Finger shifting structure and electric scooter

By using fixed belts and clamping components made of flexible materials on the cross handle of the electric scooter, the problem of complex finger dialing structure and inconvenient user adjustment and maintenance in the prior art is solved, and a simple structure, low cost and convenient user finger dialing system is realized.

CN222921719UActive Publication Date: 2025-05-30YADEA TECH GRP CO LTD
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Patent Information

Application Number
CN202421708156.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-05-30
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

The existing electric scooter has complex fingering structure, high manufacturing cost and unsightly, making it difficult for users to adjust and repair it themselves.

Method used

A fixing belt made of flexible material is arranged on the horizontal handle, and a fingering and clamping assembly is installed on the fixing belt. The clamping assembly includes a snap and a buckle ring, which passes through the buckle ring and is snapped into the fixing hole, so that the fixing belt is fixed to the horizontal handle.

Benefits of technology

It realizes the simple structure of the tilting structure, low cost, easy user adjustment and manual disassembly and assembly, reducing the complexity and time of after-sales maintenance and few installation processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of electric scooters, and discloses a finger poking structure and an electric scooter, the finger poking structure comprises a fixing band, a finger poking part and a clamping assembly, the fixing band is made of flexible materials, has certain flexibility, can be bent and wound, is provided with a fixing hole, can be wound on a transverse handle, and is provided with a clamping hole, and the clamping assembly is connected with the finger poking part. The finger poking structure is arranged on the fixing band, the clamping assembly comprises a buckle and a retaining ring, the buckle is arranged at one end of the fixing band, the retaining ring is arranged at the other end of the fixing band, the fixing band is wound on the transverse handlebar in the circumferential direction, and then the buckle penetrates through the retaining ring and is clamped and fixed to the fixing hole, so that the finger poking structure is fixed to the transverse handlebar. A user can conveniently adjust the angle of the finger shifting structure relative to the transverse handle according to needs, manual disassembly and replacement can be achieved without tools, after-sales maintenance is convenient, time and labor are saved, and the number of installation procedures is small.
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Description

Technical Field

[0001] The utility model relates to the technical field of electric scooters, in particular to a finger shifter structure and an electric scooter. Background Art

[0002] An electric scooter is a means of transportation based on a traditional manual skateboard, plus power kits such as a speed regulator finger shifter. It is a new product of skateboarding after the traditional skateboard, and has the characteristics of energy conservation, environmental protection, convenient operation, high energy utilization rate, etc.

[0003] The existing electric scooter is provided with a finger shifter structure on the crossbar. While the user holds the crossbar, by slightly moving the thumb to rotate the finger shifter structure, functions such as accelerating and decelerating the electric scooter are realized. However, the existing finger shifter structure is complex, with high manufacturing costs and poor aesthetics. At the same time, it is inconvenient for users to adjust the finger shifter by themselves, and the disassembly and assembly are troublesome.

[0004] Therefore, there is an urgent need for a finger shifter structure and an electric scooter to solve the above problems. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a finger shifter structure and an electric scooter, and the finger shifter structure solves the problems that it is inconvenient for users to adjust the finger shifter, the disassembly and assembly are troublesome, and the after-sales maintenance is cumbersome.

[0006] In order to solve the above problems existing in the prior art, the utility model adopts the following technical solutions:

[0007] The finger shifter structure includes:

[0008] A fixing band, made of a flexible material, the fixing band is provided with fixing holes, and the fixing band can be wound around the crossbar;

[0009] A finger shifter, the finger shifter is arranged on the fixing band;

[0010] A clamping component, the clamping component includes a buckle and a buckle ring, the buckle is arranged at one end of the fixing band, the buckle ring is arranged at the other end of the fixing band, along the circumferential direction of the crossbar, the buckle can pass through the buckle ring and be clamped in the fixing hole, so that the fixing band is fixed relative to the crossbar.

[0011] Preferably, the number of the fixing holes is multiple, and along the length direction of the fixing band, the multiple fixing holes are spaced and arranged in parallel.

[0012] Preferably, the number of the buckles is two, and along the length direction of the fixing band, the multiple buckles are spaced and arranged in parallel.

[0013] Preferably, the cross-sectional shape of the buckle is oval, and the fixing hole is in a waist-shaped structure.

[0014] Preferably, the longitudinal cross-sectional shape of the buckle is a T-shaped structure. The buckle includes a connecting portion and a clamping portion. The connecting portion is fixedly connected to the fixing belt. The clamping portion and the connecting portion can sequentially pass through the fixing hole, and the clamping portion can abut against the side surface of the fixing belt.

[0015] Preferably, the clamping portion is made of a flexible material.

[0016] Preferably, along the circumferential direction of the fixing belt, a plurality of hard teeth are provided on the side surface of the fixing belt. Along the circumferential direction of the crossbar, a plurality of tooth grooves are provided on the outer periphery of the crossbar. The tooth grooves are engaged with the hard teeth.

[0017] Preferably, the buckle and the buckle ring are integrally formed with the fixing belt.

[0018] Preferably, the finger-operated structure further includes an anti-slip pad, and the anti-slip pad is arranged on the finger-operated part.

[0019] To achieve the above object, the present utility model further provides an electric scooter, which includes a crossbar and the above-mentioned finger-operated structure, and the finger-operated structure is installed on the crossbar.

[0020] The beneficial effects of the present utility model are as follows:

[0021] For the finger-operated structure provided by the present utility model, the fixing belt is made of a flexible material and has a certain flexibility, and can be bent and wound. The fixing belt is provided with a fixing hole, and the fixing belt can be wound around the crossbar. The finger-operated part is arranged on the fixing belt. The clamping assembly includes a buckle and a buckle ring. The buckle is arranged at one end of the fixing belt, and the buckle ring is arranged at the other end of the fixing belt. Along the circumferential direction of the crossbar, the buckle can pass through the buckle ring and be clamped in the fixing hole, so that the fixing belt is fixed relative to the crossbar. The fixing belt is wound around the crossbar along the circumferential direction, and then the buckle passes through the buckle ring and is clamped and fixed in the fixing hole, so that the finger-operated structure is fixed on the crossbar. The finger-operated structure has a simple structure, low cost, and is convenient for users to adjust the angle of the finger-operated structure relative to the crossbar according to their own needs. It can be manually disassembled, assembled and replaced without using tools, and the after-sales maintenance is convenient, time-saving and labor-saving, and the installation process is less.

[0022] The electric scooter provided by the present utility model includes a crossbar and a finger-operated structure, and the finger-operated structure is installed on the crossbar. The fixing belt is wound around the crossbar, and the buckle passes through the buckle ring and is clamped and fixed in the fixing hole, so that the finger-operated structure is fixed on the crossbar of the electric scooter. The structure is simple, the cost is low, and it is convenient for users to adjust the angle of the finger-operated structure relative to the crossbar according to their own needs. It can be manually disassembled, assembled and replaced without using tools, and the finger-operated structure of the electric scooter is convenient for after-sales maintenance, time-saving and labor-saving, and the installation process is less. Description of the Drawings

[0023] Figure 1 Schematic diagram of the finger dial structure and the crossbar provided by the embodiment of the present utility model;

[0024] Figure 2 Exploded view of the finger dial structure and the crossbar provided by the embodiment of the present utility model;

[0025] Figure 3 Cross-sectional view of the finger dial structure and the crossbar provided by the embodiment of the present utility model;

[0026] Figure 4 Schematic diagram of the finger dial structure provided by the embodiment of the present utility model;

[0027] Figure 5 Side view of the finger dial structure provided by the embodiment of the present utility model.

[0028] Reference numerals:

[0029] 100, crossbar; 101, tooth groove;

[0030] 1, fixing band; 11, fixing hole;

[0031] 2, finger dial;

[0032] 3, buckle; 31, connecting part; 32, clamping part;

[0033] 4, buckle ring;

[0034] 5, hard tooth;

[0035] 6, anti-slip pad. Detailed implementation manners

[0036] The present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present utility model, rather than limiting the present utility model. In addition, it should be noted that for the sake of description, only parts related to the present utility model are shown in the accompanying drawings, rather than all the structures.

[0037] In the description of the present utility model, unless otherwise clearly defined and limited, the terms "connected", "connected", and "fixed" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0038] In the present utility model, unless otherwise clearly specified and defined, the first feature being "above" or "below" the second feature may include direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through additional features therebetween. Moreover, the first feature being "above", "over" and "on top of" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the horizontal height of the first feature is higher than that of the second feature. The first feature being "below", "under" and "beneath" the second feature includes the first feature being directly below and obliquely below the second feature, or merely indicating that the horizontal height of the first feature is lower than that of the second feature.

[0039] In the description of this embodiment, the orientation or positional relationships such as "above", "below", "left" and "right" are based on the orientation or positional relationships shown in the drawings. They are only for convenience of description and simplifying the operation, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.

[0040] As Figures 1-5 shown, in this embodiment, the finger-operated structure includes a fixing band 1, a finger-operated lever 2 and a clamping assembly. Among them, the fixing band 1 is made of a flexible material. The fixing band 1 is provided with a fixing hole 11. The fixing band 1 can be wound around the crossbar 100. The finger-operated lever 2 is arranged on the fixing band 1. The clamping assembly includes a buckle 3 and a buckle ring 4. The buckle 3 is arranged at one end of the fixing band 1, and the buckle ring 4 is arranged at the other end of the fixing band 1. Along the circumferential direction of the crossbar 100, the buckle 3 can pass through the buckle ring 4 and be clamped in the fixing hole 11 so that the fixing band 1 is fixed relative to the crossbar 100. Specifically, the fixing band 1 made of a soft rubber material has a certain softness and can be bent and wound. The finger-operated lever 2 for speed regulation protrudes from the fixing band 1. The two ends of the fixing band 1 are respectively provided with the buckle 3 and the buckle ring 4. The fixing band 1 is wound around the crossbar 100 along the circumferential direction. Then, the buckle 3 passes through the buckle ring 4 and is clamped and fixed in the fixing hole 11, so that the finger-operated structure is fixed on the crossbar 100. This finger-operated structure has a simple structure, low manufacturing cost, is convenient for users to adjust the angle of the finger-operated structure relative to the crossbar 100 according to their own needs, can be manually disassembled, assembled and replaced without using tools, is convenient for after-sales maintenance, saves time and effort, and has few installation procedures and low precision requirements for components.

[0041] Furthermore, referring to Figure 4There are multiple fixing holes 11, and multiple fixing holes 11 are arranged at intervals and in parallel along the length direction of the fixing belt 1. Specifically, according to different diameter sizes of the handlebars 100 of different electric scooters, the fixing belt 1 is wound around the handlebar 100 along the circumferential direction, and then the buckle 3 passes through the buckle 4, and the buckle 3 can be selectively clamped and fixed to the corresponding fixing hole 11, so that the hole diameter surrounded by the fixing belt 1 matches the diameter of the handlebar 100, so that the user can adjust according to different sizes and angles of the handlebar 100, and the application range is wide.

[0042] Further, continue to refer to Figure 4 There are two buckles 3, and multiple buckles 3 are arranged in parallel and at intervals along the length direction of the fixing belt 1. Specifically, the fixing belt 1 is wound around the horizontal handle 100 along the circumferential direction, and then multiple buckles 3 pass through the buckle 4 in sequence and snap into the corresponding fixing holes 11, that is, multiple buckles 3 are snapped into the multiple fixing holes 11 one by one, ensuring that the connection between the fixing belt 1 and the horizontal handle 100 is firm, not easy to loosen, and has good fixation.

[0043] Further, continue to refer to Figure 4 The cross-sectional shape of the buckle 3 is elliptical, and the fixing hole 11 is a waist-shaped structure. Specifically, the longitudinal cross-sectional shape of the buckle 3 is a T-shaped structure, and the buckle 3 includes a connecting portion 31 and a clamping portion 32. The connecting portion 31 is fixedly connected to the fixing belt 1, and the clamping portion 32 and the connecting portion 31 can pass through the fixing hole 11 in sequence, and the clamping portion 32 can abut against the side of the fixing belt 1, ensuring that the buckle 3 is fixed relative to the fixing hole 11 without the action of external force, so that the finger shifting structure is always fixedly wound on the horizontal handle 100.

[0044] Further, refer to Figures 2-3 , the clamping part 32 is made of a flexible material. Specifically, the clamping part 32 is an interference fit when passing through the fixing hole 11, that is, the clamping part 32 of the flexible material is squeezed and deformed by the fixing hole 11. After the clamping part 32 passes through the fixing hole 11, the clamping part 32 returns to the initial state and abuts against the side of the fixing belt 1, and the connection is stable. On the contrary, when a certain force is applied to the fixing belt 1, the clamping part 32 first deforms and then returns to the initial state, realizing the separation of the buckle 3 and the fixing hole 11, and the disassembly and assembly can be realized without any tools, which is convenient and quick.

[0045] Further, refer to Figures 1-3, along the circumferential direction of the fixing belt 1, a plurality of hard teeth 5 are provided on the side surface of the fixing belt 1. Along the circumferential direction of the crossbar 100, a plurality of tooth grooves 101 are provided on the outer periphery of the crossbar 100, and the tooth grooves 101 are meshed and connected with the hard teeth 5. Specifically, the fixing belt 1 is made of a soft rubber material, the hard teeth 5 are made of a hard rubber material, and the plurality of hard teeth 5 protrude from the side surface of the fixing belt 1 and are meshed and connected with the tooth grooves 101 opened along the circumferential direction of the crossbar 100, so that the fixing belt 1 can be further locked relative to the crossbar 100. The outer layer of the fixing belt 1 in direct contact with the user is made of a soft rubber material, which has high use comfort and improves the user's handling feel.

[0046] Further, referring to Figure 4 and Figure 5 , both the buckle 3 and the buckle ring 4 are integrally formed with the fixing belt 1. Specifically, the buckle 3, the buckle ring 4, the hard teeth 5, and the finger dial 2 are integrally formed with the fixing belt 1 by injection molding or the like. With modular design, the finger dial structure adopts an integral structure and is made of a material composed of hard rubber and soft rubber. The structure is simple, effectively reducing the waste rate of parts and lowering the production cost.

[0047] Further, referring to Figures 1-3 , the finger dial structure further includes an anti-slip pad 6, and the anti-slip pad 6 is provided on the finger dial 2. Specifically, the anti-slip pad 6 protrudes from the end face of the finger dial 2, increasing the friction between the user's finger and the finger dial 2 and preventing the finger from slipping.

[0048] This embodiment also provides an electric scooter, including a crossbar 100 and a finger dial structure, and the finger dial structure is installed on the crossbar 100. Specifically, the fixing belt 1 is wound around the crossbar 100, and the buckle 3 passes through the buckle ring 4 and is fixedly clamped in the fixing hole 11, so that the finger dial structure is fixed on the crossbar 100 of the electric scooter. The structure is simple, the cost is low, and it is convenient for the user to adjust the angle of the finger dial structure relative to the crossbar 100 according to their own needs. It can be manually disassembled, assembled and replaced without using tools. The after-sales maintenance of the finger dial structure of the electric scooter is convenient, time-saving and labor-saving, and the installation process is less.

[0049] Obviously, the above embodiments of the present invention are only examples for clearly explaining the present invention, and are not intended to limit the implementation manners of the present invention. For those of ordinary skill in the art, various obvious changes, re-adjustments and substitutions can be made without departing from the protection scope of the present invention. It is not necessary and impossible to enumerate all the implementation manners here. Any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the claims of the present invention.

Claims

1. Finger-shift structure, characterized in that: include: A fixing belt (1) is made of a flexible material, the fixing belt (1) is provided with a fixing hole (11), and the fixing belt (1) can be wound around a horizontal handlebar (100); A finger shifter (2), wherein the finger shifter (2) is arranged on the fixing belt (1); A snap-on assembly, the snap-on assembly comprising a snap (3) and a buckle (4), the snap (3) being arranged at one end of the fixing belt (1), the buckle (4) being arranged at the other end of the fixing belt (1), and the snap (3) being able to pass through the buckle (4) and snap into the fixing hole (11) along the circumferential direction of the horizontal handle (100), so that the fixing belt (1) is fixed relative to the horizontal handle (100).

2. The finger shifting structure according to claim 1, characterized in that: There are a plurality of fixing holes (11), and along the length direction of the fixing belt (1), the plurality of fixing holes (11) are arranged at intervals and in parallel.

3. The finger shifting structure according to claim 1, characterized in that: There are two buckles (3), and along the length direction of the fixing belt (1), a plurality of buckles (3) are arranged at intervals and in parallel.

4. The finger shifting structure according to claim 1, characterized in that: The cross-sectional shape of the buckle (3) is elliptical, and the fixing hole (11) is a waist-shaped structure.

5. The finger shifting structure according to claim 1, characterized in that: The buckle (3) has a T-shaped longitudinal section. The buckle (3) comprises a connecting portion (31) and a clamping portion (32). The connecting portion (31) is fixedly connected to the fixing belt (1). The clamping portion (32) and the connecting portion (31) can pass through the fixing hole (11) in sequence, and the clamping portion (32) can abut against the side of the fixing belt (1).

6. The finger shifting structure according to claim 5, characterized in that: The clamping portion (32) is made of a flexible material.

7. The finger shifting structure according to claim 1, characterized in that: Along the circumferential direction of the fixing belt (1), a plurality of hard teeth (5) are arranged on the side surface of the fixing belt (1), and along the circumferential direction of the horizontal handle (100), a plurality of tooth grooves (101) are arranged on the outer periphery of the horizontal handle (100), and the tooth grooves (101) are meshedly connected with the hard teeth (5).

8. The finger shifting structure according to claim 1, characterized in that: The buckle (3) and the buckle ring (4) are both integrally formed with the fixing belt (1).

9. The finger shifting structure according to claim 1, characterized in that: The finger shift structure further comprises an anti-skid pad (6), and the anti-skid pad (6) is arranged on the finger shift (2).

10. An electric scooter, characterized in that: It comprises a horizontal handlebar (100) and a finger shift structure according to any one of claims 1 to 9, wherein the finger shift structure is mounted on the horizontal handlebar (100).