Foot support and scooter

By installing a shield on the kickstand mounting bracket of the scooter, the problem of dirt splashing off the front wheel and entering the axle is solved, ensuring the normal use and reliability of the kickstand.

CN223658304UActive Publication Date: 2025-12-12BRIGHTWAY INNOVATION INTELLIGENT TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202520168515.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2025-12-12
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

During operation, dirt kicked up by the front wheel of existing scooters can easily get into the kickstand's pivot point, affecting its normal use and reducing its reliability.

Method used

A shielding part 5211 is provided on the rotating seat 521. The shielding part 5211 of the rotating seat 521 is located on the front side of the rotating part 512. The bottom end of the shielding part 5211 is lower than the rear end of the front wheel mudguard, so as to prevent dirt from entering the rotating part 512 and improve the long-term reliability of the kickstand.

Benefits of technology

It effectively prevents dirt from entering the rotating parts, ensuring the normal use of the foot support and improving its reliability and service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kickstand and a scooter, and relates to the technical field of scooters. The kickstand provided by the utility model is used for being mounted on a frame of the scooter, and the kickstand comprises a kickstand body which comprises a supporting part and a rotating part, and the rotating part is connected to one end of the supporting part; the kickstand mounting frame is used for being connected to a frame; the kickstand mounting frame comprises a rotating seat, the rotating seat is located outside the frame, and the rotating part is rotationally connected to the rotating seat; the rotating seat comprises a shielding part, and the shielding part is arranged on the side, facing the front wheel, of the rotating part in a blocking mode. According to the kickstand, dirt thrown out by the front wheel can be prevented from entering the rotating shaft, and the long-term use reliability of the kickstand is improved.
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Description

Technical Field

[0001] This application relates to the field of scooter technology, and more particularly to a kickstand and a scooter. Background Technology

[0002] Existing scooters often neglect the mud-blocking issue at the kickstand area behind the front wheel. During riding, dirt and grime thrown backward by the front wheel can get into the kickstand's pivot point, which can affect its normal use over time. Summary of the Invention

[0003] This application provides a kickstand and a scooter. The kickstand can prevent dirt thrown off the front wheel from entering the pivot point, thereby improving the reliability of the kickstand for long-term use.

[0004] This application provides a kickstand for mounting to the frame of a scooter. The kickstand includes: a kickstand body, including a support portion and a rotating portion, the rotating portion being connected to one end of the support portion; a kickstand mounting bracket for connecting to the frame; the kickstand mounting bracket includes a rotating seat, the rotating seat being located outside the frame, and the rotating portion being rotatably connected to the rotating seat; wherein the rotating seat includes a blocking portion, the blocking portion being disposed on the side of the rotating portion facing the front wheel.

[0005] The kickstand provided in this application includes a kickstand body and a kickstand mounting bracket. The kickstand body is rotatably connected to the kickstand mounting bracket, which is used to mount to the frame of a scooter. The kickstand body includes a support portion and a rotating portion connected to one end of the support portion. The kickstand mounting bracket includes a rotating seat located outside the frame, and the rotating portion of the kickstand body is rotatably connected to the rotating seat of the kickstand mounting bracket. By providing a shielding portion on the rotating seat, the shielding portion is positioned on the side of the rotating portion facing the front wheel. This way, dirt thrown backward by the front wheel is caught by the shielding portion, preventing dirt from directly entering the rotating portion, thus avoiding dirt affecting the normal use of the kickstand and improving the long-term reliability of the kickstand.

[0006] In one possible implementation, the bottom of the shield is lower than the rear end of the front wheel fender.

[0007] In this way, the shield is at least partially exposed below the front wheel fender. The portion of the dirt thrown out by the front wheel that cannot be caught by the front wheel fender can be caught by the shield, preventing the dirt from directly entering the rotating parts.

[0008] In one possible implementation, the top of the shield is lower than the rear end of the front wheel fender.

[0009] In this way, the shielding part of the rotating seat is completely located under the front wheel fender, and the mud protection of the rotating part of the kickstand body is entirely achieved by the shielding part. The shielding part can more fully play its mud-blocking role, providing reliable protection for the normal use of the kickstand.

[0010] In one possible implementation, the rotating seat further includes a fixing part, which is connected to both sides of the blocking part, and the rotating part is rotatably connected to the fixing part.

[0011] In this way, the foot support mounting bracket can be rotatably connected to the rotating part of the foot support body through the fixed part, thereby connecting the foot support body and the foot support mounting bracket, and allowing the foot support body to rotate relative to the foot support mounting bracket.

[0012] In one possible implementation, the support includes a connecting part and two support legs, the connecting part being connected between the two support legs, and the two support legs being located on opposite sides of the frame; wherein, a rotating part is connected to the connecting part.

[0013] In this way, the two support legs support the left and right sides of the frame respectively. The forces transmitted from the ground to the frame through the two support legs are balanced, which helps the scooter maintain its overall balance. Furthermore, the two support legs support each other, preventing the scooter from wobbling or tipping over, thus improving the overall stability of the scooter.

[0014] By incorporating a connecting portion between the two support legs, which occupies at least a portion of the space in the width direction of the frame, the end of the support leg closest to the rotating part can be offset to the same side of the frame. This allows the support leg to rest more upright on the ground, providing better support for the entire scooter, and also increasing its reliability and lifespan.

[0015] In one possible implementation, the included angle between the support leg and the connecting part is >90° and ≤120°.

[0016] In this way, from the end where the support leg is connected to the connecting part to the free end of the support leg, the support leg is slightly tilted towards the side of the pedal, and the support leg as a whole maintains an upright posture on the ground, thus providing better support.

[0017] In one possible implementation, the shielding part is integrally formed on the rotating base, or the shielding part is integrally connected to the rotating base.

[0018] In one possible implementation, the kickstand mounting bracket further includes a mounting base connected to the top of the swivel base and for mounting into a mounting cavity of the frame.

[0019] In this way, the frame provides support for the kickstand mount, making the connection between the kickstand mount and the pedals more reliable and increasing the installation strength of the kickstand mount. Furthermore, the mount can be secured within the frame simply by the mutual restraint between the mount and the frame. The assembly method for the kickstand mount and the frame is simpler, improving assembly efficiency and facilitating maintenance and replacement.

[0020] In one possible implementation, the mounting base includes a first mounting portion configured to engage within a mounting cavity.

[0021] In this way, the first mounting part of the mounting base is engaged in the mounting cavity, so as to position the mounting base and fix it in the mounting cavity.

[0022] In one possible implementation, the top surface of the shield protrudes from the side surface of the first mounting portion facing the front wheel.

[0023] In this way, the top of the shield extends towards the mounting base, and the top of the shield is located within the thickness space of the pedal. The shield and the pedal can work together to position the foot support mounting bracket, further improving the positioning accuracy of the foot support mounting bracket.

[0024] In one possible implementation, the mounting base further includes a second mounting portion connected to the side of the first mounting portion away from the rotating seat, and a gap exists between the second mounting portion and the cavity wall of the mounting cavity.

[0025] In this way, the gap between the second mounting part and the cavity wall of the mounting cavity forms an operating space, which makes it easy for operating tools or hands to enter the gap to operate the second mounting part and remove the foot support mounting bracket from the mounting cavity.

[0026] Another aspect of this application provides a scooter, including a frame and the aforementioned kickstand, the kickstand being mounted on the frame.

[0027] The scooter provided in this application, having included the aforementioned kickstand, possesses all the technical effects of a kickstand, which will not be elaborated here.

[0028] In one possible implementation, the bottom surface of the frame has a receiving portion, which is at least located at the front end of the frame and recessed towards the interior of the frame; the swivel seat of the foot support is located in the receiving portion, and when the foot support is in the retracted state, the foot support is completely housed within the receiving portion.

[0029] In this way, the kickstand can be completely housed within the recessed compartment when folded, without taking up any extra thickness space. The overall thickness space occupied by the pedals and kickstand is smaller, resulting in a cleaner and more streamlined appearance for the scooter. Furthermore, with the kickstand housed in the recessed compartment, even if the scooter tips over due to external impacts, the pedals can protect the kickstand, preventing it from colliding or scratching with the ground or walls, thus ensuring the long-term reliability of the kickstand.

[0030] In one possible implementation, the receiving portion extends to the edge of the bottom surface of the frame.

[0031] In this way, the receiving part is connected to the side wall of the pedal, which reduces the restrictions on the structure and size of the kickstand. When the kickstand is stored in the receiving part, it can also extend to the outside of the pedal. As a result, the extension length or volume of the kickstand can be increased to enhance its structural strength, increase the contact area between the kickstand and the ground, and provide better support for the entire scooter.

[0032] In one possible implementation, the frame includes a pedal body and a front shell, with the front shell covering the front port of the pedal body; the front shell and the pedal frame body together form a mounting cavity, and the footrest mounting seat is installed in the mounting cavity.

[0033] In this way, the mounting base of the foot support bracket can be inserted into the foot pedal body from the front port, and then the front port of the foot pedal body is sealed by the front shell, thus securing the mounting base of the foot support bracket inside the foot pedal. This facilitates the assembly of the mounting base of the foot support bracket into the foot pedal, and the mounting base can be secured and fixed by the foot pedal body and the front shell, ensuring that the foot support bracket is reliably fixed and accurately positioned.

[0034] In one possible implementation, the pedal body has a mounting groove with the opening of the mounting groove facing the front shell, and the front shell and the mounting groove together form a mounting cavity.

[0035] In this way, the left and right outer walls of the mounting base can be secured by the left and right side walls of the mounting groove. Alternatively, the front and rear outer walls of the mounting base can be secured by the side wall of the mounting groove facing away from the front shell and the front shell itself. Furthermore, the mounting base is limited on all four sides by the pedal, thus securing it within the pedal and ensuring the positioning accuracy of the mounting base.

[0036] In one possible implementation, a positioning notch is provided at the bottom of the front shell, and the top of the foot support's shielding part is inserted into the positioning notch.

[0037] In this way, the positioning notch in the front shell and the shielding part of the foot support bracket work together to position the front shell and the foot support bracket. The mounting groove inside the pedal body, the front shell, and the foot support bracket work together to position the foot support bracket, which can further improve the positioning accuracy of the foot support bracket and improve the stability of the foot support for the entire scooter.

[0038] In one possible implementation, the footrest's shield is integrally formed or separately connected to the footrest's rotating base, or the footrest's shield is integrally formed or separately connected to the frame. Attached Figure Description

[0039] To more clearly illustrate the technical solutions in the embodiments of this application 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 some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0040] Figure 1 This is a schematic diagram of the structure of the scooter provided in an embodiment of this application;

[0041] Figure 2 A partial structural diagram of the scooter provided in this application embodiment when the kickstand is in a supporting posture;

[0042] Figure 3 A partial structural diagram of the scooter provided in this application embodiment when the kickstand is in a stowed position;

[0043] Figure 4 A schematic diagram of the foot support provided in an embodiment of this application;

[0044] Figure 5 This is a structural schematic diagram of the foot support provided in an embodiment of this application from another perspective;

[0045] Figure 6 This is an exploded structural diagram of the foot support provided in the embodiments of this application;

[0046] Figure 7 This is a partial exploded view of the scooter provided in an embodiment of this application;

[0047] Figure 8 This is a partial internal structure diagram of a scooter provided in an embodiment of this application;

[0048] Figure 9 The scooter provided in the embodiments of this application Figure 8 A partial sectional view of line AA in the middle.

[0049] Explanation of reference numerals in the attached figures:

[0050] 100-frame;

[0051] 110 - Foot pedal; 120 - Front frame; 130 - Front connecting frame;

[0052] 111-Mounting cavity; 112-Pedal body; 113-Front shell;

[0053] 1101 - Receiving part; 1111 - First cavity; 1112 - Second cavity; 1113 - Limiting wall; 1121 - Mounting groove; 1131 - Positioning notch;

[0054] 200 - Front wheel assembly;

[0055] 210 - Front wheel; 220 - Front wheel mudguard;

[0056] 300 - Rear wheel assembly;

[0057] 400-handlebars;

[0058] 500-foot support;

[0059] 510 - Leg support body; 520 - Leg support mounting bracket;

[0060] 511-Support part; 512-Rotating part; 521-Rotating seat; 522-Mounting seat;

[0061] 5111-Support leg; 5112-Connecting part; 5211-Shielding part; 5212-Fixing part; 5221-First mounting part; 5222-Second mounting part. Detailed Implementation

[0062] As described in the background section, existing scooters, such as two-wheeled scooters, often neglect the mud-blocking function of the kickstand located behind the front wheel. During riding, dirt and grime thrown backward by the front wheel can enter the kickstand's pivot point, which can affect its normal operation over time.

[0063] In view of this, this application provides a kickstand and a scooter. The kickstand includes a kickstand body and a kickstand mounting frame. The kickstand body is rotatably connected to the kickstand mounting frame, which is used to mount to the scooter frame. The kickstand body includes a support portion and a rotating portion connected to one end of the support portion. The kickstand mounting frame includes a rotating seat located outside the frame, and the rotating portion of the kickstand body is rotatably connected to the rotating seat of the kickstand mounting frame. By providing a shielding portion on the rotating seat, the shielding portion is positioned on the side of the rotating portion facing the front wheel, and the bottom end of the shielding portion is lower than the rear end of the front wheel fender. In this way, dirt thrown backward by the front wheel is caught by the shielding portion, preventing dirt from directly entering the rotating portion, thus avoiding dirt affecting the normal use of the kickstand and improving the long-term reliability of the kickstand.

[0064] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0065] Figure 1 This is a structural schematic diagram of a scooter provided in an embodiment of this application. (Refer to...) Figure 1As shown, this application embodiment provides a scooter, which can be a two-wheeled scooter, such as an electric two-wheeled scooter.

[0066] The scooter may include a frame 100, a front wheel assembly 200, and a rear wheel assembly 300. The frame 100 is the main support structure of the scooter, providing support for the entire vehicle and a riding space for the user. Both the front wheel assembly 200 and the rear wheel assembly 300 are connected to the bottom of the frame 100, with the front wheel assembly 200 located at the front end of the frame 100 and the rear wheel assembly 300 located at the rear end. At least one of the front wheel assembly 200 and the rear wheel assembly 300 includes a drive wheel; for example, the rear wheel assembly 300 includes a drive wheel that can be driven by a drive motor to rotate, thereby enabling the movement of the entire vehicle.

[0067] The frame 100 may include a footrest 110, a front frame 120, and a front connecting frame 130. The footrest 110 is located near the bottom of the vehicle and can be parallel to the ground, providing a standing space for the user. The front frame 120 is supported on the front side of the vehicle, inclined towards the footrest 110 and extending away from the ground, providing support for the user to maintain balance and control movement. The front connecting frame 130 connects the front end of the footrest 110 and the front frame 120, providing support between the front frame 120 and the footrest 110, thus achieving overall connection and mutual support of the frame 100.

[0068] Continue to refer to Figure 1 The front frame 120 is equipped with a handlebar 400 at its top. By holding the handlebar 400, the user can maintain balance while standing on the footboard 110 and control the direction of travel of the scooter. The front wheel assembly 200 can rotate relative to the front frame 120, and the handlebar 400 can be connected to the front wheel assembly 200 for transmission, so as to change the orientation of the front wheel assembly 200 and control the direction of travel of the scooter.

[0069] A footrest 500 is also installed at the bottom of the footboard 110, which is located near the front wheel assembly 200. When not using the scooter, the footrest 500 supports the entire scooter on the ground, keeping it stationary. The footrest 500 can move relative to the footboard 110 to change its posture, allowing it to meet the requirements of the scooter in different scenarios.

[0070] Figure 2 This is a partial structural diagram of the scooter provided in the embodiments of this application when the kickstand is in a supporting posture. Figure 3 This is a partial structural diagram of the scooter provided in this application embodiment when the kickstand is in a folded position. (Combined with...) Figure 2 and Figure 3As shown, depending on actual usage needs, the footrest 500 can be moved to either a supporting position or a folded position. (Refer to...) Figure 2 As shown, when the kickstand 500 is in the supporting posture, it can support the ground. The friction between the kickstand 500 and the ground, along with the supporting force of the ground on the entire scooter, keeps the scooter stable. (Refer to...) Figure 3 As shown, when the kickstand 500 is in the retracted position, the kickstand 500 is off the ground, releasing the entire scooter and allowing it to move smoothly.

[0071] Based on this, this embodiment also designs a receiving portion 1101 on the bottom surface of the pedal 110 of the frame 100, which is used to house the footrest 500. When the footrest 500 is in a retracted position, the entire footrest 500 can be housed within the receiving portion 1101. The receiving portion 1101 is located at least at the front end of the frame 100, so that it can cover the area where the footrest 500 is located, thus allowing the footrest 500 to be housed within it. Furthermore, the receiving portion 1101 is recessed towards the interior of the pedal 110, so that the footrest 500 can be completely housed within it when in the retracted state, without protruding below the pedal 110.

[0072] By providing an inwardly recessed receiving portion 1101 on the bottom surface of the footrest 110, the foot support 500 can be completely housed within the receiving portion 1101 when in the stored state, without occupying additional thickness space. This results in a smaller overall thickness space occupied by the footrest 110 and foot support 500, leading to a cleaner and more elegant appearance for the scooter. Furthermore, with the foot support 500 housed within the recessed receiving portion 1101, even if the scooter tips over due to external impact, the footrest 110 can protect the foot support 500, preventing it from colliding or scratching with the ground or wall, thus ensuring the long-term reliability of the foot support 500.

[0073] Furthermore, the recessed receiving portion 1101 on the bottom surface of the footboard 110 effectively reduces the volume of the footboard 110, thereby reducing its weight and contributing to the lightweight design of the scooter. The receiving portion 1101 also gives the bottom surface of the footboard 110 a non-planar structure, making its appearance more three-dimensional and enhancing the scooter's aesthetic appeal.

[0074] For example, the receiving portion 1101 provided on the bottom surface of the pedal 110 can extend inward from the outer edge of the pedal 110. Alternatively, the receiving portion 1101 can extend to the edge of the bottom surface of the pedal 110. In this way, the pedal 110 forms a stepped recess in the edge region, which forms the receiving portion 1101, and the foot support 500 is received in the stepped recess.

[0075] By extending the receiving portion 1101 to the outer edge of the pedal 110, the receiving portion 1101 communicates with the side wall of the pedal 110. This is equivalent to an opening in the side wall of the pedal 110, allowing the receiving space of the receiving portion 1101 to extend laterally to the pedal 110. The receiving portion 1101 imposes fewer restrictions on the construction and size of the footrest 500. When the footrest 500 is housed within the receiving portion 1101, it can also extend to the outside of the pedal 110. Therefore, the extension length or volume of the footrest 500 can be increased to enhance its structural strength, increase its contact area with the ground, and provide better support for the entire scooter.

[0076] As for the area where the receiving portion 1101 is located, as mentioned above, the receiving portion 1101 at least covers the front end of the pedal 110 so that it can accommodate the foot support 500 located at the front end of the pedal 110. Based on this, the coverage area of ​​the receiving portion 1101 can be expanded; for example, a ring of receiving portions 1101 can be provided around the circumference of the pedal 110. This improves the overall symmetry of the pedal 110, enhances its appearance, and helps reduce its weight. Alternatively, the receiving portion 1101 can only cover a portion of the circumference of the pedal 110; for example, the receiving portion 1101 can be U-shaped. In this case, the rear part of the pedal 110 can be a flat plate without recesses, resulting in a larger rear space and increased layout space within the pedal 110.

[0077] Figure 4 This is a structural schematic diagram of the foot support provided in an embodiment of this application. Figure 5 This is a structural schematic diagram from another perspective of the foot support provided in an embodiment of this application. (Refer to...) Figure 4 and Figure 5 As shown, the scooter's kickstand 500 may include a kickstand body 510 and a kickstand mounting bracket 520, with one end of the kickstand body 510 connected to the kickstand mounting bracket 520. The kickstand body 510 is the main structure of the kickstand 500, primarily used to provide support. The kickstand mounting bracket 520 mainly serves as the mounting base for the kickstand 500, connecting to the bottom of the footboard 110 to mount the kickstand 500 to the bottom of the footboard 110.

[0078] The foot support mounting bracket 520 can be fixedly connected to the bottom of the pedal 110 to ensure that the foot support 500 can be stably and reliably installed on the pedal 110. The foot support body 510 and the foot support mounting bracket 520 can be rotatably connected so that the foot support body 510 can rotate relative to the pedal 110, realizing the switching of the foot support 500 between the supporting posture and the storage state.

[0079] Figure 6 This is an exploded structural diagram of the foot support provided in an embodiment of this application. (Refer to...) Figure 6As shown, in the foot support 500, the foot support body 510 includes a support portion 511 and a rotating portion 512, with the rotating portion 512 connected to one end of the support portion 511. The foot support body 510 is supported on the ground by the support portion 511, and the foot support body 510 is rotatably connected to the foot support mounting frame 520 through the rotating portion 512, so as to realize the rotation of the foot support body 510 relative to the foot support mounting frame 520.

[0080] For example, the support portion 511 and the rotating portion 512 can be integrally molded structures, and the foot support body 510 is also an integrally molded part. This results in good overall integrity and high structural strength for the foot support body 510. Alternatively, the support portion 511 and the rotating portion 512 can be molded separately and then connected together by bonding, welding, or using fasteners such as screws and bolts to assemble the foot support body 510. This facilitates the design and manufacturing of the foot support body 510 and helps reduce its production cost.

[0081] With the kickstand 500 in the supported position, there is a large angle between the kickstand body 510 and the pedal 110 of the frame 100, and the kickstand body 510 extends from the bottom of the pedal 110 toward the ground (see...). Figure 2 (As shown). The support portion 511 of the kickstand body 510 is supported on the ground, and the rotating portion 512 is located at the top of the support portion 511. With the kickstand 500 in the retracted state, the kickstand body 510 is folded into the pedal 110 of the frame 100, and the bottom surfaces of the kickstand body 510 and the pedal 110 can, for example, be parallel to each other (see...). Figure 3 (As shown). The support part 511 and the rotating part 512 of the foot support body 510 can be in the same horizontal plane. The rotating part 512 is connected to the foot support mounting frame 520, and the support part 511 can be located on one side of the foot support mounting frame 520.

[0082] The support portion 511 of the foot support body 510 includes a support leg 5111. One end of the support leg 5111 is close to the rotating portion 512, and the other end of the support leg 5111 extends away from the rotating portion 512. With the foot support 500 in a supported state as a reference, the support leg 5111 extends from the rotating portion 512 toward the ground, and the foot support body 510 is supported on the ground by the support leg 5111.

[0083] Reference Figure 6As shown, in one embodiment, the support portion 511 of the footrest body 510 may include two support legs 5111, which are located on the left and right sides of the frame 100 in the direction of travel, respectively. For example, the two support legs 5111 are located on the left and right sides of the pedal 110 in the width direction, respectively. When the footrest 500 is in the supported state, the two support legs 5111 support the left and right sides of the frame 100, respectively, and the forces transmitted from the ground to the frame 100 through the two support legs 5111 are balanced.

[0084] In this way, with the support of the footrest 500, the scooter can maintain its overall balance and ensure its stability. Furthermore, when the scooter is subjected to external forces, the two support legs 5111 can also transfer the force to each other, providing mutual support and preventing the scooter from swaying or tipping over, thus improving its stability.

[0085] Based on this, the support portion 511 of the footrest body 510 may further include a connecting portion 5112, which connects between the two support legs 5111. The connecting portion 5112 may extend from the center of the pedal 110 to the left and right sides of the pedal 110, and the two support legs 5111 are respectively connected to the left and right ends of the connecting portion 5112. The connecting portion 5112 may extend horizontally and may be parallel to the bottom surface of the pedal 110; for example, the connecting portion 5112 may extend along the width direction of the pedal 110.

[0086] With this configuration, the connecting part 5112 occupies at least a portion of the space in the width direction of the pedal 110, allowing the end of the support leg 5111 near the rotating part 512 to be offset toward the same side of the frame 100. In the vertical direction of the scooter's travel direction, for example, in the width direction of the pedal 110, the distance between the end of the support leg 5111 connected to the connecting part 5112 and the free end of the support leg 5111 (the end of the support leg 5111 that rests on the ground) can be shortened, allowing the support leg 5111 to rest on the ground in a more upright posture.

[0087] By making the support leg 5111 more upright and firmly planted on the ground, more of the ground's supporting force is transferred to the support leg 5111. The balance between the pressure transmitted to the ground by the support leg 5111 and the supporting force transmitted from the ground to the scooter is improved. This results in better support for the entire scooter from the support leg 5111, as well as higher reliability and a longer lifespan.

[0088] For example, refer to Figure 6As shown, the included angle α between the support leg 5111 and the connecting part 5112 can be greater than or equal to 90° and less than or equal to 120°. That is, the included angle between the support leg 5111 and the connecting part 5112 is between 90° and 120°. Thus, from the end of the support leg 5111 connected to the connecting part 5112 to the free end of the support leg 5111, the support leg 5111 is slightly tilted towards the side of the pedal 110, maintaining an upright posture on the ground, and providing better support. For example, the included angle α between the support leg 5111 and the connecting part 5112 can be 90°, 95°, 100°, 105°, 110°, 115°, or 120°.

[0089] Of course, when it is possible to ensure that the foot support body 510 supports the scooter stably, the support part 511 of the foot support body 510 may only include two support legs 5111. One end of the two support legs 5111 is close to each other and is connected to the rotating part 512. The other end of the two support legs 5111 extends to the left and right sides of the frame 100 respectively.

[0090] Furthermore, the support portion 511 of the footrest body 510 may consist of only one support leg 5111, with one end of the support leg 5111 connected to the rotating portion 512 and the other end of the support leg 5111 resting on the ground. In this case, to ensure that the support leg 5111 provides stable support for the scooter, the width of the support leg 5111 can be increased, the length of the support leg 5111 extending to the left and right sides of the footrest 110 can be increased, and the contact area between the support leg 5111 and the bottom surface can be increased to improve the support performance of the support leg 5111.

[0091] Alternatively, the support portion 511 of the kickstand body 510 can be provided with a connecting portion 5112, and support legs 5111 can be connected to both ends of the connecting portion 5112. Furthermore, one or more additional support legs 5111 can be added between the support legs 5111 on both sides, with these additional support legs 5111 connected to the middle part of the connecting portion 5112. In this way, the support portion 511 of the kickstand body 510 has more contact points with the ground, resulting in a larger contact area and more stable support for the entire scooter.

[0092] Continue to refer to Figure 6 As shown, in the kickstand 500, the kickstand mounting bracket 520 may include a rotating seat 521, which is located outside the frame 100. For example, the rotating seat 521 of the kickstand mounting bracket 520 may be located at the bottom of the pedal 110 and protrude from the bottom surface of the pedal 110. The rotating seat 521 of the kickstand mounting bracket 520 serves as the mounting base for the kickstand body 510, and the rotating part 512 of the kickstand body 510 is rotatably connected to the rotating seat 521 of the kickstand mounting bracket 520, enabling the kickstand body 510 to rotate relative to the frame 100.

[0093] By exposing the rotating seat 521 of the footrest mounting bracket 520 to the bottom of the pedal 110, it facilitates the connection between the rotating part 512 of the footrest body 510 and the rotating seat 521. The rotation space of the rotating part 512 is located outside the bottom of the pedal 110. Sufficient rotation space can be reserved for the rotating part 512 to ensure that the footrest 500 can smoothly switch between the supported state and the stored state, and the movement of the footrest 500 will not affect the layout space inside the pedal 110. On the other hand, since the rotating part 512 of the footrest body 510 is located outside the bottom of the pedal 110, even if the footrest body 510 rotates to be parallel to the bottom surface of the pedal 110, the footrest body 510 can still be stored outside the bottom of the pedal 110. The range of motion of the footrest body 510 is always below the pedal 110, and the pedal 110 will not interfere with the movement of the footrest body 510.

[0094] When the bottom surface of the pedal 110 is provided with a receiving portion 1101, the rotating seat 521 of the foot support mounting bracket 520 can be located in the receiving portion 1101. Taking the receiving portion 1101 as a stepped recess extending to the outer edge of the pedal 110 as an example, the outer edge of the pedal 110 can be used as the positioning base of the foot support mounting bracket 520, and the rotating seat 521 of the foot support mounting bracket 520 can be flush with the front side wall of the pedal 110.

[0095] Specifically, the rotating seat 521 of the kickstand mounting bracket 520 may include a blocking portion 5211, which is located at the front end of the rotating seat 521 and close to the front wheel assembly 200. For example, the blocking portion 5211 is flush with the front sidewall of the pedal 110. The rotating portion 512 of the kickstand body 510 is located behind the blocking portion 5211, on the side of the blocking portion 5211 away from the front wheel assembly 200. With this arrangement, the blocking portion 5211 of the rotating seat 521 can block the rotating portion 512 on the side facing the front wheel assembly 200.

[0096] It should be noted that the front wheel assembly 200 may include a front wheel 210 and a front wheel fender 220, with the front wheel fender 220 covering a portion of the outer periphery of the front wheel 210 (see [reference]). Figure 1(As shown). Typically, the front wheel fender 220 is located above and behind the front wheel 210. The front end of the front wheel fender 220 can be located in the top area of ​​the front wheel 210, and the rear end of the front wheel fender 220 can be located on the rear side of the front wheel 210. In this way, most of the dirt thrown off by the front wheel 210 as it rolls over the bottom surface during scooter riding can be caught by the inner surface of the front wheel fender 220 (the side of the front wheel fender facing the front wheel 210), preventing dirt from splashing onto the frame 100. This prevents dirt from entering the frame 100 from the outside, protecting the internal structure and components of the frame 100 from being affected by dirt. Furthermore, it also reduces dirt adhering to the outer surface of the frame 100, helping to maintain the clean appearance of the frame 100.

[0097] Of course, the front fender 220 cannot catch all the dirt thrown out by the front wheel 210. Some of the dirt thrown out by the front wheel 210 will still splash onto the frame 100 behind the front wheel assembly 200, especially the front part of the foot pedal 110. In other words, compared with other parts of the frame 100, the front part of the foot pedal 110 is most likely to accumulate dirt.

[0098] In this configuration, the rear end of the front wheel mudguard 220 is often higher than the bottom of the kickstand mounting bracket 520 installed at the bottom of the pedal 110. In other words, the rear end of the front wheel mudguard 220 is higher than the bottom of the rotating seat 521 of the kickstand mounting bracket 520 (the end of the rotating seat 521 furthest from the bottom of the pedal 110). Since the front wheel mudguard 220 cannot completely cover the rotating seat 521, the rotating part 512 on the kickstand body 510, which is rotatably connected to the rotating seat 521, also cannot be completely covered by the front wheel mudguard 220. As a result, dirt thrown off by the front wheel 210 easily enters the rotating seat 521 and the rotating part 512, adhering to the pivot point connecting the rotating part 512 and the rotating seat 521. Over time, excessive dirt adhering to the pivot point connecting the rotating part 512 and the rotating seat 521 will affect the rotation performance of the rotating part 512, thereby affecting the normal use of the kickstand 500.

[0099] In this embodiment, a shielding part 5211 is provided on the rotating seat 521 of the kickstand mounting bracket 520. The bottom end of the shielding part 5211 is lower than the rear end of the front wheel fender 220, and the shielding part 5211 is at least partially exposed below the front wheel fender 220. The shielding part 5211 is positioned on the front side of the rotating part 512 of the kickstand body 510, and can shield the pivot connecting the rotating part 512 and the rotating seat 521. In this way, dirt thrown backward by the front wheel 210 is caught by the shielding part 5211, and the dirt adheres to the shielding part 5211, preventing it from directly entering the rotating part 512 or the pivot connecting the rotating part 512 and the rotating seat 521. This avoids dirt affecting the rotation of the rotating part 512, ensuring the normal use of the kickstand 500 and improving the long-term reliability of the kickstand 500.

[0100] Continue to refer to Figure 6 The rotating base 521 of the foot support mounting bracket 520 may further include a fixing part 5212, which is connected to the left and right sides of the shielding part 5211. The foot support mounting bracket 520 can be rotatably connected to the rotating part 512 of the foot support body 510 through the fixing part 5212, thereby connecting the foot support body 510 and the foot support mounting bracket 520 and allowing the foot support body 510 to rotate relative to the foot support mounting bracket 520. For example, fixing holes may be provided on the fixing parts 5212 on both sides of the foot support mounting bracket 520, and through holes may be provided on the rotating part 512 of the foot support body 510. The rotating shaft passes through the fixing holes on the fixing parts 5212 and the through holes on the rotating parts 512, thereby rotatably connecting the foot support body 510 and the foot support mounting bracket 520.

[0101] For example, the fixing part 5212 and the blocking part 5211 can be perpendicular to each other, the blocking part 5211 is parallel to the front end face of the pedal 110 for example, and the fixing part 5212 can extend along the length direction of the pedal 110. In this way, the two fixing parts 5212 are parallel to each other, the pivot connecting the two fixing parts 5212 can extend along the width direction of the pedal 110, and the foot support body 510 can rotate around the width direction of the pedal 110.

[0102] Furthermore, the bottom surface of the shielding part 5211 (the side of the shielding part 5211 away from the bottom surface of the pedal 110) can be flush with the bottom surface of the fixing part 5212. This improves the structural symmetry of the rotating seat 521 of the foot support mounting bracket 520, facilitating the design and manufacturing of the foot support mounting bracket 520. The semi-enclosed structure formed by the shielding part 5211 and the fixing part 5212 better shields the rotating part 512 of the foot support body 510, enhancing the mud-blocking effect of the foot support mounting bracket 520.

[0103] In addition, in this embodiment, the rotating seat 521 of the foot support mounting bracket 520 can be completely located below the front wheel mudguard 220. That is, the top of the rotating seat 521 can be lower than the rear end of the front wheel mudguard 220. Specifically, the top of the shielding portion 5211 of the rotating seat 521 is lower than the rear end of the front wheel mudguard 220, and the shielding portion 5211 of the rotating seat 521 is completely located below the front wheel mudguard 220. The mud protection of the rotating portion 512 of the foot support body 510 is entirely achieved by the shielding portion 5211, which can more fully exert its mud-blocking function and provide reliable protection for the normal use of the foot support 500.

[0104] It should be noted that the blocking part 5211 is located on the front side of the rotating part 512 of the foot support body 510, and the position of the blocking part 5211 corresponds to the position of the rotating seat 521 of the foot support mounting bracket 520. Therefore, in this embodiment, the blocking part 5211 is regarded as part of the rotating seat 521, but this should not be considered as a limitation on the design and connection relationship of the blocking part 5211.

[0105] The shielding part 5211 can be connected to the rotating seat 521. For example, the shielding part 5211 is integrally formed into the rotating seat 521, or the shielding part 5211 is separately connected to the rotating seat 521 by bonding, welding, or fasteners such as screws, bolts, and rivets. The shielding part 5211 can also be connected to the frame 100. Specifically, the shielding part 5211 can be connected to the pedal 110, such as the front shell 113 mentioned later (see...). Figure 7 As shown. The shielding part 5211 can be integrally formed on the pedal 110, or the shielding part 5211 can be separately connected to the pedal 110 by bonding, welding or fasteners such as screws, bolts, and rivets.

[0106] Figure 7 This is a partial exploded view of the scooter provided in an embodiment of this application. Figure 8 This is a partial internal structure diagram of a scooter provided in an embodiment of this application. Figure 9 The scooter provided in the embodiments of this application Figure 8 A partial sectional view of line AA in the middle. Figures 7 to 9 The diagram illustrates a portion of the scooter's structure at the front of the footboard 110.

[0107] Reference Figure 7 and Figure 8 As shown, based on the rotating base 521, the foot support mounting bracket 520 may further include a mounting base 522, which is connected to the top of the rotating base 521. The mounting base 522 can be used to assemble the foot support mounting bracket 520 into the frame 100. For example, the mounting base 522 and the rotating base 521 can be integrally formed, and the foot support mounting bracket 520 is an integrally formed part.

[0108] The pedal 110 of the frame 100 may have a mounting cavity 111, which matches the mounting seat 522 of the kickstand mount 520. The mounting seat 522 of the kickstand mount 520 is installed in the mounting cavity 111 of the pedal 110, thereby mounting the kickstand mount 520 to the pedal 110.

[0109] With this configuration, the mounting cavity 111 inside the pedal 110 accommodates the mounting seat 522 of the foot support mounting bracket 520, and the pedal 110 provides support for the mounting seat 522. The bottom wall of the pedal 110 can counteract the weight of the foot support 500 itself, making the connection between the foot support mounting bracket 520 and the pedal 110 more reliable and the installation strength of the foot support mounting bracket 520 higher.

[0110] Furthermore, the mounting base 522 can be secured within the pedal 110 by mutual locking of the mounting base 522 and the pedal 110 without relying on any connecting structures (e.g., no bolts, screws, fasteners, welding, or adhesive). This simplifies the assembly of the footrest mounting bracket 520 with the frame 100, improving assembly efficiency. It also facilitates the installation and removal of the footrest mounting bracket 520, making it easier to repair and replace.

[0111] Of course, the mounting base 522 of the foot support mounting bracket 520 can also be snapped into the pedal 110, and the foot support mounting bracket 520 and the pedal 110 can be fixedly connected by fasteners, adhesives, welding, or other methods to improve the connection reliability of the foot support mounting bracket 520 and the pedal 110. This embodiment does not limit this.

[0112] Continue to refer to Figure 7 and Figure 8 The pedal 110 may include a pedal body 112 and a front shell 113. The pedal body 112 constitutes the main part of the pedal 110, and the front end of the pedal body 112 may be open to form a front port. The front shell 113 is connected to the front end of the pedal body 112, and the front shell 113 covers the front port of the pedal body 112. Thus, the pedal body 112 and the front shell 113 together form a mounting cavity 111 to realize the mounting cavity 111 for mounting the foot support 500 inside the pedal 110.

[0113] By opening a front port at the front end of the pedal body 112, the mounting base 522 of the foot support bracket 520 can be inserted into the pedal body 112 through the front port. Then, the front port of the pedal body 112 is sealed by the front shell 113, securing the mounting base 522 of the foot support bracket 520 inside the pedal 110. This facilitates the assembly of the mounting base 522 of the foot support bracket 520 into the pedal 110. Furthermore, the mounting base 522 can be securely secured by the pedal body 112 and the front shell 113, ensuring reliable fixation and precise positioning of the foot support bracket 520.

[0114] Reference Figure 7 As shown, a mounting groove 1121 is provided inside the pedal body 112. The mounting groove 1121 can be formed by a mounting shell disposed in the cavity of the pedal body 112. The opening of the mounting groove 1121 faces the front shell 113, and the front shell 113 and the mounting groove 1121 together form a mounting cavity 111. The shape of the mounting groove 1121 can match the shape of the mounting seat 522 of the foot support mounting bracket 520 so that the mounting seat 522 can be locked and fixed in the mounting groove 1121.

[0115] Reference Figure 8 As shown, the left and right outer walls of the mounting base 522 (in the width direction of the pedal 110) can be fixed by the left and right side groove walls of the mounting groove 1121 (in the width direction of the pedal 110). (Refer to...) Figure 9 As shown, the mounting base 522 (in the length direction of the pedal 110) can also be fixed to the front and rear outer walls by means of the mounting groove 1121 on one side wall opposite to the front shell 113 and the front shell 113. In this way, the pedal 110 can limit the mounting base 522 of the foot support mounting bracket 520 on all four sides, so as to fix the mounting base 522 in the pedal 110 and ensure the positioning accuracy of the mounting base 522.

[0116] In addition, since the rotating seat 521 of the foot support mounting bracket 520 is exposed outside the bottom of the pedal 110, while the mounting seat 522 of the foot support mounting bracket 520 is housed inside the pedal 110, and the wall thickness of the front end (front shell 113) of the pedal 110 occupies a certain thickness space, in order to make the front end of the exposed part of the foot support mounting bracket 520 flush with the front wall of the pedal 110, it is necessary to design a step difference between the rotating seat 521 and the mounting seat 522 of the foot support mounting bracket 520.

[0117] Specifically, in the kickstand mounting bracket 520, the front end face of the swivel seat 521 (the side surface of the swivel seat 521 facing the front wheel assembly 200) and the front end face of the mounting base 522 (the side surface of the mounting base 522 facing the front wheel assembly 200) should be staggered. Compared to the front end face of the mounting base 522, the front end face of the swivel seat 521 should be closer to the front wheel assembly 200, and a stepped surface should be formed between the front end face of the swivel seat 521 and the front end face of the mounting base 522 (see...). Figure 4 (As shown). The distance between the front end face of the rotating seat 521 and the front end face of the mounting seat 522 can be greater than or equal to the wall thickness of the front shell 113, so that while the mounting seat 522 is housed in the pedal 110, the front end face of the rotating seat 521 can be flush with the front wall of the pedal 110.

[0118] like Figure 9As shown in the figure, the distance between the front end face of the rotating base 521 and the front end face of the mounting base 522 is greater than the wall thickness of the front shell 113. In this case, there can be a certain gap between the front end face of the mounting base 522 and the front shell 113, which can serve as the assembly gap between the foot support mounting bracket 520 and the front shell 113. Of course, in some examples, the distance between the front end face of the rotating base 521 and the front end face of the mounting base 522 can also be equal to the wall thickness of the front shell 113. In this case, the front end face of the mounting base 522 can be tightly fitted against the front shell 113, with no gap between them.

[0119] A stepped surface is formed between the front end face of the rotating seat 521 and the front end face of the mounting seat 522; that is, a stepped surface is formed between the front end face of the blocking part 5211 and the front end face of the mounting seat 522. Furthermore, in this embodiment, the top end face of the blocking part 5211 may also protrude from the front end face of the mounting seat 522 (see...). Figure 4 (As shown). That is, the top of the shield 5211 extends towards the mounting base 522, and the top of the shield 5211 is located within the thickness space of the pedal 110.

[0120] Reference Figure 7 As shown, the front shell 113 of the pedal 110 can be provided with a positioning recess 1131, which is located at the bottom of the front shell 113. For example, the positioning recess 1131 is located in the middle area of ​​the bottom of the front shell 113. The positioning recess 1131 of the front shell 113 corresponds to the position of the cover portion 5211 of the foot support mounting bracket 520. The positioning recess 1131 avoids the top end of the cover portion 5211, so that the portion of the cover portion 5211 that protrudes on the front end face of the mounting base 522 can be inserted into the positioning recess 1131 of the front shell 113.

[0121] The positioning notch 1131 of the front shell 113 and the blocking part 5211 of the foot support mounting bracket 520 cooperate to position the front shell 113 and the foot support mounting bracket 520. In this way, the mounting groove 1121 inside the pedal body 112 can position the foot support mounting bracket 520, and the front shell 113 and the pedal body 112 can cooperate in positioning. Combined with the cooperative positioning of the front shell 113 and the foot support mounting bracket 520, the positioning accuracy of the foot support mounting bracket 520 can be further improved. Therefore, the foot support mounting bracket 520 can be more firmly and reliably fixed to the pedal 110, and the support stability of the foot support 500 on the entire scooter can also be improved.

[0122] Regarding the specific structural design of the mounting base 522 of the foot support mounting bracket 520, the mounting base 522 may include a first mounting part 5221 (see...). Figure 4 or Figure 5 Correspondingly, the mounting cavity 111 within the pedal 110 may have a first cavity 1111 (see...). Figure 7 The shape and size of the first cavity 1111 match those of the first mounting portion 5221. The first mounting portion 5221 of the mounting base 522 fits precisely into the first cavity 1111 of the mounting cavity 111, thus fixing the mounting base 522 within the mounting cavity 111. Taking the first mounting portion 5221 of the mounting base 522 as a cuboid as an example, the first cavity 1111 of the mounting cavity 111 can also be a cuboid cavity.

[0123] In the planar direction of the pedal 110, the planar dimension of the first mounting portion 5221 can be larger than the planar dimension of the rotating seat 521, and the orthographic projection of the rotating seat 521 on the first mounting portion 5221 can be completely located within the coverage area of ​​the first mounting portion 5221. In this way, when designing the pedal 110, the size of the opening on the bottom surface of the pedal 110 for the rotating seat 521 to pass through can be smaller, and the first mounting portion 5221 can abut against and be supported on the inner bottom wall of the pedal 110.

[0124] The rotating seat 521 of the foot support mounting bracket 520 can be connected to the bottom of the first mounting part 5221, and the top surface of the shielding part 5211 on the rotating seat 521 can protrude from the front surface of the first mounting part 5221.

[0125] Based on this, the mounting base 522 may further include a second mounting portion 5222, which can be connected to the side of the first mounting portion 5221 opposite to the rotating base 521 (see...). Figure 4 or Figure 5 Correspondingly, the mounting cavity 111 within the pedal 110 may also have a second cavity 1112, which is located above the first cavity 1111 and communicates with the first cavity 1111 (see [link]). Figure 7 The second mounting portion 5222 of the mounting base 522 can be accommodated within the second cavity portion 1112 of the mounting cavity 111.

[0126] It should be noted that, since the first mounting portion 5221 of the mounting base 522 and the first cavity portion 1111 of the mounting cavity 111 are matched in shape and size, there is no operable gap between the first mounting portion 5221 and the mounting cavity 111. Even if the mounting base 522 can be successfully installed into the mounting cavity 111, it is not convenient to operate the first mounting portion 5221 to remove the foot support mounting bracket 520 from the mounting cavity 111.

[0127] Therefore, for the mounting base 522 of the foot support bracket 520, the purpose of connecting the second mounting part 5222 to the first mounting part 5221 can be to facilitate the installation and removal of the foot support bracket 520. At this time, the shape and dimensions of the second mounting part 5222 of the mounting base 522 and the shape and dimensions of the second cavity 1112 of the mounting cavity 111 may not match. The internal space of the second cavity 1112 may be larger than the volume of the second mounting part 5222, and there may be a gap between the walls of the second mounting part 5222 and the cavity 1112. This gap can form an operating space, facilitating the entry of tools or hands into the gap to operate the second mounting part 5222 and remove the foot support bracket 520 from the mounting cavity 111.

[0128] For the mounting cavity 111 within the pedal 110, the internal space of the second cavity 1112 can be smaller than that of the first cavity 1111, and the orthographic projection of the second cavity 1112 onto the first cavity 1111 can be completely located within the first cavity 1111. In this way, a limiting wall 1113 is formed between the first cavity 1111 and the second cavity 1112. The limiting wall 1113 can completely confine the first mounting portion 5221 of the foot support mounting bracket 520 within the first cavity 1111, preventing the foot support mounting bracket 520 from moving up and down.

[0129] For example, in the mounting base 522 of the foot support mounting bracket 520, the second mounting portion 5222 can be located at the center of the first mounting portion 5221. The mounting base 522 has good structural symmetry and force balance, which can improve the reliability and service life of the foot support mounting bracket 520. Correspondingly, in the mounting cavity 111 inside the pedal 110, the second cavity 1112 can also be located at the center of the first cavity 1111. In this way, the second mounting portion 5222 is also located in the central area of ​​the second cavity 1112, and a relatively uniform gap is formed on the outer periphery of the second mounting portion 5222, with large gaps on both sides of the second mounting portion 5222 for operation.

[0130] This embodiment does not limit the shape of the second mounting portion 5222 of the mounting base 522 or the specific shape of the second cavity portion 1112 of the mounting cavity 111, as long as there is a gap between the second mounting portion 5222 and the second cavity portion 1112. For example, the second mounting portion 5222 can be cylindrical, and its outer surface is regular and smooth. The second mounting portion 5222 has a higher compatibility with the operating tool, making it easier to remove the foot support mounting bracket 520 using the operating tool.

[0131] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0132] It should be noted that the embodiments referred to in the specification, such as "one embodiment," "embodiment," "exemplary embodiment," and "some embodiments," may include specific features, structures, or characteristics, but not every embodiment necessarily includes that specific feature, structure, or characteristic. Furthermore, such phrases do not necessarily refer to the same embodiment. Moreover, when a specific feature, structure, or characteristic is described in connection with an embodiment, implementing such a feature, structure, or characteristic in conjunction with other embodiments, whether explicitly described or not, is within the knowledge scope of those skilled in the art.

[0133] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A foot support, characterized in that, For mounting to a scooter frame, the kickstand includes: The foot support body includes a support part and a rotating part, wherein the rotating part is connected to one end of the support part; A foot support mounting bracket for connecting to the vehicle frame; the foot support mounting bracket includes a rotating seat located outside the vehicle frame, and a rotating part rotatably connected to the rotating seat; The rotating seat includes a blocking part, which is positioned on the side of the rotating part facing the front wheel.

2. The foot support according to claim 1, characterized in that, The top of the shield is lower than the rear end of the front wheel fender.

3. The foot support according to claim 1, characterized in that, The rotating seat also includes a fixing part, which is connected to both sides of the shielding part, and the rotating part is rotatably connected to the fixing part.

4. The foot support according to any one of claims 1-3, characterized in that, The support includes a connecting part and two support legs. The connecting part is connected between the two support legs, and the two support legs are located on both sides of the frame. The rotating part is connected to the connecting part.

5. The foot support according to any one of claims 1-3, characterized in that, The shielding part is integrally formed on the rotating base, or the shielding part is integrally connected to the rotating base.

6. The foot support according to any one of claims 1-3, characterized in that, The foot support mounting bracket also includes a mounting base, which is connected to the top of the rotating base and is used to install into the mounting cavity of the frame.

7. The foot support according to claim 6, characterized in that, The mounting base includes a first mounting portion configured to engage within the mounting cavity.

8. The foot support according to claim 7, characterized in that, The top surface of the shield protrudes from the side surface of the first mounting portion facing the front wheel.

9. The foot support according to claim 7, characterized in that, The mounting base further includes a second mounting part, which is connected to the side of the first mounting part away from the rotating base, and there is a gap between the second mounting part and the cavity wall of the mounting cavity.

10. A scooter, characterized in that, It includes a frame and a foot support as described in any one of claims 1-9, the foot support being mounted on the frame.

11. The scooter according to claim 10, characterized in that, The bottom surface of the frame has a receiving portion, which is provided at least at the front end of the frame and is recessed toward the interior of the frame; The rotating seat of the foot support is located in the receiving part, and when the foot support is in the storage state, the foot support is completely housed in the receiving part.

12. The scooter according to claim 10, characterized in that, The frame includes a pedal body and a front shell, with the front shell covering the front port of the pedal body; The front shell and the pedal body together form a mounting cavity, and the foot support mounting seat is installed in the mounting cavity.

13. The scooter according to claim 12, characterized in that, The pedal body has a mounting groove inside, the opening of the mounting groove faces the front shell, and the front shell and the mounting groove together form the mounting cavity.

14. The scooter according to claim 12, characterized in that, The bottom of the front shell is provided with a positioning notch, and the top of the cover of the foot support is inserted into the positioning notch.

15. The scooter according to any one of claims 10-14, characterized in that, The shielding part of the foot support is integrally formed or separately connected to the rotating seat of the foot support, or the shielding part of the foot support is integrally formed or separately connected to the frame.