Slot structure, bracket, bracket device, locking mechanism and vehicle

A magnetic lock mechanism secures the insertion slot of portable terminal devices, addressing interference and safety issues by ensuring closure and requiring magnetic interaction for unlocking.

CN118946704BActive Publication Date: 2025-07-15YINWANG INTELLIGENT TECHNOLOGIES CO LTD
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Patent Information

Application Number
CN202280094279.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-30
Publication Date
2025-07-15
Estimated Expiration
2042-11-30

AI Technical Summary

Technical Problem

After the portable terminal device is removed, the adapter bracket is easily interfered with by foreign objects and poses safety hazards.

Method used

A slot structure is designed, including a slot body, a baffle and a locking assembly. By using the cooperation of the magnetic suction part and the locking assembly, the baffle is closed in an idle state, preventing foreign objects from entering, and through the cooperation of the locking assembly and the magnetic suction part, the unlocking difficulty is improved and the safety is enhanced.

Benefits of technology

Effectively prevent foreign objects from entering the slot structure, improve safety, and avoid damage and interference of the adapter bracket in idle state.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a slot structure, a bracket, a bracket device, a lock mechanism and a vehicle. The slot structure includes a slot body, a baffle and a locking assembly. The slot body has an open slot, and the open slot is used to insert a structure such as a bracket. The baffle is rotatably installed at the opening of the open slot, and the baffle can be rotated relative to the slot body to expose the opening or close the opening. A locking position is also provided in the opening of the slot body, and the locking assembly can be movably installed in the open slot and contact the baffle. The locking assembly has a locking position that locks with the locking position and an unlocking position that is disengaged from the locking position. The locking assembly is provided with a first magnetic attraction portion. When the first magnetic attraction portion is acted upon by the magnetic adsorption force of the baffle away from the locking assembly, the locking assembly can be switched from the locking position to the unlocking position. Through the cooperation between the locking assembly and the first magnetic attraction portion, the structure can prevent foreign matter from entering the open slot when the slot structure is in an idle state, and has higher safety.
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Description

Technical Field

[0001] This application relates to the field of mechatronics technology, and in particular, to a slot structure, a bracket, a bracket device, a locking mechanism, and a vehicle. Background Art

[0002] Portable terminal devices have provided great convenience for consumers' daily lives, and their application fields are also becoming more and more extensive. For consumers, portable terminal devices can be used by hand. In some cases where it is not convenient to hold by hand, it is necessary to fix the portable terminal device on other fixing devices. Specifically, a transfer bracket can be set on the fixing device, and then the portable terminal device can be fixed to the transfer bracket.

[0003] The transfer bracket here not only needs to be able to fix the portable terminal device on the fixing device, but also needs to facilitate the disassembly and assembly of the portable terminal device. Currently, after the portable terminal device is removed from the transfer bracket, the transfer bracket is exposed, which is not only easily interfered by other foreign objects and affects the use, but also may have potential safety hazards. Summary of the Invention

[0004] This application provides a slot structure, a bracket, a bracket device, a locking mechanism, and a vehicle. The slot structure can close the opening in the idle state to prevent foreign objects from entering the slot structure, and has higher safety.

[0005] In the first aspect, the present application provides a slot structure, which includes a slot body, a baffle and a locking assembly. The slot body has an open slot, which is used to insert a structure such as a bracket. When the slot body is fixed on other structures, the opening of the open slot faces outward away from other structures. The baffle is rotatably installed at the opening of the open slot, and the baffle can be rotated relative to the slot body to expose the opening or close the opening. A locking position is also provided in the opening of the slot body, and the locking assembly can be movably installed in the open slot and contact with the baffle. The locking assembly has a locking position that is locked with the locking position and an unlocking position that is separated from the locking position. The locking assembly is provided with a first magnetic attraction portion, and when the first magnetic attraction portion is subjected to the magnetic adsorption force of the baffle away from the locking assembly, the locking assembly can be converted from the locking position to the unlocking position. When the locking assembly is locked with the locking position, the locking assembly is limited by the locking position, which can prevent the baffle from rotating to one side of the open slot, and the baffle can block the opening of the open slot to prevent foreign matter from entering the open slot. When the bracket and other structures are inserted into the open slot, a magnetic adsorption force can be applied to the first magnetic attraction part, so that the locking assembly switches from the locking position to the unlocking position, and the restriction on the baffle is released. At this time, the baffle can be rotated relative to the slot body toward the inner side of the open slot to expose the open slot, and the bracket and other structures can be inserted into the open slot. Through the cooperation of the locking assembly and the first magnetic attraction part, this structure can lock and seal the slot structure in an idle state to prevent foreign objects from entering the open slot. The provision of the first magnetic attraction part increases the difficulty of unlocking the locking assembly, that is, only the structure that can adsorb the first magnetic attraction part can unlock the locking assembly, and the slot structure has higher security.

[0006] In a possible implementation, the locking assembly includes a swinging member, a linkage member, and a sliding member. The swinging member is rotatably connected to the slot body, and the sliding member is slidably matched with the locking position and in contact with the baffle; one end of the linkage member is rotatably connected to the swinging member, and the other end of the linkage member is rotatably matched with the sliding member; the first magnetic attraction portion is disposed on the swinging member. The transmission connection structure of the swinging member, the linkage member, and the sliding member constitutes a crank slider mechanism, which can realize the locking and unlocking of the locking assembly and the locking position.

[0007] The rotation centers of the swinging member and the baffle are parallel to each other, so that the rotation directions of the swinging member and the baffle are consistent, thereby improving the synchronization between the locking assembly and the baffle.

[0008] Possibly, the first magnetic attraction portion includes a magnetic material or iron. When the first magnetic attraction portion includes a magnetic material, the external structure for magnetically adsorbing the first magnetic attraction portion may include a magnetic material or iron. When the first magnetic attraction portion includes iron, the external structure for magnetically adsorbing the first magnetic attraction portion may include a magnetic material.

[0009] In one possible implementation, the slot structure further includes an elastic reset member, which is connected between the locking assembly and the baffle; when the first magnetic attraction portion is subjected to the magnetic attraction force of the baffle away from the locking assembly, the elastic reset member is in a compressed force storage state. When the first magnetic attraction portion is no longer subjected to the magnetic attraction force, the elastic reset member can drive the locking assembly to reset, that is, the locking assembly is switched from the unlocking position to the locking position.

[0010] When the slot structure is used to plug and fix electronic devices, a charging port can be provided in the open slot, and the slot body has a connection port electrically connected to the charging port, and the connection port is used to connect to an external power source such as a vehicle battery. For ease of use, the charging port here can be a contact charging port.

[0011] In order to fix the structure inserted into the open slot, a fixing portion is further provided in the open slot, and the fixing portion is used for clamping the structure inserted into the open slot.

[0012] In one possible implementation, the extending direction of the opening slot is inclined at an angle to the plane where the opening is located; along the direction perpendicular to the plane where the opening is located, the bottom of the opening slot is lower than the opening of the opening slot. When a structure such as a bracket is inserted into the opening of the slot structure, the shape of the opening slot will help prevent the structure such as the bracket from being removed from the opening slot and falling.

[0013] In one possible implementation, the slot body is further provided with a limit stopper, which is provided on the side of the baffle away from the locking assembly, and is located within the path of the baffle rotating relative to the slot body. When the baffle rotates relative to the slot body toward the outside of the open slot, the limit stopper will prevent the baffle from rotating.

[0014] In a second aspect, the present application provides a bracket, which includes a panel and a support rod rotatably connected to the panel. The panel can be used to fix the electronic device, and a second magnetic attraction portion is provided at one end of the support rod away from the panel. When in use, the support rod can be inserted into a slot structure or other structure to achieve fixation. Among them, the support rod can be fixed by adsorption of the second magnetic attraction portion with other structures. When the support rod cooperates with the slot structure provided in the first aspect above, the support rod can be plugged into and matched with the open slot of the slot structure, and the second magnetic attraction portion can be magnetically adsorbed with the first magnetic attraction portion to control the unlocking of the locking assembly.

[0015] In order to facilitate charging of the electronic device fixed to the panel, a charging terminal is provided on the panel, and a connecting wire for connecting the charging terminal with an external power source is provided on the support rod. The connecting wire can be provided inside the support rod, and the connecting wire can be a flat cable.

[0016] In one possible implementation, the bracket can be fixed to other structures by means of a snap connection, the support rod is provided with a connecting piece and a buckle and an unlocking piece fixed to the connecting piece, and the buckle and the unlocking piece can move synchronously with the connecting piece. The connecting piece can be movably arranged in the support rod and connected to the support rod through an elastic piece, the connecting piece has a first position in which the buckle and the unlocking piece are exposed outside the support rod and a second position in which the buckle is hidden inside the support rod, and the elastic piece has a tendency to keep the connecting piece in the first position.

[0017] In one possible implementation, the support rod is provided with an impact collapse portion; along the extension direction of the support rod, when the impact force received by the support rod reaches a set threshold, the impact collapse portion collapses, deforms or breaks. The set threshold is a force that can cause the material of the support rod to fail.

[0018] In a third aspect, the present application further provides a bracket device, which may include the slot structure provided in the first aspect and the bracket provided in the second aspect. The support rod of the bracket is used to be plugged into the open slot of the slot structure, and the second magnetic attraction portion on the support rod is used to magnetically attract the first magnetic attraction portion on the slot structure.

[0019] In a fourth aspect, the present application further provides a vehicle, including a vehicle body, in which the slot structure provided in the first aspect or the bracket device provided in the third aspect is arranged.

[0020] In the fifth aspect, the present application also provides a lock mechanism, a lock body and a lock core. The lock body is provided with a locking position, the lock core can be movably installed on the lock body, and the lock core has a locking position that locks with the locking position and an unlocking position that is out of the locking position; the lock core is also provided with a first magnetic attraction part, and when the first magnetic attraction part is magnetically attracted, the lock core is switched from the locking position to the unlocking position. The unlocking of the lock mechanism is controlled by the first magnetic attraction part. Only when the first magnetic attraction part is magnetically attracted can the lock core be unlocked, so that the lock mechanism has a higher security.

[0021] Possibly, the lock core includes a swinging member, a linkage member, and a sliding member, wherein the swinging member is rotationally connected to the lock body, and the sliding member is slidably matched with the locking position; one end of the linkage member is rotationally connected to the swinging member, and the other end of the linkage member is slidably matched with the sliding member; and the first magnetic attraction portion is disposed on the swinging member. When the first magnetic attraction portion is magnetically attracted, the swinging member rotates relative to the lock body, and the linkage member drives the sliding member to slide out of the locking position, thereby unlocking the lock core.

[0022] In order to reset the lock core, the lock mechanism also includes an elastic reset member, which is connected between the lock core and the lock body; when the first magnetic attraction portion is magnetically attracted, the elastic reset member is in a compressed and force-storing state. When the first magnetic attraction portion is no longer magnetically attracted, the elastic reset member releases elastic potential energy, which can drive the swing member to reset, and the sliding member is locked with the locking position again, so that the lock core is converted from the unlocking position to the locking position. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 Structural schematic diagram of a lock mechanism provided by an embodiment of the present application;

[0024] Figure 2a Structural schematic diagram of the lock core in a locked position in a lock mechanism provided by an embodiment of the present application;

[0025] Figure 2b Structural schematic diagram of the lock core of a lock mechanism provided by an embodiment of the present application when it is switched from the locked position to the unlocked position;

[0026] Figure 2c Structural schematic diagram of the lock core in an unlocked position in a lock mechanism provided by an embodiment of the present application;

[0027] Figure 3a Structural schematic diagram of a lock mechanism provided by an embodiment of the present application;

[0028] Figure 3b Structural schematic diagram of a lock mechanism provided by an embodiment of the present application;

[0029] Figure 3c Structural schematic diagram of a lock mechanism provided by an embodiment of the present application;

[0030] Figure 4a Structural schematic diagram of a lock mechanism provided by an embodiment of the present application;

[0031] Figure 4b Structural schematic diagram of a lock mechanism provided by an embodiment of the present application;

[0032] Figure 4c Structural schematic diagram of a lock mechanism provided by an embodiment of the present application;

[0033] Figure 5a Structural schematic diagram of a slot structure provided by an embodiment of the present application;

[0034] Figure 5b Structural schematic diagram of a slot structure provided by an embodiment of the present application;

[0035] Figure 5c Structural schematic diagram of a slot structure provided by an embodiment of the present application;

[0036] Figure 6a Structural schematic diagram of a slot structure provided by an embodiment of the present application;

[0037] Figure 6b Structural schematic diagram of a slot structure provided by an embodiment of the present application;

[0038] Figure 7Schematic diagram of a slot structure provided by an embodiment of the present application;

[0039] Figure 8a Schematic diagram of a locking component in a locked position in a slot structure provided by an embodiment of the present application;

[0040] Figure 8b Schematic diagram of a locking component in a slot structure provided by an embodiment of the present application transitioning from a locked position to an unlocked position;

[0041] Figure 8c Schematic diagram of a baffle being opened in a slot structure provided by an embodiment of the present application;

[0042] Figure 8d Schematic diagram of a baffle being closed in a slot structure provided by an embodiment of the present application;

[0043] Figure 9a Schematic diagram of a slot structure provided by an embodiment of the present application;

[0044] Figure 9b Schematic diagram of a slot structure provided by an embodiment of the present application;

[0045] Figure 9c Schematic diagram of a slot structure provided by an embodiment of the present application;

[0046] Figure 10 Schematic diagram of a slot structure provided by an embodiment of the present application;

[0047] Figure 11 Schematic diagram of a slot structure provided by an embodiment of the present application;

[0048] Figure 12 Schematic diagram of a slot structure provided by an embodiment of the present application;

[0049] Figure 13 Schematic diagram of a slot structure provided by an embodiment of the present application;

[0050] Figure 14 Schematic diagram of a bracket provided by an embodiment of the present application;

[0051] Figure 15a Schematic diagram of a bracket provided by an embodiment of the present application;

[0052] Figure 15b Schematic diagram of a bracket provided by an embodiment of the present application;

[0053] Figure 15c Schematic diagram of a bracket provided by an embodiment of the present application;

[0054] Figure 16a Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0055] Figure 16b Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0056] Figure 17a Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0057] Figure 17b Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0058] Figure 18a Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0059] Figure 18b Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0060] Figure 19 Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0061] Figure 20a Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0062] Figure 20b Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0063] Figure 21a Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0064] Figure 21b Structural schematic diagram of a bracket provided by an embodiment of the present application;

[0065] Figure 22 Structural schematic diagram of a bracket device provided by an embodiment of the present application;

[0066] Figure 23a Structural schematic diagram of a bracket and a slot structure before being inserted into each other in a bracket device provided by an embodiment of the present application;

[0067] Figure 23b Structural schematic diagram of a locking component in an unlocked position in a bracket device provided by an embodiment of the present application;

[0068] Figure 23c Structural schematic diagram of a bracket being inserted into a slot structure in a bracket device provided by an embodiment of the present application;

[0069] Figure 23dSchematic diagram of the plug-in and mating structure between the bracket and the slot structure in a bracket device provided by an embodiment of the present application;

[0070] Figure 24 Schematic diagram of a vehicle provided by an embodiment of the present application;

[0071] Figure 25a Schematic diagram of a front row seat of a vehicle provided by an embodiment of the present application, which is provided with a slot structure;

[0072] Figure 25b Schematic diagram of a front row seat of a vehicle provided by an embodiment of the present application, which is provided with a bracket device. Detailed implementation manners

[0073] In the prior art, in order to facilitate consumers to use portable terminal devices, the portable terminal devices can be fixed to other fixed devices through adapter brackets, so that consumers can free their hands to rest or do other things. Among them, the portable terminal device and the adapter bracket need to have a function of convenient disassembly and assembly. In addition, when the portable terminal device is removed from the adapter bracket, the structure of the adapter bracket for cooperating with the portable terminal device is exposed, which is affected by being interfered and damaged by other foreign objects, and there are also potential safety hazards.

[0074] Based on this, the embodiments of the present application provide a slot structure, a bracket, a bracket device, a locking mechanism and a vehicle. The slot structure and the bracket can cooperate to fix the portable terminal device to the fixed device, which is convenient for consumers to use. The slot structure prevents foreign objects from entering the slot in the idle state and has higher safety.

[0075] The terms used in the following embodiments are only for the purpose of describing specific embodiments, and are not intended to limit the present application. As used in the specification and claims of the present application, the singular forms "a", "an", "the", "above", "said", "this" are also intended to include the forms such as "one or more", unless there is a clear indication to the contrary in the context.

[0076] References to "one embodiment" or "some embodiments" etc. described in this specification mean that a particular feature, structure, or characteristic described in connection with the embodiment is included in one or more embodiments of the present application. Thus, statements such as "in one embodiment", "in some embodiments", "in other some embodiments", "in still other embodiments", etc. that appear in different places in this specification do not necessarily all refer to the same embodiment, but mean "one or more but not all embodiments", unless otherwise specifically emphasized. The terms "comprising", "including", "having" and their variants all mean "including but not limited to", unless otherwise specifically emphasized.

[0077] As Figure 1 As shown, an embodiment of the present application provides a lock mechanism 100, which can be applied to occasions where other structures are locked and unlocked. For example, the cabinet door of a cabinet is locked to prevent the cabinet door from being opened in a non - required state. The lock mechanism 100 includes a lock body 101 and a lock core 102. The lock body 101 can be fixed to a fixing device, and the fixing device has a moving device. Taking a cabinet as an example, the cabinet body is the fixing device, and the cabinet door is the moving device. The lock body 101 can be fixed to the cabinet body, and the lock core 102 is movably installed in the lock body 101, so that the lock core 102 can move relative to the lock body 101. For example, the lock core 102 can slide or swing relative to the lock body 101. A locking position 1011 is provided on the lock body 101. When the lock core 102 moves relative to the lock body 101, the lock core 102 has a locking position for locking and cooperating with the locking position 1011 and an unlocking position for disengaging from the locking position 1011. Among them, the structure of the locking position 1101 is not limited. Its function is to be able to lock and cooperate with the lock core 102 to restrict the lock core 102 from moving in a specific set direction relative to the lock body 101, that is, to restrict the movement of the lock core 102 in a specific direction. For the state conversion between the locking position and the unlocking position of the lock core 102, the lock core 102 can move relative to the locking position 1101. For example, when the lock core 102 is engaged with the locking position 1101, the lock core 102 cannot slide relative to the locking position 1101 in the first direction. Here, the "locking and cooperating" of the locking position 1101 with the lock core 102 means restricting the movement of the lock core 102 relative to the locking position in the first direction. And for the locking and unlocking actions of the lock core 102, it may be that the lock core 102 can move relative to the locking position in the second direction, and the second direction is different from the first direction.

[0078] Among them, by way of example, the lock core 102 includes a swing member 1021, a linkage member 1022, and a sliding member 1023; the swing member 1021 is rotatably connected to the lock body 101 about a first rotation center Q1, that is, the swing member 1021 can rotate about the first rotation center Q1. The sliding member 1023 is exemplarily in sliding fit with the locking position 111. One end of the linkage member 1022 is rotatably connected to the swing member 1021, and the center of the rotational connection between the linkage member 1022 and the swing member 1021 is the first hinge center P1. The other end of the linkage member 1022 is rotatably connected to the sliding member 1023, and the center of the rotational connection between the linkage member 1022 and the sliding member 1023 is the second hinge center P2. The swing member 1021, the linkage member 1022, and the sliding member 1023 can form a crank-slider mechanism. When the swing member 1021 rotates relative to the lock body 101, it can drive the sliding member 1023 to slide in a set direction. Here, the locking position 1011 is exemplarily in the shape of a groove, and the sliding direction of the sliding member 1023 is the extending direction of the locking position 1011. When the sliding member 1023 slides into the locking position 1011, the sliding member 1023 can be in locking cooperation with the locking position 1011, so that the lock core 102 cannot rotate relative to the lock body 101 about the first rotation center Q, and the lock core 102 is locked and limited relative to the lock body 101. That is to say, in the direction perpendicular to the sliding direction of the sliding member 1023, the locking position 1011 can limit the sliding member 1023.

[0079] Referring to Figures 2a to 2c shown, the working process of the locking and unlocking mechanism 100 in the embodiment of the present application will be introduced. For the convenience of understanding, the lock body 101 is not shown here. As Figure 2a shown, the sliding member 1023 of the lock core 102 falls into the locking position 1011 on the lock body 101, and the locking position 1011 locks and limits the sliding member 1023 in the direction perpendicular to the sliding direction. As Figure 2b shown, when the swing member 1021 is driven to rotate counterclockwise about the first rotation center Q1, the linkage member 1022 rotates counterclockwise relative to the swing member 1021 about the first hinge center P1, and the sliding member 1023 rotates counterclockwise relative to the linkage member 1022 about the second hinge center P2. Since the sliding member 1023 and the locking position 1011 are in sliding fit in a set direction, the sliding member 1023 can move in the set direction. In Figure 2a , the set direction is the vertical direction. The sliding member 1023 moves upward to disengage from the locking position 1011, and reference can be made to Figure 2c shown. When the sliding member 1023 moves out of the locking position 1011, the lock core 102 is in the unlocked position.

[0080] As Figure 3aAs shown, an elastic reset member 103 is also exemplarily connected between the swing member 1021 and the lock body 101, and the elastic reset member 103 has elastic potential energy for driving the swing member 1021 to reset. When the lock core 102 is in Figure 1 the state shown, that is, the lock core 102 is in the locked position, the elastic reset member 103 is in a relaxed state. When the swing member 1021 swings around the first rotation center Q1, the elastic reset member 103 will be compressed or stretched to generate elastic potential energy. Combining Figures 2a to 2c As shown, when the lock core 102 is switched from the locked position to the unlocked position, the elastic reset member 103 will be compressed to generate elastic potential energy. When the lock core 102 is in Figure 2c the state shown, if there is no external force to maintain the position of the lock core 102, the elastic reset member 103 releases elastic potential energy to drive the sliding member 1023 to slide into the locking position 1011, so that the lock core 102 is switched from the unlocked position to the locked position. Among them, the elastic reset member 103 is exemplified as a spring. As Figure 3b shown, the elastic reset member 103 can also be arranged between the linkage member 1022 and the lock body 101.

[0081] In some embodiments, as Figure 3c shown, the elastic reset member 103 is a torsion spring and is arranged around the first rotation center Q1. Of course, the elastic reset member 103 may also be other structures, such as a snap spring, an elastic rubber strip, etc., which will not be elaborated here.

[0082] Among them, the way to control the movement of the lock core 102 can be magnetic control. As Figure 4a shown, a first magnetic attraction part C1 is arranged on the swing member 1021 of the lock core 102. When another magnetic attraction part magnetically attracts the first magnetic attraction part C1, so that the first magnetic attraction part C1 drives the swing member 1021 to rotate counterclockwise and drives the sliding member 1023 to slide out of the locking position 1011, the unlocking of the lock core 102 can be realized. Here, the first magnetic attraction part C1 can include a magnetic material or contain iron. In addition, the entire structure of the swing member 1021 can also contain a magnetic material or iron, that is, the swing member 1021 as a whole serves as the first magnetic attraction part C1. The setting of the first magnetic attraction part C1 makes it possible to drive the lock core 102 to unlock only when the first magnetic attraction part C1 is magnetically adsorbed, and the locking and unlocking structure 10 has higher security.

[0083] Among them, the first magnetic attraction part C1 can be arranged on the swing member 1021 as Figure 4a shown, or can be arranged on the linkage member 1022 as Figure 4b shown. When the swing member 1021 and the linkage member 1022 are rotationally connected through a hinge part such as a pin shaft, as Figure 4cThe first magnetic attraction part C1 can also be arranged on the hinge part between the swing part 1021 and the linkage part 1022, that is, at the position of the first hinge center P1. It should be understood that from the perspective of mechanics, setting the first magnetic attraction part C1 at the position of the swing part 1021 close to the first hinge center P1 can achieve higher benefits, that is, a larger displacement effect can be achieved with a smaller magnetic attraction force.

[0084] The embodiment of the present application also provides a slot structure 1, as Figure 5a shown. The slot structure 1 has an open slot A, and the open slot A has an opening a1. The opening a1 can allow other structures to be inserted into the inside of the open slot A. When the slot structure 1 is fixed to a fixing device, such as the seat of a vehicle, the slot structure 1 should be in a state where the opening a1 of the open slot A faces outward away from the seat. It is set that the opening a1 is located in a plane. Taking the plane where the opening a1 is located as a reference, the first direction X, the second direction Y, and the third direction Z that are perpendicular to each other in pairs are defined. The plane formed by the first direction X and the third direction Z is parallel to the plane where the opening a1 is located. For the convenience of understanding the solution, the first direction X can be the horizontal direction, and the third direction Z can be the vertical direction. Of course, it should be understood that the opening a1 may not be in a plane, and the plane where the opening a1 is located here can be considered as a general plane.

[0085] Refer to Figure 5a and Figure 5b shown in the example. The slot structure 1 provided by the embodiment of the present application specifically includes a slot body 11, and the slot body 11 can be fixed to a fixing device. For example, the slot body 11 can be fixed to the back of the front seat of a vehicle, or can be fixed to the head of a bed. The slot body 11 has the above-mentioned open slot A. Corresponding to the opening a1, along the extending direction of the open slot A, the open slot A also has a slot bottom a2 opposite to the opening a1. The extending direction of the open slot A can be considered as the direction from the slot bottom a2 to the opening a1 or from the opening a1 to the slot bottom a2, and the extending direction of the open slot A is not necessarily perpendicular to the plane where the opening a1 is located. Taking the example where the opening a1 is in a plane and the slot bottom a2 is also in a plane, the slot bottom a2 can be parallel to the plane where the opening a1 is located, or there can be an inclined angle. The embodiment of the present application does not make a limitation. The baffle 12 is rotatably installed at the opening a1 of the open slot A. The shape of the baffle 12 is adapted to the opening a1 of the open slot A. When the baffle 12 is in a matching state with the opening a1 of the open slot A, the baffle 12 can basically cover the opening a1, and the baffle 12 is equivalent to closing the opening a1, and foreign objects cannot enter the inside of the open slot A through the opening a1. Figure 5b shows the state where the baffle 12 covers the opening a1, that is, the baffle 12 is in a closed state. Since the open slot A is located inside the slot body 11 and is hidden, Figure 2a the open slot A in

[0086] Combined withFigure 5a and Figure 5b As shown, the baffle 12 can rotate relative to the slot body 11 about the second rotation center Q2. Here, it is exemplified that the first rotation center Q2 of the baffle 12 is parallel to the first direction X. When the baffle 12 rotates about the second rotation center Q2 towards the bottom a2 of the slot, the baffle 12 opens, exposing the opening slot A. When other structures need to be inserted into the opening slot A, the baffle 12 can be driven to rotate towards the bottom a2 of the opening slot A to expose the opening slot A, and the support rod 22 can enter the interior of the opening slot A from the opening a1. When there is no structure to be inserted into the opening slot A, when the baffle 12 closes the opening a1, it can protect the opening slot A, prevent foreign objects from entering the opening slot A, prevent foreign objects from blocking the opening slot A, and also prevent foreign objects from damaging the opening slot A. It should be understood that the description of the baffle 12 closing the opening a1 is only a description of the macroscopic state. The baffle 12 is rotatable. Therefore, there is a certain structural gap between the baffle 12 and the edge of the opening a1 for the baffle 12 to rotate.

[0087] Please continue to refer to Figure 5a and Figure 5b As shown in FIGS. and, the slot body 11 specifically includes a slot body 11-1 and an end panel 11-2. The opening slot A is provided on the slot body 11-1, and the end panel 11-2 is located at one end of the slot body 11-1 where the opening a1 is provided, and the end panel 11-2 exposes the opening a1 of the opening slot A. The above-mentioned baffle 12 can be installed on the slot body 11-1 or on the end panel 11-2. Along the extension direction of the slot body 11-1, the extension direction of the slot body 11-1 is also the extension direction of the opening slot A, and the cross-sectional dimension of the slot body 11-1 is smaller than the cross-sectional dimension of the end panel 11-2. The projection of the slot body 11-1 on the end panel 11-2 along the extension direction of the opening slot A is within the cross-sectional range of the end panel 11-2 perpendicular to the extension direction of the opening slot A. In the plane where the opening a1 is located, the edge of the end panel 11-2 fans out from the edge of the slot body 11-1. In application, objects such as straps, ornaments, and clothes can be hung on the slot body 11-1, and the end panel 11-2 can prevent the hung objects from falling off the slot body 11-1. Exemplarily, the slot body 11-1 is set to bear a vertical load of 25 kg, and the slot body 11 can be extended to a clothes hanger. Among them, the slot body 11-1 and the end panel 11-2 can be made of metal. Exemplarily, the length of the slot body 11-1 is 99 mm, the dimension of the end panel 11-2 along the first direction X is 96 mm, and the dimension along the third direction Z is 50 mm. The mass of the entire slot structure 1 is 220 g. In subsequent embodiments, for the convenience of illustration, part of the end panel 11-2 can be appropriately hidden.

[0088] As Figure 5cAs shown, in order to fix the slot structure 1 to other structures, exemplarily, an installation portion 15 is provided on the slot body 1 of the slot structure 1, and the installation portion 15 can be snap-fitted and fixed to other structures.

[0089] As Figure 6a shown in the left view of the slot structure 1, the extending direction of the opening slot A is inclined at an angle α with respect to the horizontal plane, and the horizontal direction here is perpendicular to the third direction Z. With the horizontal plane as a reference, the opening a1 of the opening slot A is higher than the bottom a2 of the slot. When other structures are inserted into the opening slot A, the gravity G of the structure is decomposed into a first component force g1 and a second component force g2. The first component force g1 points from the opening a1 of the opening slot A to the bottom a2 of the slot, and the second component force g2 is perpendicular to the slot wall of the opening slot A, which can prevent the structure inserted into the opening slot A from moving out of the opening slot A and falling. In Figure 6a it, the plane where the bottom a2 of the opening slot A is located is flush with the plane where the opening a1 is located. Possibly, as Figure 6b shown, the bottom a2 of the opening slot A is perpendicular to the extending direction of the opening slot A, and the plane where the bottom a2 of the opening slot A is located is inclined at an angle α with respect to the plane where the opening a1 is located. Of course, the bottom a2 of the opening slot A may also have other setting manners, and only examples are given here for illustration.

[0090] As Figure 7 shown, in order to prevent the baffle 12 from being accidentally touched and rotated so that the opening a1 of the opening slot A cannot be closed, the slot structure 1 provided by the embodiment of the present application is further provided with a locking assembly 13. The locking assembly 13 is specifically located on the side of the baffle 12 facing the bottom a2 of the slot, and the locking assembly 13 is arranged in the opening slot A and can move relative to the opening slot A. In the opening slot A of the slot body 11, a locking position 111 for cooperating with the locking assembly 13 is provided, and the locking position 111 can be specifically located in the opening slot A. The locking assembly 13 has a locking position for locking and cooperating with the locking position 111 and an unlocking position for disengaging from the locking position 111. When the locking assembly 13 is in the locking position, the locking assembly 13 cooperates with the locking position 111, and at this time, the locking assembly 13 is limited and fixed to the slot body 11 in a set direction. Specifically, when the baffle 12 rotates around the second rotation center Q2 to the side of the bottom a2 of the opening slot A, the locking assembly 13 can prevent the rotation of the baffle 12. Among them, the locking assembly 13 can contact the baffle 12. When the baffle 12 rotates to the side of the bottom a2 of the opening slot A, the locking assembly 13 can timely provide a force to prevent the baffle 12 from rotating to the side of the bottom a2 of the opening slot A, prevent the baffle 12 from leaving the opening a1 of the opening slot A, and expose the opening a1. Here, the action of rotating the baffle 12 to the side of the bottom a2 of the opening slot A to expose the opening a1 can be regarded as opening the baffle 12.

[0091] Exemplarily, the locking assembly 13 may include a swinging member 131, a linkage member 132, and a sliding member 133. The swinging member 131 is rotatably connected to the slot body 11, and one end of the swinging member 131 is rotatably mounted in the opening slot A around the first rotation center Q1. The first rotation center Q1 of the swinging member 131 coincides with the second rotation center Q2 of the baffle 12 exemplarily. The sliding member 133 is in sliding fit with the locking position 111 along the third direction Z. One end of the linkage member 132 is rotatably connected to the swinging member 131, and the other end is in rotational cooperation with the sliding member 133. The swinging member 131, the linkage member 132, and the sliding member 133 form a crank-slider assembly. When the swinging member 131 rotates relative to the slot body 11, it can drive the sliding member 133 to move along the third direction Z. The locking position 111 is in a groove shape, and its extending direction is parallel to the third direction Z. When the sliding member 133 slides into the locking position 111, the sliding member 133 can prevent the sliding member 133 from moving in the direction perpendicular to the second direction Y, realizing the limit of the locking assembly 13, and the locking assembly 13 cannot rotate around the first rotation center Q1. At this time, the baffle 12 cannot be opened due to the block of the locking assembly 13. Among them, the sliding member 133 can be in contact with the baffle 12. When the sliding member 133 is driven by the swinging member 131 and the linkage member 132, the sliding member 133 can slide on the baffle 12. It should be understood that when the sliding member 133 disengages from the locking position 111, the sliding direction of the sliding member 133 is determined by the rotation direction of the swinging member 131, and is no longer limited to the third direction Z. The sliding member 133 can slide along the surface of the baffle 12. An elastic reset member 14 is exemplarily connected between the swinging member 131 and the baffle 12, and the elastic reset member 14 has elastic potential energy for driving the baffle 12 to reset.

[0092] Combined Figure 7 , with reference to Figures 8a to 8d the structural schematic diagram of the exemplary locking assembly 13 and the baffle 12 shown, the working process of the locking assembly 13 in the embodiment of the present application will be introduced. Among them, the locking assembly 13 is arranged on one side of the baffle 12 facing the bottom a2 of the slot, and the baffle 12 is located on the side of the locking assembly 13 away from the bottom a2 of the slot. Figures 8a to 8b The opening slot A is not shown in Figure 8a As shown in Figure 8bAs shown, when the driving swing member 131 rotates counterclockwise around the second rotation center Q2, the sliding member 133 can be driven by the linkage member 132 to move upward along the surface of the baffle 12 and disengage from the locking position 111. When the sliding member 133 moves out of the locking position 111, the locking assembly 13 is in the unlocked position. Assuming the position of the baffle 12 is relatively fixed, due to the movement of the swing member 131, the elastic reset member 14 is compressed to generate elastic potential energy. Further, as Figure 8c shown, when a force F is applied to the baffle 12 toward the bottom a2 of the groove, the baffle 12 will rotate clockwise around the second rotation center Q2. The sliding member 133 of the locking assembly 13 abuts against the baffle 12, and the locking assembly 13 is in the unlocked position. The movement of the baffle 12 will drive the locking assembly 13 to rotate clockwise. When the force F disappears, as Figure 8d shown, the baffle 12 can rotate counterclockwise and reset around the second rotation center Q2 under the action of gravity, and the elastic reset member 14 releases the elastic potential energy. Assuming the position of the baffle 12 is relatively fixed, the elastic potential energy released by the elastic reset member 14 will drive the swing member 131 to rotate clockwise around the first rotation center Q1, and drive the sliding member 133 to slide into the locking position 111 through the linkage member 132, finally locking the locking assembly 13. Exemplarily, the elastic reset member 14 is a spring.

[0093] Combined with Figure 7 、 Figures 8a to 8d shown, when the locking assembly 13 is in the locked position, the locking assembly 13 is relatively fixed relative to the slot body 11, and the locking assembly 13 can play a role in limiting and blocking the baffle 12. The baffle 12 can be locked in the state of closing the opening a1, and the baffle 12 will not be driven by an external force to open. At this time, when an external force is applied to the baffle 12, the locking assembly 13 is on the other side of the external force of the baffle 12, and the locking assembly 13 applies a blocking force to block the rotation of the baffle 12. When the baffle 12 is accidentally touched, the baffle 12 will not open to expose the opening a1 due to the blocking of the locking assembly 13, and the opening slot A will not be exposed outside, preventing foreign objects from entering the opening slot A, and can also play a role in protecting the opening slot A. When the locking assembly 13 is in the unlocked position, there is no locking and matching relationship between the locking assembly 13 and the locking position 111, and the locking assembly 13 is free relative to the locking position 111. At this time, when a driving force is applied to the baffle 12, the locking assembly 13 will not block the baffle 12, and the movement of the baffle 12 rotating toward the bottom a2 of the opening slot A will drive the locking assembly 13 to move together. At this time, the baffle 12 opens to expose the opening a1, and the rod 22 of the bracket 2 can be inserted into the opening slot A from the opening a1 to complete the plug-in fit between the bracket 2 and the slot structure 1.

[0094] When the slot structure 1 is used in cooperation with the bracket 2, in order to prevent accidental contact with the baffle 12 and expose the opening a1 of the opening slot A, the operation of the locking component 13 can be controlled by the structure to be inserted into the opening slot A. Specifically, it can be set that when the structure to be inserted approaches the baffle 12, the support rod 22 can drive the locking component 13 to move and unlock. When the structure to be inserted applies a force to the baffle 12, the locking component 13 will not block the baffle 12, and the baffle 12 can be opened to expose the opening a1, and the structure to be inserted can be smoothly inserted into the opening slot A through the opening a1.

[0095] Exemplarily, as Figures 9a to 9c shown, a first magnetic attraction part C1 is arranged on the locking component 13, and the first magnetic attraction part C1 can act by magnetic attraction. Referring together to Figure 7 and Figure 9a , when the insert to be inserted that can magnetically attract the first magnetic attraction part C1 approaches the baffle 12, and the distance between the insert to be inserted and the baffle 12 is sufficient for the magnetic core to attract the first magnetic attraction part C1, the first magnetic attraction part C1 drives the locking component 13 to rotate counterclockwise around the first rotation center Q1, and the sliding part 133 slides out of the locking position 111, and the locking component 13 is switched from the locking position to the unlocking position, and the locking component 13 can release the locking of the baffle 12. The insert to be inserted can push the baffle 12 to rotate towards the bottom a2 of the slot, the baffle 12 is opened to expose the opening a1, and the insert to be inserted can be inserted into the opening slot A. Among them, the first magnetic attraction part C1 can contain magnetic materials or iron.

[0096] Referring together to Figures 8a to 8d 、 Figure 9a , among the swing part 131, the linkage part 132 and the sliding part 133, the first magnetic attraction part C1 can be arranged on the swing part 131. When the first magnetic attraction part C1 is magnetically attracted by an external structure, the swing part 131 rotates towards the side close to the baffle 12 around the first rotation center, and the swing part 131 drives the sliding part 133 to slide in a direction away from the locking position 111 through the linkage part 132. When the sliding part 133 disengages from the locking position 111, the locking component 13 is in the unlocking position. At this time, the entire locking component 13 can rotate around the first rotation center Q1 to drive the baffle 12 to rotate towards the bottom a2 of the opening slot A, and the baffle 12 can be opened. When there is no external magnetic attraction on the first magnetic attraction part C1, the sliding part 133 can fall into the locking position 111 under the action of gravity, so that the locking component 13 is in the locking position to prevent the baffle 12 from being opened. In addition, the swing part 131 can also have the entire structure made of magnetic materials or iron, that is, the swing part 131 as a whole serves as the first magnetic attraction part C1.

[0097] Among them, the first magnetic attraction part C1 can be arranged on the swing part 131 as Figure 9a shown, or as Figure 9bis provided on the linkage 132. When the swing member 131 and the linkage 132 are rotatably connected through a hinge portion such as a pin shaft, such as Figure 9c The first magnetic attraction portion C1 can be provided on the hinge portion. It should be understood that from a mechanical perspective, setting the first magnetic attraction portion C1 at a position on the swing member 131 close to the rotational connection between the swing member 131 and the linkage 132 can achieve higher benefits, that is, a greater displacement effect can be achieved with a smaller magnetic attraction force.

[0098] The setting of the first magnetic attraction portion C1 enables the swing member 131 to be driven to rotate only when the first magnetic attraction portion C1 is magnetically attracted, and the sliding member 133 is driven through the linkage 132 to release the cooperation with the locking position 111, realizing the unlocking of the locking assembly 13, and the slot structure 1 has higher safety. When the slot structure 1 is in an idle state, the baffle 12 can block and seal the opening a1 of the opening slot A to prevent foreign objects from entering the opening slot A and blocking or damaging the opening slot A.

[0099] When the locking assembly 13 is in the unlocking position and the driving baffle 12 rotates around the second rotation center Q2 to drive the locking assembly 13 to rotate around the first rotation center Q1, the force applied to the baffle 12 also needs to overcome the gravity of the locking assembly 13 falling on the baffle 12.

[0100] such as Figure 10 As shown, in some embodiments, the first rotation center Q1 of the swing member 131 and the second rotation center Q2 of the baffle 12 are parallel to each other. When the baffle 12 rotates around the second rotation center Q2 to drive the locking assembly 13 to rotate around the first rotation center Q1, the actions of the baffle 12 and the locking assembly 13 can maintain the same rotation direction, and the effect of opening the baffle 12 can also be achieved. Among them, when the baffle 12 rotates clockwise around the first rotation center Q1, the sliding member 133 in the locking assembly 13 will slide on the baffle 12.

[0101] Ideally, during the process of the elastic reset member 14 releasing elastic potential energy, the baffle 12 can rely on its own gravity to stay at the opening a1, so that the elastic potential energy released by the elastic reset member 14 can drive the swing member 131 to rotate away from the baffle 12. To ensure that the elastic reset member 14 does not drive the baffle 12 to rotate away from the bottom a2 of the slot and expose the opening a1, such as Figure 11As shown in the figure, a limit stop 112 can also be provided at the opening a1 of the opening slot A of the slot body 11. The limit stop 112 is specifically provided on the side of the baffle 12 away from the bottom a2 of the slot. The limit stop 112 is located on the path of the baffle 12 rotating around the first rotation center Q1 away from the bottom a2 of the slot, and can limit the rotation of the baffle 12 away from the bottom a2 of the slot. When the first magnetic attraction part C1 is no longer magnetically attracted, the baffle 12 rotates around the second rotation center Q2 away from the bottom a2 of the slot to the position where the opening a1 is closed. Due to the blocking of the limit stop 112, the baffle 12 will not continue to rotate away from the bottom a2 of the slot. The elastic resetting part 14 releases elastic potential energy and drives the swinging part 131 to rotate towards the side close to the bottom a2 of the slot. The swinging part 131 drives the sliding part 133 to move along the third direction Z through the linkage part 132 until the sliding part 133 falls into the locking position 111, realizing the conversion of the locking component 13 from the unlocking station to the locking station.

[0102] As Figure 12 shown, when the slot structure 1 provided by the embodiment of the present application is applied to plug and fix a portable terminal device, considering the charging requirement of the portable terminal device, a charging port B1 can be provided in the opening slot A of the slot body 11. The charging port B1 can be specifically located at the bottom a2 of the slot. The slot body 11 is provided with a connection port D electrically connected to the charging port B1, and the connection port D can be externally connected to a power source such as a vehicle battery, so that the portable terminal device can be charged through the charging port B1 of the slot body 11. The connection port D can be a Lightning interface, a Type-C interface or a micro Universal Serial Bus (USB) interface, which is not limited here.

[0103] For the convenience of electrical signal transmission, the charging port B1 here can specifically be a contact charging port.

[0104] Possibly, as Figure 13 shown, in order to further fix the structure inserted into the opening slot A, a fixing part E can be provided in the opening slot A. When the to-be-inserted part is inserted into the opening slot A, the fixing part E can fix the to-be-inserted part relative to the opening slot A. The fixing part E can be a protrusion protruding from the inner wall of the opening slot A, and the to-be-inserted part is fixed by the frictional force between the protrusion and the to-be-inserted part. The fixing part E can also be a clamping groove, and a clamping part capable of being clamped and matched with the clamping groove is correspondingly provided on the to-be-inserted part, and the to-be-inserted part is fixed in the opening slot A by the clamping and matching of the clamping part and the clamping groove.

[0105] The embodiment of the present application also provides a bracket 2, as Figure 14As shown, the bracket 2 includes a panel 21 and a support rod 22. One end of the support rod 22 is rotatably connected to the panel 21. Among them, the panel 21 can be used to place and fix an electronic device. By fixing the electronic device to the panel 21, the support rod 22 can be fixed to other fixing devices, so as to provide a support point for the electronic device, which can free the hands of consumers and consumers do not need to hold the electronic device. For example, the bracket 2 can be fixed to the slot structure 1 in the above embodiment. Specifically, the support rod 22 can be inserted into the opening slot A of the slot body 11 for fixation. Among them, the panel 21 is exemplified as circular, and the circular area is larger than the cross-sectional area of the support rod 22. The larger area of the panel 21 can have a larger contact area with the electronic device fixed to the panel 21, so as to provide good stable support for the electronic device.

[0106] In order to fix the electronic device, an installation part for fixing the electronic device can be provided on the panel 21. Exemplarily, as Figure 15a shown, the installation part is a magnetic attraction structure member 211. The magnetic attraction structure member 211 can have a magnetic attraction effect with the structure with magnetic attraction function in the electronic device, so as to magnetically adsorb the electronic device to the panel 21. The magnetic attraction structure member 211 can be hidden in the panel 21, and the magnetic attraction structure member 211 is shown by a dotted line here. It should be understood that the shape, position and size of the magnetic attraction structure member 211 exemplified here are only examples.

[0107] Or, as Figure 15b shown, the installation part is exemplified as two symmetrically arranged clamping members 212. These two clamping members 212 can provide clamping forces in two opposite directions for the electronic device as shown by the arrows in Figure 15b so as to fix the electronic device. When the electronic device needs to be removed, the two clamping members 212 need to move in opposite directions to release the clamping force applied to the electronic device. Based on the structure of the elastic clamping member 212, as Figure 15cAs an example, the bracket 2 is further provided with an unlocking button 213, a driving part 215, a transmission part 214, a first elastic part 216 and a second elastic part 217 for controlling the movement of the clamping parts 212. The unlocking button 216 is movably mounted on the panel 21, and the driving part 215 is fixed to the side of the unlocking button 213 facing the panel 21. The driving part 215 is fixed to the panel 21 through the elastic part 216. Along the direction from the unlocking button 213 to the driving part 215, the cross-section of the driving part 215 gradually decreases. For example, the driving part 215 is conical or frustum-shaped. Each clamping part 212 is correspondingly connected to a transmission part 214, and the transmission part 214 is movably mounted on the panel 21 along the vertical direction shown in the figure. Each transmission part 214 can move along the vertical direction shown in the figure, and can drive the two clamping parts 212 to approach or separate from each other. The transmission part 214 is connected to the panel 21 through the second elastic part 217. Each transmission part 214 abuts against the driving part 215, and the surface of the transmission part 214 for abutting against the driving part 215 is an inclined surface. When the driving part 215 moves leftward along the horizontal direction shown in the figure, it can drive the two transmission parts 214 to move away from each other along the vertical direction, so as to drive the two clamping parts 212 to move away from each other. Figure 15c In the state shown, the panel 21 does not fix the electronic device. The first elastic part 216 and the two second elastic parts 217 are both in a free state, and the distance between the two clamping parts 212 is not enough to place the electronic device. At this time, a leftward force is applied to the unlocking button 213 along the direction of the arrow shown in the figure. The unlocking button 213 moves leftward, the driving part 215 compresses the first elastic part 216, and at the same time the driving part 215 drives the two transmission parts 214 to move away from each other, so that the two clamping parts 212 move away from each other until the distance between the two clamping parts 212 is enough to place the electronic device. The two second elastic parts 217 are compressed. After the two clamping parts 212 place the electronic device, no force is applied to the unlocking button 213 anymore. The first elastic part 216 releases the elastic potential energy to drive the driving part 215 and the unlocking button 213 to reset. The two second elastic parts 217 release the elastic potential energy to drive the two transmission parts 214 to approach each other respectively, and the two clamping parts 212 approach each other to clamp the electronic device, realizing the fixation of the electronic device. When the electronic device needs to be removed, as long as a force is applied to the unlocking button 213 again, the two clamping parts 212 can be driven to move away from each other through the driving part 215 and the two transmission parts 214, and the clamping of the electronic device is released. At this time, the electronic device can be removed.

[0108] It should be noted that Figure 15c the structure shown is only an exemplary introduction to a possible implementation manner of fixing the electronic device to the panel 21 through Figure 15b the two clamping parts 212 shown. Of course, the control of the two clamping parts 212 can also be realized through other mechanical transmission structures such as gear racks, threaded screws, and crank sliders. Examples are not given here.

[0109] As shown Figure 16a and Figure 16b When the electronic device fixed to the panel 21 can be charged through the bracket 2, a charging terminal B2 can also be provided on the panel 21, and the charging terminal B2 can be a contact charging terminal. Combining Figure 17a and Figure 17b As shown, a connecting wire B3 connected to the charging terminal B2 is provided in the support rod 22, and the connecting wire B3 is used to connect to an external power source. The connecting wire B3 is exemplified as a flexible flat cable, and of course, it can also be other wires. The connecting wire B3 is arranged inside the support rod 22, shown by a dotted line.

[0110] Among them, the support rod 22 needs to be fixed to other fixing structures such as the slot structure 1 to provide support for the panel 21 and the electronic device fixed to the panel 21. The support rod 22 needs to bear a large stress. To ensure safety, an impact collapse portion is provided on the support rod 22. Specifically, along the extending direction of the support rod 22, when the impact force received by the support rod 22 reaches a set threshold value, the impact collapse portion collapses, deforms or breaks. Among them, the set threshold value is the force that can cause the material of the support rod to fail. When the support rod 22 receives an impact force greater than the above set threshold value along the extending direction of the support rod 22, the support rod 22 can collapse or break at the impact collapse portion, which is equivalent to the impact collapse portion absorbing the impact force.

[0111] Specifically, the impact collapse portion can be a weak structure with a cross-section smaller than that of the support rod 22, or a material with a poor stress-bearing capacity of the material. The present application does not make any limitations. Exemplarily, the impact collapse portion is the weakest position of the support rod 22. When a force of 1500 N or more is applied to the panel 21 along the extending direction of the support rod 22, the impact collapse portion collapses, deforms or breaks and fails, preventing injuries caused by consumers' collisions. Or, different metal materials are selected at different positions of the support rod 22, so that the strength distribution of different positions of the support rod 22 is stepped. When a force of 1500 N or more is applied to the panel 21 along the extending direction of the support rod 22, the weakest position first collapses, deforms or breaks, and then the other positions of the support rod 22 collapse and deform in sequence, reducing the energy transmitted to the passengers and reducing injuries. In addition, when the impact collapse portion is impacted and broken, the cross-section after fracture can be designed to be a relatively gentle and smooth part, which can reduce the impact of the broken support rod 22 on consumers.

[0112] Combining Figure 18a and Figure 18b As shown, for convenient support, the panel 21 and the support rod 22 are inclined at an angle of β. When the panel 21 is in the vertical direction as shown Figure 18a and Figure 18b shown, the end of the support rod 22 for connecting the panel 21 is higher than the end of the support rod 22 away from the panel 21. With such a structure, the support rod 22 can provide more stable support for the panel 21.

[0113] Further referring to Figure 19 as shown, the bracket 2 is in an applied state, and the panel 21 can be rotatably mounted on the support rod 22 through a hinge 23. The panel 21 can rotate relative to the support rod 22 in the direction of the arrow as Figure 19 shown, that is, the panel 21 can rotate relative to the support rod 22 about an axis parallel to the horizontal direction to achieve pitching rotation. The structure of the hinge 23 is relatively common, as long as it can achieve the effect of the panel 21 rotating relative to the support rod 22, and it is not limited here. Exemplarily, the panel 21 can rotate ±10° relative to the support rod 22, so that the angle of the panel 21 facing the consumer can be changed to meet the use of consumers of different heights.

[0114] In some possible implementation manners, the support rod 22 of the bracket 2 can be magnetically fixed to other fixing devices by magnetic attraction. As Figure 19 shown, a second magnetic attraction portion C2 can be provided at the end of the support rod 22. The second magnetic attraction portion C2 can include a magnetic material or can include iron.

[0115] Combined with Figure 20a and Figure 20b as shown, a buckle 222 and an unlocking member 223 can also be provided on the support rod 22 of the bracket 2. The buckle 222 is used to fix the support rod 22 to other structures in a snap-fit manner. Of course, the other structure needs to have a structure that can be snap-fitted with the buckle 222. The buckle 222 is movably mounted on the support rod 22 along the direction of the arrow shown, and a part of the buckle 222 protrudes outside the support rod 22 and a part is located inside the support rod 22. When the buckle 222 moves towards the inner side of the support rod 22, the buckle 222 can be completely hidden inside the support rod 22 without affecting the cooperation between the support rod 22 and other structures. When at least a part of the buckle 222 is located outside the support rod 22, the support rod 22 can be fixedly coupled with other structures through the buckle 222. It can be considered that when at least a part of the buckle 222 extends outside the support rod 22, it is in a locked state, and when the buckle 222 is completely hidden inside the support rod 22, it is in an unlocked state. The unlocking member 223 is used to control the locking and unlocking of the buckle 222.

[0116] Exemplarily, as Figure 20a shown, the buckle 222 and the unlocking member 223 are connected through a connecting member 221, and the connecting member 221 is connected to the support rod 22 through a third elastic member 224. When the unlocking member 222 is driven to move in the direction of the arrow, the belt body buckle 222 and the unlocking member 223 can be synchronously moved through the connecting member 221. The third elastic member 224 can provide a restoring force for the connecting member 221. The connecting member 221 has a first working position for protruding the buckle 222 outside the support rod 22 and a second working position for hiding the buckle 222 inside the support rod 22. When the third elastic member 224 is in a free state, the buckle 222 protrudes outside the support rod 22.

[0117] Alternatively, as Figure 20b shown, the buckle 222 and the unlocking member 223 are connected by a connecting member 221. The connecting member 221 is rotatably mounted on the support rod 22 about a third rotation center Q3. The buckle 222 and the unlocking member 223 are respectively arranged at two ends of the connecting member 221. The extending direction of the buckle 222 from the support rod 22 is opposite to the extending direction of the unlocking member 223 from the support rod 22. When the connecting member 221 rotates about the third rotation center Q3, the moving directions of the buckle 222 and the unlocking member 223 are opposite. The connecting member 221 is connected to the support rod 22 by a third elastic member 224, and the third elastic member 224 can provide a restoring force for the connecting member 221.

[0118] It should be understood that the bracket 2 can also be fixed to other structures through other structures. The buckle 222 and the unlocking member 223 here are only an exemplary structure.

[0119] As Figure 21a and Figure 21b shown, when the bracket 2 is fixed to other structures, the buckle 222 is used for snap-fitting and fixing with other structures. Therefore, the buckle 222 is arranged on one side of the support rod 22 slightly away from the panel 21. The user needs to control the unlocking member 223 to control the buckle 222. Therefore, the unlocking member 223 is arranged on one side of the support rod 22 close to the panel 21.

[0120] To protect the bracket 2, a protective layer can be coated on the surface of the bracket 2, and this protective layer enables the bracket 2 to have good scratch resistance.

[0121] The embodiment of the present application further provides a bracket device. As Figure 22 shown, this bracket device includes a slot structure 1 and a bracket 2, and the slot structure 1 and the bracket 2 can be inserted and matched. In use, the slot structure 1 can be arranged on a fixing device, the bracket 2 can be fixed on a portable terminal device, and the bracket 2 is inserted into the slot structure 1 to achieve insertion and fixing. Thus, the portable terminal device can be fixed to the fixing device through the bracket 2. This bracket device can be applied to any occasion where consumers may use portable terminal devices, such as at home, in a vehicle, etc. According to different application scenarios, the fixing device here can exemplarily be a seat of a vehicle, a seat of a civil aviation aircraft, a bedside table at home, etc.

[0122] Among them, the slot structure 1 can refer to the slot structure 1 and the bracket 2 provided in the above embodiment. The support rod 22 of the bracket 2 can be inserted into the opening slot A of the slot structure 1. In application, the opening a1 of the opening slot A of the slot structure 1 faces the bracket 2, which is convenient for the support rod 22 of the bracket 2 to be inserted into the opening slot A of the slot structure 1 to achieve the insertion and matching of the bracket 2 and the slot structure 1.

[0123] The panel 21 can be fixed to the portable terminal device, that is, the panel 21 is fixed to the portable terminal device and can be transferred with the transfer of the portable terminal device. The panel 21 can also be used to fix the state of the portable terminal device, that is, the panel 21 can be detachably connected to the portable terminal device. For example Figure 15a or Figure 15b the structure shown. When the portable terminal device is disassembled, the panel 21 can be separated from the portable terminal device, and the portable terminal device and the panel 21 are independent of each other.

[0124] The plug-in fit between the slot structure 1 and the bracket 2 can be referred to Figures 23a to 23b the example shown. A first magnetic attraction part C1 is arranged on the swing part 131, and a second magnetic attraction part C2 is arranged at one end of the support rod 22 of the bracket 2 away from the panel 21. When the support rod 22 of the bracket 2 is close to the baffle 12, when the distance between the support rod 22 and the baffle 12 is sufficient for the first magnetic attraction part C1 and the second magnetic attraction part C2 to generate magnetic attraction, the second magnetic attraction part C2 can attract the first magnetic attraction part C1, so that the swing part 131 rotates towards the side close to the baffle 12 around the first rotation center Q1, and the swing part 131 drives the sliding part 133 to slide away from the locking position 111 through the linkage part 132. When the sliding part 133 disengages from the locking position 111, the locking component 13 is in the unlocked position. At this time, the entire locking component 13 can rotate around the first rotation center Q1. As Figure 23b shown, the support rod 22 of the bracket 2 contacts the baffle 12 and applies a force in the direction shown by the arrow to the baffle 12, and the direction of this force is the extension direction of the opening slot A. The support rod 2 can drive the baffle 12 to rotate towards the bottom a2 of the opening slot A around the second rotation center Q2, and the baffle 12 can be opened. At this time, the locking component 13 is in the unlocked position. As Figure 23c shown, the locking component 13 can be lapped on the baffle 12 and rotate towards the bottom a2 of the opening slot A around the first rotation center Q1. When the support rod 22 of the bracket 2 is inserted into the opening slot A, as Figure 23d shown, the connecting line B3 of the support rod 22 can contact and be electrically connected to the charging port B1 in the opening slot A, realizing the electrical connection between the charging end B2 and the connection port D. When the electronic device is fixed to the panel 21, the electronic device can be charged through the charging end B2.

[0125] After the bracket 2 is taken out, the baffle 12 returns to the Figure 23a position shown under the action of gravity. The swing part 131 of the locking component 13 rotates towards the baffle 12 side around the first rotation center Q1, and the sliding part 133 abuts against the baffle 12. The elastic reset part 14 releases elastic potential energy and pushes the sliding part 111 to slide along the baffle 12 and fall into the quick locking position 111, and the locking component 13 returns to the locking position to lock the baffle 12.

[0126] Among them, for the magnetic attraction between the first magnetic attraction part C1 and the second magnetic attraction part C2, the distance between the support rod 22 and the baffle 12 and the selection of magnetic materials need to be considered, which are not limited in the embodiments of the present application. Among them, one of the first magnetic attraction part C1 and the second magnetic attraction part C2 may contain magnetic materials, and the other may contain iron, or both may contain magnetic materials. For example, the first magnetic attraction part C1 is a magnet, and the second magnetic attraction part C2 is a magnet or a material containing iron powder. Or, the first magnetic attraction part C1 is a magnet or a material containing iron powder, and the second magnetic attraction part C2 is a magnet. Or, both the first magnetic attraction part C1 and the second magnetic attraction part C2 are magnets.

[0127] An embodiment of the present application also provides a vehicle, as Figure 24 shown, the vehicle includes a vehicle body 200, a front row seat 201 and a rear row seat 202 arranged in the vehicle body 200.

[0128] As Figure 25a shown, the above slot structure 1 is arranged on the back side of the front row seat 201. The structure with the second magnetic part C2 can be inserted into the opening slot A of the slot structure 1 to achieve fixation.

[0129] Or, as Figure 25b shown, the above bracket device 10 is arranged on the back side of the front row seat 201. When a passenger sits on the rear row seat 202, an electronic device can be plugged into the slot structure 1 through structures such as the bracket 2, freeing the hands to do other things. Since the baffle 12 of the slot structure 1 can be locked in the idle state through the locking component 13, it can prevent foreign objects from entering and blocking or damaging the slot structure 1 in the idle state. When applying the bracket 2 in the above embodiment, since the bracket 2 has an impact collapse part, the support rod 22 can collapse or break at a preset place when receiving an impact force along the extension direction of the support rod 22, improving safety.

[0130] Among them, the connection port D of the slot structure 1 is connected to the vehicle's battery, and the electronic device fixed to the bracket 2 can be charged through the vehicle's battery. In addition, the bracket 2 is also provided with a detection unit connected to the vehicle's control system, which can detect whether the electronic device is fixed on the panel 21. When the passenger removes the electronic device from the panel 21, the detection unit will send a message to the vehicle's control system to prompt the passenger to remove the bracket 2. After the bracket 2 is removed, the baffle 12 of the slot structure 1 can close the opening a1 to prevent foreign objects from entering the opening slot A.

[0131] The slot structure 1 can be hidden in the front row seat 201, only exposing the opening a1 for the bracket 2 to be inserted, saving space and enabling the passenger to obtain a good space experience. The slot structure 1 can also extend partially outside the front row seat 201, and at this time, the slot structure 1 can be used to hang objects.

[0132] It should be understood that when the slot structure 1 is applied to a vehicle, fixing the slot structure 1 to the back side of the front row seat 201 is only an application example. The slot structure 1 can also be arranged at positions such as the vehicle frame, the door, and the center console, which can meet different usage requirements of consumers.

[0133] Obviously, those skilled in the art can make various changes and modifications to this application without departing from the protection scope of this application. Thus, if these modifications and variations of this application fall within the scope of the claims of this application and their equivalent technologies, this application is also intended to include these modifications and variations.

Claims

1. A slot structure (1), characterized in that include: A slot body (11), the slot body (11) having an opening slot (A), and the slot body (11) is also provided with a locking position (111); a baffle (12), the baffle (12) being rotatably mounted at the opening of the opening slot (A); A locking assembly (13), the locking assembly (13) being movably mounted in the opening slot (A) and in contact with the baffle (12); the locking assembly (13) having a locking position for locking with the locking position (111) and an unlocking position for disengaging from the locking position (111); the locking assembly (13) being provided with a first magnetic attraction portion (C1); When the first magnetic attraction portion (C1) is acted upon by the magnetic attraction force of the baffle (12) on the side facing away from the locking component (13), the locking component (13) is switched from the locking position to the unlocking position.

2. The slot structure (1) according to claim 1, wherein, The locking assembly (13) comprises a swinging member (131), a linkage member (132) and a sliding member (133); The swinging member (131) is rotationally connected to the slot body (11); the sliding member (133) is slidably matched with the locking position (111) and is in contact with the baffle (12); one end of the linkage member (132) is rotationally connected to the swinging member (131); the other end of the linkage member (132) is rotationally matched with the sliding member (133); and the first magnetic attraction portion (C1) is arranged on the swinging member (131).

3. The slot structure (1) according to claim 2, characterized in that, The first rotation center of the swing member (131) and the first rotation center of the baffle (12) are parallel to each other.

4. The slot structure (1) according to claim 1, characterized in that The first magnetic attraction portion (C1) comprises a magnetic material or iron.

5. The slot structure (1) according to claim 1, characterized in that, It also comprises an elastic return member (14), wherein the elastic return member (14) is connected between the locking assembly and the baffle (12); when the first magnetic attraction portion (C1) is magnetically attracted by the side of the baffle (12) facing away from the locking assembly (13), the elastic return member (14) is in a compressed force storage state.

6. The slot structure (1) according to claim 1, characterized in that, A charging port (B1) is arranged in the opening slot (A), and the slot body (11) has a connection port (D) electrically connected to the charging port (B1), and the connection port (D) is used to connect to an external power source.

7. The slot structure (1) according to claim 6, characterized in that, The charging port (B1) is a contact-type charging port.

8. The slot structure (1) according to claim 1, characterized in that, A fixing portion (E) is provided in the opening groove, and the fixing portion (E) is used for snapping into the structure inserted into the opening groove (A).

9. The socket structure (1) according to claim 1, wherein The extension direction of the opening groove (A) is inclined at an angle to the plane where the opening (a1) is located; along the direction perpendicular to the plane where the opening (a1) is located, the bottom (a2) of the opening groove is lower than the opening (a1) of the opening groove (A).

10. The slot structure (1) according to any one of claims 1-9, characterized in that, The slot body (11) is further provided with a limit stopper (112), the limit stopper (112) being arranged on a side of the baffle (12) away from the locking assembly, and the limit stopper abuts against the baffle.

11. A bracket (2), characterized in that, For cooperating with the slot structure (1), the bracket (2) includes a panel (21) and a rod (22) rotatably connected to the panel (21). The panel (21) is used to fix an electronic device; one end of the rod (22) away from the panel (21) is provided with a second magnetic attraction part (C2). The rod (22) is used to insert into the opening slot (A) of the slot structure (1), and the second magnetic attraction part (C2) is used to adsorb the first magnetic attraction part (C1) in the slot structure (1) when approaching the baffle (12) of the slot structure (1), so as to drive the locking component (13) in the slot structure (1) to unlock the baffle (12), and then it is convenient for the rod (22) to insert into the opening slot (A) of the slot structure (1).

12. The bracket (2) according to claim 11, characterized in that, The panel (21) is provided with a charging end (B2) for charging the electronic device, and the rod (22) is provided with a connection line (B3) for connecting the charging end (B2) and an external power supply connection line (B3); the connection line (B3) of the rod (22) is used to be electrically connected to the charging port (B1) at the bottom of the opening slot.

13. The bracket (2) according to claim 11, characterized in that, The rod (22) is provided with a connecting member (221), a buckle (222) and an unlocking member (223) fixed to the connecting member (221). The connecting member (221) is movably arranged in the rod (22) and is connected to the rod (22) through a third elastic member (224); the connecting member (221) has a first working position for exposing the buckle (222) outside the rod (22) and a second working position for hiding the buckle (222) inside the rod (22). The third elastic member (224) is used to keep the connecting member (221) in the first working position; the buckle (222) is arranged on one side of the rod (22) away from the panel (21), and the unlocking member (223) is arranged on one side of the rod (22) close to the panel (21).

14. The stent (2) according to any one of claims 11-13, characterized in that, The rod (22) is provided with an impact collapsible part; along the extending direction of the rod (22), when the impact force received by the rod (22) reaches a set threshold value, the impact collapsible part collapses, deforms or breaks; the set threshold value is the force that can cause the material of the impact collapsible part to fail.

15. A support device, characterized in that, Including the slot structure (1) according to any one of claims 1-10 and the bracket (2) according to any one of claims 11-14. The rod (22) of the bracket (2) is used for plugging and cooperating with the opening slot (A) of the slot structure (1), and the second magnetic attraction part (C2) is used for magnetically adsorbing the first magnetic attraction part (C1).

16. A vehicle, characterized in that, Including a vehicle body, in which the slot structure (1) according to any one of claims 1-10 or the bracket device according to claim 15 is arranged.

17. A locking mechanism, characterized in that, Including: A lock body (101), the lock body (101) is provided with a locking position (1011). A lock core (102), wherein the lock core (102) is movably mounted on the lock body (101); the lock core (102) comprises a swinging member (1021), a linkage member (1022) and a sliding member (1023); the swinging member (1021) is rotatably connected to the lock body (101), and the sliding member (1023) is slidably matched with the locking position (1011); one end of the linkage member (1022) is rotatably connected to the swinging member (1021), and the other end of the linkage member (1022) is slidably matched with the sliding member (1023); the lock core (102) further comprises a first magnetic attraction portion (C1) arranged on the swinging member (1021), and when the first magnetic attraction portion (C1) is subjected to a magnetic attraction force, the swinging member (1021) drives the sliding member (1023) to move in a direction of sliding out of the locking position (1011) through the linkage member (1022).

18. The lock mechanism according to claim 17, characterized in that, It also comprises an elastic return member (103), wherein the elastic return member (103) is connected between the lock core (102) and the lock body (101); when the first magnetic attraction portion (C1) is subjected to a magnetic attraction force, the elastic return member (103) is in a compressed force storage state.

Citation Information

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