Wireless charging mechanism and carrier

The design of detachable dividers and magnetic structure solves the aesthetic and convenience issues of wireless charging mechanisms when placing foldable screen phones, adapts to the charging needs of different devices, and improves heat dissipation performance.

CN224068390UActive Publication Date: 2026-03-31宁波东昊汽车部件有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing wireless charging mechanisms, when used with foldable phones, obstruct the phone's unfolding state due to the presence of dividing strips, affecting both aesthetics and ease of use.

Method used

A detachable divider was designed, which connects to the charging panel and mounting base via a magnetic structure. It can separate the charging area when needed, or be disassembled into a whole to adapt to larger devices, meeting different usage needs. The heat dissipation performance of the charging module is improved through a heat dissipation channel.

Benefits of technology

It achieves a beautiful and simple wireless charging mechanism, occupies little space, is easy to use, can be adapted to foldable phones and tablets of different sizes, and has good heat dissipation and reliable operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wireless charging mechanism. The wireless charging mechanism comprises a charging panel, a wireless charging module and a separator. The upper surface of the charging panel forms a bearing surface for placing mobile equipment, and at least two charging areas are planned on the charging panel along a first direction; the wireless charging modules are used for wirelessly charging the mobile equipment, the set number of the wireless charging modules is matched with the planned number of the charging areas, and the wireless charging modules are arranged below the charging panel and matched with the charging areas in a one-to-one correspondence mode; the separator is detachably arranged on the bearing surface of the charging panel, and the separator is located between two adjacent charging areas in a state that the separator is installed on the bearing surface of the charging panel. The wireless charging mechanism provided by the utility model can be matched with a folding mobile phone in an unfolded state; the appearance is attractive and simple, the occupied space is small, use is convenient, and operation is simple and reliable. The utility model further provides a carrier.
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Description

Technical Field

[0001] This utility model relates to the field of wireless charging mechanisms, and in particular to a wireless charging mechanism and carrier. Background Technology

[0002] As the automotive industry continues to develop, performance is no longer the sole determining factor. Aesthetics, functionality, and comfort are also key considerations for customers when choosing a car model. With the increasing number of foldable phones, conventional wireless charging devices often have a divider strip in the middle to separate the left and right sides. This divider strip can prevent the foldable phone from being inserted when it is in the open position. Utility Model Content

[0003] To overcome the shortcomings of existing technologies, this utility model provides a wireless charging mechanism. By incorporating detachable dividers, the wireless charging mechanism can be adapted to foldable phones in their unfolded state. Furthermore, it boasts a beautiful and simple appearance, occupies little space, is convenient to use, and is simple and reliable to operate. This utility model also provides a carrier.

[0004] To achieve the above objectives, the present invention employs the following technical solution:

[0005] A wireless charging mechanism, comprising:

[0006] A charging panel, wherein the upper surface of the charging panel is formed as a support surface for placing a mobile device, and at least two charging areas are planned on the charging panel along a first direction;

[0007] A wireless charging module is provided for wirelessly charging mobile devices. The number of wireless charging modules matches the planned number of charging areas, and the wireless charging modules are located below the charging panel and correspond one-to-one with the charging areas.

[0008] And a separator, which is detachably disposed on the bearing surface of the charging panel, and when the separator is installed on the bearing surface of the charging panel, the separator is located between two adjacent charging areas.

[0009] Using the above technical solution, when the user installs the separator on the bearing surface, the separator can separate two adjacent charging areas. It can not only distinguish the charging areas, but also restrict the mobile devices placed on the charging areas, that is, restrict the mobile devices to the current charging area and prevent them from accidentally sliding out of the current charging area. In addition, the separator can increase the aesthetics.

[0010] When the user removes the separator from the support surface, the multiple charging areas form a whole, facilitating the placement of larger mobile devices, such as unfolded foldable phones or tablets. For example, if there are two charging areas, the charging panel can hold an unfolded bi-foldable phone, and one of the two wireless charging modules can charge the unfolded bi-foldable phone. If there are three charging areas, the charging panel can hold an unfolded tri-foldable phone or tablet, and the wireless charging module on the left or right can charge the unfolded tri-foldable phone, while the wireless charging module in the middle can charge the tablet. Of course, more charging areas can be provided to increase its usage scenarios, enabling it to charge more types of foldable phones and larger tablets.

[0011] The above technical solution is reasonably designed and can be disassembled according to the user's needs, thus meeting different user requirements;

[0012] Of course, the separator can be equipped with additional functions, such as adding a laser pointer, which greatly increases its usability.

[0013] Furthermore, the separator is provided with a first detachable structure, and the charging panel is provided with a second detachable structure at the corresponding position for installing the separator, wherein the first detachable structure and the second detachable structure are detachably assembled and disassembled.

[0014] By adopting the above technical solution, the separator can be detachably connected to the charging panel through the cooperation of the first detachable structure and the second detachable structure; the above technical solution is more reasonable.

[0015] Furthermore, the first detachable structure is configured as a first magnetic structure, and the second detachable structure is configured as a second magnetic structure, wherein the first magnetic structure and the second magnetic structure can magnetically engage.

[0016] By adopting the above technical solution, the first detachable structure and the second detachable structure are more reasonable, and the magnetic attraction makes the disassembly and assembly of the separator and the bearing surface more convenient and quick; and the overall structure is more concise and aesthetically pleasing.

[0017] Specifically, the first magnetic attraction structure uses a magnet, and the second magnetic attraction structure uses a magnetic metal, or the first magnetic attraction structure uses a magnetic metal and the second magnetic attraction structure uses a magnet; the magnetic metal includes iron, nickel, and cobalt and their alloys; when the first magnetic attraction structure uses a magnetic metal, the separator may be provided with a magnetic metal side facing the bearing surface when it is installed on the bearing surface, or the separator may be made entirely of magnetic metal.

[0018] Furthermore, the separator has a length, and when the separator is mounted on the bearing surface of the charging panel, the length direction of the separator is a second direction, which is perpendicular to the first direction.

[0019] By adopting the above technical solution, the separator is made more reasonable. When the separator is installed on the bearing surface, it can more effectively separate two adjacent charging areas.

[0020] Furthermore, there may be one or more first magnetic structures. When there is one first magnetic structure, the first magnetic structure has a length and the length direction of the first magnetic structure is consistent with the length direction of the separator. When there are multiple first magnetic structures, the multiple first magnetic structures are spaced apart along the length direction of the separator.

[0021] The second magnetic structure may be provided in one or more ways. When there is only one second magnetic structure, the second magnetic structure has a length and the length direction of the second magnetic structure is consistent with the second direction. When there are multiple second magnetic structures, the multiple second magnetic structures are spaced apart along the second direction.

[0022] By adopting the above technical solution, the arrangement of the first magnetic attraction structure and the second magnetic attraction structure is more reasonable. The above technical solution enables the separator to be installed more stably when it is installed on the bearing surface; and enables the length direction of the separator to be the second direction when it is installed on the bearing surface.

[0023] Furthermore, the bearing surface is recessed at the corresponding position for mounting the separator to form a bearing surface groove, the bearing surface groove matching the side of the bearing surface facing the bearing surface when the separator is mounted to the bearing surface, and the recess depth of the bearing surface groove is less than the distance from the side of the bearing surface facing the bearing surface to the side away from the bearing surface when the separator is mounted to the bearing surface.

[0024] By adopting the above technical solution, the groove on the bearing surface can provide a certain guiding effect for the installation of the partition during the process of installing the partition onto the bearing surface;

[0025] Furthermore, the recessed depth of the bearing surface groove is less than the distance from the side facing the bearing surface to the side away from the bearing surface when the separator is installed on the bearing surface. That is, when the separator is installed in the bearing surface groove, the separator still protrudes from the bearing surface to achieve the separation function. Moreover, the part of the separator that protrudes from the bearing surface also makes it easy for the user to apply force to the separator to disassemble and assemble it.

[0026] Furthermore, the wireless charging mechanism includes a mounting base, which has a base cavity for mounting and accommodating the wireless charging module, and a base opening communicating with the base cavity. The base opening matches the charging panel to expose the charging area on the charging panel.

[0027] By adopting the above technical solution, the wireless charging mechanism becomes more reasonable, and the mounting base provides a mounting foundation for the wireless charging module and the charging panel.

[0028] Furthermore, the separator can be detachably connected to the mounting base.

[0029] By adopting the above technical solution, the wireless charging mechanism becomes more reasonable. Since the separator can be detachably connected to the mounting base, when a user needs to separate two adjacent charging areas, the user needs to remove the separator mounted on the mounting base and then install the removed separator onto the support surface. When the user does not need to separate two adjacent charging areas, the user needs to remove the separator mounted on the support surface and then install the removed separator onto the mounting base. This technical solution ensures that the separator can always be installed and fixed, preventing its loss.

[0030] Furthermore, the mounting base is provided with a third detachable structure, and the first detachable structure and the third detachable structure are detachably assembled and disassembled together.

[0031] By adopting the above technical solution, the separator can be detachably connected to the mounting base through the cooperation of the first detachable structure and the third detachable structure; the above technical solution is more reasonable.

[0032] Furthermore, the third detachable structure is configured as a third magnetic structure, and the first magnetic structure and the third magnetic structure can magnetically engage.

[0033] By adopting the above technical solution, the third detachable structure is made more reasonable, and the magnetic attraction makes the disassembly and assembly of the separator and the mounting base more convenient and quick; and the overall structure is more concise and aesthetically pleasing.

[0034] Specifically, when the first magnetic attraction structure uses a magnet, the third magnetic attraction structure uses a magnetic metal; when the first magnetic attraction structure uses a magnetic metal, the third magnetic attraction structure uses a magnet.

[0035] Furthermore, there may be one or more third magnetic structures. When there is one third magnetic structure, the second magnetic structure has a length. When there are multiple second magnetic structures, the multiple second magnetic structures are spaced apart along one direction.

[0036] By adopting the above technical solution, the third magnetic attraction structure is set more reasonably, and the above technical solution makes the separator more stable when it is installed on the mounting base.

[0037] Furthermore, the mounting base has a recessed groove at the corresponding position for mounting the separator, the recessed groove matching the side of the separator facing the mounting base when it is mounted to the mounting base, and the recessed depth of the recessed groove is less than the distance from the side of the separator facing the mounting base to the side away from the mounting base when it is mounted to the mounting base.

[0038] By adopting the above technical solution, the groove of the mounting base can provide a certain guiding effect for the installation of the partition during the process of installing the partition onto the mounting base;

[0039] Furthermore, the recess depth of the mounting base groove is less than the distance from the side facing the mounting base to the side away from the mounting base when the partition is installed on the mounting base. That is, when the partition is installed in the mounting base groove, the partition still protrudes from the mounting base. The part of the partition that protrudes from the mounting base facilitates the user to apply force to the partition to disassemble and assemble it.

[0040] Furthermore, the mounting base has an upper surface of the frame, and the base opening is provided on the upper surface of the frame. The partition is detachably mounted on the upper surface of the frame, and when the partition is mounted on the upper surface of the frame, the length direction of the partition is parallel to the first direction.

[0041] By adopting the above technical solution, the position of the mounting base for installing the partition is more reasonable, and the position of the mounting base for installing the partition is on the same side as the bearing surface, which facilitates the user's operation of the partition.

[0042] Furthermore, the mounting base is provided with a heat dissipation channel, and the heat dissipation channel has a heat dissipation channel inlet and a heat dissipation channel outlet. The heat dissipation channel inlet is located close to the heat dissipation area of ​​the wireless charging module, and one end of the heat dissipation channel outlet extends outside the mounting base.

[0043] By adopting the above technical solution, the wireless charging mechanism is made more reasonable. The setting of the heat dissipation channel facilitates the heat generated by the wireless charging module during operation to be guided to the outside of the mounting base, which greatly enhances the overall heat dissipation performance of the wireless charging mechanism and ensures that the wireless charging module can operate stably and reliably.

[0044] Generally, the wireless charging module is equipped with a cooling fan, and the area where the cooling fan is located forms the heat dissipation zone of the wireless charging module.

[0045] Furthermore, the number of heat dissipation channels is matched and corresponds one-to-one with the number of wireless charging modules.

[0046] By adopting the above technical solution, the heat dissipation channel is set up more reasonably, avoiding mutual interference of the heat generated by the wireless charging module and greatly enhancing the heat dissipation effect of the wireless charging module.

[0047] Further, the wireless charging mechanism includes a first heat dissipation channel component with a first heat dissipation channel and a second heat dissipation channel component with a second heat dissipation channel. The first heat dissipation channel component is disposed within the base frame cavity and is located near the heat dissipation area of ​​the wireless charging module. An opening is formed on the side of the first heat dissipation channel component facing the wireless charging module to form the heat dissipation channel inlet, which communicates with the first heat dissipation channel. The first heat dissipation channel component extends towards the inner wall of the base frame cavity to form a first heat dissipation opening. A second heat dissipation opening is formed at a corresponding position on the mounting base to expose the first heat dissipation opening. The second heat dissipation channel component is disposed outside the mounting base where the second heat dissipation opening is located. A third heat dissipation opening is formed on the second heat dissipation channel facing the mounting base and communicating with the second heat dissipation opening. The third heat dissipation opening communicates with the second heat dissipation channel. A plurality of openings are provided on the second heat dissipation channel component to form the heat dissipation channel outlet. One side of the third heat dissipation opening protrudes from the mounting base to form the heat dissipation channel outlet. The first heat dissipation channel and the second heat dissipation channel together form the heat dissipation channel.

[0048] By adopting the above technical solution, the formation of the heat dissipation channel is made more reasonable and facilitates actual production and installation.

[0049] Furthermore, the mounting base includes a mounting base body and a mounting base panel covering the mounting base body. The mounting base body is provided with the base cavity, and the mounting base panel is provided with the base opening.

[0050] The above technical solution makes the mounting base more reasonable.

[0051] Furthermore, the side of the mounting base panel away from the mounting base body is formed as the upper surface of the frame;

[0052] The mounting base body extends outward from one edge toward the mounting base panel to form a support portion for supporting the mounting base panel. The portion of the mounting base for detachably mounting the separator is formed as a separator mounting portion, and the separator mounting portion is disposed on the upper surface of the frame opposite to the support portion.

[0053] By adopting the above technical solution, the mounting base body is more reasonable, and the support part can support the mounting base panel covering the mounting base body; and in the above technical solution, the position of the partition mounting part is more reasonable.

[0054] Furthermore, the second magnetic attraction structure is disposed on the lower surface of the charging panel opposite to the bearing surface, and the third magnetic attraction structure is disposed on the side of the support portion away from the mounting base panel.

[0055] By adopting the above technical solution, the positions of the second magnetic structure and the third magnetic structure are more reasonably set; the second magnetic structure and the third magnetic structure are hidden and installed, making the overall appearance of the wireless charging mechanism more aesthetically pleasing.

[0056] Furthermore, the mounting base body includes a plurality of mounting base body segments distributed along the first direction, and the number of mounting base body segments matches and corresponds one-to-one with the number of wireless charging modules.

[0057] The above technical solution makes the mounting base body more reasonable; the above structure facilitates actual production and installation. During installation, each wireless charging module can be installed into the corresponding mounting base body segment first, and then the mounting base body segments can be installed together.

[0058] Furthermore, the charging panel is provided with a second magnetic structure mounting groove that matches the second magnetic structure at the mounting location of the second magnetic structure, and the mounting base is provided with a third magnetic structure mounting groove that matches the third magnetic structure at the mounting location of the third magnetic structure.

[0059] Specifically, the charging panel is used to install the second magnetic structure protrusion to form a second magnetic structure mounting ring wall, and the second magnetic structure mounting ring wall surrounds to form a second magnetic structure mounting groove; the mounting base is used to install the third magnetic structure protrusion to form a third magnetic structure mounting ring wall, and the third magnetic structure mounting ring wall surrounds to form a third magnetic structure mounting groove.

[0060] By adopting the above technical solution, the installation of the second magnetic structure and the third magnetic structure is more stable and reliable, and the formation of the installation grooves of the second magnetic structure and the third magnetic structure is also more reasonable.

[0061] Furthermore, the first direction is the length direction of the charging panel, and the second direction is the width direction of the charging panel.

[0062] The above technical solution makes the wireless charging mechanism more reasonable.

[0063] A vehicle comprising the aforementioned wireless charging mechanism.

[0064] By adopting the above technical solution, the wireless charging mechanism on the vehicle becomes more reasonable, can be adapted to unfolded foldable phones, can be adjusted according to user needs, and is more practical; specifically, the vehicle is a car.

[0065] Compared with the prior art, the present invention has the following beneficial effects:

[0066] (1) The wireless charging mechanism and carrier of this utility model are adapted to foldable mobile phones in the unfolded state by setting detachable partitions; and the appearance is beautiful and simple, occupies little space, is convenient to use, and is simple and reliable to operate.

[0067] (2) The wireless charging mechanism and carrier of this utility model are reasonably designed. Attached Figure Description

[0068] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0069] Figure 1 This is a three-dimensional structural diagram of the wireless charging mechanism of this utility model;

[0070] Figure 2 This is a schematic diagram showing the disassembly and assembly of the separator in the wireless charging mechanism of this utility model;

[0071] Figure 3 This is an exploded structural diagram of the wireless charging mechanism of this utility model;

[0072] Figure 4 This is a schematic diagram of the installation of the second magnetic attraction structure in the wireless charging mechanism of this utility model;

[0073] Figure 5 This is a schematic diagram of the installation of the third magnetic attraction structure in the wireless charging mechanism of this utility model.

[0074] Figure 6 This is a schematic diagram of the heat dissipation channel in the wireless charging mechanism of this utility model;

[0075] The component names corresponding to the various reference numerals in the figure are as follows: 1. Charging panel; 101. Supporting surface; 101-1. Supporting surface groove; 102. Charging area; 103. Second detachable structure; 104. Second magnetic structure; 105. Second magnetic structure mounting groove; 106. Second magnetic structure mounting ring wall; 2. Wireless charging module; 3. Separator; 301. First detachable structure; 302. First magnetic structure; 4. Mounting base; 401. Base cavity; 402. Base opening; 403. Third detachable structure; 404. Third magnetic structure; 405. Mounting base groove; 406. Upper surface of the frame; 407. Second heat dissipation opening; 408. Mounting base frame body; 408-1. Support part; 408-2. Mounting base frame body section; 409. Mounting base frame panel; 4010. Separator mounting part; 4011. Third magnetic suction structure mounting groove; 4012. Third magnetic suction structure mounting ring wall; 5. Heat dissipation channel; 501. Heat dissipation channel inlet; 502. Heat dissipation channel outlet; 6. First heat dissipation channel component; 601. First heat dissipation channel; 602. First heat dissipation opening; 7. Second heat dissipation channel component; 701. Second heat dissipation channel; 702. Third heat dissipation opening. Detailed Implementation

[0076] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0077] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. This application can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, in the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0078] It should be noted that various aspects of embodiments within the scope of the appended claims are described below. It will be apparent that the aspects described herein can be embodied in a wide variety of forms, and any particular structure and / or function described herein is merely illustrative. Based on this application, those skilled in the art will understand that one aspect described herein can be implemented independently of any other aspect, and two or more of these aspects can be combined in various ways. For example, any number and aspects set forth herein can be used to implement the device and / or practice the method. Additionally, this device and / or method can be implemented using structures and / or functionalities other than one or more of the aspects set forth herein.

[0079] It should also be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. The drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.

[0080] Additionally, specific details are provided in the following description to facilitate a thorough understanding of the examples. However, those skilled in the art will understand that practice can be carried out without these specific details.

[0081] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0082] The technical solutions provided by the various embodiments of this application are described below with reference to the accompanying drawings.

[0083] See Figures 1 to 6 This utility model provides a wireless charging mechanism, comprising:

[0084] The charging panel 1 has an upper surface formed as a support surface 101 for placing a mobile device, and at least two charging areas 102 are planned on the charging panel 1 along a first direction.

[0085] Wireless charging module 2, the wireless charging module 2 is used to wirelessly charge mobile devices, the number of wireless charging modules 2 is matched with the planned number of charging areas 102, and the wireless charging modules 2 are arranged below the charging panel 1 and correspond one-to-one with the charging areas 102.

[0086] And a separator 3, which is detachably disposed on the bearing surface 101 of the charging panel 1, and when the separator 3 is installed on the bearing surface 101 of the charging panel 1, the separator 3 is located between two adjacent charging areas 102.

[0087] Using the above technical solution, when the user installs the separator 3 on the bearing surface 101, the separator 3 can separate two adjacent charging areas 102. It can not only distinguish the charging areas 102, but also restrict the mobile devices placed on the charging areas 102 to a certain extent, that is, restrict the mobile devices to the current charging area 102, prevent them from accidentally sliding out of the current charging area 102, and the separator 3 can increase the aesthetics.

[0088] When the user removes the separator 3 from the support surface 101, the multiple charging areas 102 form a whole, making it easy to accommodate larger mobile devices, such as foldable phones or tablets in an unfolded state. For example, if there are two charging areas 102, the charging panel 1 can hold a foldable phone in an unfolded state, and one of the two wireless charging modules 2 can charge the foldable phone in an unfolded state. If there are three charging areas 102, the charging panel 1 can hold a foldable phone or tablet in an unfolded state, and the wireless charging module 2 located on the left or right side can charge the foldable phone in an unfolded state, while the wireless charging module 2 located in the middle can charge the tablet. Of course, there can be more charging areas 102 to increase its usage scenarios, enabling it to charge more types of foldable phones and larger tablets.

[0089] The above technical solution is reasonably designed and can be disassembled according to the user's needs, thus meeting different user requirements;

[0090] Of course, the separator 3 can be equipped with additional functions, such as adding a laser pointer, which greatly increases its usability.

[0091] Furthermore, the separator 3 is provided with a first detachable structure 301, and the charging panel 1 is provided with a second detachable structure 103 at the corresponding position for installing the separator 3. The first detachable structure 301 and the second detachable structure 103 are detachably coupled.

[0092] By adopting the above technical solution, the separator 3 can be detachably connected to the charging panel 1 through the cooperation of the first detachable structure 301 and the second detachable structure; the above technical solution is more reasonable.

[0093] Furthermore, the first detachable structure 301 is configured as a first magnetic structure 302, and the second detachable structure 103 is configured as a second magnetic structure 104, wherein the first magnetic structure 302 and the second magnetic structure 104 can magnetically engage.

[0094] By adopting the above technical solution, the first detachable structure 301 and the second detachable structure 103 are more reasonable, and the magnetic attraction makes the disassembly and assembly of the separator 3 and the bearing surface 101 more convenient and quick; and the overall structure is simpler and more beautiful.

[0095] Specifically, the first magnetic attraction structure 302 is made of a magnet, and the second magnetic attraction structure 104 is made of a magnetic metal, or the first magnetic attraction structure 302 is made of a magnetic metal and the second magnetic attraction structure 104 is made of a magnet; the magnetic metal includes iron, nickel, and cobalt and their alloys; when the first magnetic attraction structure 302 is made of a magnetic metal, the separator 3 may be made of a magnetic metal on one side facing the bearing surface 101 when it is installed on the bearing surface 101, or the separator 3 may be made of a magnetic metal as a whole.

[0096] Furthermore, the separator 3 has a length, and when the separator 3 is installed on the bearing surface 101 of the charging panel 1, the length direction of the separator 3 is a second direction, which is perpendicular to the first direction.

[0097] By adopting the above technical solution, the separator 3 is made more reasonable. When the separator 3 is installed on the bearing surface 101, the separator 3 can more effectively separate two adjacent charging areas 102.

[0098] Furthermore, one or more of the first magnetic attraction structures 302 are provided. When there is only one first magnetic attraction structure 302, the first magnetic attraction structure 302 has a length and the length direction of the first magnetic attraction structure 302 is consistent with the length direction of the separator 3. When there are multiple first magnetic attraction structures 302, the multiple first magnetic attraction structures 302 are spaced apart along the length direction of the separator 3.

[0099] There may be one or more second magnetic structures 104. When there is one second magnetic structure 104, the second magnetic structure 104 has a length and the length direction of the second magnetic structure 104 is consistent with the second direction. When there are multiple second magnetic structures 104, the multiple second magnetic structures 104 are spaced apart along the second direction.

[0100] By adopting the above technical solution, the arrangement of the first magnetic attraction structure 302 and the second magnetic attraction structure 104 is more reasonable. The above technical solution enables the partition 3 to be installed more stably when it is installed on the bearing surface 101; and enables the length direction of the partition 3 to be the second direction when it is installed on the bearing surface 101.

[0101] Furthermore, the bearing surface 101 is recessed at the corresponding position for mounting the separator 3 to form a bearing surface groove 101-1. The bearing surface groove 101-1 matches the side of the separator 3 facing the bearing surface 101 when it is mounted to the bearing surface 101, and the recess depth of the bearing surface groove 101-1 is less than the distance from the side of the separator 3 facing the bearing surface 101 to the side away from the bearing surface 101 when it is mounted to the bearing surface 101.

[0102] By adopting the above technical solution, the setting of the bearing surface groove 101-1 can provide a certain guiding role for the installation of the partition 3 during the process of installing the partition 3 onto the bearing surface 101;

[0103] Furthermore, the recess depth of the bearing surface groove 101-1 is less than the distance from the side facing the bearing surface 101 to the side away from the bearing surface 101 when the separator 3 is installed on the bearing surface 101. That is, when the separator 3 is installed in the bearing surface groove 101-1, the separator 3 still protrudes from the bearing surface 101 to achieve the separation function. Moreover, the part of the separator 3 that protrudes from the bearing surface 101 also makes it convenient for the user to apply force to the separator 3 to disassemble and install it.

[0104] Furthermore, the wireless charging mechanism includes a mounting base 4, which is provided with a base cavity 401 for mounting and accommodating the wireless charging module 2, and a base opening 402 communicating with the base cavity 401. The base opening 402 matches the charging panel 1 to expose the charging area 102 on the charging panel 1.

[0105] By adopting the above technical solution, the wireless charging mechanism becomes more reasonable, and the mounting base 4 provides a mounting foundation for the wireless charging module 2 and the charging panel 1.

[0106] Furthermore, the separator 3 can be detachably connected to the mounting base 4.

[0107] The above technical solution makes the wireless charging mechanism more reasonable. Since the separator 3 can be detachably connected to the mounting base 4, when the user needs to separate two adjacent charging areas 102, the user needs to remove the separator 3 installed on the mounting base 4 and then install the removed separator 3 onto the bearing surface 101. When the user does not need to separate two adjacent charging areas 102, the user needs to remove the separator 3 installed on the bearing surface 101 and then install the removed separator 3 onto the mounting base 4. The above technical solution ensures that the separator 3 can always be installed and fixed, preventing its loss.

[0108] Furthermore, a third detachable structure 403 is provided on the mounting base 4, and the first detachable structure 301 and the third detachable structure 403 are detachably coupled.

[0109] By adopting the above technical solution, the separator 3 can be detachably connected to the mounting base 4 through the cooperation of the first detachable structure 301 and the third detachable structure; the above technical solution is more reasonable.

[0110] Furthermore, the third detachable structure 403 is configured as a third magnetic structure 404, and the first magnetic structure 302 and the third magnetic structure 404 can magnetically engage.

[0111] By adopting the above technical solution, the third detachable structure 403 is more reasonable, and the magnetic attraction makes the disassembly and assembly of the separator 3 and the mounting base 4 more convenient and quick; and the overall structure is simpler and more beautiful.

[0112] Specifically, when the first magnetic attraction structure 302 is a magnet, the third magnetic attraction structure 404 is a magnetic metal; when the first magnetic attraction structure 302 is a magnetic metal, the third magnetic attraction structure 404 is a magnet.

[0113] Furthermore, there may be one or more third magnetic structures 404. When there is one third magnetic structure 404, the second magnetic structure 104 has a length. When there are multiple second magnetic structures 104, the multiple second magnetic structures 104 are spaced apart along one direction.

[0114] By adopting the above technical solution, the third magnetic attraction structure 404 is set more reasonably, and the above technical solution enables the partition 3 to be installed more stably when it is installed on the mounting base 4.

[0115] Furthermore, the mounting base 4 has a recessed mounting base groove 405 at the corresponding position for mounting the separator 3. The mounting base groove 405 matches the side of the separator 3 facing the mounting base 4 when it is installed on the mounting base 4, and the recess depth of the mounting base groove 405 is less than the distance from the side of the separator 3 facing the mounting base 4 to the side away from the mounting base 4 when it is installed on the mounting base 4.

[0116] By adopting the above technical solution, the mounting base groove 405 can provide a certain guiding effect for the installation of the partition 3 during the process of installing the partition 3 onto the mounting base 4;

[0117] Furthermore, the recess depth of the mounting base groove 405 is less than the distance from the side facing the mounting base 4 to the side away from the mounting base 4 when the partition 3 is installed on the mounting base 4. That is, when the partition 3 is installed in the mounting base groove 405, the partition 3 still protrudes from the mounting base 4. The part of the partition 3 that protrudes from the mounting base 4 makes it easy for the user to apply force to the partition 3 to disassemble and install it.

[0118] Furthermore, the mounting base 4 has a frame upper surface 406, and the base opening 402 is provided on the frame upper surface 406. The partition 3 is detachably mounted on the frame upper surface 406, and when the partition 3 is mounted on the frame upper surface 406, the length direction of the partition 3 is parallel to the first direction.

[0119] By adopting the above technical solution, the position of the mounting base 4 for mounting the partition 3 is more reasonable. The position of the mounting base 4 for mounting the partition 3 is on the same side as the bearing surface 101, which makes it easier for the user to operate the partition 3.

[0120] Furthermore, the mounting base 4 is provided with a heat dissipation channel 5, and the heat dissipation channel 5 has a heat dissipation channel inlet 501 and a heat dissipation channel outlet 502. The heat dissipation channel inlet 501 is located close to the heat dissipation area of ​​the wireless charging module 2, and one end of the heat dissipation channel outlet 502 of the heat dissipation channel 5 extends to the outside of the mounting base 4.

[0121] By adopting the above technical solution, the wireless charging mechanism is made more reasonable. The setting of the heat dissipation channel 5 facilitates the heat generated by the wireless charging module 2 during operation to be guided to the outside of the mounting base 4, which greatly enhances the overall heat dissipation performance of the wireless charging mechanism and ensures that the wireless charging module 2 can operate stably and reliably.

[0122] Generally, the wireless charging module 2 is equipped with a cooling fan, and the area where the cooling fan is located forms the heat dissipation area of ​​the wireless charging module 2.

[0123] Furthermore, the number of heat dissipation channels 5 is matched and corresponds one-to-one with the number of wireless charging modules 2.

[0124] By adopting the above technical solution, the heat dissipation channel 5 is set up more reasonably, avoiding mutual interference of the heat generated by the wireless charging module 2, and greatly enhancing the heat dissipation effect of the wireless charging module 2.

[0125] Further, the wireless charging mechanism includes a first heat dissipation channel member 6 having a first heat dissipation channel 601 and a second heat dissipation channel member 7 having a second heat dissipation channel 701. The first heat dissipation channel member 6 is disposed within the base frame cavity 401 and is located close to the heat dissipation area of ​​the wireless charging module 2. The first heat dissipation channel member 6 has an opening on the side facing the wireless charging module 2 to form the heat dissipation channel inlet 501, which communicates with the first heat dissipation channel 601. The first heat dissipation channel member 6 extends towards the inner wall of the base frame cavity 401 to form a first heat dissipation opening 602. The mounting base 4 has openings at corresponding positions for... A second heat dissipation opening 407 exposes the first heat dissipation opening 602; the second heat dissipation channel component 7 is disposed outside the mounting base 4 where the second heat dissipation opening 407 is disposed, and the second heat dissipation channel component 7 is disposed towards the mounting base 4 with a third heat dissipation opening 702 communicating with the second heat dissipation opening 407, and the third heat dissipation opening 702 is communicating with the second heat dissipation channel 701, and the second heat dissipation channel component 7 is provided with a plurality of openings to form the heat dissipation channel outlet 502; one side of the third heat dissipation opening 702 protrudes from the mounting base 4 to form the heat dissipation channel outlet 502; the first heat dissipation channel 601 and the second heat dissipation channel 701 form the heat dissipation channel 5.

[0126] By adopting the above technical solution, the formation of the heat dissipation channel 5 is more reasonable and facilitates actual production and installation.

[0127] Furthermore, the mounting base 4 includes a mounting base body 408 and a mounting base panel 409 covering the mounting base body 408. The mounting base body 408 is provided with the base cavity 401, and the mounting base panel 409 is provided with the base opening 402.

[0128] The above technical solution makes the mounting base 4 more reasonable.

[0129] Furthermore, the side of the mounting base panel 409 away from the mounting base body 408 is formed as the upper surface 406 of the frame;

[0130] The mounting base body 408 extends outward from one edge toward the mounting base panel 409 to form a support portion 408-1 for supporting the mounting base panel 409. The portion of the mounting base 4 for detachably mounting the separator 3 is formed as a separator mounting portion 4010, and the separator mounting portion 4010 is disposed on the upper surface 406 of the frame opposite to the support portion 408-1.

[0131] By adopting the above technical solution, the mounting base body 408 is more reasonable, and the support part 408-1 can support the mounting base panel 409 covering the mounting base body 408; and in the above technical solution, the position of the partition mounting part 4010 is more reasonable.

[0132] Furthermore, the second magnetic attraction structure 104 is disposed on the lower surface of the charging panel 1 opposite to the bearing surface 101, and the third magnetic attraction structure 404 is disposed on the side of the support portion 408-1 away from the mounting base panel 409.

[0133] By adopting the above technical solution, the positions of the second magnetic structure 104 and the third magnetic structure 404 are more reasonably set; the second magnetic structure 104 and the third magnetic structure 404 are hidden and installed, making the overall appearance of the wireless charging mechanism more aesthetically pleasing.

[0134] Furthermore, the mounting base body 408 includes a plurality of mounting base body segments 408-2 distributed along the first direction, and the number of mounting base body segments 408-2 matches and corresponds one-to-one with the number of wireless charging modules 2.

[0135] The above technical solution makes the mounting base body 408 more reasonable; the above structure facilitates actual production and installation. During installation, each wireless charging module 2 can be installed into the corresponding mounting base body segment 408-2 first, and then the mounting base body segments 408-2 can be installed together.

[0136] Furthermore, the charging panel 1 is provided with a second magnetic structure mounting groove 105 that matches the second magnetic structure 104 at the location where the second magnetic structure 104 is installed, and the mounting base 4 is provided with a third magnetic structure mounting groove 4011 that matches the third magnetic structure 404 at the location where the third magnetic structure 404 is installed.

[0137] Specifically, the charging panel 1 is used to install the protrusion at the second magnetic structure 104 to form a second magnetic structure mounting ring wall 106, and the second magnetic structure mounting ring wall 106 surrounds to form a second magnetic structure mounting groove 105; the mounting base 4 is used to install the protrusion at the third magnetic structure 404 to form a third magnetic structure mounting ring wall 4012, and the third magnetic structure mounting ring wall 4012 surrounds to form a third magnetic structure mounting groove 4011.

[0138] By adopting the above technical solution, the installation of the second magnetic structure 104 and the third magnetic structure 404 is more stable and reliable, and the formation of the second magnetic structure mounting groove 105 and the third magnetic structure mounting groove 4011 is also more reasonable.

[0139] Furthermore, the first direction is the length direction of the charging panel 1, and the second direction is the width direction of the charging panel 1.

[0140] The above technical solution makes the wireless charging mechanism more reasonable.

[0141] See Figures 1 to 6 A vehicle comprising the aforementioned wireless charging mechanism.

[0142] By adopting the above technical solution, the wireless charging mechanism on the vehicle becomes more reasonable, can be adapted to unfolded foldable phones, can be adjusted according to user needs, and is more practical; specifically, the vehicle is a car.

[0143] The same or similar parts between the various embodiments in this specification can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments.

[0144] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A wireless charging mechanism, characterized by: The application relates to a charging panel (1) which has an upper surface formed as a bearing surface (101) for placing mobile devices and at least two charging areas (102) planned along a first direction; a wireless charging module (2) for wirelessly charging the mobile devices, the number of wireless charging modules (2) matching the number of charging areas (102), and the wireless charging modules (2) being arranged below the charging panel (1) and corresponding to the charging areas (102); and a partition (3) which is detachably arranged on the bearing surface (101) of the charging panel (1) and which, in the state of being mounted to the bearing surface (101) of the charging panel (1), is located between two adjacent charging areas (102). The partition (3) is provided with a first detachable structure (301), the charging panel (1) is provided with a second detachable structure (103) at the corresponding position for mounting the partition (3), and the first detachable structure (301) and the second detachable structure (103) are detachably matched. The first detachable structure (301) is configured as a first magnetic attraction structure (302), the second detachable structure (103) is configured as a second magnetic attraction structure (104), and the first magnetic attraction structure (302) and the second magnetic attraction structure (104) can be magnetically matched. The partition (3) has a length, and, in the state of being mounted to the bearing surface (101) of the charging panel (1), the length direction of the partition (3) is a second direction, and the second direction is perpendicular to the first direction.

2. The wireless charging mechanism of claim 1, wherein: The first magnetic attraction structure (302) is provided with one or a plurality of first magnetic attraction structures (302), and, when the first magnetic attraction structure (302) is provided with one, the first magnetic attraction structure (302) has a length, and the length direction of the first magnetic attraction structure (302) is consistent with the length direction of the partition (3); when the first magnetic attraction structure (302) is provided with a plurality of first magnetic attraction structures (302), the plurality of first magnetic attraction structures (302) are arranged along the length direction of the partition (3). The second magnetic attraction structure (104) is provided with one or a plurality of second magnetic attraction structures (104), and, when the second magnetic attraction structure (104) is provided with one, the second magnetic attraction structure (104) has a length, and the length direction of the second magnetic attraction structure (104) is consistent with the second direction; when the second magnetic attraction structure (104) is provided with a plurality of second magnetic attraction structures (104), the plurality of second magnetic attraction structures (104) are arranged along the second direction.

3. The wireless charging mechanism of claim 2, wherein: ​ ​ ​ 4. The wireless charging mechanism according to any one of claims 1 to 3, characterized in that: The bearing surface (101) is recessed to form a bearing surface groove (101-1) at a corresponding position for mounting the partition (3), the bearing surface groove (101-1) matches a side of the partition (3) facing the bearing surface (101) when the partition (3) is mounted to the bearing surface (101), and the recess depth of the bearing surface groove (101-1) is less than the distance from the side of the partition (3) facing the bearing surface (101) to the side away from the bearing surface (101) when the partition (3) is mounted to the bearing surface (101).

5. The wireless charging mechanism of claim 3, wherein: The mounting base (4) is provided with a base cavity (401) for mounting the wireless charging module (2), and a base opening (402) in communication with the base cavity (401), the base opening (402) matches the charging panel (1) for exposing the charging area (102) on the charging panel (1); The partition (3) can be detachably connected with the mounting base (4).

6. The wireless charging mechanism of claim 5, wherein: The mounting base (4) is provided with a third detachable structure (403), and the first detachable structure (301) and the third detachable structure (403) are detachably matched; The third detachable structure (403) is configured as a third magnetic attraction structure (404), and the first magnetic attraction structure (302) and the third magnetic attraction structure (404) can be magnetically attracted and matched.

7. The wireless charging mechanism of claim 6, wherein: The third magnetic attraction structure (404) is provided with one or multiple, and when the third magnetic attraction structure (404) is provided with one, the second magnetic attraction structure (104) has a length; when the second magnetic attraction structure (104) is provided with multiple, multiple second magnetic attraction structures (104) are arranged in a direction at intervals; The mounting base (4) is recessed to form a mounting base groove (405) at a corresponding position for mounting the partition (3), the mounting base groove (405) matches a side of the partition (3) facing the mounting base (4) when the partition (3) is mounted to the mounting base (4), and the recess depth of the mounting base groove (405) is less than the distance from the side of the partition (3) facing the mounting base (4) to the side away from the mounting base (4) when the partition (3) is mounted to the mounting base (4); The mounting base (4) has a rack upper surface (406), and the base opening (402) is arranged on the rack upper surface (406), the partition (3) is detachably mounted on the rack upper surface (406), and when the partition (3) is mounted to the rack upper surface (406), the length direction of the partition (3) is parallel to the first direction.

8. The wireless charging mechanism of claim 5, wherein: The mounting base (4) is provided with a heat dissipation channel (5), and the heat dissipation channel (5) has a heat dissipation channel inlet (501) and a heat dissipation channel outlet (502), the heat dissipation channel inlet (501) is arranged close to the heat dissipation area of the wireless charging module (2), and one end of the heat dissipation channel outlet (502) of the heat dissipation channel (5) extends to the outside of the mounting base (4); The number of the heat dissipation channels (5) is matched with and corresponds to the number of the wireless charging modules (2); The wireless charging mechanism includes a first heat dissipation channel piece (6) with a first heat dissipation channel (601) and a second heat dissipation channel piece (7) with a second heat dissipation channel (701), the first heat dissipation channel piece (6) is arranged in the base cavity (401), the first heat dissipation channel piece (6) is arranged close to the heat dissipation area of the wireless charging module (2), and an opening is formed on the side of the first heat dissipation channel piece (6) facing the wireless charging module (2) to form the heat dissipation channel inlet (501), and the heat dissipation channel inlet (501) is in communication with the first heat dissipation channel (601); the first heat dissipation channel piece (6) extends to the inner wall side of the base cavity (401) and forms a first heat dissipation opening (602), and the mounting base (4) is provided with a second heat dissipation opening (407) at the corresponding position for exposing the first heat dissipation opening (602); the second heat dissipation channel piece (7) is arranged on the outside of the mounting base (4) provided with the second heat dissipation opening (407), and the second heat dissipation channel piece (7) is provided with a third heat dissipation opening (702) facing the mounting base (4) and in communication with the second heat dissipation opening (407), and the third heat dissipation opening (702) is in communication with the second heat dissipation channel (701), and a plurality of openings are arranged on the second heat dissipation channel piece (7) to form the heat dissipation channel outlet (502); one side of the third heat dissipation opening (702) protrudes from the mounting base (4) to form the heat dissipation channel outlet (502); the first heat dissipation channel (601) and the second heat dissipation channel (701) form the heat dissipation channel (5).

9. The wireless charging mechanism of claim 6, wherein: The mounting base (4) includes a mounting base body (408) and a mounting base panel (409) arranged on the mounting base body (408), the base cavity (401) is arranged on the mounting base body (408), and the base opening (402) is arranged on the mounting base panel (409); The side of the mounting base panel (409) away from the mounting base body (408) forms a rack upper surface (406); The mounting base (4) includes a mounting base body (408) and a mounting base panel (409) arranged on the mounting base body (408), the base cavity (401) is arranged on the mounting base body (408), and the base opening (402) is arranged on the mounting base panel (409); The side of the mounting base panel (409) away from the mounting base body (408) forms a rack upper surface (406); The mounting base body (408) extends outwardly towards a side edge of the mounting base panel (409) to form a support portion (408-1) for supporting the mounting base panel (409), a portion of the mounting base (4) for detachably mounting the partition (3) is formed into a partition mounting portion (4010), and the partition mounting portion (4010) is arranged in the rack upper surface (406) opposite the support portion (408-1); The second magnetic attraction structure (104) is arranged on the lower surface of the charging panel (1) opposite the bearing surface (101), and the third magnetic attraction structure (404) is arranged on the side of the support portion (408-1) away from the mounting base panel (409); The mounting base body (408) includes a plurality of mounting base body segments (408-2) distributed along the first direction, and the number of mounting base body segments (408-2) is matched with and corresponds to the number of wireless charging modules (2); The charging panel (1) for mounting the second magnetic attraction structure (104) is provided with a second magnetic attraction structure mounting groove (105) matched with the second magnetic attraction structure (104), and the mounting base (4) for mounting the third magnetic attraction structure (404) is provided with a third magnetic attraction structure mounting groove (4011) matched with the third magnetic attraction structure (404); The charging panel (1) for mounting the second magnetic attraction structure (104) is provided with a second magnetic attraction structure mounting groove (105) matched with the second magnetic attraction structure (104), and the mounting base (4) for mounting the third magnetic attraction structure (404) is provided with a third magnetic attraction structure mounting groove (4011) matched with the third magnetic attraction structure (404); The first direction is the length direction of the charging panel (1), and the second direction is the width direction of the charging panel (1).

10. A vehicle characterized by: The wireless charging mechanism includes any one of claims 1-9. The wireless charging mechanism includes any one of claims 1-9.