Carbon fiber multi-stage telescopic selfie stick
By using carbon fiber materials and a threaded locking mechanism, the multi-stage telescopic selfie stick solves the problems of poor stability and unstable locking of existing selfie sticks, and achieves stable telescopic extension and multi-purpose shooting functions.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN SANHE FILM & TELEVISION EQUIP CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-05-29
AI Technical Summary
Existing telescopic selfie sticks have poor stability, unstable locking effect, pose safety hazards, and have limited material strength, making them prone to shaking or breaking.
The multi-stage telescopic structure, made of carbon fiber and combined with a threaded locking mechanism, achieves reliable fixation of each segment through threaded connection, ensuring stability and anti-slip capability.
It achieves stable extension and retraction of the selfie stick, improves safety and stability during use, enhances material strength, and is suitable for shooting needs in multiple scenarios.
Smart Images

Figure CN224301768U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of selfie stick technology, specifically relating to a carbon fiber multi-stage telescopic selfie stick. Background Technology
[0002] With the rapid development of social media and the widespread use of photography equipment, selfie sticks have become a common auxiliary device for users in scenarios such as travel, parties, and live streaming. The market offers a variety of selfie sticks, mainly in two structural forms: fixed and telescopic. Telescopic selfie sticks are widely used due to their portability and adjustable length.
[0003] However, existing telescopic selfie sticks still have many shortcomings. On the one hand, most traditional selfie sticks are made of aluminum alloy or plastic, which have limited strength and rigidity. They are prone to wobbling, bending, or even breaking during extended use, resulting in poor stability and affecting the shooting effect. On the other hand, the fixing methods between the sections in multi-stage telescopic structures mostly use spring clips or friction locking mechanisms, which have unstable locking effects. During use, the telescopic sections may automatically slip due to shaking or external impact, posing certain safety hazards.
[0004] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content
[0005] In view of the technical problems mentioned in the background art, the purpose of this utility model is to provide a carbon fiber multi-stage telescopic selfie stick to solve the technical problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a carbon fiber multi-stage telescopic selfie stick, comprising a telescopic main rod, a first telescopic section, a second telescopic section, a third telescopic section, and a fourth telescopic section. The first telescopic section is telescopically connected to the telescopic main rod, the second telescopic section is telescopically connected to the first telescopic section, the third telescopic section is telescopically connected to the second telescopic section, and the fourth telescopic section is telescopically connected to the third telescopic section. A connecting component is connected to the upper end of the fourth telescopic section. The upper end of the connecting component is provided with a mounting screw groove, in which a component connector is threadedly connected. A connecting stud is provided in the middle of the component connector.
[0007] Furthermore, the upper end of the telescopic main rod is connected to a first locking component, the lower end of the first telescopic joint is provided with a first locking screw head, and the upper inner part of the first locking component is provided with a first locking screw groove that is adapted to the first locking screw head. When the first telescopic joint extends along the telescopic main rod, the first locking component is rotated to form a threaded connection between the first locking screw head and the first locking screw groove, thereby realizing the locking and fixing of the first telescopic joint.
[0008] Furthermore, the upper end of the first telescopic joint is connected to a second locking component, and the lower end of the second telescopic joint is provided with a second locking screw head. The upper inner part of the second locking component is provided with a second locking screw groove that is adapted to the second locking screw head. When the second telescopic joint extends along the first telescopic joint, the second locking component is rotated so that the second locking screw head and the second locking screw groove form a threaded connection, thereby realizing the locking and fixing of the second telescopic joint.
[0009] Furthermore, the upper end of the second telescopic joint is connected to a third locking component, and the lower end of the third telescopic joint is provided with a third locking screw head. The upper inner part of the third locking component is provided with a third locking screw groove that is adapted to the third locking screw head. When the third telescopic joint extends along the second telescopic joint, the third locking component is rotated to form a threaded connection between the third locking screw head and the third locking screw groove, thereby realizing the locking and fixing of the third telescopic joint.
[0010] Furthermore, the upper end of the third telescopic section is connected to a fourth locking component, and the lower end of the fourth telescopic section is provided with a fourth locking screw head. The upper inner part of the fourth locking component is provided with a fourth locking screw groove that is adapted to the fourth locking screw head. When the fourth telescopic section extends along the third telescopic section, the fourth locking component is rotated to form a threaded connection between the fourth locking screw head and the fourth locking screw groove, thereby realizing the locking and fixing of the fourth telescopic section.
[0011] Furthermore, the lower end of the telescopic main rod is provided with a rear cover connection part, and a rear end cover is connected to the outside of the rear cover connection part.
[0012] Furthermore, the telescopic main rod, the first telescopic joint, the second telescopic joint, the third telescopic joint, and the fourth telescopic joint are all made of carbon fiber material.
[0013] The present invention has the following advantages: the first telescopic section is telescopically connected to the telescopic main rod, the second telescopic section is telescopically connected to the first telescopic section, the third telescopic section is telescopically connected to the second telescopic section, and the fourth telescopic section is telescopically connected to the third telescopic section. The upper end of the fourth telescopic section is connected to a connecting component, and the upper end of the connecting component is provided with a mounting screw groove. A component connector is threadedly connected to the mounting screw groove, and a connecting stud is provided in the middle of the component connector. The carbon fiber multi-stage telescopic selfie stick of the present invention has a clear hierarchical structure and good telescopic stability. The threaded locking mechanism realizes reliable fixation of each stage segment, making it convenient for users to carry and store. The connecting stud allows for detachable connection with the device, thereby realizing multi-scene and multi-purpose shooting functions. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model.
[0015] Figure 2 This is a schematic diagram of the overall exploded structure of this utility model.
[0016] Reference numerals: Telescopic main rod 10; First telescopic section 20; Second telescopic section 30; Third telescopic section 40; Fourth telescopic section 50; First locking component 11; First locking screw head 21; First locking screw groove 111; Second locking component 22; Second locking screw head 31; Second locking screw groove 221; Third locking component 32; Third locking screw head 41; Third locking screw groove 321; Fourth locking component 42; Fourth locking screw head 51; Fourth locking screw groove 421; Connecting component 52; Mounting screw groove 521; Component connector 60; Connecting stud 61; Rear cover connecting part 12; Rear end cover 13. Detailed Implementation
[0017] like Figures 1 to 2 As shown, a carbon fiber multi-stage telescopic selfie stick includes a telescopic main rod 10, a first telescopic section 20, a second telescopic section 30, a third telescopic section 40, and a fourth telescopic section 50. The first telescopic section 20 is telescopically connected to the telescopic main rod 10, the second telescopic section 30 is telescopically connected to the first telescopic section 20, the third telescopic section 40 is telescopically connected to the second telescopic section 30, and the fourth telescopic section 50 is telescopically connected to the third telescopic section 40. In use, the user can pull out the first telescopic section 20, the second telescopic section 30, the third telescopic section 40, and the fourth telescopic section 50 sequentially from the inside out, thereby extending the length of the selfie stick in stages to meet the needs of different shooting distances and angles. When not in use, the fourth telescopic section 50, the third telescopic section 40, the second telescopic section 30, and the first telescopic section 20 can be retracted inwards sequentially, ultimately being stored inside the telescopic main rod 10, achieving a compact overall structure for easy carrying and storage.
[0018] In practical implementation, the upper end of the telescopic main rod 10 is connected to a first locking component 11, and the lower end of the first telescopic joint 20 is provided with a first locking screw head 21. The upper inner part of the first locking component 11 is provided with a first locking screw groove 111 that matches the first locking screw head 21. When the first telescopic joint 20 extends along the telescopic main rod 10, the user can rotate the first locking component 11 to form a threaded engagement between the first locking screw head 21 and the first locking screw groove 111, thereby achieving locking and fixing. This ensures that the first telescopic joint 20 has good stability and anti-slip capability in the extended state. Through this threaded locking structure, the automatic retraction of the first telescopic joint 20 due to vibration or external force during use can be avoided, improving the overall safety of the equipment and the user experience.
[0019] In practical implementation, the upper end of the first telescopic joint 20 is connected to a second locking component 22, and the lower end of the second telescopic joint 30 is provided with a second locking screw head 31. The upper inner part of the second locking component 22 is provided with a second locking screw groove 221 that matches the second locking screw head 31. When the second telescopic joint 30 extends along the first telescopic joint 20, the user can rotate the second locking component 22 to form a threaded connection between the second locking screw head 31 and the second locking screw groove 221, thereby achieving the locking and fixing of the second telescopic joint 30. This structure can effectively prevent the second telescopic joint 30 from slipping due to shaking or external force during use, ensuring good stability and anti-slip capability in its extended state.
[0020] In practical implementation, the upper end of the second telescopic joint 30 is connected to a third locking component 32, and the lower end of the third telescopic joint 40 is provided with a third locking screw head 41. The upper inner part of the third locking component 32 is provided with a third locking screw groove 321 that is adapted to the third locking screw head 41. When the third telescopic joint 40 extends along the second telescopic joint 30, the user can rotate the third locking component 32 to form a threaded connection between the third locking screw head 41 and the third locking screw groove 321, thereby achieving the locking and fixing of the third telescopic joint 40. This structure can effectively prevent the third telescopic joint 40 from slipping due to shaking or external force during use, ensuring that it has good stability and anti-slip ability in the extended state.
[0021] In practical implementation, the upper end of the third telescopic joint 40 is connected to a fourth locking component 42, and the lower end of the fourth telescopic joint 50 is provided with a fourth locking screw head 51. The upper inner part of the fourth locking component 42 is provided with a fourth locking screw groove 421 that matches the fourth locking screw head 51. When the fourth telescopic joint 50 extends along the third telescopic joint 40, the user can rotate the fourth locking component 42 to form a threaded connection between the fourth locking screw head 51 and the fourth locking screw groove 421, thereby achieving the locking and fixing of the fourth telescopic joint 50. This structure can effectively prevent the fourth telescopic joint 50 from slipping due to shaking or external force during use, ensuring good stability and anti-slip capability in its extended state.
[0022] In practical implementation, the upper end of the fourth telescopic joint 50 is connected to a connecting component 52. The upper end of the connecting component 52 is provided with a mounting screw groove 521. A component connector 60 is threadedly connected in the mounting screw groove 521. A connecting stud 61 is provided in the middle of the component connector 60. In use, the connecting stud 61 is used to detachably connect with various devices, such as mobile phone clips, action cameras, or panoramic cameras, etc., which has good versatility and compatibility and meets the shooting needs of users in different scenarios.
[0023] In practical implementation, the lower end of the telescopic main rod 10 is provided with a rear cover connecting part 12, and the outer side of the rear cover connecting part 12 is connected to a rear end cover 13. In use, the rear end cover 13 not only seals the lower end of the rod and protects the internal structure, but also prevents external impurities such as dust and moisture from entering the interior of the telescopic main rod 10, effectively improving the durability and sealing of the overall device.
[0024] In practice, the telescopic main rod 10, the first telescopic joint 20, the second telescopic joint 30, the third telescopic joint 40, and the fourth telescopic joint 50 are all made of carbon fiber material.
[0025] In summary, the first telescopic section 20 is telescopically connected to the telescopic main rod 10, the second telescopic section 30 is telescopically connected to the first telescopic section 20, the third telescopic section 40 is telescopically connected to the second telescopic section 30, and the fourth telescopic section 50 is telescopically connected to the third telescopic section 40. The upper end of the fourth telescopic section 50 is connected to a connecting component 52, and the upper end of the connecting component 52 is provided with a mounting screw groove 521. A component connector 60 is threadedly connected to the mounting screw groove 521, and a connecting stud 61 is provided in the middle of the component connector 60. The carbon fiber multi-stage telescopic selfie stick of this utility model has a clear hierarchical structure and good telescopic stability. The threaded locking mechanism realizes reliable fixation of each stage, making it convenient for users to carry and store. The connecting stud allows for detachable connection with the device, thereby realizing multi-scene and multi-purpose shooting functions.
Claims
1. A carbon fiber multi-stage telescopic selfie stick, characterized in that, It includes a telescopic main rod (10), a first telescopic section (20), a second telescopic section (30), a third telescopic section (40), and a fourth telescopic section (50). The first telescopic section (20) is telescopically connected to the telescopic main rod (10), the second telescopic section (30) is telescopically connected to the first telescopic section (20), the third telescopic section (40) is telescopically connected to the second telescopic section (30), and the fourth telescopic section (50) is telescopically connected to the third telescopic section (40). The upper end of the fourth telescopic section (50) is connected to a connecting component (52). The upper end of the connecting component (52) is provided with a mounting screw groove (521). The mounting screw groove (521) is threadedly connected to a component connector (60). The middle part of the component connector (60) is provided with a connecting stud (61).
2. The carbon fiber multi-stage telescopic selfie stick according to claim 1, characterized in that, The upper end of the telescopic main rod (10) is connected to a first locking component (11), and the lower end of the first telescopic joint (20) is provided with a first locking screw head (21). The upper inner part of the first locking component (11) is provided with a first locking screw groove (111) that is adapted to the first locking screw head (21). When the first telescopic joint (20) extends along the telescopic main rod (10), the first locking component (11) is rotated so that the first locking screw head (21) and the first locking screw groove (111) form a threaded connection, thereby realizing the locking and fixing of the first telescopic joint (20).
3. The carbon fiber multi-stage telescopic selfie stick according to claim 2, characterized in that, The upper end of the first telescopic joint (20) is connected to a second locking component (22), and the lower end of the second telescopic joint (30) is provided with a second locking screw head (31). The upper inner part of the second locking component (22) is provided with a second locking screw groove (221) that is adapted to the second locking screw head (31). When the second telescopic joint (30) extends along the first telescopic joint (20), the second locking component (22) is rotated so that the second locking screw head (31) and the second locking screw groove (221) form a threaded connection, thereby realizing the locking and fixing of the second telescopic joint (30).
4. The carbon fiber multi-stage telescopic selfie stick according to claim 3, characterized in that, The upper end of the second telescopic joint (30) is connected to a third locking component (32), and the lower end of the third telescopic joint (40) is provided with a third locking screw head (41). The upper inner part of the third locking component (32) is provided with a third locking screw groove (321) that is adapted to the third locking screw head (41). When the third telescopic joint (40) extends along the second telescopic joint (30), the third locking component (32) is rotated so that the third locking screw head (41) and the third locking screw groove (321) form a threaded connection, thereby realizing the locking and fixing of the third telescopic joint (40).
5. The carbon fiber multi-stage telescopic selfie stick according to claim 4, characterized in that, The upper end of the third telescopic joint (40) is connected to a fourth locking component (42), and the lower end of the fourth telescopic joint (50) is provided with a fourth locking screw head (51). The upper inner part of the fourth locking component (42) is provided with a fourth locking screw groove (421) that is adapted to the fourth locking screw head (51). When the fourth telescopic joint (50) extends along the third telescopic joint (40), the fourth locking component (42) is rotated so that the fourth locking screw head (51) and the fourth locking screw groove (421) form a threaded connection, thereby realizing the locking and fixing of the fourth telescopic joint (50).
6. The carbon fiber multi-stage telescopic selfie stick according to claim 1, characterized in that, The lower end of the telescopic main rod (10) is provided with a rear cover connecting part (12), and the outer side of the rear cover connecting part (12) is connected with a rear end cover (13).
7. The carbon fiber multi-stage telescopic selfie stick according to claim 1, characterized in that, The telescopic main rod (10), the first telescopic joint (20), the second telescopic joint (30), the third telescopic joint (40) and the fourth telescopic joint (50) are all made of carbon fiber material.