjustable cone 34 is embedded in the grip block 33. The outer periphery of the foot body 31 is provided with reflective rings 32 and grip blocks 33 at intervals from top to bottom.

[0020] In this embodiment, the handle assembly 1 serves as the upper operating structure of the trekking pole. Its first disassembly part 11 and second disassembly part 12 are connected in a vertical direction, which allows the handle part to be quickly separated or combined according to usage needs. This not only makes it easier to store and reduce space occupation, but also allows for flexible adjustment of the grip angle or functional configuration according to the actual scenario.

[0021] The connecting rod 2 in the pole assembly adopts a segmented design. The near-grip section 21 and the second disassembly section 12 are detachably connected for quick assembly, while the near-ground section 22 supports the foot assembly 3. The foot assembly 3, as the grounding part of the trekking pole, has a layered layout from top to bottom on its foot body 31: the reflective ring 32 is positioned high to reflect light and improve visibility at night; the grip block 33 is made of wear-resistant material with a non-slip texture to enhance friction with the ground; preferably, an adjustable cone 34 is embedded inside the grip block 33, allowing for adjustment of its protrusion length according to terrain conditions, achieving dual functions of piercing hard surfaces and gripping soft surfaces. Preferably, the reflective ring 32 uses a composite structure of annular light-transmitting material and a high-reflectivity coating to ensure effective warning even in low-light conditions.

[0022] In this embodiment, the trekking pole allows users to quickly detach each component into an independent module. When carrying, the first disassembly part 11 and the second disassembly part 12 can be vertically separated, and the connecting rod 2 and the support leg assembly 3 can also be disassembled, significantly reducing the overall storage volume. When needed, the trekking pole can be quickly assembled into a complete trekking pole through simple snap-fit ​​or screw-on operations. The reflective ring 32 in the support leg assembly 3 produces directional reflection under light, effectively improving safety during nighttime use. The combination of the grip block 33 and the adjustable cone 34 allows the trekking pole to adapt to soft mud, snow, and other easily sinking terrain, as well as maintain stable support on hard surfaces such as rocks and ice.

[0023] This modular design allows trekking poles to maintain basic support functions while also offering portability and terrain adaptability. Through the detachable connection structure of each component, users can flexibly configure the various functional modules according to their actual needs. This not only meets the lightweight requirements of outdoor activities but also enhances practicality and safety in complex environments through features such as the reflective ring 32 and adjustable cone 34. In particular, the vertically detachable handle assembly 1 not only optimizes storage efficiency but also provides a structural foundation for future functional expansion.

[0024] In some embodiments, the first disassembly part 11 extends in a horizontal direction, and one end of the first disassembly part 11 is provided with a first embedding groove 111 opened in a horizontal direction. The trekking pole also includes a compass and a chip slot. The compass is disposed in the first embedding groove 111. The chip slot is disposed in the first embedding groove 111 and is used to place a chip 112.

[0025] In this embodiment, the horizontally extending design of the first disassembly section 11 makes it more ergonomic when held, facilitating stable grip under different usage postures. The first embedding slot 111, located at one end, is horizontally oriented, maintaining structural compactness while providing effective space for functional expansion. A compass is embedded within the first embedding slot 111, with its dial flush with the opening, providing directional guidance without compromising grip comfort. A chip slot is also integrated into the first embedding slot 111, employing a standardized interface design compatible with various types of storage chips 112 or positioning chips 112, used for storing user information, path data, or location tracking. Preferably, the first embedding slot 111 features a dustproof and waterproof structure, with double protection achieved through a sealing ring and a transparent cover, ensuring the built-in functional modules function normally even in harsh environments.

[0026] Furthermore, the first disassembly section 11 adopts a segmented design, with a detachable end cap at the opposite end to the first embedding groove 111. After removing the end cap, a first receiving cavity inside the disassembly section is exposed. This cavity is sized to match the multi-functional flashlight, allowing for integrated storage of lighting, emergency charging, and ignition functions. A positioning slot is provided above the opening of the first receiving cavity, forming a detachable connection structure with the elastic buckle inside the end cap, enabling quick assembly and disassembly via a press-type unlocking mechanism. Preferably, conductive contacts are provided on the inner wall of the first receiving cavity, allowing for automatic charging by interfacing with the flashlight's charging interface.

[0027] This embodiment significantly expands the auxiliary functions of the trekking pole by integrating a compass, a chip slot, and a hidden first receiving cavity into the first disassembly section 11. When users need to determine direction in the wild, they can directly observe the embedded compass to obtain directional information; the chip slot provides users with expanded data storage and transmission capabilities. The hidden design of the first receiving cavity allows the emergency lighting device to be carried without adding extra weight, and can be quickly accessed when needed. This embodiment maintains the integrity of the trekking pole while achieving multi-functional expansion through reasonable space utilization, enabling a single piece of equipment to have multiple uses such as orientation recognition, data management, and emergency lighting. While maintaining structural strength, it achieves the organic integration of more functions, effectively improving the convenience and safety of outdoor activities.

[0028] In some embodiments, the second disassembly portion 12 extends vertically, and the end of the second disassembly portion 12 near the first disassembly portion 11 is provided with a second embedding groove 121. The trekking pole also includes a blade 122, which is disposed in the second embedding groove 121.

[0029] In this embodiment, the vertically extending structure of the second disassembly section 12 allows it to naturally conform to the palm when gripped, providing stable force support. The second embedding groove 121, located near the end of the first disassembly section 11, has a longitudinal opening, maintaining structural continuity while providing concealed space for tool storage. The blade 122 is integrated into the second disassembly section 12 through this embedding groove, with its cutting edge facing inwards, ensuring it is not exposed and poses a safety hazard when stored. Optionally, the second embedding groove 121 includes a positioning bracket that can stably engage with standard-sized folding knives for plug-and-play functionality; simultaneously, a magnetic fixing structure is provided at the groove opening to ensure the knife or blade 122 remains stable under severe vibration through magnetic attraction.

[0030] Furthermore, the second embedding slot 121 can also be designed as a dedicated blade 122 storage compartment. This compartment contains a rotating bracket connected to the compartment wall via a pivot pin, allowing the blade 122 to rotate 180 degrees within the compartment. When needed, pressing the compartment cover trigger mechanism rotates the blade 122 to the desired angle; after use, reversing the rotation retracts it back into the compartment. Preferably, the rotating bracket employs a spring-assisted reset mechanism to ensure smooth opening and closing and automatic return to its original position.

[0031] This embodiment integrates the emergency blade 122 with the trekking pole body by providing a tool storage space in the second disassembly section 12. When users need to cut ropes, process food, or deal with emergencies in the wild, they can quickly retrieve the blade 122 from the second embedding slot 121, avoiding the inconvenience of carrying tools separately. The stored blade 122 is completely embedded inside the second disassembly section 12, maintaining the trekking pole's neat appearance and ensuring safe use. This embodiment eliminates the need for users to carry an additional tool bag during hiking, reducing weight and ensuring that emergency tools are readily available.

[0032] In some embodiments, the first disassembly part 11 and the second disassembly part 12 are detachably connected by a snap fastener; the end of the first disassembly part 11 is also provided with a pull cord 113; the periphery of the first disassembly part 11 is provided with a first gripping surface distributed along a first preset trend; the periphery of the second disassembly part 12 is provided with a second gripping surface distributed along a second preset trend; the first gripping surface and / or the second gripping surface are provided with a plurality of anti-slip textures.

[0033] In this embodiment, the first disassembly part 11 and the second disassembly part 12 are detachably connected by a buckle. This buckle uses a press-type unlocking mechanism, allowing for quick separation by a single finger press, while a spring-loaded reset ensures a stable connection. The pull rope 113 at the end of the first disassembly part 11 is made of high-strength nylon and has an anti-slip ring at the end, serving as a wrist strap to prevent the trekking pole from slipping accidentally, and also as an emergency rope when needed. The first gripping surface has a tapered profile in the horizontal direction, conforming to the force distribution when the hand naturally grips; the second gripping surface has an ergonomic wave-like undulation in the vertical direction, providing effective support for each finger during gripping. Both gripping surfaces are covered with anti-slip textures arranged in a cross-grid pattern to increase the coefficient of friction and improve grip stability. Preferably, the depth of the anti-slip texture is 0.5-1.0 mm, ensuring effective anti-slip while avoiding excessive wear on the palm.

[0034] This embodiment significantly improves the ease of operation and comfort of use of the trekking poles by optimizing the design of the connection structure and grip surface. The snap-fit ​​connection allows the first disassembly part 11 and the second disassembly part 12 to be quickly separated or combined, facilitating flexible adjustments according to the usage scenario; the pull cord 113 design provides both safety and expands emergency functionality; the two sets of grip surfaces are optimized for different needs of horizontal and vertical gripping, and together with the anti-slip texture, they ensure a stable and reliable gripping experience under various environmental conditions, effectively reducing fatigue from prolonged use while maintaining structural strength, thus enhancing the product's practicality.

[0035] In some embodiments, the connecting rod 2 has a first storage cavity 23 and a second storage cavity 24. The first storage cavity 23 is located in the near-grip section 21, and the second storage cavity 24 is located in the near-ground section 22. The trekking pole also includes an indicator light module 4 and a positioning module 5. The indicator light module 4 is located in the first storage cavity 23 and is configured as either a miniature flashlight or an emergency light. The positioning module 5 is located in the second storage cavity 24 and is configured as either a Beidou positioning module or a GPS positioning module.

[0036] In this embodiment, the first storage cavity 23 inside the connecting rod 2 adopts a waterproof and sealed structure, which can effectively protect the built-in indicator light module 4 from moisture corrosion. The indicator light module 4 is integrated into the cavity and emits light outward through the transparent window on the side wall of the connecting rod 2. The indicator light module 4 can be configured as a miniature flashlight to provide illumination or as an emergency light to emit a flashing signal as needed. The second storage cavity 24 is located near the ground section 22 and adopts an electromagnetic shielding structure design. The positioning module 5 installed inside can be selected from Beidou or GPS positioning systems and communicates with the outside through the signal transmission area at the bottom of the connecting rod 2. Preferably, an isolation layer is set between the first storage cavity 23 and the second storage cavity 24 to avoid mutual interference between electronic modules; at the same time, threaded sealing caps are used at the openings of each cavity to achieve double protection.

[0037] This embodiment organically integrates the electronic module with the trekking pole body by rationally arranging functional cavities inside the connecting rod 2. When the user is hiking at night or in low-visibility environments, the indicator light module 4 can be activated to provide lighting or send out a distress signal; the positioning module 5 continuously records the hiking trajectory and provides accurate location information in emergencies. Users can obtain lighting, navigation, and safety protection functions without carrying additional electronic devices, maintaining the equipment's lightweight design while significantly improving the safety and convenience of outdoor activities. The rational distribution of each functional module inside the connecting rod 2 ensures convenient operation during use and guarantees reliability in harsh environments through professional protective design.

[0038] In some embodiments, the near grip section 21 and the second disassembly section 12 are connected by a threaded fastening.

[0039] In this embodiment, the near-grip section 21 and the second disassembly section 12 are connected by a threaded locking mechanism. This threaded structure uses a fine-pitch thread design, increasing the effective number of engagement turns to improve connection strength. The thread engagement length is set to 1.2-1.5 times the diameter of the connecting rod 2 to ensure sufficient tensile strength under axial pressure. The bottom end of the second disassembly section 12 is provided with an external thread, and the top end of the near-grip section 21 is machined with a corresponding internal thread. The two achieve a tight fit by rotating clockwise. Preferably, the root of the thread is rounded to reduce stress concentration, and the thread surface is coated with an anti-loosening adhesive layer to prevent the connection from loosening due to vibration during use.

[0040] This embodiment achieves reliable fixation between the near-grip section 21 and the second disassembly section 12 through a threaded locking connection. When the user rotates the second disassembly section 12, the helix angle of the thread converts the rotational motion into axial linear motion, gradually pressing the two parts together until they are fully fitted. This not only ensures structural stability when transmitting loads but also facilitates quick assembly and disassembly operations for the user. The unique self-locking characteristic of the threaded connection effectively prevents accidental loosening during use, while the fine thread design provides more load-bearing contact surfaces within a limited length, allowing the connection to maintain structural integrity even when subjected to impact loads. This embodiment ensures connection reliability while also considering ease of assembly and disassembly, enabling the trekking pole to be quickly disassembled for storage and providing stable connection support during use.

[0041] In some embodiments, the trekking pole also includes a transfer element 6 disposed between the near-ground section 22 and the support body 31, and the transfer element 6 is configured as one of a variable diameter connector, a constant diameter connector, or a telescopic pole.

[0042] In this embodiment, the intermediate component 6 serves as the connecting part between the near-ground section 22 and the support leg body 31, and can be configured with different functional forms according to usage requirements. The variable diameter connector can adopt a tapered transition structure, with connection interfaces of different diameters at both ends, used to connect the rod body and the three support leg assemblies with mismatched sizes; the equal diameter connector keeps the diameters of the interfaces at both ends consistent, achieving straight extension of components of the same specification. The telescopic rod adopts a sleeve structure, fixed at different extension positions by a locking mechanism, used to adjust the effective length of the trekking pole. Preferably, the taper ratio of the variable diameter connector is controlled within the range of 1:8 to 1:12 to ensure a smooth stress transition; the locking mechanism of the telescopic rod adopts a cam quick-release design, which can achieve quick adjustment with one hand.

[0043] This embodiment, by incorporating a replaceable connecting component 6, allows the trekking pole to flexibly adapt to different usage scenarios and personalized needs. When used in different terrain conditions, users can select the appropriate connecting component 6 according to their actual needs: a variable-diameter connector for matching components of different specifications, a constant-diameter connector for maintaining structural continuity, and a telescopic rod for length adjustment. The trekking pole in this embodiment is no longer limited to a fixed configuration but can be functionally expanded and personalized according to specific usage requirements. The connecting component 6 not only solves the connection compatibility problem between different components but also provides users with greater flexibility, significantly improving the product's adaptability and practical value.

[0044] In some embodiments, the side wall of the support body 31 is also provided with a switch groove; the adjustable cone 34 includes a cone portion 341 and a mounting portion 342, the mounting portion 342 is embedded in the support body 31, and the cone portion 341 is disposed near the grip block 33; the trekking pole also includes an elastic element 35 and an elastic pin 36, the elastic element 35 is disposed between the cone portion 341 and the mounting portion 342; the elastic pin 36 is disposed in the cone portion 341, and the elastic pin 36 protrudes to the outside of the support body 31 through the switch groove, and the elastic pin 36 is used to limit the cone portion 341.

[0045] In this embodiment, a switch groove is provided on the side wall of the support body 31. The length direction of the groove is parallel to the axis of the support body 31, providing room for the elastic pin 36 to move. The adjustable cone 34 consists of a cone portion 341 and a mounting portion 342. The mounting portion 342 is embedded in the support body 31 by an interference fit, and the cone portion 341 extends to the gripping block 33 area. The elastic element 35 is a compression spring, which is located between the cone portion 341 and the mounting portion 342 and is always in a pre-compressed state. The elastic pin 36 passes laterally through the cone portion 341, and its two ends protrude to the outside of the support body 31 through the switch groove to form an operating handle. Preferably, a limiting groove is provided on the edge of the switch groove, so that when the elastic pin 36 moves to a specific position, it can fall into the groove for temporary fixation.

[0046] Furthermore, the support body 31 is provided with a second receiving cavity above the mounting part 342. This cavity is isolated from the movement space of the adjustable cone 34, and its internal dimensions match those of a standard multi-functional survival whistle. Optionally, a rotating cover is provided at the opening of the second receiving cavity, which can be opened or closed by a quarter turn. Preferably, a silicone gasket is provided on the inner wall of the receiving cavity, which can both fix the survival whistle to prevent shaking and provide cushioning protection.

[0047] This embodiment achieves rapid extension and retraction adjustment of the adjustable cone 34 through the cooperation of the elastic pin 36 and the switch slot. When the cone 341 needs to be extended, the user presses the elastic pin 36 to release the limit, and the restoring force of the elastic element 35 pushes the cone 341 outward; when it needs to be retracted, simply push the cone 341 back and re-lock the elastic pin 36 into the limit position. This allows the user to quickly adjust the protruding length of the cone 341 according to the ground hardness, retracting the cone 341 on soft ground to increase the grip area, and extending the cone 341 on hard ground to enhance piercing ability. At the same time, the accommodating cavity inside the support body 31 provides concealed storage space for emergency items such as survival whistles, ensuring quick access in emergencies. This embodiment maintains the compact structure of the support group 3 while expanding emergency functions, significantly improving the practical value and safety of the trekking pole in the wild.

[0048] In some embodiments, the reflective ring 32 has an arc-shaped structure on the side near the handle assembly 1; a reflective layer is provided on the arc-shaped structure.

[0049] In this embodiment, the side of the reflective ring 32 closest to the handle assembly 1 adopts an arc-shaped structure. The radius of curvature of this surface is coordinated with the outer diameter of the support body 31, forming a smoothly transitioning reflective surface. The reflective layer on the arc-shaped structure uses microprism reflective material, achieving wide-angle reflection through precisely arranged micro-optical elements. Preferably, the reflective layer is composed of a base layer, a reflective layer, and a protective layer. The reflective layer uses glass microspheres or a cubic prism array, and the protective layer is a transparent wear-resistant coating to ensure that the reflective performance is maintained during long-term use. The tilt angle of the arc-shaped structure is optically optimized so that the reflected light is mainly directed towards the area behind the user, avoiding glare interference to the user while providing a clear visual signal to people behind.

[0050] This embodiment significantly improves the safety performance of trekking poles in low-light environments by optimizing the structure and optical properties of the reflective ring 32. The curved structure increases the effective reflective area and directs reflected light at a specific angle, ensuring a clear reflective signal can be observed from different positions behind. When walking at night, when headlights from vehicles or headlamps from others illuminate the reflective ring 32, the reflective layer efficiently reflects the incident light back towards the light source, forming a conspicuous spot to indicate the user's position. This not only improves the user's safety when walking on roads but also helps maintain visual communication among team members. The curved structure of the reflective ring 32 also reduces the possibility of dust and rainwater accumulation, and together with the wear-resistant protective layer, ensures long-term reliability, allowing the trekking poles to provide continuous and effective safety warnings even in complex environments.

[0051] In some embodiments, the gripping block 33 has a frustum structure and is disposed at the end of the support body 31.

[0052] In this embodiment, the gripping block 33 adopts a frustum structure design, with its bottom diameter larger than its top diameter, forming a gradually expanding conical profile. This structure is located at the end of the support body 31 and is fixed by interference fit or threaded connection. The side surface of the frustum structure is provided with radially distributed anti-slip protrusions, which have trapezoidal cross-sections and gradually increase in height from top to bottom. Preferably, the gripping block 33 is made of a highly wear-resistant rubber material with a Shore hardness controlled within the range of 65A-75A, ensuring both sufficient support strength and appropriate elastic deformation capacity. The taper angle of the frustum structure is set between 15 and 25 degrees to ensure a stable contact area on ground with different inclination angles.

[0053] This embodiment, through the design of the frustum-shaped grip block 33, significantly improves the trekking pole's grip performance and stability under various terrain conditions. When the trekking pole contacts the ground, the conical structure of the frustum allows the grip block 33 to adapt to different ground angles, dispersing pressure through a gradually increasing contact area. The anti-slip protrusions embed into the soil to increase adhesion on soft surfaces, while increasing friction through elastic deformation on hard surfaces. The larger diameter of the frustum's base provides additional support area, preventing excessive sinking into soft ground. This structure ensures the trekking pole maintains reliable grip on flat surfaces, slopes, and soft terrain, effectively reducing the risk of slippage during use and improving walking safety and comfort.

[0054] By adopting the above technical solutions, this utility model differs from existing technologies and has the following beneficial effects: The modular and detachable structure achieves multi-functional integration and optimized portability of the trekking pole. The vertical detachable connection between the first disassembly section 11 and the second disassembly section 12, and the detachable connection between the near-grip section 21 and the second disassembly section 12, allows the entire unit to be quickly disassembled into independent modules, significantly reducing storage volume. The cooperation between the adjustable cone 34 and the grip block 33 in the support leg assembly 3 allows the trekking pole to adapt to different terrains, and the reflective ring 32 enhances nighttime safety. Each component also integrates practical functions such as a compass, chip slot, blade 122, indicator light module 4, positioning module 5, and emergency whistle, expanding the equipment's uses without adding extra weight through a reasonable spatial layout. The above technical solutions not only meet the demand for lightweight equipment in outdoor activities but also improve adaptability and safety in complex environments through functional integration.

[0055] The above description is only a part of the embodiments of this utility model, and does not limit the scope of protection of this utility model. Any equivalent device or equivalent process transformation made based on the content of this utility model specification and drawings, or direct or indirect application in other related technical fields, are similarly included in the patent protection scope of this utility model.

Claims

1. A multi-functional quick-release trekking pole, characterized in that, include: A handle assembly, the handle assembly including a first disassembly part and a second disassembly part, the first disassembly part and the second disassembly part being vertically and detachably connected; A rod assembly, including a connecting rod having a near-grip section and a near-ground section, the near-grip section being detachably connected to the second disassembly part; A foot assembly is provided in the near-ground section. The foot assembly includes a foot body, a reflective ring, a ground grip block, and an adjustable cone. The adjustable cone is embedded in the ground grip block. The reflective ring and the ground grip block are arranged at intervals from top to bottom around the foot body.

2. The multi-functional quick-release trekking pole according to claim 1, characterized in that, The first disassembly section extends horizontally, and one end of the first disassembly section is provided with a first embedding groove opened horizontally. The trekking pole also includes: A compass is disposed within the first embedded slot; And / or, a chip slot is disposed within the first embedding slot, the chip slot being used to place a chip.

3. The multi-functional quick-release trekking pole according to claim 1, characterized in that, The second disassembly section extends vertically, and a second embedding groove is provided at the end of the second disassembly section near the first disassembly section. The trekking pole also includes: The blade is disposed within the second embedding groove.

4. The multi-functional quick-release trekking pole according to claim 1, characterized in that, The first disassembly part and the second disassembly part are detachably connected by a snap fastener; The end of the first disassembly section is also provided with a pull rope; The first disassembly section is provided with a first gripping surface distributed along a first preset trend on its periphery; The second disassembly section is provided with a second gripping surface distributed along a second preset trend on its periphery; The first gripping surface and / or the second gripping surface are provided with a number of anti-slip textures.

5. The multi-functional quick-release trekking pole according to claim 1, characterized in that, The connecting rod has a first storage cavity and a second storage cavity. The first storage cavity is located in the near-grip section, and the second storage cavity is located in the near-ground section. The trekking pole also includes: An indicator light module is disposed in the first storage cavity, and the indicator light module is configured as either a miniature flashlight or an emergency light; A positioning module is disposed in the second storage cavity, and the positioning module is configured as a Beidou positioning module or a GPS positioning module.

6. The multi-functional quick-release trekking pole according to claim 1, characterized in that, The near-grip section is connected to the second disassembly section by a threaded fastening.

7. The multi-functional quick-release trekking pole according to claim 1, characterized in that, The trekking pole also includes: An intermediate component is disposed between the near-ground section and the support body, and the intermediate component is configured as one of a variable diameter connector, a constant diameter connector, or a telescopic rod.

8. The multi-functional quick-release trekking pole according to claim 1, characterized in that, The side wall of the support body is also provided with a switch slot; The adjustable cone includes a cone portion and a mounting portion, the mounting portion being embedded in the support body, and the cone portion being positioned close to the gripping block; The trekking pole also includes: An elastic element is disposed between the tapered portion and the mounting portion; An elastic pin is provided in the cone portion, and the elastic pin protrudes to the outside of the support body through the switch groove. The elastic pin is used to limit the cone portion.

9. The multi-functional quick-release trekking pole according to claim 1, characterized in that, The reflective ring has an arc-shaped structure on the side near the handle assembly; A reflective layer is provided on the curved surface structure.

10. The multifunctional quick-release trekking pole according to claim 1, characterized in that, The gripping block has a frustum structure and is located at the end of the support body.