A scooter equipped with a light strip

CN224645016UActive Publication Date: 2026-08-18YONGKANG QIBU TECH CO LTD
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Patent Information

Application Number
CN202522190354.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-16
Publication Date
2026-08-18
Estimated Expiration
2035-10-16

AI Technical Summary

Technical Problem

[0004]在上述技术方案中,通过在立杆上设置灯带的方式增加滑板车在夜间的可察觉度,然而上述技术方案中,通过粘贴安装的方式固定第一灯带,由于灯带与立杆内壁的粘贴接触面积有限,导致灯带在长期振动的使用环境下,易出现胶层老化和开胶脱落,影响灯带的固定可靠性,一旦部分灯珠损坏,需要更换整条灯带,此时由于粘贴固定的可靠性受胶粘剂性能及粘接面清洁度限制,而残留的老化胶层影响灯带粘接后的结构稳定性,导致灯带的结构可靠性与可维护性方面存在明显不足

Benefits of technology

[0028] The radial force generated between the front and rear baffles holds the light-emitting components firmly inside the upright, and the waist-shaped holes prevent the light-emitting components from loosening. This allows the light-emitting strip, which is a consumable material, to be maintained in a quick-release manner, ensuring the structural reliability and maintainability of the light-emitting strip.

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Abstract

The utility model discloses a kind of scooters equipped with light strip, including the slide of below and the vertical rod of the front side of the slide, the slide downside and the vertical rod downside are equipped with driving wheel, the vertical rod is equipped with the light emitting component along its length direction and the vertical rod axial direction same direction, the light emitting component includes the front baffle of by light strip cover composition, light emitting light strip and back baffle, the vertical rod is in and is equipped with the waist type hole for being embedded with the light strip cover, the back baffle is along radial convex and is in close contact with the vertical rod inner wall and the light emitting component is tightly supported in the vertical rod in.The utility model has the advantages that the structural reliability and maintainability of light emitting light strip can be guaranteed.
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Description

Technical Field

[0001] This utility model belongs to the field of scooter technology, and in particular relates to a scooter equipped with a light strip. Background Technology

[0002] When scooters are driven at night or in low light conditions, their compact structure and small visual area make them difficult for other road users (such as drivers of motor vehicles and pedestrians) to effectively identify them, which can easily lead to traffic accidents. Therefore, improving the visibility of scooters at night can serve as an optical warning, thereby increasing their visibility at night and ensuring driving safety.

[0003] Chinese patent application No. 202221611838.0 discloses a light-emitting tube structure for a scooter, including a light-transmitting tube; a first light strip pasted on the inner wall of the light-transmitting tube; and a power connection line connected to the first light strip; the light-transmitting tube is used to be mounted on the scooter's upright, and the power connection line is used to connect to the scooter's battery; the inner side of the light-transmitting tube has an inner protrusion for pasting the first light strip thereon so that the first light strip faces the front of the scooter.

[0004] In the above technical solution, the visibility of the scooter at night is increased by setting light strips on the pole. However, in the above technical solution, the first light strip is fixed by adhesive installation. Due to the limited adhesive contact area between the light strip and the inner wall of the pole, the adhesive layer of the light strip is prone to aging and peeling off under long-term vibration, which affects the fixing reliability of the light strip. Once some light beads are damaged, the entire light strip needs to be replaced. At this time, the reliability of adhesive fixing is limited by the performance of the adhesive and the cleanliness of the bonding surface. The residual aged adhesive layer affects the structural stability of the light strip after bonding, resulting in obvious deficiencies in the structural reliability and maintainability of the light strip. Summary of the Invention

[0005] To address the shortcomings of existing technologies, a scooter equipped with LED strip lights is provided.

[0006] This utility model is achieved using the following technical solution:

[0007] A scooter equipped with a light strip includes a skateboard located below and a pole located at the front of the skateboard. Drive wheels are provided on the lower side of the skateboard and the lower side of the pole. A light-emitting component is provided inside the pole along its length direction and in the same direction as the axial direction of the pole. The light-emitting component includes a front baffle composed of a light strip cover, a light strip, and a rear baffle. An oblong hole is provided inside the pole for fitting with the light strip cover. The rear baffle protrudes radially and abuts against the inner wall of the pole, supporting the light-emitting component tightly inside the pole.

[0008] The front and rear baffles form a shell-shaped structure that wraps around and protects the outside of the light strip. Because the light strip cover fits into the waist-shaped hole, the light strip cover cannot slide along the axis of the pole after being pressured by the rear baffle, thus preventing the light-emitting components from loosening and falling off. This allows the light strip to maintain structural stability even under long-term vibration.

[0009] Preferably, the cross-sectional shapes of the front baffle and the rear baffle are combined to form a U-shape, and the contact surfaces between the front baffle and the inner wall of the upright and the rear baffle and the inner wall of the upright are both mutually fitting arc-shaped surfaces.

[0010] Compared to the edges of the front and rear baffles, which are the parts that contact the inner wall of the upright, the curved surfaces of the front and rear baffles can increase the contact area when they abut against the inner wall of the upright, thereby increasing the friction between them.

[0011] Preferably, the light strip cover has a light-transmitting part that protrudes radially outward at the center line position, the light-transmitting part is embedded in the waist-shaped hole, and the end of the light strip cover near the rear baffle has symmetrically outwardly projecting baffles.

[0012] The light-transmitting part is designed to protect the light strip and prevent it from obstructing the light.

[0013] Preferably, the rear baffle is arranged opposite to the light strip cover, and the center line of the rear baffle is provided with an arc-shaped part, and the top of the arc-shaped part is provided with a protrusion that protrudes radially outward, the protrusion being used to abut against the inner wall of the upright.

[0014] After the rear baffle is installed, the arc-shaped part undergoes elastic deformation, which in turn tends to continuously recover its deformation. This allows its reaction force to act on the rear baffle to hold the front baffle tightly against the inside of the upright.

[0015] Compared to the flat part, the curved part can increase its own structural strength, thereby increasing the reaction force generated after the rear baffle undergoes elastic deformation, and thus increasing the structural stability of the light-emitting component during use.

[0016] Preferably, the rear baffle has a stepped portion that wraps around the outside of the baffle at one end near the baffle edge. The horizontal section of the stepped portion abuts against the baffle edge and forms a relatively parallel abutting plane. The vertical section of the stepped portion is located on both sides of the baffle edge, thereby ensuring the structural stability of the front baffle and the rear baffle after they abut against each other.

[0017] Preferably, the vertical section of the step is provided with a limiting buckle for engaging with the guard edge, thereby preventing a gap from forming between the front baffle and the rear baffle through the cooperation of the guard edge and the limiting buckle, thus avoiding the front baffle and the rear baffle from becoming loose.

[0018] Preferably, the outer surface of the protrusion is provided with a plurality of extensions arranged in an array along the length direction. The extensions wrap around the outside of the protrusion, thereby further reducing the gap between the rear baffle and the inner wall of the upright, thereby increasing the supporting force of the rear baffle on the front baffle.

[0019] The extension can be an integrally formed extension structure with the protrusion, or it can be a separate structure that is separate from the protrusion and clamped relative to it, such as a rubber part.

[0020] The extension can be a rib-shaped structure, such as an anti-slip strip, or a full-coverage structure formed by an anti-slip sleeve.

[0021] Preferably, the front baffle and the rear baffle are wedge-shaped, with the two ends of the front baffle gradually elongating from top to bottom and the two ends of the rear baffle gradually shortening from top to bottom.

[0022] When the rear baffle slides downward relative to the front baffle, a component force is generated between the front baffle and the rear baffle in the radial direction of the upright. This component force further increases the squeezing force and supporting force exerted by the rear baffle on the front baffle, thereby preventing the rear baffle from sliding relative to the front baffle, realizing the continuous self-locking of the rear baffle, and ensuring the structural stability of the rear baffle.

[0023] Preferably, the upper end of the front baffle is provided with a limiting block, which can limit the lower stop point of the sliding stroke of the rear baffle when the front baffle and the rear baffle slide relative to each other along the length direction.

[0024] The light-transmitting part of the front baffle and the limiting block together support the front baffle in the length direction, thereby ensuring the structural stability of the front baffle and preventing the front baffle from moving axially relative to the upright.

[0025] Preferably, at least one end of the front baffle and the rear baffle along the length direction is provided with a fixing part, and the fixing parts of the front baffle and the rear baffle are stacked and fixed by fastener threads, and the light strip is fixed to the front baffle by adhesive.

[0026] By placing the light strip between the front and rear baffles, the installation of the light-emitting components is facilitated while ensuring the structural reliability and maintainability of the light-emitting components.

[0027] Compared with the prior art, the beneficial effects of this utility model are:

[0028] The radial force generated between the front and rear baffles holds the light-emitting components firmly inside the upright, and the waist-shaped holes prevent the light-emitting components from loosening. This allows the light-emitting strip, which is a consumable material, to be maintained in a quick-release manner, ensuring the structural reliability and maintainability of the light-emitting strip. Attached Figure Description

[0029] Figure 1 This is a schematic diagram of the overall structure of a scooter equipped with a light strip according to the present invention;

[0030] Figure 2 This is a schematic diagram of the exploded structure of this utility model;

[0031] Figure 3 for Figure 2 Enlarged structural diagram at point A;

[0032] Figure 4 for Figure 2 A structural diagram from another angle in the same state;

[0033] Figure 5 for Figure 2 A schematic diagram of the structure viewed from the front in this state;

[0034] Figure 6 This is a cross-sectional structural diagram of the central support pole of this utility model;

[0035] Figure 7 for Figure 6 Enlarged schematic diagram of the structure at point B.

[0036] Reference numerals: 1. Skateboard; 2. Upright pole; 21. Hollow tube structure; 22. Waist-shaped hole; 23. Front baffle; 230. Light strip cover; 231. Light-transmitting part; 232. Edge guard; 233. Limiting block; 24. Illuminated light strip; 25. Rear baffle; 251. Arc-shaped part; 252. Protrusion; 253. Extension; 254. Stepped part; 2541. Horizontal section; 2542. Vertical section; 2543. Limiting buckle; 26. Arc-shaped surface; 27. Fixing part; 3. Drive wheel. Detailed Implementation

[0037] The present invention will now be further described with reference to the accompanying drawings and specific embodiments.

[0038] like Figures 1 to 7 As shown, this embodiment discloses a scooter equipped with a light strip, including a skateboard 1 located at the bottom and a pole 2 located at the front of the skateboard 1. Drive wheels 3 are provided on the lower side of the skateboard 1 and the lower side of the pole 2. A light-emitting component is provided inside the pole 2 along its length direction and in the same direction as the axial direction of the pole 2. The pole 2 is a hollow tube structure 21.

[0039] The light-emitting component includes a front baffle 23 composed of a lamp cover 230, a light-emitting strip 24, and a rear baffle 25. The light-emitting strip 24 is located between the front baffle 23 and the rear baffle 25. The upright 2 is provided with a power supply component for supplying power to the light-emitting strip 24. The power supply component includes a power supply unit and wires with the same structure as in the prior art, and the electrical connection between them is the same as in the prior art. The cross-sectional shape of the front baffle 23 and the rear baffle 25 is combined to form a U-shape. The surfaces of both that contact the inner wall of the upright 2 are arc-shaped surfaces 26 to adapt to the contour of the inner wall of the upright 2 and enhance the stability after contact.

[0040] The upper ends of the front baffle 23 and the rear baffle 25 are provided with fixing parts 27. The fixing parts 27 of the front baffle 23 and the rear baffle 25 are stacked and fixed by fastener threads. The fastener is a fixing screw (not shown in the figure). The light strip 24 is fixed in the front baffle 23 by adhesive.

[0041] The upright 2 has an oblong hole 22 for fitting into the lamp strip cover 230. The lamp strip cover 230 has a light-transmitting part 231 that protrudes radially outward at the center line position. The light-transmitting part 231 is embedded in the oblong hole 22 and is used to transmit light to the outside of the upright 2. The two ends of the lamp strip cover 230 in the width direction are arc-shaped surfaces 26 for contacting the inner wall of the upright 2.

[0042] The lamp cover 230 has symmetrically outwardly extending baffles 232 at one end near the rear baffle 25. To further ensure the stability of the lamp cover 230, the front baffle 23 has symmetrically extending baffles 232 at one end near the rear baffle 25. The rear baffle 25 has a step portion 254 corresponding to the position of the baffle 232. The step portion 254 has a horizontal section 2541 and a vertical section 2542. The horizontal section 2541 abuts against the baffle 232 to form a parallel contact plane, and the vertical section 2542 covers both sides of the baffle 232, thereby limiting it from the width direction of the front baffle 23.

[0043] The rear baffle 25 and the light strip cover 230 are arranged opposite each other. The rear baffle 25 protrudes radially and abuts against the inner wall of the upright 2. An arc-shaped part 251 is provided at the center line of the rear baffle 25. A protrusion 252 protrudes radially outward at the top of the arc of the arc part 251. The protrusion 252 is used to abut against the inner wall of the upright 2.

[0044] The vertical section 2542 of the step 254 is provided with a limiting buckle 2543, which is fastened to the retaining edge 232 and cooperates with the retaining edge 232 to achieve the snap-fit ​​fixation between the front baffle 23 and the rear baffle 25.

[0045] The outer surface of the protrusion 252 is provided with a plurality of extensions 253 arranged in an array along the length direction. The extensions 253 wrap around the outside of the protrusion 252 to form a rib structure arranged along the length direction of the protrusion 252. The extensions 253 are reinforcing ribs integrally formed with the protrusion 252, thereby ensuring the structural strength of the protrusion 252 and further increasing the force between the protrusion 252 and the inner wall of the upright 2, and improving the support stability of the protrusion 252.

[0046] The side end face of the extension 253 away from the front baffle 23 is an arc-shaped surface 26 for contacting the inner wall of the upright 2, which, together with the force of the waist-shaped hole 22 on the light-transmitting part 231, will hold the light-emitting component tightly inside the upright 2.

[0047] like Figure 5 As shown, the front baffle 23 and the rear baffle 25 are wedge-shaped. The two ends of the front baffle 23 gradually extend from top to bottom, thus forming a wedge-shaped structure that is narrow at the top and wide at the bottom. The two ends of the rear baffle 25 gradually shorten from top to bottom, thus forming a wedge-shaped structure that is wide at the top and narrow at the bottom.

[0048] A limiting block 233 is provided at the upper end of the front baffle 23. When the front baffle 23 and the rear baffle 25 slide relative to each other along the length direction, the limiting block 233 can abut against the fixing part 27 at the upper end of the rear baffle 25, thereby limiting the lower stop point of the sliding stroke of the rear baffle 25 and preventing the front baffle 23 from separating from the rear baffle 25 along the length direction.

[0049] During the assembly process, the front baffle 23, the light strip 24 and the rear baffle 25 are pre-assembled through the cooperation between the limiting buckle 2543 and the edge 232. Then, the assembled light-emitting component is placed inside the pole 2, which makes it easy for users to install the light strip 24 in the narrow and long space inside the pole 2, thereby ensuring the maintainability and convenience of the light strip 24.

[0050] First, the light strip 24 is glued to the back of the front baffle 23 near the rear baffle 25 using adhesive, so that the LED beads of the light strip 24 correspond to the light-transmitting part 231. Then, the limiting buckle 2543 of the rear baffle 25 is fastened to the edge 232, thereby realizing the snap-fit ​​fixation between the front baffle 23 and the rear baffle 25. Then, the combined front baffle 23 and rear baffle 25 are placed inside the upright 2. After the light-transmitting part 231 corresponds to the waist-shaped hole 22, the position of the rear baffle 25 is adjusted along the axis of the upright 2 until the limiting buckle 233 abuts against the rear baffle 25, thus completing the installation of the light-emitting component.

[0051] When the rear baffle 25 slides downward relative to the front baffle 23, a component force is generated between the front baffle 23 and the rear baffle 25 in the radial direction of the upright 2. This component force further increases the squeezing force and supporting force exerted by the rear baffle 25 on the front baffle 23, thereby preventing the rear baffle 25 from sliding relative to the front baffle 23, realizing the continuous self-locking of the rear baffle 25, and ensuring the structural stability of the rear baffle 25.

Claims

1. A scooter equipped with a light strip, comprising a lowered skateboard and a vertical pole located at the front of the skateboard, wherein drive wheels are provided on the lower side of the skateboard and the lower side of the vertical pole, characterized in that: The upright is provided with a light-emitting component that is in the same direction as the axial direction of the upright along its length. The light-emitting component includes a front baffle composed of a light strip cover, a light strip, and a rear baffle. The upright has a waist-shaped hole for fitting with the light strip cover. The rear baffle protrudes radially and abuts against the inner wall of the upright, thus supporting the light-emitting component tightly inside the upright.

2. The scooter equipped with a light strip according to claim 1, characterized in that: The cross-sectional shapes of the front baffle and the rear baffle are combined to form a U-shape. The contact surfaces between the front baffle and the inner wall of the upright and the rear baffle and the inner wall of the upright are both mutually fitting arc-shaped surfaces.

3. A scooter equipped with a light strip according to claim 2, characterized in that: The light strip cover has a light-transmitting part that protrudes outward along the center line. The light-transmitting part is embedded in the waist-shaped hole. The end of the light strip cover near the rear baffle has symmetrically outward-projecting baffles.

4. A scooter equipped with a light strip according to claim 3, characterized in that: The rear baffle is positioned opposite to the light strip cover. The rear baffle has an arc-shaped portion at its center line, and the apex of the arc-shaped portion has a protrusion that extends radially outward. The protrusion is used to abut against the inner wall of the upright.

5. A scooter equipped with a light strip according to claim 4, characterized in that: The rear baffle has a stepped portion that wraps around the outside of the baffle at one end near the baffle edge. The horizontal section of the stepped portion abuts against the baffle edge and forms a relatively parallel abutting plane. The vertical section of the stepped portion is located on both sides of the baffle edge.

6. A scooter equipped with a light strip according to claim 5, characterized in that: The vertical section of the step is provided with a limiting buckle for engaging the edge.

7. A scooter equipped with a light strip according to claim 6, characterized in that: The outer surface of the protrusion is provided with a plurality of extensions arranged in an array along the length direction, and the extensions wrap around the outside of the protrusion.

8. A scooter equipped with a light strip according to any one of claims 1-7, characterized in that: The front baffle and the rear baffle are wedge-shaped, with the two ends of the front baffle gradually extending from top to bottom and the two ends of the rear baffle gradually shortening from top to bottom.

9. A scooter equipped with a light strip according to claim 8, characterized in that: A limiting block is provided at the upper end of the front baffle. When the front baffle and the rear baffle slide relative to each other along the length direction, the limiting block can limit the lower stop point of the sliding stroke of the rear baffle.

10. A scooter equipped with a light strip according to claim 9, characterized in that: The front baffle and the rear baffle are provided with a fixing part at at least one end along the length direction. The fixing parts of the front baffle and the rear baffle are stacked and fixed by fastener threads. The light strip is fixed to the front baffle by adhesive.

Citation Information

Patent Citations

  • Luminescent lamp tube structure of scooter

    CN217575442U