Locking assembly, scooter and vehicle

CN122830867APending Publication Date: 2026-09-29BYD CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510372344.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-09-29

AI Technical Summary

Technical Problem

[0004]本申请的目的在于提供一种锁止组件、滑板车及车辆,旨在解决如何提高滑板车的安装及拆卸效率的问题

Benefits of technology

[0007]同理的,在拆卸滑板车的过程中,通过旋转第一连接件和第二连接件即可使第一限位部和第二限位部分离,以使锁止组件切换至分离状态,拆卸操作简单,效率较高。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122830867A_ABST
    Figure CN122830867A_ABST
Patent Text Reader

Abstract

This invention discloses a locking assembly, a scooter, and a vehicle, relating to the field of transportation technology, and aims to solve the problem of improving the efficiency of scooter installation and disassembly. The locking assembly includes a first connector and a second connector. The first connector has a first limiting portion. The second connector has a second limiting portion. The first and second limiting portions engage or disengage through relative rotation of the first and second connectors, allowing the locking assembly to switch between a locked state and a disengaged state.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

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

[0002] Scooters can be used as a means of transportation and can be installed in the trunk of a car to meet the need for short-distance travel after parking. A scooter includes a scooter body and handlebars. The user steps on the scooter body, which propels the user forward. During movement, the user can hold the handlebars to maintain balance.

[0003] The scooter body and handlebars can be detachably connected, allowing for easy storage in a car trunk during disassembly and convenient use during installation. In existing technologies, the installation and disassembly process of the handlebars and scooter body is complex, time-consuming, and inefficient. Summary of the Invention

[0004] The purpose of this application is to provide a locking component, a scooter, and a vehicle, which aims to solve the problem of how to improve the efficiency of scooter installation and removal.

[0005] In a first aspect, a locking assembly is provided, including a first connector and a second connector. The first connector has a first limiting portion. The second connector has a second limiting portion. The first limiting portion and the second limiting portion engage or disengage through relative rotation of the first connector and the second connector, thereby switching the locking assembly between a locked state and a disengaged state.

[0006] In this embodiment, the first limiting part and the second limiting part can be engaged by rotating the first connecting part and the second connecting part relative to each other, thereby switching the locking component to the locking state. This assembly operation is simple and efficient.

[0007] Similarly, during the disassembly of the scooter, the first and second limiting parts can be separated by rotating the first and second connecting parts, so that the locking assembly can be switched to the disengaged state. The disassembly operation is simple and efficient.

[0008] Optionally, the first connector and the second connector can be rotated after being fitted together to make the first limiting part and the second limiting part engage.

[0009] Optionally, the first limiting portion includes a first limiting protrusion, and the second limiting portion includes a second limiting protrusion. After the first connecting member and the second connecting member are fitted together and rotated, the first limiting protrusion and the second limiting protrusion abut against each other, preventing the first connecting member from separating after axial movement relative to the second connecting member. Alternatively, the first limiting portion includes a first limiting protrusion, and the second limiting portion includes a first limiting groove. After the first connecting member and the second connecting member are fitted together and rotated, the first limiting protrusion is accommodated within the first limiting groove, preventing the first connecting member from separating after axial movement relative to the second connecting member.

[0010] Optionally, the first connector includes a fixing post. The second connector includes a sleeve that mates with the fixing post.

[0011] Optionally, the first limiting portion includes a first limiting protrusion disposed on the outer peripheral surface of the fixing post. The second limiting portion includes a second limiting protrusion disposed on the inner peripheral surface of the sleeve.

[0012] Optionally, the first connector further includes a first clearance portion for clearance over the second limiting portion. The second connector further includes a second clearance portion for clearance over the first limiting portion.

[0013] Optionally, along the circumference of the fixed post, the first limiting protrusion is adjacent to the first clearance portion. The second limiting protrusion is adjacent to the second clearance portion.

[0014] Optionally, the first connector further includes a base connected to one end of the fixed post. Along the axial direction of the fixed post, the projection of the sleeve onto the first connector is at least partially located on the base.

[0015] Optionally, the base has a mounting groove on the side facing the sleeve. The first connector also includes a first elastic element, which is disposed within the mounting groove. When the locking assembly is in the locked state, the first elastic element is elastically supported between the inner wall of the mounting groove and the sleeve.

[0016] Optionally, the locking assembly further includes a limiting member connected to the second connector and engaging with the first connector to limit the second connector from rotating circumferentially relative to the first connector.

[0017] Optionally, the locking state includes a first locking state and a second locking state. When the first limiting part and the second limiting part cooperate and the limiting member is separated from the first connecting member, the locking assembly is in the first locking state. When the first limiting part and the second limiting part cooperate and the limiting member is in a limiting cooperation with the first connecting member, the locking assembly is in the second locking state.

[0018] Optionally, the first connecting member includes a fixing post. The second connecting member includes a sleeve, which is fitted onto the fixing post. The limiting member includes a third limiting protrusion, and the fixing post has a second limiting groove. When the locking assembly is in the second locking state, the third limiting protrusion extends into the second limiting groove.

[0019] Optionally, the third limiting protrusion includes a limiting pin, and the second limiting groove includes a limiting hole. When the locking assembly is in the second locking state, the limiting pin extends into the limiting hole.

[0020] Optionally, the second limiting groove extends radially through the outer surface of the fixing post. The third limiting protrusion is located on the side of the second limiting groove near the outer surface of the fixing post.

[0021] Optionally, the limiting member further includes a sliding portion, which is slidably connected to the sleeve, and a third limiting protrusion is connected to the side of the sliding portion facing the fixed post. The sliding portion can slide along the axial direction of the sleeve, so that the third limiting protrusion extends into or out of the second limiting groove.

[0022] Optionally, the outer wall of the sliding part is provided with a guide groove. The extension direction of the guide groove is consistent with the axial direction of the sleeve. The inner circumferential surface of the sleeve is provided with a guide protrusion. The guide protrusion is accommodated within the guide groove.

[0023] Optionally, the sliding part is provided with a weight reduction hole, which extends through the sliding part along the axial direction of the sleeve.

[0024] Optionally, the sleeve has a mounting port that penetrates the side wall of the sleeve radially. The limiting member also includes a pushing part located outside the sleeve and partially extending into the sleeve through the mounting port, and connecting with the sliding part. The pushing part is movable within the mounting port to drive the sliding part to slide relative to the sleeve.

[0025] Optionally, the pushing part includes a main body and a connecting part. The main body is located outside the sleeve, and an anti-slip structure is provided on the side of the main body facing away from the sleeve. The connecting part is connected to the side of the main body facing the sleeve. The connecting part passes through the mounting port and is connected to the sliding part.

[0026] Optionally, the sliding part also includes a mounting channel with a first opening facing the fixed post and a mounting hole extending radially through the sliding part. The mounting hole corresponds to the mounting opening. The connecting part passes through the mounting opening and the mounting hole in sequence and extends into the mounting channel. The limiting member also includes a fastener. The fastener is located in the mounting channel and passes through the connecting part to connect with the sliding part.

[0027] Optionally, the locking assembly further includes an abutment and a second elastic member. The abutment is fixed to the sleeve and located on the side of the sliding portion opposite to the fixed post. The second elastic member provides elastic support between the sliding portion and the abutment.

[0028] Optionally, the abutment includes an abutment plate and a guide post. The abutment plate is fixed to the sleeve. The guide post is connected to the side of the abutment plate facing the sliding part. The second elastic member has a first guide hole, into which the guide post extends.

[0029] Optionally, the sliding part is provided with a second guide hole on the side facing the abutment plate, and the second elastic member extends at least partially into the second guide hole.

[0030] Optionally, the second elastic element includes a spring.

[0031] Secondly, a scooter is also provided, characterized in that it includes a scooter body, a handlebar, and the aforementioned locking assembly, wherein the handlebar and the scooter body are connected by the locking assembly.

[0032] Optionally, the first connector includes a fixing post. The second connector includes a sleeve that mates with the fixing post. The fixing post is connected to the scooter body, and the sleeve is connected to the handlebars.

[0033] Optionally, the scooter may also include a cover, with a mounting post adapted to connect to either the sleeve or the cover.

[0034] Optionally, the scooter body includes a seat, the seat having a cavity and a second opening communicating with the cavity, and a fixing post disposed in the cavity, partially extending out of the second opening. When the cover is connected to the fixing post, the cover blocks the second opening.

[0035] Optionally, the cover includes a housing, with one surface of the housing facing the fixing post recessed away from the fixing post to form a receiving groove. The housing is fixed to the carrier, and the fixing post portion is located within the receiving groove.

[0036] Optionally, the cover is provided with a first magnetic element. The carrier is provided with a second magnetic element. When the cover is connected to the fixed post, the first magnetic element and the second magnetic element are magnetically connected.

[0037] Optionally, the handle includes a telescopic rod and a grip rod. The telescopic rod connects to the sleeve. The grip rod connects to the telescopic rod. The axis of the grip rod is aligned with the axis of the sleeve.

[0038] Thirdly, a vehicle is provided, including the aforementioned scooter and vehicle body, the vehicle body having a storage space in which the scooter is stored. Attached Figure Description

[0039] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only 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 a scooter provided in an embodiment of this application from one perspective;

[0041] Figure 2 for Figure 1 The diagram shows the structure of the scooter from another perspective.

[0042] Figure 3 for Figure 1 and Figure 2 An exploded view of the locking mechanism in the scooter is shown.

[0043] Figure 4 for Figure 3 A schematic cross-sectional view of the locking assembly is shown.

[0044] Figure 5 for Figure 3 The diagram shows the structure of the second limiting protrusion on the sleeve.

[0045] Figure 6 for Figure 3 The diagram shows the structure of the first limiting groove and the clearance groove on the sleeve;

[0046] Figure 7 for Figure 1 The diagram shown is a structural schematic of the scooter body in the scooter.

[0047] Figure 8 for Figure 7 A schematic cross-sectional view of the scooter body is shown.

[0048] Figure 9 for Figure 7 The diagram shows the structure of the cover.

[0049] Figure 10 This is a schematic diagram of the vehicle structure provided in an embodiment of this application.

[0050] Figure label:

[0051] 1000, Vehicle; 100, Scooter; 10, Scooter body; 101, Seat; 102, Second opening; 20, Handlebar; 201, Telescopic rod; 202, Grip bar; 30, Locking assembly; 1, First connector; 11, Fixing post; 111, Second limiting groove; 12, First limiting part; 122, Limiting protrusion; 14, Base; 121, Mounting slot; 13, First elastic element; 15, First clearance part; 2, Second connector; 21, Sleeve; 22, Second limiting part; 211, First limiting groove; 23, Second clearance part; 212, Clearance groove; 213, Guide protrusion; 214, Mounting port; 215, Second limiting... 215, positioning protrusion; 216, mating section; 217, limiting section; 3, limiting component; 31, third limiting protrusion; 32, sliding part; 321, guide groove; 322, weight reduction hole; 323, installation channel; 324, installation hole; 325, second guide hole; 33, pushing part; 331, main body; 332, connecting part; 34, fastener; 4, abutting component; 41, abutting plate; 42, guide post; 5, second elastic component (5); 40, cover; 401, shell; 402, upper shell; 403, lower shell; 404, receiving groove; 405, first magnetic component; 50, wheel; 200, vehicle body; 201, accommodating space. Detailed Implementation

[0052] In the embodiments of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" and "second" may explicitly or implicitly include one or more of that feature.

[0053] In embodiments of this application, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.

[0054] This application provides a scooter, such as Figure 1 , Figure 2 As shown, Figure 1 This is a schematic diagram of the scooter 100 provided in an embodiment of this application from one perspective. Figure 2 for Figure 1The diagram shows a structural representation of the scooter 100 from another perspective. The scooter 100 includes a scooter body 10 and handlebars 20. A user can step on the scooter body 10, which slides, propelling the user forward. During movement, the user can hold the handlebars 20 to maintain balance.

[0055] In some embodiments, the scooter body 10 includes a seat 101 and a plurality of wheels 50. The seat 101 is used to carry a user. The plurality of wheels 50 are connected to the seat 101, and the rotation of the plurality of wheels 50 can move the seat 101 and the user carried thereon.

[0056] In some examples, the scooter 100 also includes a motor located in the seat 101 or the wheel 50, which drives the wheel 50 to rotate. Thus, the scooter 100 is an electric scooter.

[0057] In some other examples, the scooter 100 may not include a motor, and the multiple wheels 50 are only rotatably connected to the seat 101. The user drives the wheels to rotate by pushing off the ground with their feet. In this case, the scooter 100 is a human-powered scooter.

[0058] The handlebars can be specifically connected to the seat 101 of the scooter body. Of course, the handlebars can also be connected to other parts of the scooter body. The following embodiments are further descriptions based on the handlebars being connected to the seat 101 of the scooter body, and this should not be considered as a special limitation of this application.

[0059] In some embodiments, the handle is detachably connected to the base 101. This allows for easy storage in the car trunk during disassembly, enabling it to be configured as a means of transportation in the trunk to meet short-distance travel needs after parking. It is also convenient to use during installation.

[0060] In some embodiments, such as Figure 1 and Figure 2 As shown, the scooter 100 also includes a locking assembly 30. The locking assembly 30 is used to enable a detachable connection between the handlebars and the seat 101.

[0061] like Figure 3 and Figure 4 As shown, Figure 3 for Figure 1 and Figure 2 The diagram shown is an exploded view of the locking assembly 30 in the scooter 100. Figure 4 for Figure 3 A cross-sectional schematic diagram of the locking component 30 is shown.

[0062] The locking assembly 30 includes a first connector 1 and a second connector 2. The first connector 1 is provided with a first limiting portion 12. Figure 5 As shown, Figure 5 for Figure 3 The diagram shows the structure of the second limiting protrusion 215 on the sleeve 21. The second connector 2 is provided with a second limiting part 22.

[0063] The first limiting part 12 and the second limiting part 22 engage or disengage through the relative rotation of the first connecting member 1 and the second connecting member 2, so that the locking assembly 30 switches between a locked state and a disengaged state.

[0064] In this embodiment, the first limiting part 12 and the second limiting part 22 can be engaged by rotating the first connecting part 1 and the second connecting part 2 relative to each other, thereby switching the locking component 30 to the locking state. This assembly operation is simple and efficient.

[0065] Similarly, during the disassembly of the scooter 100, the first limiting part 12 and the second limiting part 22 can be separated by rotating the first connecting part 1 and the second connecting part 2, so that the locking assembly 30 is switched to the separated state. The disassembly operation is simple and efficient.

[0066] In some embodiments, the first connector 1 and the second connector 2 are fitted together and then rotated to engage the first limiting part 12 and the second limiting part 22. Of course, in other embodiments, the engagement of the first limiting part 12 and the second limiting part 22 can also be achieved through magnetic attraction, adhesive bonding, or other methods.

[0067] The snap-fit ​​design facilitates the engagement of the first limiting part 12 and the second limiting part 22. Furthermore, when rotating the first connecting member 1 and the second connecting member 2 to separate the first limiting part 12 and the second limiting part 22, a large force is not required, thus making it easier to separate the first limiting part 12 and the second limiting part 22.

[0068] In some embodiments, such as Figure 3 , Figure 5 As shown, the first limiting part 12 includes a first limiting protrusion 122, and the second limiting part 22 includes a second limiting protrusion 215.

[0069] After the first connector 1 and the second connector 2 are fitted together and rotated, the first limiting protrusion 122 and the second limiting protrusion 215 abut against each other, preventing the first connector 1 from moving axially relative to the second connector 2 and then separating.

[0070] It is understandable that when the locking assembly is in the locked state, during the separation process along the first connector 1 and the second connector 2, the second limiting protrusion 215 is located behind the first limiting protrusion 122 in the direction of movement of the second connector 2 relative to the first connector 1.

[0071] By abutting against the first limiting protrusion 122 and the second limiting protrusion 215, the movement of the first connecting member 1 and the second connecting member 2 away from each other can be restricted, thereby keeping the locking assembly 30 in a locked state. This method provides good stability and ensures the connection strength between the handle 20 and the scooter body 10.

[0072] In other embodiments, such as Figure 3 , Figure 6 As shown, Figure 6 for Figure 3 The diagram shows the structure of the first limiting groove 211 and the clearance groove 212 on the sleeve 21. The first limiting part 12 includes a first limiting protrusion 122, and the second limiting part 22 includes a first limiting groove 211. After the first connecting member 1 and the second connecting member 2 are fitted together and rotated, the first limiting protrusion 122 can be accommodated in the first limiting groove 211, preventing the first connecting member 1 from separating after axial movement relative to the second connecting member 2.

[0073] When the limiting protrusion 122 is accommodated within the first limiting groove 211, the inner wall of the first limiting groove 211 can limit the limiting protrusion 122, thereby restricting the movement of the limiting protrusion 122. This method also has good stability and can also ensure the connection strength between the handle 20 and the scooter body 10.

[0074] In some other embodiments, the first limiting portion 12 may also include a first limiting groove 211, and the second limiting portion 22 may also include a second limiting protrusion 215. The structural shapes of the first connecting member 1 and the second connecting member 2 can be various, such as cylindrical, block-shaped, rod-shaped, etc.

[0075] In some embodiments, the first connector 1 may include a fixing post 11, and the second connector 2 may include a sleeve 21, which is fitted into the fixing post 11.

[0076] Of course, the first connecting member 1 can also include a sleeve 21, and the second connecting member 2 can include a fixing post 11. Alternatively, both the first connecting member 1 and the second connecting member 2 can be fixing posts 11.

[0077] By engaging the sleeve 21 and the fixing post 11, when one of the sleeve 21 and the fixing post 11 is offset radially, the sleeve 21 and the fixing post 11 will abut against each other to limit the radial offset of the sleeve 21 and the fixing post 11, thereby further improving the stability of the locking assembly 30 and preventing the first connecting member 1 and the second connecting member 2 from separating.

[0078] Based on this, such as Figure 3 , Figure 5 As shown, the first limiting protrusion 122 is provided on the outer peripheral surface of the fixed post 11.

[0079] The second limiting protrusion 215 is provided on the inner circumferential surface of the sleeve 21.

[0080] In this way, it is only necessary to process the first limiting protrusion 122 and the second limiting protrusion 215 on the outer peripheral surface of the fixed column 11 and the inner peripheral surface of the sleeve 21 respectively, so that the first limiting protrusion 122 and the second limiting protrusion 215 can abut against each other. This method has low requirements for the machining accuracy of the first limiting protrusion 122 and the second limiting protrusion 215, and can facilitate the machining of the first limiting protrusion 122 and the second limiting protrusion 215.

[0081] In some embodiments, such as Figure 3 , Figure 5 As shown, the first connector 1 is further provided with a first clearance portion 15, which is used to clearance the second limiting portion 22. The second connector 2 is further provided with a second clearance portion 23, which is used to clearance the first limiting portion 12.

[0082] The first clearance part 15 avoids the second limiting part 22, and the second clearance part 23 avoids the first limiting part 12, thus preventing the first limiting part 12 and the second limiting part 22 from blocking the connection of the first connector 1 and the second connector 2.

[0083] Along the circumference of the fixed post 11, the first limiting protrusion 122 is adjacent to the first clearance portion 15. Along the circumference of the sleeve 21, the second limiting protrusion 215 is adjacent to the second clearance portion 23.

[0084] This makes the structure of the first limiting protrusion 122 and the first clearance part 15 more compact, and also makes the structure of the second limiting protrusion 215 and the second clearance part 23 more compact, thereby improving the integration of the locking assembly 30.

[0085] For example, there may be one first limiting protrusion 122, in which case the first limiting protrusion 122 forms a first clearance portion 15 in the space on opposite sides of the circumference of the fixing post 11. There may be one second limiting protrusion 215 on the sleeve 21, and the second limiting protrusion 215 mates with the first limiting protrusion 122. There may also be multiple second limiting protrusions 215, and one of the multiple second limiting protrusions 215 mates with the first limiting protrusion 122.

[0086] For example, there can be multiple limiting protrusions 122. In this case, the gap between two adjacent limiting protrusions 122 forms a first clearance portion 15, and there can also be multiple first clearance portions 15. There can also be multiple second limiting protrusions 215 on the sleeve 21, and multiple second limiting protrusions 215 cooperate with multiple first limiting protrusions 122. Among them, multiple can be two, three, four, etc.

[0087] In other embodiments, such as Figure 3 , Figure 6 As shown, along the circumference of the fixed post 11, the gap on the side of the first limiting protrusion 122 forms a first clearance portion 15. The second clearance portion 23 is a clearance groove 212, which is provided on the inner circumferential surface of the sleeve 21 and communicates with the first limiting groove 211.

[0088] During the process of sleeve 21 and fixed post 11 being fitted together, part of the side wall of sleeve 21 can move to the side of the first limiting protrusion 122 to prevent the first limiting protrusion 122 from blocking the movement of sleeve 21.

[0089] Furthermore, by opening a relief groove 212 on the inner circumferential surface of the sleeve 21, the first limiting protrusion 122 can be avoided, so as to ensure that the first limiting protrusion 122 can move and be accommodated in the first limiting groove 211, thus ensuring the normal connection between the sleeve 21 and the fixing post 11.

[0090] For example, the number of first limiting protrusions 122 can be one, and correspondingly, the number of clearance grooves 212 and first limiting grooves 211 on the sleeve 21 can also be one.

[0091] For example, there can be multiple first limiting protrusions 122, and correspondingly, there can also be multiple clearance grooves 212 and first limiting recesses 211 on the sleeve 21.

[0092] To facilitate rotation after the limiting protrusion 122 is aligned with the first limiting groove 211, in some embodiments, the first connecting member 1 further includes a base 14, which is connected to one end of the fixing post 11. Along the axial direction of the fixing post 11, the projection of the sleeve 21 on the first connecting member 1 is at least partially located on the base 14.

[0093] In this way, during the process of connecting the fixed post 11 and the sleeve 21, the base 14 can position the sleeve 21. When the sleeve 21 moves too far relative to the fixed post 11, the base 14 will abut against the sleeve 21, thereby restricting the sleeve 21 from moving further, thus positioning the sleeve 21 in the installation position, making it easier for the sleeve 21 and the fixed post 11 to connect.

[0094] Based on this, such as Figure 3 , Figure 4 As shown, the base 14 has a mounting groove 121 on the side facing the sleeve 21.

[0095] The first connector 1 also includes a first elastic element 13. Specifically, the first elastic element 13 can be a soft rubber pad, a spring, etc. The first elastic element 13 is disposed in the mounting groove 121. When the locking assembly 30 is in the locked state, the first elastic element 13 is elastically supported between the inner wall of the mounting groove 121 and the sleeve 21.

[0096] Thus, during the process of sleeve 21 and fixed post 11 fitting together, when sleeve 21 abuts against base 14, the first elastic element 13 can buffer sleeve 21, avoid damage to sleeve 21, reduce wear of sleeve 21 and fixed post 11 when they rotate, and extend the service life of sleeve 21 and fixed post 11.

[0097] In addition, when the locking assembly 30 is in the locked state, because the first elastic member 13 is elastically supported between the inner wall of the mounting groove 121 and the sleeve 21, under the elastic force of the first elastic member 13, the surface of the first limiting protrusion 122 facing the base 14 will abut against the inner wall of the second limiting protrusion 215 facing away from the base 14. This can improve the stability of the sleeve 21 and the fixing post 11.

[0098] To further improve the stability of the connection between the sleeve 21 and the fixed post 11, in some embodiments, such as Figure 3 , Figure 4 As shown, the locking assembly 30 also includes a limiting member 3, which is connected to the second connecting member 2 and engages with the first connecting member 1 to limit the second connecting member 2 from rotating circumferentially relative to the first connecting member 1.

[0099] By engaging the first limiting part 12 and the second limiting part 11, the axial movement of the sleeve 21 relative to the fixed post 11 along the fixed post 11 can be restricted. The limiting member 3 restricts the circumferential rotation of the sleeve 21 relative to the fixed post 11. This ensures a stable engagement between the first limiting part 12 and the second limiting part 11, preventing the sleeve 21 from rotating and separating from the first limiting part 12 and the second limiting part 11, thereby further improving the stability of the sleeve 21 and the fixed post 11 connection.

[0100] In some embodiments, the locking state includes a first locking state and a second locking state.

[0101] When the first limiting part 12 and the second limiting part 12 cooperate and the limiting member 3 is separated from the first connecting member 1, the locking assembly 30 is in the first locking state.

[0102] When the first limiting part 12 and the second limiting part 12 cooperate, and the limiting member 3 cooperates with the first connecting member 1, the locking assembly 30 is in the second locking state.

[0103] When the locking component 30 is in the first locking state, the locking component 30 only cooperates with the first limiting part 12 and the second limiting part 22 to achieve simple locking. When the scooter 100 needs to be used quickly, the first connecting part 1 and the second connecting part 2 can be simply connected first, so that the scooter 100 can be put into use quickly.

[0104] When the locking assembly 30 is in the second locking state, the first connector 1 and the second connector 2 are stably connected, which can ensure the connection strength of the first connector 1 and the second connector 2, thereby ensuring the long-term use of the scooter 100.

[0105] In some embodiments, such as Figure 3 , Figure 4 As shown, the limiting member 3 includes a third limiting protrusion 31, and the fixing post 11 is provided with a second limiting groove 111. When the locking assembly 30 is in the second locking state, the third limiting protrusion 31 extends into the second limiting groove 111. The second limiting groove 111 can restrict the third limiting protrusion 31 from rotating circumferentially along the fixing post 11, thereby restricting the sleeve 21 from rotating relative to the fixing post 11, thus limiting the movement of the sleeve 21 and the fixing post 11.

[0106] In some embodiments, the third limiting protrusion 31 includes a limiting pin, and the second limiting groove 111 includes a limiting hole. When the locking assembly 30 is in the second locking state, the limiting pin extends into the limiting hole. The sleeve 21 is restricted from rotating relative to the fixed post 11 by the cooperation of the limiting pin and the limiting hole. Of course, in some other embodiments, the limiting member 3 may include a first limiting plate, and the fixed post 11 is provided with a second limiting plate. The first limiting plate and the second limiting plate abut against each other to restrict the sleeve 21 from rotating relative to the fixed post 11.

[0107] Based on this, such as Figure 3 , Figure 4 As shown, the second limiting groove 111 extends radially through the fixing post 11 to the outer surface of the fixing post 11. The third limiting protrusion 31 is located on the side of the second limiting groove 111 near the outer surface of the fixing post 11.

[0108] Compared to opening a second limiting groove 111 inside the fixing post 11, when the third limiting protrusion 31 is located on the side of the second limiting groove 111 near the outer surface of the fixing post 11, the distance between the third limiting protrusion 31 and the axis of the fixing post 11 is larger.

[0109] In this way, when the third limiting protrusion 31 moves the same distance, and the third limiting protrusion 31 is located on the side of the second limiting groove 111 near the outer surface of the fixed post 11, the angle of rotation of the third limiting protrusion 31 relative to the fixed post 11 is smaller. This can improve the limiting effect of the third limiting protrusion 31 on the rotation of the sleeve 21 relative to the fixed post 11, and further improve the stability of the sleeve 21 and the fixed post 11 sleeve connection.

[0110] In some embodiments, such as Figure 3 , Figure 4As shown, the limiting member 3 also includes a sliding part 32, which is slidably connected to the sleeve 21 and connected to the side of the third limiting protrusion 31 facing away from the fixed post 11. The sliding part 32 can slide along the axial direction of the sleeve 21 so that the third limiting protrusion 31 extends into or out of the second limiting groove 111.

[0111] By providing the sliding part 32, the sliding part 32 can support the third limiting protrusion 31, so that the third limiting protrusion 31 can stably limit the sleeve 21 and the fixing post 11. Furthermore, by causing the sliding part 32 to drive the third limiting protrusion 31 to extend into or out of the second limiting groove 111, the locking assembly 30 can switch between the second locking state and the first locking state, thereby facilitating the installation and use of the locking assembly 30.

[0112] For example, the sliding part 32 can be a sliding post, which passes through the sleeve 21.

[0113] For example, the sliding part 32 can be a sliding block, and the inner circumferential surface of the sleeve 21 is provided with a sliding groove, so that the sliding block can slide in the sliding groove.

[0114] In some embodiments, such as Figure 3 , Figure 5 As shown, the outer wall surface of the sliding part 32 is provided with a guide groove 321. The extending direction of the guide groove 321 is consistent with the axial direction of the sleeve 21. The inner circumferential surface of the sleeve 21 is provided with a guide protrusion 213. The guide protrusion 213 is accommodated in the guide groove 321.

[0115] In this way, the sliding part 32 can be guided by the guide groove 321, making it easier for the sliding part 32 to slide. In addition, the guide protrusion 213 can restrict the rotation of the sliding part 32 within the sleeve 21, so as to ensure the limiting effect of the third limiting protrusion 31 connected to the sliding part 32 on the sleeve 21 and the fixing post 11.

[0116] Of course, in other embodiments, a guide groove 321 may be formed on the inner circumferential surface of the sleeve 21, and a guide protrusion 213 may be provided on the sliding part 32.

[0117] In some embodiments, such as Figure 4 , Figure 5 As shown, the sleeve 21 includes a mating section 216 and a limiting section 217. The mating section 216 is slidably fitted with the sliding part 32 and is also slidably fitted with the fixed post 11.

[0118] The limiting section 217 is fitted onto the fixed post 11 and spaced apart from the fixed post 11. The guide protrusion 213 is located on the mating section 216, and the second limiting protrusion 215 is located on the limiting section.

[0119] The limiting segment 217 provides movement space for the second limiting protrusion 215 and the first limiting protrusion 122, facilitating their contact. Furthermore, the mating segment 216 allows for sliding contact with the sliding part 32 and the fixing post 11, thereby enhancing the connection strength between the first connecting member 1 and the second connecting member 2.

[0120] like Figure 3 , Figure 4 As shown, the sliding part 32 is provided with a weight-reducing hole 322, which extends through the sliding part 32 along the axial direction of the sleeve 21. This reduces the weight of the sliding part 32, making it easier to install and use. It also saves material needed to process the sliding part 32, thereby reducing the processing cost of the locking assembly 30.

[0121] In some embodiments, such as Figure 3 , Figure 4 As shown, the sleeve 21 is provided with an installation port 214, which penetrates the side wall of the sleeve 21 radially.

[0122] The limiting member 3 also includes a pushing part 33, which is located outside the sleeve 21 and partially extends into the sleeve 21 through the mounting port 214, and is connected to the sliding part 32. The pushing part 33 can move within the mounting port 214 to drive the sliding part 32 to slide relative to the sleeve 21.

[0123] In this way, the user can move the pushing part 33 outside the sleeve 21, thereby driving the sliding part 32 inside the sleeve 21 to move. This makes it easier to move the sliding part 32, so that the third limiting protrusion 31 extends into or out of the second limiting groove 111, thereby facilitating the sleeve 21 to be fitted or separated from the fixed post 11.

[0124] Specifically, such as Figure 3 , Figure 4 As shown, the pushing part 33 includes a main body 331 and a connecting part 332. The main body 331 is located outside the sleeve 21, and an anti-slip structure is provided on the side of the main body 331 facing away from the sleeve 21. The connecting part 332 is connected to the side of the main body 331 facing the sleeve 21. The connecting part 332 passes through the mounting port 214 and is connected to the sliding part 32.

[0125] The connecting part 332 connects the main body part 331 and the sliding part 32, and can move within the mounting port 214, so that the user can push the main body part 331 to move the sliding part 32. The main body part 331 is provided with an anti-slip structure, so that the user can push the main body part 331 more easily.

[0126] In some embodiments, such as Figure 3 , Figure 4As shown, the sliding part 32 is also provided with a mounting channel 323, which has a first opening facing the fixing post 11 and a mounting hole 324 that penetrates the sliding part 32 radially. The mounting hole 324 corresponds to the mounting opening 214. The connecting part 332 passes through the mounting opening 214 and the mounting hole 324 in sequence and extends into the mounting channel 323.

[0127] The limiting member 3 also includes a fastener 34. The fastener 34 is provided in the mounting channel 323 and passes through the connecting part 332 to connect with the sliding part 32.

[0128] In this way, the connecting part 332 and the sliding part 32 can be connected together by the fastener 34. By providing the mounting channel 323, the fastener 34 is placed in the mounting channel 323, which avoids the fastener 34 occupying extra space outside the sliding part 32, and facilitates the space setting of the locking component 30.

[0129] Furthermore, the mounting channel 323 has a first opening on one side facing the fixing post 11, so when installing the fastener 34, the fastener 34 can be inserted into the mounting channel 323 through the opening on one side of the sleeve 21 and the first opening, which facilitates the installation of the fastener 34.

[0130] For example, fastener 34 can be a screw, bolt, nut, etc.

[0131] In some examples, such as Figure 3 , Figure 4 As shown, a portion of the mounting channel 323 extends through the sliding portion 32 along the radial direction of the sliding portion 32. This avoids the inner wall of the mounting channel 323 from blocking the movement of the fastener 34, further facilitating the installation of the fastener 34.

[0132] In some embodiments, such as Figure 3 , Figure 4 As shown, the locking assembly 30 also includes an abutment 4 and a second elastic member 5. The abutment 4 is fixed to the sleeve 21 and is located on the side of the sliding portion 32 opposite to the fixing post 11. The second elastic member 5 is elastically supported between the sliding portion 32 and the abutment 4.

[0133] The second elastic member 5 can apply a spring force to the sliding part 32 toward the fixed post 11, thereby preventing the sliding part 32 from moving away from the fixed post 11, thus preventing the third limiting protrusion 31 from sliding out of the second limiting groove 111, ensuring the limiting effect of the third limiting protrusion 31, and improving the stability of the locking assembly 30.

[0134] In some embodiments, such as Figure 3 , Figure 4As shown, the abutment member 4 includes an abutment plate 41 and a guide post 42. The abutment plate 41 is fixed to the sleeve 21. The guide post 42 is connected to the side of the abutment plate 41 facing the sliding part 32. The second elastic member 5 is provided with a first guide hole, into which the guide post 42 extends. Of course, in some other embodiments, the abutment member 4 may only include the abutment plate 41.

[0135] In this way, the abutment plate 41 can provide support for the second elastic member 5. The guide post 42 extends into the guide hole and can restrict the radial movement of the second elastic member 5 along the guide post 42, thereby guiding the second elastic member 5 and preventing the second elastic member 5 from deviating.

[0136] In some embodiments, such as Figure 3 , Figure 4 As shown, the sliding part 32 has a second guide hole 325 on the side facing the abutment plate 41, and the second elastic member 5 extends at least partially into the second guide hole 325. This also restricts the movement of the second elastic member 5 through the second guide hole 325, preventing the second elastic member 5 from shifting.

[0137] It is understandable that the second elastic member 5 is elastically supported on the bottom wall of the second guide hole 325 and the side wall of the second guide hole 325 away from the abutment member 4.

[0138] In some embodiments, such as Figure 2 , Figure 3 As shown, the second elastic element 5 includes a spring. The spring has a relatively simple structure, which facilitates the installation of the locking assembly 30. Of course, the second elastic element 5 can also be a rubber post, etc.

[0139] In some embodiments, the handlebar 20 is connected to the sleeve 21, and the scooter body 10 is connected to the fixing post 11. Of course, in other embodiments, the sleeve 21 may be connected to the scooter body 10, and the fixing post 11 may be connected to the handlebar 20.

[0140] When the handle 20 is connected to the sleeve 21, the sleeve 21 is fitted over the fixed post 11, which can cover the fixed post 11. When the user uses the scooter 100, the fixed post 11 will not be visible, thus improving the appearance of the scooter 100.

[0141] In some embodiments, such as Figure 2 , Figure 3 As shown, the handle 20 includes a telescopic rod 201 and a grip rod 202. The telescopic rod 201 is connected to the sleeve 21. The grip rod 202 is connected to the telescopic rod 201. The axial direction of the grip rod 202 is aligned with the axial direction of the sleeve 21.

[0142] The telescopic rod 201 allows for shorter lengths when the handlebar 20 is retracted, facilitating its storage. Furthermore, the grip rod 202 allows for easy one-handed gripping of the handlebar 20. Compared to gripping the handlebar 20 with both hands, single-handed gripping enables users to use the scooter 100 more flexibly, thus improving the user experience.

[0143] In some embodiments, such as Figure 7 , Figure 8 As shown, Figure 7 for Figure 1 The diagram shown illustrates the structure of the scooter body 10 in the scooter 100. Figure 8 for Figure 7 The schematic diagram of the cross section of the scooter body 10 shown shows that the seat 101 of the scooter body 10 has a cavity and a second opening 102 communicating with the cavity. The fixing post 11 is located in the cavity and partially extends out of the second opening 102.

[0144] In this way, when the handlebar 20 is connected to the scooter body 10, the sleeve 21 can extend into the seat 101 and engage with the fixing post 11. Furthermore, when the scooter body 10 is stored, the fixing post 11 will not occupy excessive space outside the seat 101, thus facilitating the storage of the scooter body 10. Additionally, the fixing post 11 extends out of the second opening 102, allowing the sleeve 21 and the fixing post 11 to engage, thereby facilitating the connection between the handlebar 20 and the scooter body 10.

[0145] In the above description, users can hold the handlebars 20 when using the scooter 100. Some users who are more skilled at using the scooter 100 may not need to install the handlebars 20 and may only use the scooter body 10. In this case, the seat 101 of the scooter body 10 has an opening, and the fixing post 11 is exposed at the opening.

[0146] To further enhance the user experience of the Scooter 100. For example... Figure 8 , Figure 9 As shown, Figure 9 for Figure 7 The schematic diagram of the cover 40 shown illustrates that the scooter 100 involved in this embodiment also includes the cover 40. The fixing post 11 is adapted to be connected to one of the sleeve 21 and the cover 40. That is, the scooter body 10 is adapted to be connected to one of the cover 40 and the handlebar 20.

[0147] In this way, when the user does not need to use the handlebar 20, the cover 40 can be connected to the fixing post 11 to cover the fixing post 11, thereby improving the appearance of the scooter 100 and improving the user's experience of using the scooter 100.

[0148] Specifically, when the cover 40 is connected to the fixing post 11, the cover 40 blocks the second opening 102. In this way, the cover 40 can also cover the second opening 102, so that the seat 101 and the cover 40 form a complete and closed shell structure, thereby further improving the appearance of the scooter 100 and further improving the user's experience of using the scooter 100.

[0149] In some embodiments, the shape of the cover 40 is adapted to the shape of the seat 101 to improve the appearance of the scooter 100.

[0150] like Figure 8 , Figure 9 As shown, the cover 40 includes a housing 401, with the surface of the housing 401 facing the fixing post 11 recessed away from the fixing post 11 to form a receiving groove 404. The housing 401 is fixed to the carrier 101, and the fixing post 11 is partially located within the receiving groove 404. Thus, the receiving groove 404 provides clearance for the fixing post 11, preventing the fixing post 11 from obstructing the housing 401, thereby facilitating the connection between the housing 401 and the carrier 101.

[0151] In some embodiments, the cover 40 is provided with a first magnetic element 405. The carrier 101 is provided with a second magnetic element. When the cover 40 is connected to the fixing post 11, the first magnetic element 405 and the second magnetic element are magnetically connected. Of course, in some other embodiments, the cover 40 and the carrier 101 can be connected by screws or by snap-fit ​​connections.

[0152] Compared to connecting the cover 40 and the base 101 through screwing, snap-fit, etc., when the first magnetic component 405 and the second magnetic component are magnetically connected, during the process of installing the cover 40 onto the scooter body 10, it is only necessary to place the cover 40 onto the base 101 so that the first magnetic component 405 and the second magnetic component can automatically connect magnetically. This eliminates the need for additional operations, thus facilitating the connection between the cover 40 and the base 101.

[0153] Specifically, such as Figure 9 As shown, the housing 401 includes an upper housing 402 and a lower housing 403. The upper housing 402 and the lower housing 403 are fastened together to form an installation space, and the first magnetic component 405 is disposed in the installation space.

[0154] For example, the number of first magnetic elements 405 can be one or more, such as two or three. Correspondingly, the number of second magnetic elements can also be one or more. When there are multiple first magnetic elements 405 and multiple second magnetic elements, each of the multiple second magnetic elements corresponds to one of the multiple first magnetic elements 405.

[0155] For example, the first magnetic component 405 can be an electromagnet, a permanent magnet, etc. The second magnetic component can also be an electromagnet, a permanent magnet, etc.

[0156] It is understandable that the first magnetic element 405 has the opposite magnetism to the corresponding second magnetic element.

[0157] Based on the above, such as Figure 10 As shown, Figure 10 This is a structural schematic diagram of the vehicle 1000 provided in this application.

[0158] This application also provides a vehicle 1000, which includes a vehicle body 200 and a receiving space 201. A scooter 100 is housed in the receiving space 201.

[0159] For example, the storage space 201 can be the trunk of vehicle 1000 or the passenger compartment of vehicle 1000.

[0160] After driving the vehicle 1000, the user can retrieve the scooter 100 from the storage space 201 and use the scooter 100 as a means of transportation.

[0161] In the description of the embodiments of this application, specific features, structures, materials or characteristics may be combined in any suitable manner in one or more embodiments or examples.

[0162] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A locking component, characterized in that, include: The first connector (1) is provided with a first limiting part (12); The second connector (2) is provided with a second limiting part (22); The first limiting part (12) and the second limiting part (22) are engaged or disengaged by the relative rotation of the first connecting member (1) and the second connecting member (2) so that the locking assembly switches between the locked state and the disengaged state.

2. The locking assembly according to claim 1, characterized in that, After the first connector (1) and the second connector (2) are fitted together, they are rotated so that the first limiting part (12) and the second limiting part (22) are engaged.

3. The locking assembly according to claim 1, characterized in that, The first limiting part (12) includes a first limiting protrusion (122), and the second limiting part (22) includes a second limiting protrusion; After the first connector (1) and the second connector (2) are fitted together and rotated, the first limiting protrusion (122) and the second limiting protrusion (215) abut against each other, preventing the first connector (1) from moving axially relative to the second connector (2) and then separating. Alternatively, the first limiting part (12) includes a first limiting protrusion (122), and the second limiting part (22) includes a first limiting groove (211); After the first connector (1) and the second connector (2) are fitted together and rotated, the first limiting protrusion (122) can be accommodated in the first limiting groove (211), preventing the first connector (1) from moving axially relative to the second connector (2) and then separating.

4. The locking assembly according to claim 3, characterized in that, The first connector (1) includes a fixing post (11); The second connector (2) includes a sleeve (21) which is fitted into the fixing post (11).

5. The locking assembly according to claim 4, characterized in that, The first limiting part (12) includes the first limiting protrusion (122), which is disposed on the outer peripheral surface of the fixing post (11); The second limiting part (22) includes a second limiting protrusion (215), which is disposed on the inner circumferential surface of the sleeve (21).

6. The locking assembly according to claim 5, characterized in that, The first connector (1) is further provided with a first clearance part (15), which is used to clearance the second limiting part (22); The second connector (2) is also provided with a second clearance part (23), which is used to clearance the first limiting part (12).

7. The locking assembly according to claim 6, characterized in that, Along the circumference of the fixed post (11), the first limiting protrusion (122) is adjacent to the first clearance portion (15); the second limiting protrusion (215) is adjacent to the second clearance portion (23).

8. The locking assembly according to claim 4, characterized in that, The first connector (1) further includes a base (14) connected to one end of the fixing post (11); along the axial direction of the fixing post (11), the projection of the sleeve (21) on the first connector (1) is at least partially located on the base (14).

9. The locking assembly according to claim 8, characterized in that, The base (14) has a mounting groove (121) on the side facing the sleeve (21); The first connector (1) further includes a first elastic element (13), which is disposed in the mounting groove (121); when the locking assembly is in the locked state, the first elastic element (13) is elastically supported between the inner wall of the mounting groove (121) and the sleeve (21).

10. The locking assembly according to any one of claims 1-9, characterized in that, Also includes: A limiting member (3) is connected to the second connecting member (2) and engages with the first connecting member (1) to limit the second connecting member (2) from rotating circumferentially relative to the first connecting member (1) along the first connecting member (1).

11. The locking assembly according to claim 10, characterized in that, The locking state includes a first locking state and a second locking state; When the first limiting part (12) and the second limiting part (12) cooperate, and the limiting member (3) is separated from the first connecting member (1), the locking assembly is in the first locking state; When the first limiting part (12) and the second limiting part (12) cooperate, and the limiting member (3) cooperates with the first connecting member (1), the locking component is in the second locking state.

12. The locking assembly according to claim 11, characterized in that, The first connector (1) includes a fixing post (11); The second connector (2) includes a sleeve (21), which is fitted into the fixing post (11); The limiting member (3) includes a third limiting protrusion (31), and the fixing post (11) is provided with a second limiting groove (111); when the locking assembly is in the second locking state, the third limiting protrusion (31) extends into the second limiting groove (111).

13. The locking assembly according to claim 12, characterized in that, The third limiting member protrusion (31) includes a limiting pin, and the second limiting groove (111) includes a limiting hole; when the locking assembly is in the second locking state, the limiting pin extends into the limiting hole.

14. The locking assembly according to claim 12, characterized in that, The second limiting groove (111) extends radially through the fixing post (11) to the outer surface of the fixing post (11); The third limiting protrusion (31) is located on the side of the second limiting groove (111) near the outer surface of the fixing post (11).

15. The locking assembly according to claim 12, characterized in that, The limiting member (3) further includes a sliding part (32), which is slidably connected to the sleeve (21); the third limiting protrusion is connected to the side of the sliding part (32) facing the fixed post (11) on (31); the sliding part (32) can slide along the axial direction of the sleeve (21) so that the third limiting protrusion (31) extends into or out of the second limiting groove (111).

16. The locking assembly according to claim 15, characterized in that, The outer wall surface of the sliding part (32) is provided with a guide groove (321); the extending direction of the guide groove (321) is consistent with the axial direction of the sleeve (21); The inner circumferential surface of the sleeve (21) is provided with a guide protrusion (213); the guide protrusion (213) is accommodated in the guide groove (321).

17. The locking assembly according to claim 15, characterized in that, The sliding part (32) is provided with a weight reduction hole (322), which passes through the sliding part (32) along the axial direction of the sleeve (21).

18. The locking assembly according to claim 15, characterized in that, The sleeve (21) is provided with an installation port (214), which penetrates the side wall of the sleeve (21) radially. The limiting member (3) further includes a pushing part (33), which is located outside the sleeve (21) and partially extends into the sleeve (21) through the mounting port (214) and is connected to the sliding part (32); the pushing part (33) can move within the mounting port (214) to drive the sliding part (32) to slide relative to the sleeve (21).

19. The locking assembly according to claim 18, characterized in that, The propulsion unit (33) includes: The main body (331) is located outside the sleeve (21), and the side of the main body (331) facing away from the sleeve (21) is provided with an anti-slip structure; A connecting part (332) is connected to the side of the main body (331) facing the sleeve (21); the connecting part (332) passes through the mounting port (214) and is connected to the sliding part (32).

20. The locking assembly according to claim 19, characterized in that, The sliding part (32) is also provided with an installation channel (323), the installation channel (323) having a first opening facing the fixed post (11) and an installation hole (324) that penetrates the sliding part (32) radially along the sliding part (32); the installation hole (324) corresponds to the installation opening (214); The connecting part (332) passes through the mounting opening (214) and the mounting hole (324) in sequence, and extends into the mounting channel (323); The limiting member (3) also includes a fastener (34); the fastener (34) is located in the mounting channel (323) and passes through the connecting part (332) to connect with the sliding part (32).

21. The locking assembly according to claim 15, characterized in that, Also includes: Abutting member (4), which is fixed to the sleeve (21) and located on the side of the sliding part (32) opposite to the fixing post (11); The second elastic element (5) is elastically supported between the sliding part (32) and the abutting part (4).

22. The locking assembly according to claim 21, characterized in that, The abutment (4) includes: Abutting plate (41), the abutting plate being fixed to the sleeve (21); Guide post (42), the guide post (42) is connected to the side of the abutment plate (41) facing the sliding part (32); The second elastic element (5) is provided with a first guide hole, and the guide post (42) extends into the first guide hole.

23. The locking assembly according to claim 21, characterized in that, The sliding part (32) is provided with a second guide hole (325) on the side facing the abutment plate (41), and the second elastic member (5) extends at least partially into the second guide hole (325).

24. The locking assembly according to claim 21, characterized in that, The second elastic element (5) includes a spring.

25. A scooter, characterized in that, include: Scooter body (10); Handle (20); The locking assembly as claimed in any one of claims 1-24, wherein the handle (20) and the scooter body (10) are connected by the locking assembly.

26. The scooter according to claim 25, characterized in that, The first connector (1) includes a fixing post (11); The second connector (2) includes a sleeve (21), which is fitted into the fixing post (11); The fixing post (11) is connected to the scooter body (10), and the sleeve (21) is connected to the handle (20).

27. The scooter according to claim 26, characterized in that, It also includes a cover (40), the fixing post (11) being adapted to be connected to one of the sleeve (21) and the cover (40).

28. The scooter according to claim 27, characterized in that, The scooter body (10) includes: The carrier (101) has a cavity and a second opening (102) communicating with the cavity. The fixing post (11) is located in the cavity and partially extends out of the second opening (102). When the cover (40) is connected to the fixing post (11), the cover (40) blocks the second opening (102).

29. The scooter according to claim 28, characterized in that, The cover (40) includes a housing (401) with one side of the housing (401) facing the fixing post (11) recessed away from the fixing post (11) to form a receiving groove (404); the housing (401) is fixed to the carrier (101), and the fixing post (11) is partially located in the receiving groove (404).

30. The scooter according to claim 28, characterized in that, The cover (40) is provided with a first magnetic element (405); the carrier (101) is provided with a second magnetic element; when the cover (40) is connected to the fixing post (11), the first magnetic element (405) and the second magnetic element are magnetically connected.

31. The scooter according to claim 26, characterized in that, The handle (20) includes: The telescopic rod (201) is connected to the sleeve (21); A gripping rod (202) is connected to the telescopic rod (201); the axial direction of the gripping rod (202) is consistent with the axial direction of the sleeve (21).

32. A vehicle, characterized in that, include: The scooter as described in any one of claims 25-31; The vehicle body (200) has a receiving space (201) in which the scooter is received.