Replaceable lining and shared helmet

By providing replaceable lining, the hygiene and safety problems caused by multiple use of shared helmets are solved, and users' willingness and safety are improved.

CN223008516UActive Publication Date: 2025-06-24RAREHOER (XIAN) INNOVATIONS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421857606.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-06-24
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing shared helmets have caused hygiene and safety issues due to multiple use, and users give up using them because of concerns about dirt, which increases the probability of motorcycle safety accidents.

Method used

A replaceable inner lining is provided, including a liner body and a plurality of removable parts, which the user can manually or automatically replace manually to ensure the hygiene and safety of the helmet liner.

Benefits of technology

By providing replaceable linings, the hygiene and safety issues of shared helmets are solved, and users' willingness and safety are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a replaceable lining and a shared helmet. The replaceable lining comprises a lining body and a plurality of detachable parts, and the detachable parts are arranged along the periphery of the lining body at intervals. Each detachable part is provided with a fixed connecting part and a detachable connecting part, each detachable part is fixedly connected to the lining body through the fixed connecting part, and all the detachable connecting parts of the detachable parts are used for being detachably connected with a helmet shell of a helmet.
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Description

Technical Field

[0001] This application belongs to the technical field of wearable devices, and more specifically, relates to a replaceable inner lining and a shared helmet. Background Art

[0002] With the convenience and diversification of modern transportation methods, shared electric bicycles, as a means of transportation that can be taken and used at any time, have been widely used in urban areas. Among them, shared helmets, as safety equipment used in conjunction with shared electric bicycles, are clearly stipulated in traffic safety regulations that electric bicycles must be used with safety helmets. Different from non-shared helmets, the design of shared helmets and their inner linings tries to conform to the usage scenarios and conditions of shared electric bicycles.

[0003] However, there are the following technical problems in the use of existing shared helmets:

[0004] Firstly, shared helmets are often exposed to the outdoor environment, and the foldable inner lining therein becomes dirty due to exposure. Users may choose to abandon using the shared electric bicycle because of the dirt, or users may choose to use the electric bicycle but abandon using the helmet, resulting in an increased probability of electric bicycle safety accidents.

[0005] Secondly, as a shared device, the inner lining of the shared helmet directly contacts the user's head. The hygiene of the inner lining is a safety consideration factor for users to choose a shared helmet and is also the main reason for users to abandon using the helmet.

[0006] Therefore, in order to solve the hygiene problem of shared electric bicycle helmets and improve the user's willingness and experience of use, it is urgent to provide an inner lining structure that can be replaced for shared helmets, which can be manually or automatically replaced by users when using the helmet. Summary of the Invention

[0007] The purpose of the embodiments of this application is to provide a replaceable inner lining and a shared helmet, which can be used as a disposable consumable for users to manually or automatically replace on the helmet, so as to solve the hygiene and safety problems caused by the repeated use of existing shared helmets.

[0008] To achieve the above purpose, the technical solution adopted in this application is:

[0009] Provide a replaceable inner lining, the replaceable inner lining includes an inner lining body and a plurality of detachable parts, and the plurality of detachable parts are arranged at intervals along the periphery of the inner lining body;

[0010] Each of the detachable parts is provided with a fixed connection part and a detachable connection part. Each of the detachable parts is fixedly connected to the inner lining body through the fixed connection part, and all the detachable connection parts of the detachable parts are used for detachably connecting to the helmet shell.

[0011] In some embodiments, the detachable part includes a first piece and a second piece. The first piece and the second piece are stacked along the thickness direction of the inner lining body, and the periphery of the inner lining body is clamped between the first piece and the second piece;

[0012] The detachable connection part is provided on the side of the first piece facing away from the second piece or the side of the second piece facing away from the first piece.

[0013] In some embodiments, the first piece and the second piece are bonded;

[0014] Or, the first piece and the second piece are detachably clamped;

[0015] Or, a clamping groove is formed between the radially inner side of the first piece and the radially inner side of the second piece, and the periphery of the inner lining body is clamped in the clamping groove. The radially outer side of the first piece and the radially outer side of the second piece are integrally connected.

[0016] In some embodiments, the detachable connection part includes a pair of distal end force application parts arranged oppositely. A pair of first clamping structures are provided on the pair of distal end force application parts, and the first clamping structures are used for detachably clamping with a pair of second clamping structures on the helmet shell.

[0017] In some embodiments, a pair of distal end force application sides are provided on the pair of distal end force application parts. The pair of distal end force application sides and the pair of first clamping structures are arranged in sequence and smoothly connected along the thickness direction of the inner lining body. The pair of distal end force application sides are inclined relative to the thickness direction and are used to guide the pair of second clamping structures into the pair of first clamping structures.

[0018] In some embodiments, the pair of distal end force application sides are symmetrically arranged along the circumferential direction or the radial direction of the inner lining body, and the pair of first clamping structures are symmetrically arranged along the circumferential direction or the radial direction of the inner lining body.

[0019] In some embodiments, the pair of distal end force application sides are arranged in translation along the circumferential direction or the radial direction of the inner lining body, and the pair of first clamping structures are arranged in translation along the circumferential direction or the radial direction of the inner lining body.

[0020] In some embodiments, a through hole is provided at the center of the detachable connection part. The hole edge of the through hole includes two first extension parts and two second extension parts arranged oppositely. The distance from the first extension part to the hole axis of the through hole is greater than the distance from the second extension part to the hole axis, and the first extension part and the second extension part are alternately arranged along the circumferential direction of the through hole;

[0021] Among them, the two distal force application parts are arranged on the outer sides of the two first expansion parts.

[0022] In some embodiments, both the first expansion part and the second expansion part are semicircular.

[0023] The beneficial effects of the replaceable inner lining provided by this application are as follows:

[0024] Compared with the prior art, the replaceable inner lining provided by this application includes an inner lining body and a plurality of detachable parts, and the plurality of detachable parts are arranged at intervals along the circumference of the inner lining body. Each detachable part is provided with a fixed connection part and a detachable connection part, and each detachable part is fixedly connected to the inner lining body through the fixed connection part respectively. All the detachable connection parts of the detachable parts are used for detachably connecting to the helmet shell. Through the plurality of detachable parts arranged on the circumference of the inner lining body, the replaceable inner lining can be replaced as a disposable consumable on the helmet, and the detachable parts can be manually or automatically assembled to the accessories at the wearing opening of the helmet.

[0025] The replaceable inner lining provided by this application can be used as a disposable consumable and can be extracted and replaced with the number of uses of the shared helmet. Each time the user uses a shared electric bicycle, the storage device or automatic replacement device of the replaceable inner lining can be synchronously opened through the identification code, and the inner lining can be manually extracted for replacement, or the inner lining of the helmet can be automatically replaced through the automatic replacement device. When the replaceable inner lining is in the storage state, it is not exposed to the outdoor environment. Each time the user can extract or replace a new inner lining according to the need, which ensures the hygienic safety of the helmet inner lining and can improve the usage probability and usage safety of the electric bicycle.

[0026] Another object of this application is also to provide a shared helmet, which includes a helmet shell and the replaceable inner lining as described above; the helmet shell has a wearing opening;

[0027] The edge of the replaceable inner lining is detachably connected to the edge of the wearing opening directly or indirectly through the detachable connection part.

[0028] The beneficial effects of the shared helmet provided by this application compared with the prior art are the same as those of the replaceable inner lining provided by this application compared with the prior art, and will not be elaborated here. Description of the Drawings

[0029] In order to more clearly illustrate the technical solutions in the embodiments of this application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of this application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0030] Figure 1Schematic diagram of the locking mechanism provided by the embodiment of the present application;

[0031] Figure 2 Exploded view of the locking mechanism provided by the embodiment of the present application;

[0032] Figure 3 Schematic diagram of the locking mechanism provided by the embodiment of the present application;

[0033] Figure 4 Schematic diagram of the locking mechanism provided by the embodiment of the present application;

[0034] Figure 5 Exploded view of the locking mechanism and the cage provided by the embodiment of the present application;

[0035] Figure 6 Schematic diagram of the locking mechanism in the locked position provided by the embodiment of the present application;

[0036] Figure 7 Schematic diagram of the locking mechanism in the unlocked position provided by the embodiment of the present application;

[0037] Figure 8 Exploded view of the locking mechanism, the cage and the locking housing provided by the embodiment of the present application;

[0038] Figure 9 Schematic diagram of the inner lining provided by the embodiment of the present application;

[0039] Figure 10 Schematic diagram of the inner lining provided by the embodiment of the present application;

[0040] Figure 11 Schematic diagram of the inner lining provided by the embodiment of the present application;

[0041] Figure 12 Schematic diagram of the replacement part provided by the embodiment of the present application;

[0042] Figure 13 Schematic diagram of the replacement part provided by the embodiment of the present application;

[0043] Figure 14 Exploded view of the assembly of the replacement part and the inner lining and the locking housing provided by the embodiment of the present application;

[0044] Figure 15 Exploded view of the replacement part, the inner lining and the locking mechanism provided by the embodiment of the present application;

[0045] Figure 16 Exploded view of the replacement part, the inner lining, the locking mechanism and the cage provided by the embodiment of the present application;

[0046] Figure 17Schematic diagram of the installation part of the replacement part provided by the embodiment of the present application entering the locking mechanism and the inner lining not yet being installed;

[0047] Figure 18 Combined diagram of the replacement part and the inner lining provided by the embodiment of the present application.

[0048] Among them, each reference numeral in the figure:

[0049] 103. Replacement part; 1031. Disassembly part; 1032. Installation part; 1031a. Proximal applying force part; 1031b. Proximal applying force side; 1031c. Taking-away part; 1032a. Anti-disengagement part;

[0050] 202. Locking mechanism; 203. Cage; 204. Locking housing; 2021. First locking part; 2022. Second locking part; 2023. Elastic part; 2024. Proximal end; 2025. Distal end; 2026. Penetrating space; 2024a. Proximal end stress side; 2025a. Distal end stress side; 2025b. Second clamping structure; 2031. First slideway; 2032. Second slideway; 2031a. First proximal slideway; 2031b. First distal slideway; 2032a. Second proximal slideway; 2032b. Second distal slideway;

[0051] 300. Inner lining; 301. Inner lining body; 302. Detachable part; 3011. First folding part; 3012. Second folding part; 3021. Fixed connection part; 3022. Detachable connection part; 30221. Distal applying force part; 30221a. Distal applying force side; 30221b. First clamping structure; 30222. Penetrating hole; 30222a. First expansion part; 30222b. Second expansion part. Detailed implementation manners

[0052] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present application clearer, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0053] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.

[0054] It should be understood that the orientation or positional relationship indicated by terms such as "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present application.

[0055] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, "a plurality of" means two or more unless otherwise specifically defined.

[0056] Now, the locking mechanism 202, the replaceable inner lining 300, the replacement part 103 and the replacement device provided in the embodiments of the present application will be described.

[0057] Among them, in the following embodiments, the central axes of the locking mechanism 202, the replaceable inner lining 300, the replacement part 103, the helmet and the replacement device all extend in the same direction, and the circumferences of the replaceable inner lining 300, the replacement part 103, the helmet and the replacement device are all in the same direction. Among them, the following first direction may be the radial direction or the tangential direction of the helmet and the replaceable inner lining 300.

[0058] Please refer to Figures 1 to 18 As shown, the locking mechanism 202 provided in the embodiment of the present application includes two locking members. Each locking member has a proximal end 2024 and a distal end 2025 that are opposite to each other in the first direction. The proximal end 2024 of any one locking member is arranged between the proximal end 2024 and the distal end 2025 of the other locking member in the first direction; among them, at least one distal end 2025 is used to lock the first component. At least one locking member can move relative to the other locking member in the first direction, and has a locking position and an unlocking position and can switch between the two; among them, when the locking member is in the locking position, the two distal ends 2025 are in a position away from each other; when the locking member is in the unlocking position, the two distal ends 2025 are in a position close to each other.

[0059] The locking mechanism 202 provided by the embodiment of the present application can cleverly set the relative position relationship between the two locking members in the locking mechanism 202, so that the two distal ends 2025 of the two locking members can approach or move away from each other, thereby realizing the switching between the locking position and the unlocking position, and completing the locking or unlocking of the first component. That is, the first component is fixed relative to the locking mechanism 202 at the locking position, and the first component is disengaged from the locking mechanism 202 at the unlocking position.

[0060] Applying the locking mechanism 202 provided by the present application to a shared helmet, the disposable replaceable inner lining 300 can be locked by the locking mechanism 202, so that the replaceable inner lining 300 is fixed in the helmet shell, and the replaceable inner lining 300 can be disengaged from the locking mechanism 202 when the locking mechanism 202 is in the unlocking position. Then the inner lining 300 is disengaged from the shared helmet, and the next inner lining 300 can be replaced.

[0061] Among them, there are three ways for at least one locking member to move relative to the other locking member in the first direction. Among them, the two locking members are respectively a first locking member 2021 and a second locking member 2022. The locking member located on the upper side is defined as the first locking member 2021, and the locking member located on the lower side is defined as the second locking member 2022. The locking mechanism 202 provided by the embodiment of the present application is used for illustration in a shared helmet.

[0062] In some embodiments, the locking mechanism 202 can be detachably mounted on the inner wall of the helmet shell of the shared helmet through a cage 203. In some embodiments, the assembly composed of the locking mechanism 202 and the cage 203 can be arranged in a locking housing 204. The cage 203 is fixedly arranged relative to the locking housing 204, and the locking housing 204 is fixedly arranged relative to the inner wall of the helmet shell.

[0063] In the first embodiment, the first locking member 2021 is fixedly arranged relative to the helmet shell. For example, the first locking member 2021 can be directly fixedly connected to any one of the helmet shell, the locking shell 204, and the cage 203. The second locking member 2022 can move relative to the first locking member 2021 in the first direction. For example, the second locking member 2022 can be directly slidably connected to any one of the helmet shell, the locking shell 204, the cage 203, and the first locking member 2021. The second locking member 2022 has a locking position and an unlocking position and can be switched between the locking position and the unlocking position. During the switching process, the distal end 2025 of the second locking member 2022 can move closer to or away from the distal end 2025 of the first locking member 2021 in the first direction. When the second locking member 2022 is in the locking position, the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 are in positions away from each other. When the second locking member 2022 is in the unlocking position, the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 are in positions close to each other.

[0064] In the second embodiment, the second locking member 2022 is fixedly arranged relative to the helmet shell. For example, the second locking member 2022 can be directly fixedly connected to any one of the helmet shell, the locking shell 204, and the cage 203. The first locking member 2021 can move relative to the second locking member 2022 in the first direction. For example, the first locking member 2021 can be directly slidably connected to any one of the helmet shell, the locking shell 204, the cage 203, and the first locking member 2021. The first locking member 2021 has a locking position and an unlocking position and can be switched between the locking position and the unlocking position. During the switching process, the distal end 2025 of the first locking member 2021 can move closer to or away from the distal end 2025 of the second locking member 2022 in the first direction. When the first locking member 2021 is in the locking position, the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 are in positions away from each other. When the first locking member 2021 is in the unlocking position, the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 are in positions close to each other.

[0065] In the third embodiment, both the first locking member 2021 and the second locking member 2022 are moving members, and both can move relative to each other. That is to say, the first locking member 2021 can move relative to the second locking member 2022 in the first direction, and the second locking member 2022 can also move relative to the first locking member 2021 in the first direction. For example, the first locking member 2021 can be directly slidably connected to any one of the helmet shell, the locking shell 204, and the cage 203, and the second locking member 2022 can be directly slidably connected to any one of the helmet shell, the locking shell 204, and the cage 203. Preferably, the first locking member 2021 and the second locking member 2022 can be slidably connected to the same component. For example, both the first locking member 2021 and the second locking member 2022 are slidably connected to the cage 203.

[0066] For another example, the first locking member 2021 is directly slidably connected to any one of the helmet shell, the locking shell 204, and the cage 203, and the second locking member 2022 is slidably connected to the first locking member 2021. For example, the second locking member 2022 is slidably connected to the first locking member 2021 at the plane position where it contacts the first locking member 2021. For another example, the second locking member 2022 is directly slidably connected to any one of the helmet shell, the locking shell 204, and the cage 203, and the first locking member 2021 is slidably connected to the second locking member 2022. For example, the first locking member 2021 is slidably connected to the second locking member 2022 at the plane position where it contacts the second locking member 2022.

[0067] In the above-mentioned third embodiment, the first locking member 2021 has a locking position and an unlocking position, and can be switched between the locking position and the unlocking position. The second locking member 2022 has a locking position and an unlocking position, and can be switched between the locking position and the unlocking position. The locking position of the first locking member 2021 and the locking position of the second locking member 2022 are symmetrically arranged with respect to the central axis of the locking mechanism 202, and the unlocking position of the first locking member 2021 and the unlocking position of the second locking member 2022 are symmetrically arranged with respect to the central axis of the locking mechanism 202. During the switching process, the distal ends 2025 of the first locking member 2021 and the distal ends 2025 of the second locking member 2022 can approach each other or move away from each other simultaneously along the first direction. When the first locking member 2021 is in the locking position and the second locking member 2022 is in the locking position, the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 are in positions away from each other. When the first locking member 2021 is in the unlocking position and the second locking member 2022 is in the unlocking position, the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 are in positions close to each other.

[0068] In this embodiment, preferably, the first locking member 2021 and the second locking member 2022 have the same structure. The entire locking structure has a central axis located between two proximal ends 2024, and the entire locking mechanism 202 is symmetrically arranged about the central axis. Of course, in other embodiments, based on the locking and unlocking principles of the locking mechanism 202 provided in the embodiments of the present application, the structures of the two locking members may be different.

[0069] In some embodiments, the locking mechanism 202 further includes at least one elastic member 2023. The elastic member 2023 is connected between the proximal end 2024 of any one of the locking members and the distal end 2025 of the other locking member. The locking member is configured to switch from the locking position to the unlocking position under the action of an external force and synchronously drive the elastic member 2023 to store elastic force, and switch from the unlocking position to the locking position under the action of the elastic force and maintain the locking state.

[0070] In some embodiments, the locking mechanism 202 includes one elastic member 2023, and this design is applicable to the above-mentioned first embodiment and second embodiment.

[0071] In the above-mentioned first embodiment, the first locking member 2021 is relatively fixedly arranged, and the second locking member 2022 is slidably arranged. The elastic member 2023 can be connected between the proximal end 2024 of the first locking member 2021 and the distal end 2025 of the second locking member 2022, or the elastic member 2023 can be connected between the proximal end 2024 of the second locking member 2022 and the distal end 2025 of the first locking member 2021. Correspondingly, during the process of the second locking member 2022 switching from the locking position to the unlocking position along the first direction, the distal end 2025 of the second locking member 2022 approaches the proximal end 2024 of the first locking member 2021 and synchronously drives the elastic member 2023 connected therebetween to store elastic force. For example, the elastic member 2023 stores elastic force by being compressed, and under the action of the elastic force of the elastic member 2023, the second locking member 2022 switches from the unlocking position to the locking position and maintains the locking state. Or, during the process of the second locking member 2022 switching from the locking position to the unlocking position along the first direction, the proximal end 2024 of the second locking member 2022 approaches the distal end 2025 of the first locking member 2021 and synchronously drives the elastic member 2023 connected therebetween to store elastic force. For example, the elastic member 2023 stores elastic force by being compressed, and under the action of the elastic force of the elastic member 2023, the second locking member 2022 switches from the unlocking position to the locking position and maintains the locking state.

[0072] In the above-mentioned second embodiment, the second locking member 2022 is relatively fixedly arranged, the first locking member 2021 is slidably arranged, and the elastic member 2023 can be connected between the proximal end 2024 of the first locking member 2021 and the distal end 2025 of the second locking member 2022, or the elastic member 2023 can be connected between the proximal end 2024 of the second locking member 2022 and the distal end 2025 of the first locking member 2021. Correspondingly, during the process of the first locking member 2021 switching from the locking position to the unlocking position along the first direction, the distal end 2025 of the first locking member 2021 approaches the proximal end 2024 of the second locking member 2022 and synchronously drives the elastic member 2023 connected therebetween to store elastic force. For example, the elastic member 2023 stores elastic force by being compressed, and under the action of the elastic force of the elastic member 2023, the first locking member 2021 switches from the unlocking position to the locking position and remains locked. Or, during the process of the first locking member 2021 switching from the locking position to the unlocking position along the first direction, the proximal end 2024 of the first locking member 2021 approaches the distal end 2025 of the second locking member 2022 and synchronously drives the elastic member 2023 connected therebetween to store elastic force. For example, the elastic member 2023 stores elastic force by being compressed, and under the action of the elastic force of the elastic member 2023, the first locking member 2021 switches from the unlocking position to the locking position and remains locked.

[0073] In some embodiments, the locking mechanism 202 includes two elastic members 2023, and this design is applicable to the above-mentioned first embodiment, second embodiment, and third embodiment. One elastic member 2023 can be connected between the proximal end 2024 of the first locking member 2021 and the distal end 2025 of the second locking member 2022, and the other elastic member 2023 is connected between the proximal end 2024 of the second locking member 2022 and the distal end 2025 of the first locking member 2021.

[0074] In the above-mentioned first embodiment, during the process of the second locking member 2022 switching from the locking position to the unlocking position along the first direction, the proximal end 2024 of the second locking member 2022 approaches the distal end 2025 of the first locking member 2021 and synchronously drives the elastic member 2023 connected therebetween to store elastic force. The elastic member 2023 stores elastic force by being compressed. Synchronously, the distal end 2025 of the second locking member 2022 approaches the proximal end 2024 of the first locking member 2021 and synchronously drives the elastic member 2023 connected therebetween to store elastic force. The elastic member 2023 also stores elastic force by being compressed. Under the action of the elastic forces of the two elastic members 2023, the second locking member 2022 switches from the unlocking position to the locking position and remains locked.

[0075] The switching principle of the above-mentioned second embodiment is the same as that of the above-mentioned first embodiment, and will not be elaborated here.

[0076] In the above-mentioned third embodiment, both the first locking member 2021 and the second locking member 2022 can move relative to each other in the first direction. The distal ends 2025 of the first locking member 2021 and the distal ends 2025 of the second locking member 2022 can approach each other simultaneously or move away from each other simultaneously in the first direction. When the first locking member 2021 is in the locking position and the second locking member 2022 is in the locking position, the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 are in positions away from each other. When the first locking member 2021 is in the unlocking position and the second locking member 2022 is in the unlocking position, the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 are in positions close to each other.

[0077] During the process that the second locking member 2022 switches from the locking position to the unlocking position in the first direction and the first locking member 2021 switches from the locking position to the unlocking position in the first direction, the proximal end 2024 of the second locking member 2022 and the distal end 2025 of the first locking member 2021 approach each other and simultaneously drive the elastic member 2023 connected therebetween to store elastic force. The elastic member 2023 stores elastic force by being compressed. Synchronously, the distal end 2025 of the second locking member 2022 and the proximal end 2024 of the first locking member 2021 approach each other and synchronously drive the elastic member 2023 connected therebetween to store elastic force. The elastic member 2023 also stores elastic force by being compressed. Under the action of the elastic forces of the two elastic members 2023, the second locking member 2022 switches from the unlocking position to the locking position and the first locking member 2021 synchronously switches from the unlocking position to the locking position. The first locking member 2021 and the second locking member 2022 are both locked under the action of the two elastic members 2023.

[0078] In a preferred embodiment of the present application, the locking mechanism 202 includes two elastic members 2023. One elastic member 2023 is connected between the proximal end 2024 of the first locking member 2021 and the distal end 2025 of the second locking member 2022, and the other elastic member 2023 is connected between the distal end 2025 of the first locking member 2021 and the proximal end 2024 of the second locking member 2022.

[0079] By adopting two elastic members 2023, no matter the above-mentioned first embodiment, second embodiment or third embodiment is adopted, the locking mechanism 202 can be in a relatively balanced state, which is more conducive to the stable switching between the unlocking position of the first locking member 2021 and / or the second locking member 2022 and the locking mechanism 202, and stably maintaining in the locking position.

[0080] Furthermore, based on the use of two elastic members 2023, in a preferred embodiment of the present application, among the two locking members, any one of the locking members can move relative to the other locking member in a first direction, and any one of the locking members has a locking position and an unlocking position and can be switched between the two. That is to say, both the first locking member 2021 and the second locking member 2022 can move relative to each other in the first direction, making the design of the locking mechanism 202 more flexible and symmetrical, which is more conducive to the stable unlocking and stable locking of the locking mechanism 202, and can be more stably maintained in the locking position.

[0081] Wherein, at least one distal end 2025 of the two locking members is used to lock the first component. When the locking mechanism 202 provided in the embodiment of the present application is used for a shared helmet, the first component can be a replaceable inner lining 300. One of a groove structure or a protrusion structure can be provided on the distal end 2025. Correspondingly, the other of a protrusion structure or a groove structure can be provided on the replaceable inner lining 300, and the distal end 2025 and the replaceable inner lining 300 can be detachably connected through the groove structure and the protrusion structure.

[0082] For example, in the above first embodiment, the second locking member 2022 can move relative to the first locking member 2021 in the first direction, and the distal end 2025 of the second locking member 2022 can lock or unlock the replaceable inner lining 300. A plurality of locking mechanisms 202 can be provided near the wearing opening 1 of the shared helmet. Multiple distal ends 2025 of multiple second locking members 2022 in the multiple locking mechanisms 202 are used to achieve multi-point locking, so that the replaceable inner lining 300 can be stably fixed in the helmet.

[0083] For another example, in the above first embodiment, the second locking member 2022 can move relative to the first locking member 2021 in the first direction, and both the distal end 2025 of the second locking member 2022 and the distal end 2025 of the first locking member 2021 can lock or unlock the replaceable inner lining 300. A plurality of locking mechanisms 202 can be provided near the wearing opening 1 of the shared helmet. The two distal ends 2025 of the two locking members in one locking mechanism 202 can achieve locking simultaneously, so that the replaceable inner lining 300 can be stably fixed in the helmet.

[0084] The locking principles of the above second embodiment and the above first embodiment are the same, and will not be elaborated here.

[0085] In a preferred embodiment of the present application, the above-described third embodiment is adopted. Both the first locking member 2021 and the second locking member 2022 can move relative to each other in the first direction. The distal ends 2025 of the first locking member 2021 and the distal ends 2025 of the second locking member 2022 can approach each other or move away from each other simultaneously in the first direction. Both of the two distal ends 2025 are used to lock the replaceable lining 300.

[0086] The replaceable lining 300 provided by the embodiment of the present application includes a lining 300 body and a plurality of detachable members 302. The plurality of detachable members 302 are arranged at intervals along the periphery of the lining 300 body. Each detachable member 302 is provided with a fixed connection portion 3021 and a detachable connection portion 3022. Each detachable member 302 is fixedly connected to the lining 300 body through the fixed connection portion 3021, and all the detachable connection portions 3022 of the detachable members 302 are used for detachably connecting to the helmet shell. When a plurality of locking mechanisms 202 provided by the above embodiments are provided on the inner wall of the helmet shell, the plurality of detachable members 302 and the plurality of locking mechanisms 202 are arranged in a one-to-one manner. Hereinafter, the first component is taken as an example of the replaceable lining 300 for illustration.

[0087] Based on the above-described third embodiment, as Figures 1 to 8 shown, in some embodiments, the two distal ends 2025 are provided with a pair of distal end force-receiving sides 2025a facing away from each other. The distal end force-receiving sides 2025a are inclined relative to the first direction, and the pair of distal end force-receiving sides 2025a are symmetrically arranged along the first direction. The pair of distal end force-receiving sides 2025a are configured to contact a pair of distal end force-applying sides 30221a of the first component when the locking mechanism 202 and the first component move relative to each other in the second direction, and a pair of first external forces are provided by the pair of distal end force-applying sides 30221a. The pair of first external forces drive the two locking members to move towards each other, so that the two distal ends 2025 approach each other; wherein, the first direction and the second direction are perpendicular.

[0088] Furthermore, in some embodiments, the two distal ends 2025 are provided with a pair of second engaging structures 2025b facing away from each other. The distal end force-receiving sides 2025a and the second engaging structures 2025b on the same distal end 2025 are arranged in sequence and smoothly connected in the second direction. When the pair of distal end force-receiving sides 2025a are separated from the pair of distal end force-applying sides 30221a, the two locking members move away from each other under the elastic force of the two elastic members 2023, so that the two distal ends 2025 move away from each other and the pair of second engaging structures 2025b are engaged with the first component.

[0089] Correspondingly, as an example, in some embodiments, the detachable connection portion 3022 includes a pair of distal end force application portions 30221 arranged opposite to each other. A pair of first clamping structures 30221b are provided on the pair of distal end force application portions 30221, and the first clamping structures 30221b are used for detachably clamping with the pair of second clamping structures 2025b described above.

[0090] In some embodiments, a pair of distal end force application sides 30221a are provided on the pair of distal end force application portions 30221. The pair of distal end force application sides 30221a and the pair of first clamping structures 30221b are arranged in sequence and smoothly connected along the thickness direction of the inner lining 300 body. The pair of distal end force application sides 30221a are inclined with respect to the thickness direction of the inner lining 300 body and are used for guiding the pair of second clamping structures 2025b into the pair of first clamping structures 30221b.

[0091] When manually or automatically installing the replaceable inner lining 300 onto the locking mechanism 202, aligning the plurality of detachable parts 302 with the plurality of locking mechanisms 202 one by one, the helmet shell can be manually or automatically operated to synchronously drive the plurality of locking mechanisms 202 to move towards the plurality of detachable parts 302 along the second direction, or the replaceable inner lining 300 can be manually or automatically operated to drive the plurality of detachable parts 302 to move towards the plurality of locking mechanisms 202 along the second direction. During the movement, a pair of distal end force application portions 30221 of the detachable connection portion 3022 in the detachable part 302 apply force to two distal end force receiving sides 2025a in the two distal ends 2025. Since both the distal end force application side 30221a and the distal end force receiving side 2025a are inclined, the two distal ends 2025 of the two locking members can be forced to approach each other, switching from the locked position to the unlocked position.

[0092] Furthermore, since the distal end force application side 30221a is smoothly connected to the first clamping structure 30221b, and the distal end force receiving side 2025a and the second clamping structure 2025b are smoothly connected, as the movement continues, the pair of distal end force receiving sides 2025a disengage from the pair of distal end force application sides 30221a. Under the elastic force of the two elastic members 2023, the two locking members move away from each other respectively, and then the first clamping structure 30221b and the second clamping structure 2025b are successfully clamped.

[0093] Wherein, one of the first clamping structure 30221b and the second clamping structure 2025b can be a groove structure, and the other can be a protrusion structure. As an example, in some specific embodiments, the first clamping structure 30221b can be a groove structure, specifically a notch structure penetrating the thickness of the detachable part 302. The second clamping structure 2025b can be a protrusion structure, and its contour can just be clamped into the notch structure.

[0094] In summary, based on the locking mechanism 202 provided in the above-described third embodiment, through the mutual adaptation and mutual sliding guidance between the distal force application side 30221a and the distal force receiving side 2025a, combined with the mutual adaptation and detachable clamping of the first clamping structure 30221b and the second clamping structure 2025b, the first component can be locked on the locking mechanism 202, and the locking mechanism 202 can be provided on the shared helmet, thereby realizing the installation of the inner lining 300 of the shared helmet.

[0095] In other solutions, based on the locking mechanism 202 provided in the above-described first and second embodiments, the installation of the first component can also be completed.

[0096] For example, based on the locking mechanism 202 provided in the above-described first embodiment, the second locking member 2022 can move relative to the first locking member 2021 in the first direction, and the distal end 2025 of the second locking member 2022 can lock or unlock the replaceable inner lining 300. Specifically, the distal end 2025 of the second locking member 2022 is provided with a distal force receiving side 2025a facing away from the first locking member 2021, and the distal force receiving side 2025a is inclined relative to the first direction. The distal end 2025 of the second locking member 2022 is also provided with a second clamping structure 2025b, and the distal force receiving side 2025a and the second clamping structure 2025b are arranged in sequence and smoothly connected along the second direction. Correspondingly, as an example, the detachable connecting portion 3022 has a distal force application portion 30221, and the distal force application portion 30221 is provided with a first clamping structure 30221b and a distal force application side 30221a. The distal force application side 30221a and the first clamping structure 30221b are arranged in sequence and smoothly communicated along the thickness direction of the inner lining 300 body. Through the mutual adaptation and mutual sliding guidance between the distal force application side 30221a and the distal force receiving side 2025a, combined with the mutual adaptation and detachable clamping of the first clamping structure 30221b and the second clamping structure 2025b, the second locking member 2022 is forced to switch from the locking position to the unlocking position, and the replaceable inner lining 300 can be detachably clamped.

[0097] The sliding guidance and clamping principles of the above-described second embodiment and the above-described first embodiment are the same, and will not be elaborated here.

[0098] Furthermore, compared with the two symmetrically arranged distal ends 2025 of the two locking members and the two symmetrically arranged distal force application portions 30221 of the first component provided in the third embodiment, based on the same sliding guidance and clamping principle, a pair of translationally arranged distal ends 2025 and a pair of translationally arranged distal force application portions 30221 can be provided.

[0099] More specifically, the distal end 2025 on the right side of the first locking member 2021 and the distal end force application portion 30221 on the right side of the replaceable inner lining 300 are cancelled, the distal end 2025 on the left side of the second locking member 2022 is translated to the right side thereof, and the distal end force application portion 30221 on the left side of the replaceable inner lining 300 is translated to the right side thereof.

[0100] Based on the locking principle of the locking mechanism 202 provided in the above first embodiment, the replaceable inner lining 300 is manually or automatically installed. The replaceable inner lining 300 squeezes the second locking member 2022 along the second direction, and the second locking member 2022 moves from the left side to the right side, that is, moves from the locking position to the unlocking position. When the first latching structure 30221b and the second latching structure 2025b are latched with each other, the second locking member 2022 moves from the right side to the right side under the action of the elastic member 2023, that is, moves from the unlocking position to the locking position, and a pair of translationally arranged distal ends 2025 and a pair of translationally arranged distal end force application portions 30221 are completely adapted in place.

[0101] The above-mentioned pair of translationally arranged distal ends 2025 and a pair of translationally arranged distal end force application portions 30221 also apply to the locking principle of the locking mechanism 202 provided in the above second embodiment, and will not be elaborated here.

[0102] It should be noted that the application devices of the locking mechanism 202 include but are not limited to shared helmets, and can be non-shared helmets or other devices that require component replacement. The components that can be locked by the locking mechanism 202 include but are not limited to the replaceable inner lining 300.

[0103] It should be noted that the exemplary replaceable inner lining 300 can be manually or automatically replaced onto the locking mechanism 202. For example, the helmet and the replaceable inner lining 300 provided with the locking mechanism 202 can be manually operated to squeeze each other along the second direction and finally latch. Or, an automatic method can be adopted, an automatic device is used to drive the helmet to actively approach the replaceable inner lining 300 to complete the replacement, or an automatic device is used to drive the replaceable inner lining 300 to approach the locking mechanism 202 of the helmet to complete the replacement.

[0104] It should be noted that the locking mechanism 202 provided in the embodiment of the present application is applied to a helmet. In order to ensure the stability of the replaceable inner lining 300 in the helmet, a plurality of locking mechanisms 202 are provided in the helmet. In other embodiments, the specific application quantity of the locking mechanism 202 can be specifically selected according to specific requirements, and the embodiment of the present application does not make specific limitations thereto.

[0105] Based on the above-described third embodiment, in some embodiments, two proximal ends 2024 are provided with a pair of proximal force-receiving sides 2024a opposite to each other. The proximal force-receiving sides 2024a are inclined relative to the first direction, and the pair of proximal force-receiving sides 2024a are symmetrically arranged along the first direction.

[0106] When the user unlocks the locking mechanism 202 to separate the first component from the locking mechanism 202, the user can manually contact the pair of proximal force-receiving sides 2024a, and drive the two proximal ends 2024 to move away from each other through the pair of proximal force-receiving sides 2024a. Then, the two distal ends 2025 of the two locking members approach each other, and the two locking members are simultaneously switched from the locked position to the unlocked position, and the first component is unlocked and can be separated from the locking mechanism 202. That is to say, when the first component is the replaceable inner lining 300, the user can manually replace the replaceable inner lining 300 onto the helmet, or manually remove the replaceable inner lining 300 from the helmet. In this way, the user can complete the replacement of the inner lining 300 manually.

[0107] In other solutions, based on the locking mechanism 202 provided in the above first embodiment and second embodiment, the first component can also be manually unlocked.

[0108] For example, based on the locking mechanism 202 provided in the above first embodiment, the second locking member 2022 can move relative to the first locking member 2021 in the first direction. A proximal force-receiving side 2024a is provided on the proximal end 2024 of the second locking member 2022. The user drives the second locking member 2022 to move relative to the fixed first locking member 2021 by contacting the one proximal force-receiving side 2024a. The second locking member 2022 is switched from the locked position to the unlocked position, and the first component is unlocked and can be separated from the locking mechanism 202.

[0109] The manual unlocking principle of the above second embodiment and the above first embodiment is the same, and will not be elaborated here.

[0110] Based on the above-described third embodiment, a pair of proximal force-receiving sides 2024a are configured to contact a pair of proximal force-applying sides 1031b of the second component when the locking mechanism 202 and the second component move relative to each other in the second direction, and a pair of second external forces are provided by the pair of proximal force-applying sides 1031b. The pair of second external forces drive the two locking members to move towards each other so that the two distal ends 2025 approach each other; wherein, the first direction and the second direction are perpendicular.

[0111] In this way, the user can use an operating tool or an automatic replacement device to unlock the locking mechanism 202. For example, the user can use the replacement part 103 as an operating tool to unlock the first component by himself, or automatically unlock the first component through the replacement part 103 in the automatic replacement device.

[0112] Based on the above-mentioned third embodiment, the replacement part 103 provided in the embodiment of the present application has a disassembly part 1031. On both sides of the disassembly part 1031 along the above-mentioned first direction, there are two proximal force application parts 1031a. The two proximal force application parts 1031a have two proximal force application sides 1031b that face away from each other. The two proximal force application sides 1031b are inclined and symmetrically arranged with respect to the first direction. The proximal force application side 1031b is adapted to the proximal force receiving side 2024a of the locking mechanism 202, and is used to provide a first external force to the proximal force receiving side 2024a when moving towards the locking mechanism 202 along the second direction. By the first external force, the locking mechanism 202 is driven to switch from the locked position to the unlocked position, so as to disassemble the used replaceable inner lining 300 from the locking mechanism 202.

[0113] Based on the locking mechanism 202 provided in the above-mentioned first embodiment and second embodiment, the first component can also be unlocked by using the corresponding replacement part 103 and the corresponding automatic replacement device.

[0114] For example, based on the locking mechanism 202 provided in the above-mentioned first embodiment, the second locking part 2022 can move relative to the first locking part 2021 in the first direction. A proximal force receiving side 2024a is provided on the proximal end 2024 of the second locking part 2022. Correspondingly, a proximal force application part 1031a is provided on one side of the disassembly part 1031 along its radial direction. The proximal force application side 1031b is inclined with respect to the first direction. By contacting the proximal force receiving side 2024a, the proximal force application part 1031a provides an external force to drive the second locking part 2022 to move relative to the first locking part 2021 from the locked position to the unlocked position.

[0115] The principle of tool unlocking or automatic unlocking of the locking mechanism 202 provided in the above-mentioned second embodiment is the same as the unlocking principle of the above-mentioned first embodiment, and will not be elaborated here.

[0116] As a preferred embodiment of the locking mechanism 202 of the present application, the locking parts are in a ring shape. The two semi-ring parts where the two proximal ends 2024 of the two locking parts are located are stacked along the second direction, and a threading space 2026 is enclosed by the two semi-ring parts. The threading space 2026 is used for movably threading the second component to provide a second external force for the second component.

[0117] Among them, the replacement part 103 can enter or exit the threading space 2026 during the movement along the second direction. The design of the threading space 2026 is to enable the replacement part 103 to be more accurately aligned with the locking structure, so as to ensure that the proximal force receiving side 2024a on the disassembly part 1031 thereof and the proximal force receiving side 2024a on the proximal end 2024 of the locking part are accurately docked and the force is applied.

[0118] In other embodiments, the structures of the first locking member 2021 and the second locking member 2022 may be the same or different. The structure of the locking member may be an open-loop structure. The first locking member 2021 and the second locking member 2022 can be partially stacked, and the two distal ends 2025 are located on both sides of the overlapping portion along the first direction. The embodiments of the present application do not specifically limit the specific structure of the locking member. Any structure that can implement the locking principle of the locking mechanism 202 provided by the embodiments of the present application is within the protection scope of the present application.

[0119] In addition, it should be noted that for the locking mechanism 202 provided by the embodiments of the present application, the distal end 2025 is used to lock the first component, and the proximal end 2024 is used as the power driving part. However, based on the cooperative setting of the locking mechanism 202, the proximal end 2024 can also be used to lock the first component, and the distal end 2025 can be used as the power driving part.

[0120] For example, at least one locking member can move relative to the other locking member in the first direction, and has a locking position and an unlocking position and can be switched between the two. Among them, when the locking member is in the locking position, the two proximal ends 2024 are in a position close to each other, and the first component is locked here; when the locking member is in the unlocking position, the two proximal ends 2024 are in a position away from each other, and the first component is unlocked at this time. The locking and unlocking principles are only different based on the functional switching of the proximal end 2024 and the distal end 2025, but the cooperation mode of the two locking members is the same as that of the first embodiment, the second embodiment and the third embodiment. This solution also belongs to the design concept of the present application and is within the protection scope of the present application.

[0121] As a preferred embodiment of the locking mechanism 202 of the present application, the locking mechanism 202 further includes a cage 203. The cage 203 is provided with a first slideway 2031 and a second slideway 2032. The first slideway 2031 and the second slideway 2032 are arranged in sequence along the first direction, and both the first slideway 2031 and the second slideway 2032 extend along the first direction. The two locking members are respectively the first locking member 2021 and the second locking member 2022. The first locking member 2021 is slidably connected to the first slideway 2031, and the second locking member 2022 is slidably connected to the second slideway 2032. That is, the best implementation of the above-mentioned third embodiment is that the first locking member 2021 and the second locking member 2022 are respectively slidably connected to the cage 203.

[0122] In a specific embodiment, the first slideway 2031 may include a first proximal slideway 2031a and a first distal slideway 2031b. The first proximal slideway 2031a and the first distal slideway 2031a are arranged in sequence along the first direction, and both the first proximal slideway 2031a and the first distal slideway 2031a extend along the first direction. The proximal end 2024 and the distal end 2025 of the first locking member 2021 are respectively slidably connected to the first proximal slideway 2031a and the first distal slideway 2031a.

[0123] In a specific embodiment, the second slideway 2032 may include a second proximal slideway 2032a and a second distal slideway 2032b. The second proximal slideway 2032a and the second distal slideway 2032b are arranged in sequence along the first direction, and both the second proximal slideway 2032a and the second distal slideway 2032b extend along the first direction. The proximal end 2024 and the distal end 2025 of the second locking member 2022 are respectively slidably connected to the second proximal slideway 2032a and the second distal slideway 2032a.

[0124] As a preferred embodiment of the locking mechanism 202 of the present application, the locking mechanism 202 may further include a locking housing 204. The locking housing 204 may be fixedly connected to the inner wall of the helmet shell. The upper end of the cage 203 is connected to the locking housing 204. The above-mentioned first slideway 2031 and the second slideway are provided at the lower end of the cage 203. The first locking member 2021 and the second locking member 2022 are respectively slidably connected to the lower end of the cage 203, that is, in the direction towards the wearing opening 1.

[0125] Of course, in other embodiments, the setting of the locking housing 204 may be cancelled, and the cage 203 may be directly fixedly connected to the inner wall of the helmet shell.

[0126] Based on the locking mechanism 202 provided by the embodiments of the present application, the embodiments of the present application further provide a shared helmet. The helmet includes a helmet shell and a first component, and the locking mechanism 202 as described above. Among them, the first component is a replaceable inner liner 300. The locking mechanism 202 is installed on the inner wall of the helmet shell. When the locking member is in the locked position, the two distal ends 2025 thereof are in positions away from each other, and the replaceable inner liner 300 is in a locked state relative to the helmet shell; when the locking member is in the unlocked position, the two distal ends 2025 are in positions close to each other, and the replaceable inner liner 300 is in a disassembled state relative to the helmet shell.

[0127] Applying the locking mechanism 202 provided in the embodiments of the present application to a shared helmet, the disposable replaceable inner lining 300 can be locked by the locking mechanism 202, so that the replaceable inner lining 300 is fixed in the helmet shell. And the replaceable inner lining 300 can be detached from the locking mechanism 202 when the locking mechanism 202 is in the unlocked position, then the inner lining 300 is detached from the shared helmet, and the replacement of the next inner lining 300 can be carried out.

[0128] The following provides a detailed description of the replaceable inner lining 300 provided in the embodiments of the present application.

[0129] As Figures 9 to 11 shown, the replaceable inner lining 300 provided in the embodiments of the present application includes an inner lining 300 body and a plurality of detachable parts 302. The plurality of detachable parts 302 are arranged at intervals along the periphery of the inner lining 300 body. Each detachable part 302 is provided with a fixed connection part 3021 and a detachable connection part 3022. Each detachable part 302 is fixedly connected to the inner lining 300 body through the fixed connection part 3021, and all the detachable connection parts 3022 of the detachable parts 302 are used for detachably connecting to the helmet shell.

[0130] For the replaceable inner lining 300 provided in the embodiments of the present application, all the detachable connection parts 3022 of the detachable parts 302 are used for detachably connecting to the helmet shell. By providing a plurality of detachable parts 302 on the periphery of the inner lining 300 body, the replaceable inner lining 300 can be replaced as a disposable consumable on the helmet, and the detachable parts 302 can be manually or automatically assembled near the wearing port 1 of the helmet.

[0131] The replaceable inner lining 300 provided in the embodiments of the present application can be used as a disposable consumable and can be extracted and replaced with the number of uses of the shared helmet. Each time the user uses a shared electric vehicle, the storage device or automatic replacement device of the replaceable inner lining 300 can be opened synchronously through the identification code, and the inner lining 300 can be manually extracted for replacement, or the inner lining 300 of the helmet can be automatically replaced by the automatic replacement device. The replaceable inner lining 300 is not exposed to the outdoor environment during the storage state. Each time the user can extract or replace a new inner lining 300 according to the needs, which ensures the hygienic safety of the helmet inner lining 300 and can improve the usage probability and safety of the electric vehicle.

[0132] For the replaceable inner lining 300 provided in the embodiments of the present application, the user can purchase and store it by himself / herself and can carry and replace it by himself / herself when using the shared helmet. Or, it is purchased and stored by the shared device provider, and the user extracts and uses it by scanning the identification code. Or, the replaceable inner lining 300 can be stored in the automatic replacement device and replaced on the helmet by the automatic replacement device, and the provider replenishes the stock regularly.

[0133] The replaceable inner lining 300 provided by the embodiments of the present application. When multiple replaceable inner linings 300 are in a stacked and stored state, the user can directly place the helmet on the uppermost replaceable inner lining 300 among the multiple replaceable inner linings 300, and by pressing down the helmet, the replaceable inner lining 300 can be replaced on the helmet in a snap-connectable manner. For example, the inner lining 300 provided by the embodiments of the present application can be snap-connected to the locking mechanism 202 through the snap-connecting portion 3022 in the detachable member 302. Of course, the replaceable inner lining 300 provided by the embodiments of the present application is not limited to the snap-connecting manner of the snap-connecting portion 3022 and the locking mechanism 202 provided by the embodiments of the present application.

[0134] In some embodiments, the body of the inner lining 300 provided by the embodiments of the present application is a flexible material piece and has a sheet structure. The body of the inner lining 300 has a folded state and an unfolded state; wherein, when the body of the inner lining 300 is in the folded state, the body of the inner lining 300 is planar; when the body of the inner lining 300 is in the unfolded state, the body of the inner lining 300 is adapted to the inner wall of the helmet shell. The body of the inner lining 300 includes at least one folding portion, and the folding portion includes at least an adjacent first folding layer and a second folding layer. When the first folding layer and the second folding layer are overlapped, the body of the inner lining 300 is in the folded state, and when the first folding layer and the second folding layer are unfolded, the body of the inner lining 300 is in the unfolded state.

[0135] The body of the inner lining 300 is a flexible material piece and has a sheet structure, and its state can be changed according to specific requirements. When the body of the inner lining 300 is in the folded state, the body of the inner lining 300 is planar, so that multiple bodies of the inner lining 300 can be stacked and stored, occupying a small space and facilitating the sequential extraction, installation and use one by one. When the body of the inner lining 300 is in the unfolded state, the body of the inner lining 300 is adapted to the inner wall of the helmet shell, which is convenient for the user to wear the helmet and plays a role in isolating the helmet.

[0136] Among them, the detachable member 302 can be a flexible rope, a magic tape or a rigid detachable member 302. For example, the detachable member 302 can be a flexible rope, and a through-hole is designed at the attachment of the wearing opening 1 of the helmet shell. The flexible rope passes through the through-hole and is knotted, or the adjacent flexible ropes are fixedly connected, so that the inner lining 300 can be fixed relative to the helmet shell. For example, the detachable member 302 can be the prickly surface or the soft surface of the magic tape, and the soft surface or the prickly surface is designed at the attachment of the wearing opening 1 of the helmet shell. Through the fitting of the prickly surface and the soft surface, the inner lining 300 can be fixed relative to the helmet shell. For example, the detachable member 302 is a rigid detachable member 302, and the rigid detachable member 302 is connected to the helmet shell in a detachable snap-connecting manner.

[0137] In some embodiments, the detachable member 302 is a rigid detachable member 302, which can be a plastic member with a certain hardness. The detachable member 302 includes a first piece and a second piece. The first piece and the second piece are stacked along the thickness direction of the inner lining 300 body. The periphery of the inner lining 300 body is clamped between the first piece and the second piece. A detachable connection portion 3022 is provided on the side of the first piece facing away from the second piece or the side of the second piece facing away from the first piece.

[0138] The detachable member 302 in the form of a piece can reduce the manufacturing cost and thus the cost of the replaceable inner lining 300. Moreover, the clamping method is more conducive to the convenient positioning of the inner lining 300 body, making the height positions of multiple detachable members 302 relative to the plane where the inner lining 300 is located more consistent, which is beneficial to the synchronous automatic installation of multiple detachable members 302 and the helmet shell.

[0139] In some specific embodiments, the first piece and the second piece are bonded. Or, the first piece and the second piece are detachably clamped. Or, a clamping groove is formed between the radially inward side of the first piece and the radially inward side of the second piece, and the periphery of the inner lining 300 body is clamped in the clamping groove. The radially outward side of the first piece and the radially outward side of the second piece are integrally connected. The setting method of the first piece and the second piece can be selected according to the material and cost of the inner lining 300 body.

[0140] Corresponding to the locking mechanism 202 provided in the above third embodiment, in some embodiments, the detachable connection portion 3022 includes a pair of distal end applying force portions 30221 arranged oppositely. A pair of first clamping structures 30221b are provided on the pair of distal end applying force portions 30221, and the first clamping structures 30221b are used for detachably clamping with a pair of second clamping structures 2025b on the helmet shell. In some embodiments, a pair of distal end applying force sides 30221a are provided on the pair of distal end applying force portions 30221. The pair of distal end applying force sides 30221a and the pair of first clamping structures 30221b are arranged in sequence and smoothly connected along the thickness direction of the inner lining 300 body. The pair of distal end applying force sides 30221a are inclined relative to the thickness direction and are used to guide the pair of second clamping structures 2025b into the pair of first clamping structures 30221b.

[0141] In other embodiments, corresponding to the locking mechanism 202 provided in the above-mentioned first embodiment and second embodiment, the detachable connection portion 3022 has a distal end force application portion 30221, and the distal end force application portion 30221 is provided with a first clamping structure 30221b and a distal end force application side 30221a. The distal end force application side 30221a and the first clamping structure 30221b are arranged in sequence and smoothly connected along the thickness direction of the main body of the inner liner 300. Through the mutual adaptation and mutual sliding guidance between the distal end force application side 30221a and the distal end force receiving side 2025a, combined with the mutual adaptation and detachable clamping between the first clamping structure 30221b and the second clamping structure 2025b, the second locking member 2022 is forced to switch from the locking position to the unlocking position, and the replaceable inner liner 300 is detachably clamped.

[0142] Corresponding to the locking mechanism 202 provided in the above-mentioned third embodiment, a pair of distal end force application sides 30221a are symmetrically arranged along the tangential direction or the radial direction of the main body of the inner liner 300, and a pair of first clamping structures 30221b are symmetrically arranged along the tangential direction or the radial direction of the main body of the inner liner 300. That is to say, in the embodiment of the locking mechanism 202, when the locking mechanism 202 is installed in the helmet or when the replaceable inner liner 300 corresponds to the locking mechanism 202, the first direction can be the tangential direction at the positioning point of the locking mechanism 202 in the circumferential direction of the helmet or the inner liner 300, or the radial direction of the helmet and the inner liner 300.

[0143] A pair of distal end force receiving sides 2025a are symmetrically arranged along the tangential direction of the point where the locking mechanism 202 is located. In other embodiments, a pair of distal end force receiving sides 2025a can be symmetrically arranged along the radial direction of the inner liner 300, and this radial direction is perpendicular to the above-mentioned tangential direction.

[0144] Corresponding to the locking mechanism 202 provided in the above-mentioned first embodiment and second embodiment, a pair of distal end force application sides 30221a are arranged in translation along the tangential direction or the radial direction of the main body of the inner liner 300, and a pair of first clamping structures 30221b are arranged in translation along the tangential direction or the radial direction of the main body of the inner liner 300. That is, one distal end force application side 30221a is translated along the tangential direction or the radial direction of the main body of the inner liner 300 to the position of the other distal end force application side 30221a, and the two distal end force application sides 30221a are completely the same.

[0145] For example, based on the locking principle of the locking mechanism 202 provided in the above first embodiment, the replaceable inner lining 300 is manually or automatically installed. The replaceable inner lining 300 presses the second locking member 2022 in the second direction, and the second locking member 2022 moves from left to right, that is, moves from the locking position to the unlocking position. When the first engaging structure 30221b and the second engaging structure 2025b are engaged with each other, the second locking member 2022 moves from right to left under the action of the elastic member 2023, that is, moves from the unlocking position to the locking position, and a pair of translationally arranged distal ends 2025 and a pair of translationally arranged distal end force application parts 30221 are fully adapted.

[0146] Corresponding to the locking mechanism 202 provided in the above third embodiment, in some embodiments, a through hole 30222 is provided at the center of the detachable connecting part 3022, and the through hole 30222 can be arranged opposite to the through space 2026 of the above locking mechanism 202. The hole edge of the through hole 30222 includes two first extension parts 30222a and two second extension parts 30222b which are oppositely arranged. The distance from the first extension part 30222a to the hole axis of the through hole 30222 is greater than the distance from the second extension part 30222b to the hole axis, and the first extension part 30222a and the second extension part 30222b are alternately arranged along the circumferential direction of the through hole 30222; wherein, two distal end force application parts 30221 are arranged outside the two first extension parts 30222a. Wherein, both the first extension part 30222a and the second extension part 30222b are semicircular.

[0147] Wherein, both the through hole 30222 and the through space 2026 are used for passing through the disassembly part 1031 or the installation part 1032 of the replacement part 103.

[0148] Wherein, corresponding to the locking mechanism 202 and the replaceable inner lining 300 provided in the above third embodiment, two proximal end force application parts 1031a are provided on both sides of the disassembly part 1031 of the replacement part 103 provided in the embodiment of the present application along the above first direction. The two proximal end force application parts 1031a have two proximal end force application sides 1031b which are away from each other, and the two proximal end force application sides 1031b are inclined and symmetrically arranged relative to the first direction.

[0149] Wherein, the maximum distance between the two first extension parts 30222a along the first direction is greater than the maximum distance between the two proximal end force application parts 1031a along the first direction, so as to allow the two proximal end force application parts 1031a to smoothly pass through the space between the two first extension parts 30222a, contact the two proximal end force application sides 2024a of the two proximal ends 2024 on the two locking members and apply the above second external force, and allow the two proximal end force application parts 1031a to smoothly exit the through hole 30222 and the through space 2026.

[0150] Furthermore, a strip-off portion 1031c is provided on the disassembly portion 1031 in a direction perpendicular to the first direction. The strip-off portion 1031c is provided with an inclined surface. In other words, the strip-off portion 1031c and the proximal end applying portion 1031a are arranged at intervals along the circumferential direction of the disassembly portion 1031. The strip-off portion 1031c includes a main body portion a and a telescopic portion b. The main body portion a is connected to the disassembly portion 1031 through the telescopic portion b, so that the strip-off portion 1031c can telescopically move relative to the disassembly portion 1031 in a direction perpendicular to the first direction.

[0151] Among them, the strip-off portion 1031c has two design schemes. The strip-off portion 1031c can be a single-sided arrangement or a bilateral symmetrical arrangement of two. Both of these two design schemes are applicable to the above-mentioned detachable connection portion 3022.

[0152] Furthermore, the distance from the edge of the second expansion portion 30222b to the central axis of the through hole 30222 is less than the maximum distance from the strip-off portion 1031c to the central axis of the disassembly portion 1031 when the strip-off portion 1031c is in the extended state, and greater than the maximum distance from the strip-off portion 1031c to the central axis of the disassembly portion 1031 when the strip-off portion 1031c is in the contracted state. The natural state of the second expansion portion 30222b is the extended state. Due to the setting of the inclined surface, the second expansion portion 30222b can prevent the extended strip-off portion 1031c from passing through the through hole 30222 when the replacement part 103 exits the through hole 30222, and can squeeze the strip-off portion 1031c into the contracted state and allow the strip-off portion 1031c to pass through the through hole 30222 when the replacement part 103 enters the through hole 30222.

[0153] Specifically, during the process of the disassembly portion 1031 entering the through hole 30222 and the through space 2026, the strip-off portion 1031c is squeezed by the second expansion portion 30222b and switches from the extended state to the contracted state. After the strip-off portion 1031c passes through the through hole 30222 and enters the through space 2026, the squeezing force of the second expansion portion 30222b on the strip-off portion 1031c disappears, and the strip-off portion 1031c naturally switches to the extended state. Synchronously, the two proximal end applying portions 1031a apply a second external force to the two proximal ends 2024 and drive the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 to approach each other, and the replaceable inner lining 300 is disassembled. During the process of the disassembly portion 1031 exiting the through space 2026 and the through hole 30222, the strip-off portion 1031c strips off the replaceable inner lining 300.

[0154] Among them, corresponding to the two design schemes of the detachment part 1031c, the second expansion part 30222b can also be set to one or two corresponding to the detachment part 1031c. When the second expansion part 30222b is two and the detachment part 1031c is two, the two detachment parts 1031c and the two second expansion parts 30222b are arranged one-to-one.

[0155] Corresponding to the locking mechanism 202 provided in the above-mentioned first embodiment and second embodiment, since only a second external force needs to be applied to a proximal end 2024 by a proximal end applying side 1031b of a proximal end applying part 1031a, a proximal end applying part 1031a can be correspondingly provided. On this basis, one or two detachment parts 1031c can be provided.

[0156] It should be noted that based on the replaceable inner lining 300 provided in the embodiments of the present application, when the detachable part 302 is a rigid detachable part 302, its structural form has a variety of designs, and the corresponding locking mechanism 202 also has a variety of forms, not limited to the structure of the detachable connection part 3022 provided in the embodiments of the present application and the locking mechanism 202 provided in the embodiments of the present application. Based on a plurality of detachable parts 302, the replaceable inner lining 300 can be directly snapped onto the helmet through a groove structure and a protrusion structure, or indirectly snapped onto the helmet through other snap parts.

[0157] Based on the replaceable inner lining 300 provided in the embodiments of the present application, the embodiments of the present application also provide a shared helmet, which includes a helmet shell and the replaceable inner lining 300 as above. The helmet shell has a wearing opening 1, and the edge of the replaceable inner lining 300 and the edge of the wearing opening 1 are detachably connected directly or indirectly through a detachable connection part 3022.

[0158] As Figures 12 to 17 shown, the replacement part 103 provided in the embodiments of the present application includes a detachment part 1031, an installation part 1032, and a storage part; the detachment part 1031 and the installation part 1032 are arranged at intervals, and the storage part connects the detachment part 1031 and the installation part 1032. Among them, the detachment part 1031 is used to detach the used replaceable inner lining 300 from the helmet, and the area of the storage part close to the detachment part 1031 is used to store the used replaceable inner lining 300 removed by the detachment part 1031. Among them, the area of the storage part close to the installation part 1032 is used to store the unused replaceable inner lining 300, and the installation part 1032 is used to guide and install the replaceable inner lining 300 to the inner side of the helmet.

[0159] The replacement part 103 provided by the present application can accommodate both the used replaceable inner lining 300 and the unused replaceable inner lining 300 through the accommodating part. The used replaceable inner lining 300 can be disassembled from the helmet through the guiding and assisting functions provided by the disassembly part 1031. The replaceable inner lining 300 can be guided and installed inside the helmet through the guiding and assisting functions provided by the installation part 1032. The installation, disassembly, and accommodation of the inner lining 300 can be completed through the replacement part 103.

[0160] Through the replacement part 103 provided by the present application, the user can use the replacement part 103 as a storage tool and an operating tool, or the replacement part 103 can be arranged in a replacement device. The user can operate the helmet by himself to dock it with the replacement part 103 to complete the replacement of the inner lining 300, or the replacement device is an automated device and can automatically complete the replacement of the helmet inner lining 300.

[0161] In some embodiments, the replacement part 103 is a rod. The two end parts of the replacement part 103 are respectively the disassembly part 1031 and the installation part 1032, and the rod area between the two end parts on the replacement part 103 is the accommodating part.

[0162] The rod has a length dimension extending along its central axis, and this length dimension provides a space for stacking the replaceable inner lining 300. Multiple used replaceable inner linings 300 can be stacked and sleeved on the area of the replacement part 103 near the disassembly part 1031, and multiple unused replaceable inner linings 300 can be stacked and sleeved on the area of the replacement part 103 near the installation part 1032. Using one rod to complete the positioning and accommodation of the inner lining 300, and the rod can provide a guiding effect for the disassembly and installation of the inner lining 300.

[0163] In some embodiments, the cross-section of the rod can be circular, oval, or polygonal. In the preferred embodiment of the present application, the rod is a round rod. Exemplarily, the ends of the disassembly part 1031 and the installation part 1032 can both be designed as semi-circular shapes to keep the end faces of the disassembly part 1031 and the installation part 1032 smooth.

[0164] In some embodiments, the replaceable inner lining 300 corresponding to the replacement part 103 can adopt the inner lining 300 provided by the embodiment of the present application with a rigid detachable part 302, and the through hole 30222 therein is for the disassembly part 1031 and the installation part 1032 to pass through and enter the through space 2026 of the locking mechanism 202.

[0165] In some embodiments, the accommodating part includes a first accommodating part and a second accommodating part. The first accommodating part is the rod area near the disassembly part 1031, and the second accommodating part is the rod area near the installation part 1032. The length of the rod area where the first accommodating part is located and the length of the rod area where the second accommodating part is located are configured to increase and decrease reciprocally.

[0166] By configuring the lengths of the rod regions where the first storage part and the second storage part are located to be in an inverse relationship, after accommodating a certain number of inner linings 300 in the storage parts, as the used inner linings 300 and the unused inner linings 300 are continuously replaced, the quantities of the two are inversely proportional. Therefore, the inverse configuration relationship of the rod regions can be used to collect the corresponding inversely proportional quantities of the inner linings 300.

[0167] The replacement part 103 provided in this embodiment cleverly utilizes the rod length regions of the rod regions to achieve the storage of the used inner linings 300, and at the same time achieve the storage of the unused inner linings 300, and enables the storage space to change with the change in the replacement quantity, making full use of the rod regions of the rod member as the storage parts and improving the utilization of the storage space.

[0168] In some embodiments, a proximal force application part 1031a is provided on at least one side of the disassembly part 1031 along its radial direction, and the proximal force application part 1031a protrudes from the rod region of the replacement part 103. The proximal force application part 1031a has a proximal force application side 1031b facing away from its central axis, and the proximal force application side 1031b is inclined with respect to the central axis. Among them, the proximal force application side 1031b is used to provide a first external force to the helmet when moving towards the helmet along the central axis, and the used replaceable inner lining 300 is disassembled from the helmet through the first external force.

[0169] Corresponding to the locking mechanism 202 and the replaceable inner lining 300 provided in the above third embodiment, in some embodiments, proximal force application parts 1031a are respectively provided on both sides of the disassembly part 1031 along its radial direction, and the two proximal force application parts 1031a are symmetrically arranged with respect to the central axis. The proximal force application side 1031b is adapted to the proximal force receiving side 2024a of the locking mechanism 202, and provides a first external force to the proximal force receiving side 2024a when moving towards the locking mechanism 202 along the second direction, and drives both the first locking member 2021 and the second locking member 2022 to switch from the locking position to the unlocking position through the first external force, so as to disassemble the used replaceable inner lining 300 from the locking mechanism 202.

[0170] Corresponding to the locking mechanism 202 and the replaceable inner lining 300 provided in the above first embodiment and second embodiment, a proximal force application part 1031a is provided on one side of the disassembly part 1031 along its radial direction, and the proximal force application part 1031a is inclined with respect to the central axis of the replacement part 103. It drives the second locking member 2022 in the first embodiment or the first locking member 2021 in the second embodiment to switch from the locking position to the unlocking position through a first external force, so as to disassemble the used replaceable inner lining 300 from the locking mechanism 202.

[0171] Corresponding to the above-described translation setting solutions for the two distal ends 2025, in some embodiments, proximal force application portions 1031a are respectively provided on both sides of the disassembly portion 1031 along its radial direction, and two proximal force application sides 1031b in the two proximal force application portions 1031a are arranged to translate along the radial direction.

[0172] In some embodiments, a pulling-away portion 1031c is provided on at least one side of the disassembly portion 1031 along its radial direction. The pulling-away portion 1031c and the proximal force application portion 1031a are arranged at intervals in the circumferential direction of the disassembling member. The pulling-away portion 1031c is provided with an inclined surface. The pulling-away portion 1031c includes a main body portion a and a telescopic portion b. The main body portion a is connected to the disassembly portion 1031 through the telescopic portion b, so that the pulling-away portion 1031c can telescopically move relative to the disassembly portion 1031 along the radial direction. The pulling-away portion 1031c is used for pulling away and storing the used replaceable inner liner 300 removed from the disassembly portion 1031 to the storage portion in the extended state. In some specific embodiments, pulling-away portions 1031c are respectively provided on both sides of the disassembly portion 1031 along its radial direction, and the two pulling-away portions 1031c are symmetrically arranged about the central axis.

[0173] Based on the design of the extension portion of the above-described replaceable inner liner 300, wherein, the distance from the edge of the second extension portion 30222b to the central axis of the through hole 30222 is less than the maximum distance from the pulling-away portion 1031c to the central axis of the disassembly portion 1031 in the extended state, and greater than the maximum distance from the pulling-away portion 1031c to the central axis of the disassembly portion 1031 in the contracted state. The natural state of the pulling-away portion 1031c is the extended state. Due to the setting of the inclined surface, the second extension portion 30222b can prevent the pulling-away portion 1031c in the extended state from passing through the through hole 30222 when the replacement member 103 exits the through hole 30222, and can squeeze the pulling-away portion 1031c into the contracted state and allow the pulling-away portion 1031c to pass through the through hole 30222 when the replacement member 103 enters the through hole 30222.

[0174] During the process of the disassembly portion 1031 entering the through hole 30222 and the through space 2026, the pulling-away portion 1031c is squeezed by the second extension portion 30222b and switches from the extended state to the contracted state. After the pulling-away portion 1031c passes through the through hole 30222 and enters the through space 2026, the squeezing force of the second extension portion 30222b on the pulling-away portion 1031c disappears, and the pulling-away portion 1031c naturally switches to the extended state. Synchronously, the two proximal force application portions 1031a apply a second external force to the two proximal ends 2024, and drive the two distal ends 2025 of the first locking member 2021 and the second locking member 2022 to approach each other, the replaceable inner liner 300 is disassembled, and during the process of the disassembly portion 1031 exiting the through space 2026 and the through hole 30222, the pulling-away portion 1031c pulls away the replaceable inner liner 300.

[0175] In some embodiments, an anti - detachment part 1032a is provided on at least one side of the mounting part 1032 along its radial direction. The anti - detachment part 1032a includes a main body part a and a telescopic part b. The main body part a is connected to the anti - detachment part 1032a through the telescopic part b, so that the anti - detachment part 1032a can telescopically move relative to the mounting part 1032 along the radial direction. The anti - detachment part 1032a is used to prevent the unused replaceable inner lining 300 from detaching from the storage part in the extended state, and is in a contracted state when the unused replaceable inner lining 300 is mounted on the helmet to allow the unused replaceable inner lining 300 to detach from the mounting part 1032. Among them, the telescopic part b is provided with an inclined surface.

[0176] Based on the design of the extension part of the above - mentioned replaceable inner lining 300, the distance from the edge of the second extension part 30222b to the central axis of the through - hole 30222 is less than the maximum distance from the anti - detachment part 1032a to the central axis of the mounting part 1032 when the anti - detachment part 1032a is in the extended state, and greater than the maximum distance from the anti - detachment part 1032a to the central axis of the mounting part 1032 when the anti - detachment part 1032a is in the contracted state. The natural state of the anti - detachment part 1032a is the extended state, which prevents the unused replaceable inner lining 300 from detaching from the storage part in the extended state. Due to the setting of the inclined surface, the second extension part 30222b can squeeze the anti - detachment part 1032a into the contracted state when the replacement part 103 enters the through - hole 30222 and allows the anti - detachment part 1032a to pass through the through - hole 30222.

[0177] Based on the design of the above - mentioned cage 203, the cage 203 is provided with an inclined surface corresponding to the inclined surface of the anti - detachment part 1032a. After the anti - detachment part 1032a enters the through - hole 30222, the inclined surface of the anti - detachment part 1032a just contacts the inclined surface on the cage 203 and continues to maintain the contracted state. After the inner lining 300 is assembled, when the anti - detachment part 1032a exits the through - hole space 2026 and the through - hole 30222, the anti - detachment part 1032a pops out and continues to prevent the unused replaceable inner lining 300 from detaching from the storage part.

[0178] When the replacement part 103 provided in the embodiment of the present application is applied, multiple replacement parts 103 can be used simultaneously. For the rod - type replacement part 103 as described above, multiple replacement parts 103 are arranged along the same circumferential direction of the inner lining 300, and multiple replacement parts 103 are exactly coaxially corresponding to multiple through - holes 30222 in multiple detachable connection parts 302 of multiple detachable parts 302 of the same inner lining 300. In this way, the installation or disassembly of the same inner lining 300 is realized through multiple replacement parts 103.

[0179] In the first application embodiment, the replacement part 103 provided in the embodiments of the present application is applied to a manual replacement device. The manual replacement device can be provided with two replacement ports facing away from each other. A plurality of disassembly parts 1031 face one replacement port, and a plurality of installation parts face the other replacement port. A user can mount a helmet on one replacement port. A slideway structure can be arranged near the one replacement port. The user manually drives the helmet to move along the slideway, driving the helmet closer to the plurality of replacement parts 103. In this way, a plurality of locking mechanisms 202 on the helmet can approach the plurality of disassembly parts 1031 of the plurality of replacement parts 103 one by one and be inserted thereinto. The plurality of disassembly parts 1031 simultaneously disassemble the same inner lining 300 from the plurality of locking mechanisms 202 and complete the storage.

[0180] After the disassembly is completed, the user can mount the helmet on the other replacement port. A slideway structure can be arranged near the other replacement port. The user manually drives the helmet to move along the slideway, driving the helmet closer to the plurality of replacement parts 103. In this way, a plurality of locking mechanisms 202 on the helmet can approach the plurality of installation parts 1032 of the plurality of replacement parts 103 one by one and be inserted thereinto. The plurality of installation parts 1032 simultaneously guide the same inner lining 300 onto the plurality of locking mechanisms 202. The user manually removes the helmet, and thus the replacement of the inner lining 300 is completed.

[0181] In the second application embodiment, the replacement part 103 provided in the embodiments of the present application is applied to a fully automatic replacement device. The fully automatic replacement device can be provided with one replacement port. The automatic replacement device can also be provided with a flipping mechanism. The plurality of replacement parts 103 are arranged on the flipping mechanism. The flipping mechanism can drive the replacement parts 103 to flip along the rotation axis, thereby driving the disassembly parts 1031 and the installation parts 1032 to switch positions at the same location, so as to disassemble and install the replaceable inner lining 300 of the helmet at the same location; wherein, the rotation axis is perpendicular to the central axis of the replacement part 103.

[0182] Furthermore, on the basis of providing the flipping mechanism, the automatic replacement device can also be provided with a lifting mechanism 102. The lifting mechanism 102 can drive the flipping mechanism to lift, or after the helmet is configured on the replacement port, the lifting mechanism 102 can drive the helmet to lift. In this way, one of the helmet and the replacement part is driven to be inserted into the other by an automated method to complete disassembly and installation at the same location.

[0183] In the third application embodiment, the replacement part 103 provided in the embodiment of the present application is applied to a semi-automatic replacement device. The semi-automatic replacement device can be provided with two replacement ports facing away from each other. A plurality of disassembly parts 1031 face one replacement port, and a plurality of installation parts face the other replacement port. The semi-automatic replacement device is only provided with a lifting mechanism 102, and a plurality of replacement parts 103 are arranged on the lifting mechanism 102. The lifting mechanism 102 can drive the plurality of replacement parts 103 to lift. After the user configures the helmet at one replacement port, the lifting mechanism 102 drives the plurality of replacement parts 103 to approach the helmet simultaneously. In this way, a plurality of locking mechanisms 202 on the helmet can be inserted into a plurality of disassembly parts 1031 of the plurality of replacement parts 103 one by one, and the plurality of disassembly parts 1031 simultaneously disassemble the same inner lining 300 from the plurality of locking mechanisms 202 and complete the storage.

[0184] After the disassembly is completed, the user removes the helmet and configures it at the other replacement port. At this time, the lifting mechanism 102 drives the plurality of replacement parts 103 to approach the helmet simultaneously. In this way, a plurality of locking mechanisms 202 on the helmet can be inserted into a plurality of installation parts 1032 of the plurality of replacement parts 103 one by one, and the plurality of installation parts 1032 simultaneously guide and install the same inner lining 300 onto the plurality of locking mechanisms 202. The user manually removes the helmet, and the replacement of the inner lining 300 is completed.

[0185] In the fourth application embodiment, the replacement part 103 provided in the embodiment of the present application is applied to a semi-automatic replacement device. The semi-automatic replacement device can be provided with one replacement port. The semi-automatic replacement device is only provided with a flipping mechanism. A plurality of replacement parts 103 are arranged on the flipping mechanism. The flipping mechanism can drive the replacement part 103 to flip along the rotation axis, thereby driving the disassembly part 1031 and the installation part 1032 to switch at the same position, so as to disassemble and install the replaceable inner lining 300 of the helmet at the same position; wherein, the rotation axis is perpendicular to the central axis of the replacement part 103.

[0186] The user can assemble the helmet at the replacement port. A slideway structure can be arranged near the replacement port. When a plurality of disassembly parts 1031 face the replacement port, the user manually drives the helmet to move along the slideway, driving the helmet to approach the plurality of replacement parts 103. In this way, a plurality of locking mechanisms 202 on the helmet can approach a plurality of disassembly parts 1031 of the plurality of replacement parts 103 one by one and be inserted into them. The plurality of disassembly parts 1031 simultaneously disassemble the same inner lining 300 from the plurality of locking mechanisms 202 and complete the storage.

[0187] After the disassembly is completed, the user removes the helmet. After the flipping mechanism flips, the user can reinstall the helmet on the replacement port again. The user manually drives the helmet to move along the slideway, driving the helmet closer to the plurality of replacement parts 103. In this way, the plurality of locking mechanisms 202 on the helmet can approach the plurality of mounting parts 1032 of the plurality of replacement parts 103 one by one and be inserted into them. The plurality of mounting parts 1032 simultaneously guide and install the same inner liner 300 onto the plurality of locking mechanisms 202. The user manually removes the helmet, and the replacement of the inner liner 300 is completed.

[0188] Alternatively, when the replacement part 103 provided in the embodiment of the present application is applied in another application, a plurality of replacement parts 103 can be used simultaneously. In this other application embodiment, the replacement part 103 has a first part and a second part that are arranged in parallel at intervals. The disassembly part 1031 and the part for storing the used inner liner 300 are provided on the first part, and the mounting part 1032 and the part for storing the unused inner liner 300 are provided on the second part.

[0189] Specifically, the plurality of first parts are arranged along the same circumferential direction, the plurality of second parts are arranged along the same circumferential direction, and the assembly formed by the plurality of first parts and the assembly formed by the plurality of second parts are of the same height and are arranged at intervals. Then, the same inner liner 300 can be disassembled and stored through the plurality of disassembly parts 1031 on the plurality of first parts, and the same inner liner 300 can be disassembled and stored through the plurality of mounting parts 1032 on the plurality of second parts. The assembly formed by the plurality of first parts and the assembly formed by the plurality of second parts are spaced apart in the horizontal direction and are connected by a horizontal rod.

[0190] Similarly, in another application of the replacement part 103 provided in the embodiment of the present application, it can be in three modes: manual, semi-automatic, and full-automatic.

[0191] In the first application embodiment, the replacement part 103 provided in the embodiment of the present application is applied to a manual replacement device. The manual replacement device can have two replacement ports spaced apart in the horizontal direction. The plurality of disassembly parts 1031 face one replacement port, and the plurality of mountings face the other replacement port. The user can install the helmet on one replacement port. A slideway structure can be provided near this one replacement port. The user manually drives the helmet to move along the slideway, driving the helmet closer to the plurality of replacement parts 103. In this way, the plurality of locking mechanisms 202 on the helmet can approach the plurality of disassembly parts 1031 of the plurality of replacement parts 103 one by one and be inserted into them. The plurality of disassembly parts 1031 simultaneously disassemble the same inner liner 300 from the plurality of locking mechanisms 202 and complete the storage.

[0192] After the disassembly is completed, the user can install the helmet on another replacement port. A slideway structure can be set near the other replacement port. The user manually drives the helmet to move along the slideway, driving the helmet close to multiple replacement parts 103. In this way, multiple locking mechanisms 202 on the helmet can approach multiple mounting parts 1032 of multiple replacement parts 103 one by one and be inserted into them. Multiple mounting parts 1032 simultaneously guide and install the same inner liner 300 onto multiple locking mechanisms 202. The user manually removes the helmet, and the replacement of the inner liner 300 is completed.

[0193] In the second application embodiment, the replacement part 103 provided in the embodiment of the present application is applied to a fully automatic replacement device. The fully automatic replacement device can be provided with one replacement port, and the fully automatic replacement device can also be provided with a horizontal movement mechanism. The assembly composed of multiple first parts and the assembly composed of multiple second parts are respectively arranged at both ends of the horizontal movement mechanism. The horizontal movement mechanism can drive the assembly composed of multiple first parts and the assembly composed of multiple second parts to move in the horizontal direction, and its movement path can be a straight line or an arc. When the assembly composed of multiple first parts is aligned with the replacement port, multiple locking mechanisms 202 on the helmet can be aligned with multiple dismounting parts 1031 on multiple first parts. When the assembly composed of multiple second parts is aligned with the replacement port, multiple locking mechanisms 202 on the helmet can be aligned with multiple mounting parts 1032 on multiple second parts.

[0194] Furthermore, on the basis of setting the horizontal movement mechanism, the fully automatic replacement device can also be provided with a lifting mechanism 102. The lifting mechanism 102 can drive the horizontal movement mechanism to lift, or after the helmet is configured on the replacement port, the lifting mechanism 102 can drive the helmet to lift. In this way, one of the helmet and the replacement part is driven to be inserted into the other in an automated manner to complete disassembly and installation at the same position.

[0195] In the third application embodiment, the replacement part 103 provided in the embodiment of the present application is applied to a semi-automatic replacement device. The semi-automatic replacement device can have two replacement ports spaced apart in the horizontal direction. Multiple dismounting parts 1031 face one replacement port, and multiple mountings face the other replacement port. The semi-automatic replacement device is only provided with a lifting mechanism 102. The assembly composed of multiple first parts and the assembly composed of multiple second parts are arranged on the lifting mechanism 102. The lifting mechanism 102 can drive the assembly composed of multiple first parts and the assembly composed of multiple second parts to lift. After the user configures the helmet on one replacement port, the lifting mechanism 102 drives multiple replacement parts 103 to approach the helmet simultaneously. In this way, multiple locking mechanisms 202 on the helmet can be inserted into multiple dismounting parts 1031 of multiple replacement parts 103 one by one. Multiple dismounting parts 1031 simultaneously disassemble the same inner liner 300 from multiple locking mechanisms 202 and complete the storage.

[0196] After the disassembly is completed, the user removes the helmet and configures it on another replacement port. At this time, the lifting mechanism 102 drives multiple replacement parts 103 to approach the helmet simultaneously. In this way, multiple locking mechanisms 202 on the helmet can be inserted into multiple mounting parts 1032 of the multiple replacement parts 103 one by one. The multiple mounting parts 1032 simultaneously guide the same inner lining 300 onto the multiple locking mechanisms 202. The user manually removes the helmet, and the replacement of the inner lining 300 is completed.

[0197] Of course, in the third application embodiment, the assembly composed of multiple first parts and the assembly composed of multiple second parts can also be lifted by different lifting mechanisms 102.

[0198] In the fourth application embodiment, the replacement part 103 provided in the embodiment of the present application is applied to a semi-automatic replacement device. The semi-automatic replacement device can be provided with one replacement port, and the automatic replacement device is only provided with a horizontal movement mechanism. The assembly composed of multiple first parts and the assembly composed of multiple second parts are arranged on the horizontal movement mechanism. The horizontal movement mechanism can drive the assembly composed of multiple first parts and the assembly composed of multiple second parts to switch at the replacement port in the horizontal direction, so as to disassemble and install the replaceable inner lining 300 of the helmet at the same position.

[0199] The user can mount the helmet on the replacement port. A slideway structure can be provided near the replacement port. When multiple disassembly parts 1031 face the replacement port, the user manually drives the helmet to move along the slideway, driving the helmet to approach the multiple replacement parts 103. In this way, multiple locking mechanisms 202 on the helmet can approach multiple disassembly parts 1031 of the multiple replacement parts 103 one by one and be inserted into them. The multiple disassembly parts 1031 simultaneously disassemble the same inner lining 300 from the multiple locking mechanisms 202 and complete the storage.

[0200] After the disassembly is completed, the user removes the helmet. After the horizontal movement mechanism switches positions in the horizontal direction, the user can mount the helmet on the replacement port again. The user manually drives the helmet to move along the slideway, driving the helmet to approach the multiple replacement parts 103. In this way, multiple locking mechanisms 202 on the helmet can approach multiple mounting parts 1032 of the multiple replacement parts 103 one by one and be inserted into them. The multiple mounting parts 1032 simultaneously guide the same inner lining 300 onto the multiple locking mechanisms 202. The user manually removes the helmet, and the replacement of the inner lining 300 is completed.

[0201] Another object of the embodiments of the present application is also to provide a replacement device, which includes the replacement part 103 as described above. The replacement device further includes a flipping mechanism, and the replacement part 103 is arranged on the flipping mechanism. The flipping mechanism is used to drive the replacement part 103 to flip along the rotation axis, thereby driving the disassembly part 1031 and the installation part 1032 to switch at the same position, so as to disassemble and install the replaceable inner lining 300 of the helmet at the same position; wherein, the rotation axis is perpendicular to the central axis of the replacement part 103;

[0202] Alternatively, the replacement device is provided with two replacement ports, and the disassembly part 1031 and the installation part 1032 of the replacement part 103 are respectively located on the two replacement ports. The two replacement ports are used to detachably install the same helmet respectively, so as to disassemble and install the replaceable inner lining 300 of the same helmet.

[0203] The beneficial effects of the replacement device provided by the embodiments of the present application compared with the prior art are the same as the beneficial effects of the replacement part 103 provided by the present application compared with the prior art, and will not be elaborated here.

[0204] The beneficial effects of the shared helmet provided by the embodiments of the present application compared with the prior art are the same as the beneficial effects of the replaceable inner lining provided by the present application compared with the prior art, and will not be elaborated here.

Claims

1. A replaceable liner (300), characterized in that: The replaceable liner (300) comprises a liner (300) body and a plurality of detachable parts (302), wherein the plurality of detachable parts (302) are arranged at intervals along the periphery of the liner (300) body; Each of the detachable parts (302) is provided with a fixed connection part (3021) and a detachable connection part (3022); each of the detachable parts (302) is fixedly connected to the lining (300) body via the fixed connection part (3021); and all of the detachable connection parts (3022) of the detachable parts (302) are used for detachably connecting to the helmet shell.

2. The replaceable liner (300) according to claim 1, characterized in that: The detachable part (302) comprises a first piece and a second piece, the first piece and the second piece are stacked along the thickness direction of the liner (300) body, and the periphery of the liner (300) body is sandwiched between the first piece and the second piece; The detachable connecting portion (3022) is provided on the side of the first piece facing away from the second piece or on the side of the second piece facing away from the first piece.

3. The replaceable liner (300) according to claim 2, characterized in that: The first sheet and the second sheet are bonded; Or, the first piece and the second piece are detachably connected; Alternatively, a clamping groove is formed between the radially inward side of the first piece and the radially inward side of the second piece, the periphery of the liner (300) body is clamped in the clamping groove, and the radially outward side of the first piece and the radially outward side of the second piece are integrally connected.

4. The replaceable liner (300) according to any one of claims 1 to 3, characterized in that: The detachable connecting portion (3022) comprises a pair of distal force-applying portions (30221) arranged opposite to each other, and the pair of distal force-applying portions (30221) are provided with a pair of opposite first clamping structures (30221b), and the first clamping structures (30221b) are used for detachably clamping with a pair of second clamping structures (2025b) on the helmet shell of the helmet.

5. The replaceable liner (300) according to claim 4, characterized in that: The pair of distal force-applying parts (30221) are provided with a pair of opposite distal force-applying sides (30221a), and the pair of distal force-applying sides (30221a) and the pair of first clamping structures (30221b) are arranged in sequence along the thickness direction of the lining (300) body and are smoothly connected, and the pair of distal force-applying sides (30221a) are arranged obliquely relative to the thickness direction, so as to guide the pair of second clamping structures (2025b) into the pair of first clamping structures (30221b).

6. The replaceable liner (300) according to claim 5, characterized in that: The pair of distal force-applying sides (30221a) are symmetrically arranged along the tangential direction or the meridian direction of the liner (300) body, and the pair of first clamping structures (30221b) are symmetrically arranged along the circumferential direction or the radial direction of the liner (300) body.

7. The replaceable liner (300) according to claim 5, characterized in that: The pair of distal force-applying sides (30221a) are arranged to be translated along the circumference or radial direction of the liner (300) body, and the pair of first clamping structures (30221b) are arranged to be translated along the circumference or radial direction of the liner (300) body.

8. The replaceable liner (300) according to claim 4, characterized in that: A through hole (30222) is provided at the center of the detachable connecting portion (3022); the hole edge of the through hole (30222) includes two first expansion portions (30222a) and two second expansion portions (30222b) that are arranged opposite to each other; the distance between the first expansion portion (30222a) and the hole axis of the through hole (30222) is greater than the distance between the second expansion portion (30222b) and the hole axis; the first expansion portion (30222a) and the second expansion portion (30222b) are alternately arranged along the circumference of the through hole (30222); Wherein, the two distal force-applying parts (30221) are arranged on the outer sides of the two first expansion parts (30222a).

9. The replaceable liner (300) according to claim 8, characterized in that: The first expansion portion (30222a) and the second expansion portion (30222b) are both semicircular.

10. A shared helmet, characterized in that: The shared helmet comprises a helmet shell and a replaceable liner (300) as claimed in any one of claims 1 to 9; the helmet shell has a wearing opening; The edge of the replaceable liner (300) is detachably connected to the edge of the wearing opening directly or indirectly via the detachable connection portion (3022).