Detachable box body

By designing a locking component and magnetic connection for a detachable cabinet, the problem of inconvenient removal of the vehicle refrigerator is solved, achieving convenient disassembly and flexibility for outdoor use, thus improving user convenience.

CN223672349UActive Publication Date: 2025-12-16FAURECIA (CHINA) HOLDING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520169663.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-12-16
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Existing car refrigerators are not easy to remove from inside the vehicle, making them inconvenient for users to use when camping outdoors.

Method used

A detachable cabinet is designed, which achieves stable connection and reliable separation between the detachable part and the cabinet fixing part through the detachable connection of the first and second locking components and the limiting part, combined with the attraction of the magnetic component, allowing the vehicle refrigerator to be removed from the vehicle.

Benefits of technology

It enables easy disassembly and transportation of the vehicle refrigerator, enhancing its flexibility for outdoor use, and does not occupy interior space, thus improving user convenience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223672349U_ABST
    Figure CN223672349U_ABST
Patent Text Reader

Abstract

The utility model discloses a detachable refrigerator body, relates to the technical field of automobiles, and aims to solve the problem that an existing vehicle-mounted refrigerator is inconvenient to take out from the interior of a vehicle. The detachable box body comprises a box body fixing piece, a detachable piece, a first locking assembly, a first limiting piece, a second locking assembly and a second limiting piece. The first locking assembly is arranged on the dismounting piece and located on the side, close to the vehicle bottom plate, of the dismounting piece. The first limiting piece is arranged on a vehicle bottom plate, and the first locking assembly is detachably connected with the first limiting piece. The second locking assembly is arranged on the dismounting piece. The second limiting piece is arranged on the vehicle bottom plate and detachably connected with the second locking assembly, and the second limiting piece abuts against the second locking assembly. A first magnetic part is arranged at the end, close to the second limiting part, of the second locking assembly, a second magnetic part is arranged on the second limiting part, and the first magnetic part and the second magnetic part attract each other.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the automobile technical field, and particularly relates to a detachable box body. BACKGROUND

[0002] In order to meet the use requirements of different users, a vehicle-mounted refrigerator is usually configured on an existing vehicle, and the vehicle-mounted refrigerator can be used to keep food and beverages cool during a journey. In order to facilitate the fixation of the vehicle-mounted refrigerator in the vehicle, a part for storing the vehicle-mounted refrigerator is usually arranged on the existing vehicle, so as to provide a setting position for the vehicle-mounted refrigerator.

[0003] The existing part for storing the vehicle-mounted refrigerator is usually fixedly arranged on the vehicle, and the vehicle-mounted refrigerator is inconvenient to be taken out from the vehicle. CONTENT OF THE UTILITY MODEL

[0004] The present application provides a detachable box body, which is used to solve the problem that the existing vehicle-mounted refrigerator is inconvenient to be taken out from the vehicle.

[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:

[0006] The detachable box body provided by the embodiment of the present application comprises a box body fixing part, a detachable part, a first locking assembly, a first limiting part, a second locking assembly and a second limiting part. The first locking assembly is arranged on the detachable part and located on the side of the detachable part close to the box body fixing part. The first limiting part is arranged on the box body fixing part, and the first locking assembly and the first limiting part are detachably connected. The second locking assembly is arranged on the detachable part. The second limiting part is arranged on the box body fixing part and detachably connected with the second locking assembly, and the second limiting part abuts against the second locking assembly. One end of the second locking assembly close to the second limiting part is provided with a first magnetic part, and the second limiting part is provided with a second magnetic part, and the first magnetic part is used to attract the second magnetic part.

[0007] The detachable box body provided by the embodiment of the present application can limit the movement of the detachable part relative to the box body fixing part after the first locking assembly and the first limiting part are connected together, so as to connect the detachable part to the box body fixing part. The detachable part can also be limited to move relative to the box body fixing part after the second locking assembly and the second limiting part are connected together, so as to connect the detachable part to the box body fixing part. On this basis, the first magnetic part and the second magnetic part can attract each other, so as to improve the reliability of the connection between the second locking assembly and the second limiting part, and make the detachable part stably arranged on the box body fixing part. In the actual application process, the box body fixing part can be fixed on the vehicle, and the vehicle-mounted refrigerator can be arranged on the detachable part, so as to realize the detachable connection between the vehicle-mounted refrigerator and the vehicle, and facilitate the taking out of the vehicle-mounted refrigerator from the vehicle.

[0008] In some embodiments, the dismounting piece is provided with a guide groove. The second locking assembly comprises a second locking piece and a first elastic piece. The second locking piece is in sliding connection with the guide groove. One end of the first elastic piece is connected with the second locking piece, and the other end is connected with the dismounting piece. The second locking piece is provided with a first magnetic piece at one end close to the second limiting piece, and the second locking piece is in detachable connection with the second limiting piece.

[0009] In some embodiments, the second locking assembly further comprises a guide piece, a first driving piece, a turning piece and a second driving piece. The guide piece is arranged in the guide groove, and the guide piece is provided with a guide hole. The first driving piece is arranged in the guide hole and connected with the second locking piece at one end.

[0010] In some embodiments, the second limiting piece is provided with a locking slot at one side close to the dismounting piece. The extension direction of the locking slot intersects with the extension direction of the first limiting piece, and the locking slot is provided with a second magnetic piece on the bottom wall. One end of the second locking piece is inserted into the locking slot, and the first magnetic piece is located at one side of the second locking piece close to the bottom wall of the locking slot.

[0011] In some embodiments, the first limiting piece is provided with a first guide groove. Along the sliding direction of the first locking assembly, one end of the first limiting piece is provided with a sliding opening in communication with the first guide groove, and the sidewall of the first limiting piece is provided with a first avoiding opening. The first locking assembly comprises a first guide piece and a connecting piece. The first guide piece is arranged in the sliding opening and in sliding connection with the first guide groove. The first guide piece abuts against the sidewall of the first limiting piece provided with the first avoiding opening. The connecting piece is arranged in the first avoiding opening, connected with the first guide piece at one end, and connected with the dismounting piece at the other end.

[0012] In some embodiments, the dismountable box further comprises a first abutting part. The first abutting part is connected with the box fixing piece, located at one side of the first limiting piece away from the sliding opening, and abuts against the dismounting piece along the sliding direction of the first guide piece.

[0013] In some embodiments, the box fixing piece is provided with a limiting insertion hole, and the first limiting piece is provided with an insertion hole arranged opposite to the limiting insertion hole. The first locking assembly is arranged in the insertion hole and is in clamping connection with the first limiting piece. One end of the first locking assembly is inserted into the limiting insertion hole, and the first locking assembly abuts against the inner wall of the limiting insertion hole.

[0014] In some embodiments, the first limiting member comprises a limiting member body and an elastic limiting member. The limiting member body is connected with the disassembling piece, and the limiting member body is formed with a plug hole. The elastic limiting member is arranged in the plug hole and connected with the limiting member body. The first locking assembly is formed with a clamping portion, and the elastic limiting member is clamped with the clamping portion.

[0015] In some embodiments, the first locking assembly is rotationally connected with the disassembling piece. The first locking assembly is formed with a limiting slot, and the first limiting member is arranged in the limiting slot and abuts against the sidewall of the limiting slot.

[0016] In some embodiments, the first locking assembly comprises a rotating member, a fixed member and a second elastic member. The rotating member is rotationally connected with the disassembling piece, and the rotating member is formed with a limiting slot. The fixed member is connected with the disassembling piece and abuts against the rotating member and blocks the opening of the limiting slot. The second elastic member is connected with the rotating member and generates elastic force to make the rotating member abut against the fixed member. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 A structural schematic view of a detachable box body provided by an embodiment of the present application;

[0018] Figure 2 A sectional view of a detachable box body provided by an embodiment of the present application;

[0019] Figure 3 A structural schematic view of a detachable box body provided by an embodiment of the present application;

[0020] Figure 4 A sectional view of a detachable box body provided by an embodiment of the present application;

[0021] Figure 5 A sectional view of a detachable box body provided by an embodiment of the present application;

[0022] Figure 6 A partial structural schematic view of a detachable box body provided by an embodiment of the present application;

[0023] Figure 7 A partial sectional view of a detachable box body provided by an embodiment of the present application.

[0024] REFERENCE SIGNS:

[0025] 100-dismountable box; 1-box fixing part; 11-limiting insertion hole; 12-limiting insertion slot; 2-dismounting part; 21-guiding groove; 22-rotating cavity; 221-rotating connecting part; 23-abutting protruding part; 24-setting cavity; 25-mounting slot; 26-dismounting part main body; 27-rotating insertion rod; 3-first locking assembly; 31-first guiding part; 32-connecting part; 91-clamping part; 1031-limiting slot; 1032-rotating part; 1033-fixing part; 1034-second elastic part; 1035-unlocking part; 4-first limiting part; 41-first guiding groove; 42-first avoiding opening; 81-limiting part main body; 82-elastic limiting part; 83-insertion hole; 5-second locking assembly; 52-second locking part; 53-first elastic part; 54-guiding part; 55-first driving part; 56-turning part; 561-first connecting part; 562-second connecting part; 57-second driving part; 6-second limiting part; 62-locking insertion slot; 7-first abutting part; 71-abutting insertion slot; 43-limiting block; 431-rotating slot; 101-third locking assembly; 1011-fan-shaped rotating block; 1012-pulling part; 1013-limiting insertion rod; 1014-return spring; 104-guiding block; 105-unlocking pulling part. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present application will be clearly and completely described in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0027] In the description of the present application, it should be understood that the terms "upper", "lower", "left", "right", "front", "back", "inner", "outer", "center" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0028] Hereinafter, the terms "first" and "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first" and "second" can explicitly or implicitly include one or more of the features.

[0029] In the description of the present application, unless otherwise specified, " / " means "or", for example, A / B can mean A or B. "And / or" herein is only a description of the relationship between the associated objects, which means that there can be three relationships, for example, A and / or B, which can mean that A exists alone, A and B exist together, and B exists alone. In addition, "at least one" means one or more, and "multiple" means two or more.

[0030] In the embodiments of the present application, the terms "comprising", "containing" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or device. Without more limitations, the element defined by the sentence "including a…" does not exclude the presence of other identical elements in the process, method, article or device including the element.

[0031] In the embodiments of the present application, the words such as "exemplary" or "for example" are used to mean an example, illustration or description. Any embodiment or design scheme described as "exemplary" or "for example" in the embodiments of the present application should not be interpreted as more preferred or more advantageous than other embodiments or design schemes. Rather, the words such as "exemplary" or "for example" are intended to present the relevant concept in a specific manner.

[0032] More and more people choose self-driving travel, in order to facilitate the user to store food and drinks during the journey, some vehicles will be equipped with car refrigerator. The user can store food and drinks in the car refrigerator. In this way, the freshness and coolness of food and drinks during the journey can be ensured, thereby improving the comfort during the journey.

[0033] The storage part for setting the car refrigerator is usually arranged on the vehicle, and the storage part is usually fixed in the vehicle interior, and the car refrigerator is fixedly connected with the storage part. In this way, the car refrigerator can be stably arranged in the vehicle interior.

[0034] In actual application process, when the user camps outdoors, the storage part is difficult to be taken off from the vehicle, and the user needs to enter the vehicle interior multiple times to take and place the articles from the car refrigerator.

[0035] Based on this, the embodiments of the present application provide a detachable box body, which is used to solve the problem that the existing car refrigerator is not convenient to take out from the vehicle interior.

[0036] As shown in Figure 1 , as shown in Figure 1As shown in a structural schematic view of the detachable box body 100 provided in some embodiments of the present application, the detachable box body 100 can include a box body fixing member 1 and a detachable member 2. In actual application, the detachable member 2 can be internally provided with a containing cavity, and a vehicle-mounted refrigerator can be arranged in the containing cavity, so that the detachable member 2 can provide a setting position for the vehicle-mounted refrigerator. The box body fixing member 1 can be fixed on a vehicle, for example, the box body fixing member 1 can be a vehicle body panel or other components fixed on the vehicle body panel.

[0037] Hereinafter, some embodiments of the present application will be exemplarily described by taking the vehicle-mounted refrigerator arranged in the detachable member 2 and the box body fixing member 1 fixed on the vehicle as an example.

[0038] In some embodiments, as shown in Figure 2 Figure 2 As shown in a sectional view of the detachable box body 100 provided in some embodiments of the present application, the detachable box body 100 can further include a first locking assembly 3 and a first limiting member 4. The first locking assembly 3 can be arranged on the detachable member 2 and located on a side of the detachable member 2 close to the box body fixing member 1. The first limiting member 4 is arranged on the box body fixing member 1, and the first locking assembly 3 and the first limiting member 4 are detachably connected.

[0039] In actual application, after the first locking assembly 3 and the first limiting member 4 are connected together, since the first limiting member 4 is connected with the box body fixing member 1 and the first locking assembly 3 is connected with the detachable member 2, the first locking assembly 3 and the first limiting member 4 connected with each other can limit the movement of the detachable member 2 relative to the box body fixing member 1, so as to connect the detachable member 2 on the box body fixing member 1.

[0040] In addition, as shown in Figure 2 The second locking assembly 5 can be arranged on the detachable member 2, and the second limiting member 6 can be arranged on the box body fixing member 1. The second limiting member 6 abuts against the second locking assembly 5, and the second limiting member 6 and the second locking assembly 5 are detachably connected.

[0041] In actual application, after the second locking assembly 5 and the second limiting member 6 are connected together, since the second locking assembly 5 is connected with the detachable member 2 and the second limiting member 6 is connected with the box body fixing member 1, the second locking assembly 5 and the second limiting member 6 connected with each other can also limit the movement of the detachable member 2 relative to the box body fixing member 1, so as to connect the detachable member 2 on the box body fixing member 1, thereby improving the reliability of the connection between the detachable member 2 and the box body fixing member 1.

[0042] ​When the vehicle-mounted refrigerator arranged in the detachable part 2 needs to be taken out to the outside of the vehicle for use, the user can separate the second locking assembly 5 from the second limiting part 6, and separate the first locking assembly 3 from the first limiting part 4. In this way, the user can detach the detachable part 2 from the box fixing part 1, and then can carry the detachable part 2 and the vehicle-mounted refrigerator arranged in the detachable part 2 to the outside of the vehicle for use.

[0043] In actual application, the detachable part 2 can be an armrest box or a base of a vehicle functional seat. In this way, the detachable part 2 does not occupy additional space in the vehicle, and the armrest box and the vehicle functional seat can also integrate the refrigerator function, which is more practical. Moreover, the user can carry the armrest box or the base of the vehicle functional seat to the outside of the vehicle for use to meet the user's demand for using the refrigerator outdoors when camping.

[0044] It can be understood that the detachable part 2 can also be provided with a charging battery. In this way, when the user carries the detachable part 2 to the outside of the vehicle, the charging battery can supply power to the vehicle-mounted refrigerator in the detachable part 2, so that the vehicle-mounted refrigerator can also normally operate in an outdoor environment.

[0045] In order to charge the charging battery, in some embodiments, the detachable part 2 can be provided with a charging circuit, which can be electrically connected with the charging battery and the power supply assembly arranged on the detachable box, so as to charge the charging battery.

[0046] It can be understood that the first locking assembly 3 and the first limiting part 4 can be provided with circuit interfaces, the circuit interface of the first locking assembly 3 can be electrically connected with the charging battery, and the circuit interface of the first limiting part 4 can be electrically connected with the power supply device in the detachable box. When the first locking assembly 3 and the first limiting part 4 are connected together, the circuit interfaces can be in communication with each other, so as to connect the circuit between the power supply in the detachable box and the charging battery, so that the power supply in the detachable box can charge the charging battery.

[0047] In addition, the detachable part 2 can also be provided with other devices, so as to increase the functions of the detachable part 2. For example, the detachable part 2 can also be provided with a projection device and a sound device.

[0048] In order to further improve the reliability of the connection between the detachable part 2 and the box fixing part 1, a first magnetic part can be arranged on one end of the second locking assembly 5 close to the second limiting part 6, and a second magnetic part can be arranged on the second limiting part 6, and the first magnetic part is used to attract the second magnetic part. In this way, the first magnetic part can attract the second magnetic part, so as to improve the reliability of the connection between the second locking assembly 5 and the second limiting part 6, and make the detachable part 2 stably arranged on the box fixing part 1.

[0049] In actual application, the magnetic force between the first magnetic force member and the second magnetic force member can ensure the stability of the connection between the second locking assembly 5 and the second limiting member 6, thereby improving the stability of the dismounting member 2 arranged on the box body fixing member 1, so as to ensure that the dismounting member 2 can be stably arranged in the vehicle interior.

[0050] For example, the first magnetic force member and the second magnetic force member can be magnets. In this way, the two can generate magnetic force to attract each other.

[0051] Alternatively, one of the first magnetic force member and the second magnetic force member can be a magnet, and the other can be a ferromagnetic material. In this way, the two can also attract each other under the action of magnetic force.

[0052] Alternatively, at least one of the first magnetic force member and the second magnetic force member can be an electromagnet. In this way, the electromagnet can generate magnetic force after being powered on, so that the first magnetic force member and the second magnetic force member can attract each other.

[0053] In some embodiments, as shown in Figure 2 The dismounting member 2 can be provided with a guide groove 21, and the second locking assembly 5 can include a second locking member 52 and a first elastic member 53. The second locking member 52 is in sliding connection with the guide groove 21. The second locking member 52 is provided with a first magnetic force member at one end close to the second limiting member 6, and the second locking member 52 is in detachable connection with the second limiting member 6.

[0054] In actual application, the second locking member 52 can slide along the guide groove 21 to move to a state of being clamped with the second limiting member 6. At this time, the second limiting member 6 can limit the movement of the second locking member 52 to fix the dismounting member 2 on the box body fixing member 1. When the second locking member 52 is in the clamped state with the second limiting member 6, the first magnetic force member and the second magnetic force member attract each other, and the second locking member 52 and the second limiting member 6 are not easy to separate.

[0055] In addition, the second locking member 52 can also move along the guide groove 21 to a state of being separated from the second limiting member 6. At this time, the second limiting member 6 no longer limits the movement of the second locking member 52, which facilitates the user to take down the dismounting member 2 from the box body fixing member 1.

[0056] One end of the first elastic member 53 is connected with the second locking member 52, and the other end is connected with the dismounting member 2. In actual application, the first elastic member 53 can generate elastic force to keep the second locking member 52 in the clamped state with the second limiting member 6, thereby improving the stability of the connection between the second locking member 52 and the second limiting member 6.

[0057] For example, as shown in Figure 2As shown, the side of the second locking member 52 can be formed with a protruding connecting part, and the sidewall of the guide slot 21 is provided with an avoiding slot, and the protruding connecting part is inserted into the avoiding slot and is in sliding connection with the avoiding slot. One end of the first elastic member 53 is connected with the protruding connecting part, and the other end is connected with the inner wall of the avoiding slot.

[0058] In some embodiments, as shown in Figure 2 As shown, the second limiting member 6 is provided with a locking slot 62 on the side close to the disassembling member 2, and the extending direction of the locking slot 62 intersects with the extending direction of the first limiting member 4. The bottom wall of the locking slot 62 is provided with a second magnetic force member. One end of the second locking member 52 is inserted into the locking slot 62, and the first magnetic force member is located on the side of the second locking member 52 close to the bottom wall of the locking slot 62.

[0059] In actual application, after the second locking member 52 is inserted into the locking slot 62, the sidewall of the locking slot 62 can limit the movement of the second locking member 52, limiting the movement of the second locking member 52 along the extending direction of the first limiting member 4. At the same time, the second locking member 52 can abut against the inner wall of the guide slot 21 to limit the movement of the disassembling member 2 along the extending direction of the first limiting member 4, so as to fix the disassembling member 2 on the detachable box body.

[0060] For example, the first limiting member 4 can extend along the left-right direction in Figure 2 The second locking member 52 can move along the up-down direction in Figure 2 The locking slot 62 extends along the up-down direction in Figure 2 When the second locking member 52 is inserted into the locking slot 62, the sidewall of the locking slot 62 abuts against the second locking member 52, thereby limiting the movement of the second locking member 52 along the left-right direction in Figure 2

[0061] In some embodiments, the second locking assembly 5 can further include a guide member 54, a first driving member 55, a turning member 56 and a second driving member 57. The guide member 54 is arranged in the guide slot 21, and the guide member 54 is provided with a guide hole. The first driving member 55 is arranged in the guide hole and is connected with the second locking member 52 at one end.

[0062] The turning member 56 is arranged in the guide slot 21 and is in rotational connection with the guide slot 21, and the rotational axis of the turning member 56 is perpendicular to the sliding direction of the second locking member 52. The circumferential side of the turning member 56 is outwardly protruded to form a first connecting part 561 and a second connecting part 562. The first driving member 55 is connected with the first connecting part 561.

[0063] ​In actual application, the turning member 56 can rotate in the guide slot 21. With the rotation of the turning member 56, the turning member 56 can pull the first driving member 55 to move, so that the first driving member 55 drives the second locking member 52 to move out of the locking slot 62. The rotation of the turning member 56 can also make the first driving member 55 in a relaxed state, at which time the first elastic member 53 can push the second locking member 52 to insert into the locking slot 62.

[0064] The second driving member 57 is connected with the second connecting portion 562. In this way, the user can drive the turning member 56 to rotate through the second driving member 57, so as to drive the first driving member 55 to move.

[0065] It can be understood that, in actual application, the extension direction of the first driving member 55 can be parallel or at an angle to the movement direction of the second locking member 52. The turning member 56 can change the direction of force transmission. In this way, the setting position and the extension direction of the second driving member 57 are not limited by the first driving member 55, and the second driving member 57 can be set at a position convenient for the user to pull.

[0066] Correspondingly, a gap can be formed between the circumferential wall of the guide through hole and the first driving member 55. In this way, the first driving member 55 can not be hindered by the circumferential wall of the guide through hole when it is inclined.

[0067] For example, as shown in Figure 2 When the second driving member 57 is not pulled, the first driving member 55 can remain parallel to the movement direction of the second locking member 52. When the user pulls the second driving member 57, the second driving member 57 drives the turning member 56 to rotate, and the turning member 56 drives the first driving member 55 to move after rotating. At this time, the first driving member 55 can be inclined, but it can still drive the second locking member 52 to move.

[0068] It can be understood that the extension direction of the second driving member 57 can be parallel to the extension direction of the first limiting member 4. In this way, the user can pull the second driving member 57 synchronously when pulling the disassembling piece 2 to move along the extension direction of the first limiting member 4.

[0069] In some embodiments, a pulling groove is formed on one side of the disassembling piece 2 along the extension direction of the first limiting member 4, and an opening communicating with the guide slot 21 is formed on the pulling groove. The second driving member 57 is at least partially arranged opposite to the opening of the pulling groove. In actual application, the pulling groove can provide a pulling position for the user to pull the disassembling piece 2, so as to facilitate the user to pull the disassembling piece 2. In addition, when the user pulls the disassembling piece 2 through the pulling groove, the second driving member 57 can also be pulled from the opening of the pulling groove.

[0070] In practical applications, the first driving member 55 can be made of a rope. The second driving member 57 can include a pulling part and a connecting part. The pulling part is at least opposite to the opening of the pulling groove. One end of the connecting part is connected to the pulling part, and the other end is connected to the steering member 56. The connecting part can be made of a rope. In this way, the first driving member 55 and the second driving member 57 can deform, thereby ensuring that the steering member 56 can rotate smoothly.

[0071] In some embodiments, the steering member 56 is rotatably connected to the side wall of the guide groove 21 via a rotating shaft. A torsion spring may be sleeved on the rotating shaft, with one end of the torsion spring connected to the side wall of the guide groove 21 and the other end of the torsion spring connected to the steering member 56.

[0072] In practical applications, when the steering component 56 rotates, the torsion spring deforms to accumulate elastic potential energy. After the user releases the second actuating component 57, the steering component 56 can return to its original position under the action of the torsion spring.

[0073] In some embodiments, the first locking component 3 is slidably connected to the first limiting member 4 along the extending direction of the first limiting member 4.

[0074] To achieve a sliding connection between the first limiting member 4 and the first locking component 3, for example, as shown... Figure 3 As shown, Figure 3 The second schematic diagram of the detachable box 100 provided in the embodiment of this application shows that the first limiting member 4 has a first guide groove 41, and along the sliding direction of the first locking component 3, one end of the first limiting member 4 has a sliding opening that communicates with the first guide groove 41. The side wall of the first limiting member 4 has a first clearance opening 42.

[0075] The first locking assembly 3 may include a first guide member 31 and a connecting member 32. The first guide member 31 passes through the sliding opening and is slidably connected to the first guide groove 41. In practical applications, the first guide groove 41 can guide the movement of the first guide member 31.

[0076] The first guide member 31 abuts against the side wall of the first limiting member 4, which has a first clearance opening 42. In this way, the first guide member 31 cannot slide out of the first guide groove 41 from the first clearance opening 42, and the first guide groove 41 can fix the movement direction of the first guide member 31 in a single direction.

[0077] The connector 32 passes through the first clearance opening 42, with one end connected to the first guide member 31 and the other end connected to the disassembly member 2. In practical applications, the first clearance opening 42 can make way for the connector 32, thereby ensuring that the connector 32 can remain connected to the first guide member 31 and the disassembly member 2 while the first guide member 31 slides in the first guide groove 41.

[0078] In some embodiments, as shown in Figure 1 The detachable box 100 can further include a first abutting part 7 connected with the box fixing part 1 and located on the side of the first limiting part 4 away from the sliding opening, abutting with the dismounting part 2 along the sliding direction of the first guide part 31. Figure 3 ).

[0079] In actual application, the first abutting part 7 can limit the movement of the dismounting part 2, so as to park the dismounting part 2 at the predetermined position.

[0080] In some embodiments, as shown in Figure 1 The first abutting part 7 can be formed with an abutting slot 71, and the dismounting part 2 can be formed with an abutting protruding part 23 inserted into the abutting slot 71. The side of the abutting protruding part 23 away from the box fixing part 1 abuts with the inner wall of the abutting slot 71.

[0081] In this way, the abutting slot 71 can limit the movement of the abutting protruding part 23 away from the box fixing part 1, so as to limit the movement of the dismounting part 2 away from the box fixing part 1.

[0082] In addition, as shown in Figure 1 The detachable box 100 can further include guide blocks 104 oppositely arranged on both sides of the dismounting part 2 and abutting with the dismounting part 2. The surfaces of the guide blocks 104 in contact with the dismounting part 2 can be inclined surfaces. In this way, the guide blocks 104 can guide the movement of the dismounting part 2, so that the first locking assembly 3 arranged at the bottom of the dismounting part 2 can correspond to the position of the first limiting part 4. Figure 2 ).

[0083] In some embodiments, as shown in Figure 4 Figure 4 The detachable box 100 provided by the embodiments of the present application is shown in the second cross-sectional view, and the box fixing part 1 is provided with a limiting insertion hole 11. The first limiting part 4 is formed with an insertion hole 83 oppositely arranged with the limiting insertion hole 11. The first locking assembly 3 is inserted into the insertion hole 83 and is clamped with the first limiting part 4.

[0084] In actual application, the first locking assembly 3 can be clamped with the first limiting part 4 together, so as to be fixed in the insertion hole 83. The first locking assembly 3 can also be separated from the first limiting part 4, so as to facilitate the user to take out the first locking assembly 3 from the insertion hole 83.

[0085] One end of the first locking assembly 3 is inserted into the limiting insertion hole 11, and the first locking assembly 3 abuts with the inner wall of the limiting insertion hole 11.

[0086] ​In actual application, when the first locking assembly 3 is inserted into the limiting hole 11, the first locking assembly 3 can abut against the inner wall of the limiting hole 11, thereby limiting the movement of the dismounting part 2 relative to the box fixing part 1, so as to fix the dismounting part 2 on the box fixing part 1.

[0087] In some embodiments, the dismounting part 2 can include a bottom box and a top cover, the bottom box forms a storage space with an opening, and the top cover is rotationally connected with the bottom box to close the opening of the storage space. In this way, the user can store some articles in the storage space of the bottom box.

[0088] The first limiting part 4 can be arranged in the bottom box of the dismounting part 2, and an opening can be formed in the bottom wall of the bottom box, and one end of the first locking assembly 3 can pass through the opening and be inserted into the limiting hole 11.

[0089] In actual application, when the user needs to take the dismounting part 2 out of the vehicle, the top cover can be opened, and the first locking assembly 3 can be pulled out of the insertion hole 83, so that the first locking assembly 3 can be separated from the first limiting part 4, thereby the first locking assembly 3 is pulled out of the limiting hole 11. In this way, the first locking assembly 3 no longer limits the movement of the dismounting part 2, the user can dismount the dismounting part 2 from the box fixing part 1, and then the dismounting part 2 can be taken off the vehicle.

[0090] In some embodiments, as shown in Figure 4 The first limiting part 4 can include a limiting part body 81 and an elastic limiting part 82. The limiting part body 81 is connected with the dismounting part 2. In actual application, the dismounting part 2 can provide a setting position for the limiting part body 81. For example, the limiting part body 81 can be arranged inside the bottom box of the dismounting part 2.

[0091] The limiting part body 81 is formed with an insertion hole 83, and the elastic limiting part 82 is arranged in the insertion hole 83 and connected with the limiting part body 81. In actual application, the limiting part body 81 can provide a setting position for the elastic limiting part 82.

[0092] The first locking assembly 3 is formed with a clamping part 91, and the elastic limiting part 82 is clamped with the clamping part 91. In actual application, the elastic limiting part 82 and the clamping part 91 can cooperate to limit the position of the first locking assembly 3, so that the first locking assembly 3 can be stably inserted into the limiting hole 11.

[0093] For example, as shown in Figure 4As shown, the first locking assembly 3 can be a limiting rod, and the outer side of the limiting rod is outwardly protruded to form a clamping portion 91. The elastic limiting member 82 can be two arc-shaped elastic sheets, which are oppositely arranged in the insertion hole 83. The middle portions of the two arc-shaped elastic sheets are protruded towards each other. The spacing between the middle portions of the two arc-shaped elastic sheets is smaller than the size of the clamping portion 91. When the clamping portion 91 passes through the middle portions of the two arc-shaped elastic sheets, the two arc-shaped elastic sheets are pressed to be deformed. After the clamping portion 91 passes through the two arc-shaped elastic sheets, the arc-shaped elastic sheets return to the original state and limit the clamping portion 91.

[0094] In some other embodiments, as shown in Figure 5 As shown, Figure 5 As shown in the third cross-sectional view of the detachable box body 100 provided in the embodiments of the present application, the first locking assembly 3 is rotationally connected with the disassembling member 2. A limiting groove 1031 is formed in the first locking assembly 3, and the first limiting member 4 is arranged in the limiting groove 1031 and abuts against the side wall of the limiting groove 1031.

[0095] In actual application, after the first limiting member 4 abuts against the side wall of the limiting groove 1031, the movement of the disassembling member 2 relative to the box body fixing member 1 is limited, so that the disassembling member 2 is fixed on the box body fixing member 1.

[0096] It can be understood that, since the first locking assembly 3 is rotationally connected with the disassembling member 2, the user can rotate the first locking assembly 3 to separate the limiting groove 1031 on the first locking assembly 3 from the first limiting member 4. At this time, the first locking assembly 3 and the first limiting member 4 no longer limit the movement of the disassembling member 2 relative to the box body fixing member 1.

[0097] Alternatively, the user can rotate the first locking assembly 3. After the first locking assembly 3 is rotated to a certain angle, the first limiting member 4 can be opposite to the slot of the limiting groove 1031. In this way, the user can move the disassembling member 2 to make the first limiting member 4 move out of the limiting groove 1031 through the slot of the limiting groove 1031, so that the first limiting member 4 is separated from the first locking assembly 3, and then the disassembling member 2 is removed from the box body fixing member 1.

[0098] In some embodiments, as shown in Figure 5 As shown, the first locking assembly 3 can include a rotating member 1032, a fixing member 1033, and a second elastic member 1034. The rotating member 1032 is rotationally connected with the disassembling member 2, and the limiting groove 1031 is arranged on the rotating member 1032.

[0099] In actual application, the user can rotate the rotating member 1032 to make the first limiting member 4 separate from the limiting groove 1031.

[0100] The fixing member 1033 is connected to the disassembly member 2 and abuts against the rotating member 1032, and blocks the opening of the limiting groove 1031. In actual application, when the user does not rotate the rotating member 1032, the fixing member 1033 can block the opening of the limiting groove 1031 to prevent the first limiting member 4 from disengaging from the limiting groove 1031.

[0101] The second elastic element 1034 is connected to the rotating element 1032 and is used to generate elastic force so that the rotating element 1032 abuts against the fixed element 1033. In actual application, after the user releases the rotating element 1032, the second elastic element 1034 can drive the rotating element 1032 to reset, so that the rotating element 1032 abuts against the fixed element 1033, thereby sealing the opening of the limiting groove 1031.

[0102] For example, such as Figure 5 As shown, the first limiting member 4 can be a limiting rod. Both ends of the limiting rod are bent towards the housing fixing member 1 and connected to the housing fixing member 1. The middle part of the limiting rod can form a gap with the housing fixing member 1. The middle part of the limiting rod can pass through the limiting groove 1031.

[0103] The fixing member 1033 can be connected to the disassembly member 2, and the rotating member 1032 can be rotatably connected to the fixing member 1033, thereby realizing the rotatable connection between the rotating member 1032 and the disassembly member 2.

[0104] Alternatively, the rotating component 1032 can be rotatably connected to the disassembly component 2 via a rotating shaft, and the fixing component 1033 can be provided with a clearance hole for the rotating shaft to pass through. The second elastic component 1034 can be a coil spring, one end of which can be connected to the rotating component 1032, and the other end can be connected to the fixing component 1033. During the rotation of the rotating component 1032, the coil spring can accumulate elastic potential energy. After the user stops rotating the rotating component 1032, the coil spring can drive the rotating component 1032 to rotate, so that the rotating component 1032 returns to its original position.

[0105] In some embodiments, the disassembly member 2 may be provided with a mounting cavity 24, and the rotating member 1032, the fixing member 1033, and the second elastic member 1034 may be disposed within the mounting cavity 24. In this way, the mounting cavity 24 can provide protection for the rotating member 1032, the fixing member 1033, and the second elastic member 1034.

[0106] The first locking assembly 3 may further include a rotating unlocking member 1035. One end of the rotating unlocking member 1035 is connected to the rotating member 1032, and the other end can extend to the outside of the setting cavity 24. The connection position between the rotating unlocking member 1035 and the rotating member 1032 is located outside the rotation axis of the rotating member 1032. In this way, the user can rotate the rotating member 1032 by rotating the unlocking member 1035, thereby adjusting the setting angle of the rotating member 1032.

[0107] In some embodiments, as shown in Figure 6 , Figure 6 A partial structure schematic view of the detachable box body 100 provided by the embodiments of the present application is shown. The rotating unlocking member 1035 can include an unlocking pull rope and a guide tube. The unlocking pull rope is arranged in the guide tube and connected to the rotating member 1032 at one end. In actual application, the user can pull the other end of the unlocking pull rope to drive the rotating member 1032 to rotate. The guide tube can guide the unlocking pull rope to ensure that the user can smoothly pull the unlocking pull rope.

[0108] In some embodiments, as shown in Figure 6 , the number of the first locking assemblies 3 can be multiple. The multiple first locking assemblies 3 are arranged at intervals along the extension direction of the first limiting member 4. In actual application, the multiple first locking assemblies 3 can be locked with the first limiting member 4 at different positions to ensure the stability of the disassembling member 2.

[0109] The detachable box body 100 can further include an unlocking pulling member 105. One end of the unlocking pulling member 105 is connected to the unlocking pull rope of the rotating unlocking member 1035 of the multiple first locking assemblies 3, and the other end is located outside the disassembling member 2.

[0110] In actual application, the user can pull the unlocking pulling member 105 to drive the rotating unlocking member 1035 of the multiple first locking assemblies 3 to move, so that the rotating member 1032 of the multiple first locking assemblies 3 rotates, and the multiple first locking assemblies 3 are all separated from the first limiting member 4. In this way, the user can easily perform the unlocking operation.

[0111] In some embodiments, as shown in Figure 5 , the first abutting portion 7 can also have other forms of arrangement. For example, the first abutting portion 7 can be a limiting block 43, and one side of the limiting block 43 can be provided with a rotating groove 431 with an opening. At this time, the disassembling member 2 can include a disassembling member body 26 and a rotating insertion rod 27. The disassembling member body 26 is provided with a mounting groove 25, and the rotating insertion rod 27 is arranged in the mounting groove 25 and connected to the inner wall of the mounting groove 25 at both ends. The rotating insertion rod 27 is inserted into the rotating groove 431 and rotationally connected to the rotating groove 431, and the rotation axis of the rotating insertion rod 27 is parallel to the rotation axis of the rotating member 1032.

[0112] In actual application, as shown in Figure 5 , the user can first tilt the disassembling member 2 at a certain angle to avoid the disassembling member 2 from the first limiting member 4. In this way, the user can insert the rotating insertion rod 27 into the rotating groove 431, and at this time the rotating groove 431 can limit the disassembling member 2.

[0113] Subsequently, the user can rotate the detachable part 2 in a counterclockwise direction in the Figure 5 , so that the detachable part 2 gradually fits the box fixing part 1. As the detachable part 2 gradually fits the box fixing part 1, the first locking assembly 3 gradually approaches the first limiting part 4. The user can rotate the unlocking part 1035 to drive the rotating part 1032 to rotate, so as to avoid interference between the rotating part 1032 and the first limiting part 4.

[0114] After the detachable part 2 completely fits the box fixing part 1, the user can release the rotating unlocking part 1035. At this time, the second elastic part 1034 can push the rotating part 1032 to reset. After the rotating part 1032 resets, the first limiting part 4 can be located in the limiting slot 1031, and the fixing part 1033 can block the opening of the limiting slot 1031. In this way, the detachable part 2 can be limited again, so that the detachable part 2 can be stably arranged on the box fixing part 1.

[0115] In this way, during the process of fixing or detaching the detachable part 2 on the box fixing part 1, the user only needs to rotate the detachable part 2 to realize the disassembly and assembly of the detachable part 2, which is convenient to operate.

[0116] In some embodiments, as shown in Figure 7 , Figure 7 the partial cross-sectional view of the detachable box 100 provided by the embodiments of the present application, the detachable box 100 can further include a third locking assembly 101. The box fixing part 1 can be provided with a limiting slot 12, the third locking assembly 101 is rotationally connected with the detachable part 2, and the third locking assembly 101 is at least partially inserted into the limiting slot 12.

[0117] In actual application, the third locking assembly 101 inserted into the limiting slot 12 can also limit the movement of the detachable part 2 relative to the box fixing part 1, so as to fix the detachable part 2 on the box fixing part.

[0118] In some embodiments, as shown in Figure 7 , the detachable part 2 can be provided with a rotating cavity 22 inside, and the rotating cavity 22 is provided with a rotating connecting part 221. The third locking assembly 101 can include a fan-shaped rotating block 1011, a pulling part 1012, and a limiting insertion rod 1013.

[0119] The fan-shaped rotating block 1011 is rotationally connected with the rotating connecting part 221. A limiting perforation is formed on the bottom wall of the rotating cavity 22, and the limiting insertion rod 1013 is inserted into the limiting perforation. One end of the limiting insertion rod 1013 is rotationally connected with the fan-shaped rotating block 1011, and the other end is inserted into the limiting slot 12. A connecting opening is formed on the side wall of the rotating cavity 22, the pulling part 1012 is inserted into the connecting opening, one end of the pulling part 1012 is rotationally connected with the fan-shaped rotating block 1011, and the other end is located outside the rotating cavity 22.

[0120] In actual application, the part of the pulling member 1012 outside the rotating cavity 22 is pulled to drive the fan-shaped rotating block 1011 to rotate, and the fan-shaped rotating block 1011 drives the limiting insertion rod 1013 to move, so that the limiting insertion rod 1013 is pulled out of the limiting insertion slot 12. After the limiting insertion rod 1013 is pulled out of the limiting insertion slot 12, the third locking assembly 101 no longer limits the movement of the disassembling piece 2 relative to the box body fixing piece 1, and the user can pull the disassembling piece 2 to separate the disassembling piece 2 from the box body fixing piece 1.

[0121] In some embodiments, the third locking assembly 101 can further include a return spring 1014, one end of the return spring 1014 being connected with the pulling member 1012, and the other end being connected with the disassembling piece 2. In actual application, after the user pulls the pulling member 1012, the return spring 1014 is deformed, and when the user releases the pulling member 1012, the return spring 1014 drives the pulling member 1012 to return to the original position, and the pulling member 1012 returns to the original position to drive the fan-shaped rotating block 1011 to return to the original position, so that the limiting insertion rod 1013 connected with the fan-shaped rotating block 1011 is inserted into the limiting insertion slot 12 again.

[0122] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto, any change or replacement within the technical scope disclosed in the present application should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A detachable case comprising a case fixing member and a detaching member, characterized in that, The detachable box body further comprises: A first locking assembly arranged on the detachable part and located on the side of the detachable part close to the box body fixing part; A first limiting part arranged on the box body fixing part, and the first locking assembly and the first limiting part are detachably connected; A second locking assembly arranged on the detachable part; and A second limiting part arranged on the box body fixing part and detachably connected with the second locking assembly, and the second limiting part and the second locking assembly abut against each other; Wherein, one end of the second locking assembly close to the second limiting part is provided with a first magnetic part, and the second limiting part is provided with a second magnetic part, and the first magnetic part is used to attract the second magnetic part.

2. The demountable box of claim 1, wherein, The detachable part is provided with a guide groove, and the second locking assembly comprises: A second locking part in sliding connection with the guide groove; and A first elastic part having one end connected with the second locking part and the other end connected with the detachable part; Wherein, one end of the second locking part close to the second limiting part is provided with the first magnetic part, and the second locking part and the second limiting part are detachably connected.

3. The demountable box of claim 2, wherein, The second locking assembly further comprises: A guide part arranged in the guide groove, and the guide part is provided with a guide through hole; A first driving part penetrating through the guide through hole and having one end connected with the second locking part; A turning part arranged in the guide groove and in turning connection with the guide groove, and the turning axis of the turning part is perpendicular to the sliding direction of the second locking part, the circumferential side of the turning part is outwardly protruded to form a first connecting part and a second connecting part, and the first driving part is connected with the first connecting part; and A second driving part connected with the second connecting part.

4. The demountable box of claim 2, wherein, The second limiting part is provided with a locking slot on the side close to the detachable part, the extension direction of the locking slot intersects with the extension direction of the first limiting part, and the second magnetic part is arranged on the bottom wall of the locking slot; one end of the second locking part is inserted into the locking slot, and the first magnetic part is located on the side of the second locking part close to the bottom wall of the locking slot.

5. The demountable case of claim 1, wherein, The first limiting part is provided with a first guide groove, and one end of the first limiting part is provided with a sliding opening in communication with the first guide groove along the sliding direction of the first locking assembly, and the sidewall of the first limiting part is provided with a first avoiding opening; the first locking assembly comprises: A first guide part penetrating through the sliding opening and in sliding connection with the first guide groove, and the first guide part abuts against the sidewall of the first limiting part provided with the first avoiding opening; and A connecting part penetrating through the first avoiding opening and having one end connected with the first guide part and the other end connected with the detachable part.

6. The demountable box of claim 5, wherein, The detachable box body further comprises: A first abutting part connected with the box body fixing part and located on the side of the first limiting part away from the sliding opening, and the first abutting part abuts against the detachable part along the sliding direction of the first guide part.

7. The demountable case of claim 1, wherein, The box body fixing part is provided with a limiting insertion hole, The first limiting piece is provided with a plug hole opposite to the limiting hole; the first locking assembly is inserted into the plug hole and is connected with the first limiting piece; one end of the first locking assembly is inserted into the limiting hole and abuts against the inner wall of the limiting hole.

8. The demountable case of claim 7, wherein, The first limiting piece comprises: a limiting piece body connected with the dismounting piece, the plug hole being formed on the limiting piece body; and an elastic limiting piece arranged in the plug hole and connected with the limiting piece body; wherein the first locking assembly is provided with a clamping part, and the elastic limiting piece is clamped with the clamping part.

9. The demountable case of claim 1, wherein, The first locking assembly is rotationally connected with the dismounting piece. The first locking assembly is provided with a limiting slot, and the first limiting piece is inserted into the limiting slot and abuts against the side wall of the limiting slot.

10. The demountable case of claim 9, wherein, The first locking assembly comprises: a rotating piece rotationally connected with the dismounting piece, the rotating piece being provided with the limiting slot; a fixed piece connected with the dismounting piece, abutting against the rotating piece and blocking the opening of the limiting slot; and a second elastic piece connected with the rotating piece and used for generating elastic force to make the rotating piece abut against the fixed piece.