Wireless charging device and control method thereof, auxiliary instrument panel assembly, vehicle
By incorporating a recessed section and airflow interference components into the wireless charging device, and utilizing a Hall effect module to control the flipping and resetting of the shelf, the problem of heat dissipation during charging is solved, thus improving the user experience.
Patent Information
- Application Number
- CN202310503816.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-04
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2043-05-04
AI Technical Summary
Wireless charging devices have difficulty dissipating heat during charging, causing the device being charged to get hot and affecting the user experience.
The wireless charging device incorporates a recess and airflow interference components to improve heat dissipation through blowing and air delivery. It includes a shelf, drive components, force transmission components, and functional assemblies. A Hall effect module is used to monitor the status of the object to be charged in order to control the shelf to flip and reset.
It effectively solves the problem of heat dissipation difficulties during charging, ensuring that the device being charged does not get too hot during charging, thus improving the user experience.
Smart Images

Figure CN118893975B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application particularly relates to a wireless charging device and a control method thereof, an auxiliary instrument panel assembly and a vehicle. BACKGROUND
[0002] The wireless charging device generally comprises a flat placement area, and a user places a charging object (such as a mobile phone) on the area to perform a charging operation. The disadvantage of this arrangement is that the charging object is placed flat on the area, and heat dissipation is difficult during the charging process, which causes the charging object to heat up. Therefore, when the user picks up the charging object, the user's hand is easily burned, and the experience is not good.
[0003] In addition, in the related art, the wireless charging device is often integrated on a target body. For example, in a vehicle, there is a design scheme in which the front part of an auxiliary instrument panel assembly is used as the target body. In this scheme, the wireless charging device is integrated on the auxiliary instrument panel assembly to charge a charging object such as a mobile phone of a passenger. SUMMARY
[0004] Therefore, the present application provides a wireless charging device and a control method thereof, an auxiliary instrument panel assembly and a vehicle.
[0005] The wireless charging device provided by the present application is arranged on a first target body and can charge a charging object. The wireless charging device comprises a placement plate, a driving assembly, a first transmission member, a second transmission member, a functional assembly and an air passing member. The placement plate is provided with a recessed portion for being located at least partially below the charging object. The functional assembly comprises an air flow interference assembly and a charging module corresponding to the recessed portion. The air passing member leads to the air flow interference assembly and the recessed portion. The air flow interference assembly can blow and / or send air to the recessed portion through the air passing member when the charging object is being charged.
[0006] One end of the placement plate is arranged to be rotatably connected to the first target body. The placement plate is fixedly connected to the first transmission member. The first transmission member has a transmission relationship with the second transmission member. The driving assembly can drive the second transmission member to rotate and comprises a Hall module. The first transmission member can rotate with the placement plate when the placement plate is pressed and drive the second transmission member to rotate. The force of the second transmission member is transmitted to the driving assembly to make the Hall module generate a signal. The signal changes when the placement plate is no longer pressed. The driving assembly drives the second transmission member to rotate in different directions according to the existence and change of the signal, so as to realize the turnover and reset of the placement plate.
[0007] Optionally, the functional assembly is arranged on one side of the placement plate; the air flow interference assembly is arranged on the side of the charging module away from the placement plate and comprises a fan; the air flow passing member is in communication with the recess and a part of the air flow passing member extends into the functional assembly to aggregate air driven by the fan; the fan can accelerate air flow around the charging module and can also blow and / or send air to the recess through the air flow passing member; the fan can dissipate heat from the charging object when the charging module is charging the charging object.
[0008] Optionally, the wireless charging device further comprises a containing shell; a part of the air flow passing member, at least a part of the air flow interference assembly and at least a part of the charging module are arranged in the containing shell; a part of the fan is exposed outside the containing shell; the containing shell surrounds the air flow passing member, the air flow interference assembly and the charging module arranged in the containing shell, so that when the fan is working, air flow can be formed between the charging module and the fan to dissipate heat from the charging module and air flow can also pass through the air flow passing member.
[0009] Optionally, the wireless charging device further comprises a cover shell arranged on one side of the recess and containing a part of the first force transmission member and the functional assembly; the cover shell is provided with a first through area for a part of the first force transmission member to extend outside the cover shell and a second through area for a cable of the functional assembly to extend outside the cover shell; the first through area and the second through area are in communication between the inside of the cover shell and the outside of the cover shell to facilitate the working of the air flow interference assembly; the driving assembly is arranged on the cover shell; the second force transmission member is arranged on the cover shell and engaged with the first force transmission member exposed outside the cover shell.
[0010] Optionally, the first force transmission member comprises a force transmission body arranged on the side of the functional assembly away from the placement plate and spaced apart from the functional assembly; a solid part is formed outside the force transmission body from the end of the force transmission body; the solid part bypasses the functional assembly and is fixedly connected with the placement plate.
[0011] The first force transmission member is provided with a cable passing hole for a cable of the functional assembly to pass through and a toothed side wall for engagement with the second force transmission member.
[0012] The application further provides a wireless charging device control method for controlling the wireless charging device as described in any one of the above embodiments, which comprises the following steps:
[0013] S1: the controller in the driving assembly detects whether a signal emitted by the Hall module is received at a preset frequency within a preset time period; if not, the step is repeated; if yes, the driving assembly drives the second force transmission member to rotate in the first direction by a preset stroke to make the placement plate turn over and enter step S2.
[0014] S2: the controller in the driving assembly detects whether the received signal changes within a preset time period at a preset frequency, if not, repeat the step, if yes, the driving assembly drives the second transmission member to rotate in a second direction opposite to the first direction by a preset stroke, so as to reset the storage plate.
[0015] Optionally, in step S1, after the controller receives the signal, the following step is further included:
[0016] S11: detecting whether the charging module is in a state of charging the object to be charged, if not, repeat the step, if yes, make the airflow interference assembly work, and blow and / or send air to the recess through the air passing member, and enter step S12;
[0017] S12: detecting whether the charging module stops charging the object to be charged, if yes, make the airflow interference assembly stop working, if not, repeat the step.
[0018] The application also provides a wireless charging device control method for controlling the wireless charging device as claimed in any one of the above, comprising the following steps:
[0019] a: the controller in the driving assembly detects whether the signal emitted by the Hall module is received within a preset time period at a preset frequency, if not, repeat the step, if yes, enter step b;
[0020] b: judging whether the charging module is in a charging state, so as to judge the type of the object exerting pressure on the storage plate; if not, the object exerting pressure on the storage plate is not the object to be charged, enter step a, if yes, the object exerting pressure on the storage plate is the object to be charged, enter step c;
[0021] c: make the driving assembly drive the second transmission member to rotate in the first direction by a preset stroke to overturn the storage plate, and enter step d;
[0022] d: the controller in the driving assembly detects whether the received signal changes within a preset time period at a preset frequency, if not, repeat the step, if yes, the driving assembly drives the second transmission member to rotate in a second direction opposite to the first direction by a preset stroke, so as to reset the storage plate.
[0023] Optionally, in step b, it further includes: entering step e at the same time or after a period of time when judging that the object exerting pressure on the storage plate is the object to be charged;
[0024] e: make the airflow interference assembly work, and blow and / or send air to the recess through the air passing member, and enter step f;
[0025] f: detecting whether the charging module stops charging, if yes, make the airflow interference assembly stop working, if not, repeat the step.
[0026] The application also provides a center console assembly, characterized in that it comprises the wireless charging device according to any one of the above, the driving assembly is a Hall motor, and the first target body is part of the center console assembly.
[0027] Optionally, the center console assembly further comprises a lifting cup holder, a retractable table board, a slidable split body and a track, the wireless charging device, the lifting cup holder and the slidable split body are sequentially arranged on the center console assembly from front to back, the slidable split body can slide back and forth in the passenger compartment along the track, and the retractable table board is arranged on the slidable split body.
[0028] The application also provides a vehicle, comprising the center console assembly according to the above, the center console assembly is connected with a vehicle floor in a passenger compartment and is located at least partially between a main driver seat and a co-driver seat.
[0029] In summary, by arranging the recess, the air passing member and the airflow interference assembly on the wireless charging device, the airflow in the recess is changed due to the air supply or air blowing of the airflow interference assembly, and thus the charging object can be well cooled during charging. In the wireless charging device of the application, the charging object is less likely to be overheated due to poor cooling, and the user experience is ultimately affected.
[0030] The above description is only a summary of the technical solutions of the application. In order to enable one skilled in the art to better understand the technical means of the application, the content of the specification can be implemented, and in order to enable the above and other purposes, characteristics and advantages of the application to be more obvious and easy to understand, the following preferred embodiments are described in detail below, and the accompanying drawings are described as follows. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 It is a schematic diagram of the center console assembly in the embodiment of the application.
[0032] Figure 2 It is a schematic diagram of the assembly of the storage plate and the air passing member in the embodiment of the application.
[0033] Figure 3 It is a schematic diagram of the wireless charging device installed on the fixed split body in the embodiment of the application.
[0034] Figure 4 It is a schematic diagram of the components and the edge covering member in the wireless charging device in the embodiment of the application.
[0035] Figure 5 It is a comparison schematic diagram of the assembly of the air passing member, the airflow interference assembly and the charging module before and after the assembly of the container shell in the embodiment of the application.
[0036] Figure 6Assembled schematic diagram of the edge covering member and the wireless charging device in the embodiment of the present application Figure 1 .
[0037] Figure 7 Assembled schematic diagram of the edge covering member and the wireless charging device in the embodiment of the present application Figure 2 .
[0038] Figure 8 Schematic diagram of the structure of the wireless charging device in the embodiment of the present application Figure 1 (hide the cover).
[0039] Figure 9 Schematic diagram of the structure of the wireless charging device in the embodiment of the present application Figure 2 (hide the cover).
[0040] Figure 10 Schematic diagram of the partial structure of the wireless charging device in the embodiment of the present application (hide the cover and functional assembly).
[0041] Figure 11 Schematic diagram of the cover plate and the lifting cup holder in the embodiment of the present application.
[0042] Figure 12 Schematic diagram of the connection position between the lower end of the lifting cup holder and the fixed part in the embodiment of the present application.
[0043] Figure 13 Schematic diagram of the second card member in the embodiment of the present application.
[0044] Figure 14 Comparison schematic diagram of the second card member and the first card member before and after the carding in the embodiment of the present application.
[0045] Figure 15 Cooperation schematic diagram of the inner card hook and the card hole in the embodiment of the present application.
[0046] Figure 16 Comparison schematic diagram of the carding part and the cooperation carding platform before and after the cooperation in the embodiment of the present application.
[0047] Figure 17 Schematic diagram of the two lifting cup holders in the embodiment of the present application (one of the lifting cup holders is exploded).
[0048] Figure 18 Schematic diagram of the local structure of the lifting cup holder in the embodiment of the present application Figure 1 .
[0049] Figure 19 Schematic diagram of the local structure of the lifting cup holder in the embodiment of the present application Figure 2 .
[0050] Figure 20A schematic view of part of the structure of the sub-instrument panel assembly in an embodiment of the application.
[0051] Figure 21 An exploded view of part of the structure of the sub-instrument panel assembly in an embodiment of the application. Figure 1 .
[0052] Figure 22 An exploded view of part of the structure of the sub-instrument panel assembly in an embodiment of the application. Figure 2 .
[0053] Figure 23 A schematic view of part of the structure of the table board assembly in an embodiment of the application (with a decorative plate hidden).
[0054] Figure 24 A schematic view of part of the structure of the table board assembly in an embodiment of the application.
[0055] Figure 25 A schematic view of the cooperation between the guide rail and the sliding block in an embodiment of the application.
[0056] Figure 26 A schematic view of the posture of the table board body when the sliding block and the limiting block are close to each other in an embodiment of the application (with the blocking block hidden).
[0057] Figure 27 A schematic view of the retractable table board in an embodiment of the application in an unfolded state.
[0058] Figure 28 A schematic view of the support member when the retractable table board is in an unfolded state in an embodiment of the application.
[0059] Figure 29 A schematic view of the cooperation between the cooperating seat and the fixed outer plate before and after the cooperation in an embodiment of the application.
[0060] Figure 30 A schematic view of the cooperation between the cooperating seat and the fixed outer plate before and after the cooperation in an embodiment of the application. Figure 1 .
[0061] Figure 31 A schematic view of the cooperation between the cooperating seat and the fixed outer plate before and after the cooperation in an embodiment of the application. Figure 2 .
[0062] Figure 32 A schematic view of the cooperation between the cooperating seat and the fixed outer plate before and after the cooperation in an embodiment of the application.
[0063] Figure 33 A schematic view of the cooperation between the cooperating seat and the fixed outer plate before and after the cooperation in an embodiment of the application.
[0064] Explanation of reference signs
[0065] A-wireless charging device, B-fixed part, B1-edge covering part, C-lifting cup holder, D-clamping part, E-fixing bolt, F-connecting plate, G-retractable table board, H-slidable part, J-reversible handrail, I-rail, II-shaft, III-height difference space, IV, V, VI, VII-positions, ①, ②, ③, ④, ⑤-connection, α-space, β-area;
[0066] 1-driving assembly, 20-first force transmission member, 200-force transmission body, 201-solid part, 202-cable passing hole, 203-toothed side wall, 2031-first edge, 2032-second edge, 3-second force transmission member, 31-main rod, 32-gear, 33-connection part, 4-function assembly, 41-air flow interference assembly, 411-fan, 42-charging module, 43-housing shell, 5-air passing member, 6-putting plate, 61-recess, 62-convex strip, 63-connection shaft part, 64-rotation shaft, 7-housing, 71-first penetrating area, 72-second penetrating area;
[0067] 8-cover plate, 81-exposing outlet, 9-matching clamping table, 10-first sub-clamping member, 101-clamping opening, 102-clamping body, 103-side wall, 1031-wide area, 1032-narrow area, 11-second sub-clamping member, 111-inner clamping hook, 112-outer clamping head, 113-body, 1131-open end, 1132-closed end, 12-outer shell, 121-convex platform, 122-guide groove, 123-provided part, 124-passing opening, 125-limiting part, 126-second flange, 127-vertical penetrating groove, 128-rack part, 129-mounting opening, 13-cup holder, 131-buckling part, 132-outer extension part, 133-damping teeth, 14-unlocking assembly, 141-rotating member, 1411-first component part, 1412-second component part, 1412a-buckling port, 1412b-first flange, 1412c-third flange, 143-matching shaft, 144-button, 15-strengthening member, 16-sealing member, 17-rotating member, 18-elastic member;
[0068] 19 - fixed outer plate, 21 - table board assembly, 211 - table board body, 2111 - first recessed area, 2112 - decorative plate, 2113 - convex rib, 2114 - concave channel, 212 - matching seat, 2121 - sliding groove, 2122 - second recessed area, 213 - complementary decorative plate, 214 - sliding block, 22 - support, 23 - buffer part, 231 - soft buffer, 232 - elastic buffer, 24 - decorative cover, 25 - first shaft, 26 - second shaft, 27 - guide rail, 28 - blocking block, 29 - lock assembly, 291 - upper component, 291a - upper stop platform, 291b - lower stop platform, 2911 - clamping head, 292 - lower component, 293 - unlocking button, 294 - lock tongue, 295 - lock seat, 2950 - limiting cross beam, 2951 - abutting part, 296 - spring return part. DETAILED DESCRIPTION
[0069] The specific embodiments of the present application will be further described in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but not to limit the scope of the present application.
[0070] The terms "first", "second", and the like in the description and claims of the present application are used for distinguishing between similar objects and not necessarily for describing a particular sequential or chronological order.
[0071] In the description of the present application, unless otherwise clearly specified and limited, the terms "setting", "mounting", "connecting", "connected", and the like should be understood in a broad sense, for example, can be fixedly connected, or can be detachably connected, or integrally connected; can be mechanically connected, or can be electrically connected; can be directly connected, or can be indirectly connected through an intermediate medium. In some cases, when it is expressed that something is fixedly connected with something, the specific connection mode can also include integrally connected. The specific meanings of the above terms can be understood according to the specific circumstances for those skilled in the art.
[0072] The terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", and the like in the present application indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship when the product of the present application is usually placed, which is only for the convenience of description and simplification of description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application.
[0073] The terms "including", "containing" or any other variants thereof in the present application are intended to cover non-exclusive inclusion, in addition to containing the listed elements, other elements not explicitly listed can also be contained.
[0074] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "exemplarily", "a specific example", "optionally", "further", "more detailed description", "preferably", "further provided with", "further comprising" or "some examples" and the like means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are contained in at least one embodiment or example of the present application. In the description of the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of the different embodiments or examples without contradiction.
[0075] It should be noted that in the description of the present application, it is understood that the orientation or positional relationship indicated by the terms "end" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the components referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0076] As Figure 1 The present embodiment provides a vehicle, which is provided with a sub-instrument panel assembly in the passenger compartment of the vehicle. The sub-instrument panel assembly is connected with the vehicle floor in the passenger compartment and is at least partially located between the main driver seat and the co-driver seat. Exemplarily, the sub-instrument panel assembly comprises a fixed part B fixed between the main driver seat and the co-driver seat, and further comprises a wireless charging device A arranged on the fixed part B and capable of charging a charging object such as a mobile phone.
[0077] As Figures 2 to 4As shown, the aforementioned wireless charging device A comprises a driving assembly 1, a first transmission member 20, a second transmission member 3, a functional assembly 4, an air passing member 5 and a placement plate 6. The placement plate 6 is provided with a recess 61 for at least partially locating a charging object thereunder; the functional assembly 4 comprises an air flow interference assembly 41 and a charging module 42, the air passing member 5 is connected to both the air flow interference assembly 41 and the recess 61, so that the air flow interference assembly 41 can blow and / or send air to the recess 61 through the air passing member 5; the front end of the placement plate 6 is rotatably connected to the fixed part B, and the placement plate 6 is fixedly connected to the first transmission member 20, and the first transmission member 20 has a transmission relationship with the second transmission member 3. Meanwhile, the driving assembly 1 is configured to drive the second transmission member 3 to rotate, and comprises a Hall module; the first transmission member 20 can rotate with the placement plate 6 when the placement plate 6 is pressed by the gravity of the charging object, and rotate with the second transmission member 3, so as to transmit the force of the second transmission member 3 to the driving assembly 1, so that the Hall module in the driving assembly 1 generates a signal, which is configured to change after the charging object is removed from the placement plate 6 (i.e. the placement plate 6 is no longer pressed); based on this, the driving assembly 1 drives the second transmission member 3 to rotate in different directions according to the generation and change of the signal, thereby realizing the turnover and reset of the placement plate 6.
[0078] As can be seen from the above, by providing the recess 61 with a suitable shape on the placement plate 6, the air flow in the recess 61 is changed due to the air sent or blown by the functional assembly 4, so that when the charging object is placed on the recess 61, the charging object will be at least partially suspended, and the charging object will first reduce the contact area with the instrument panel assembly due to the suspension of this part, thereby better dissipating heat, and secondly will be further cooled under the action of the wind (generated due to the change of air flow) in the recess 61.
[0079] In this way, compared with the wireless charging device A in the related art which generally comprises a flat area for placing a mobile phone, the bottom surface of the mobile phone is easily placed on the flat area, and the heat dissipation of the mobile phone is difficult during charging, the wireless charging device A of the present embodiment is less likely to cause the charging object to overheat due to heat dissipation difficulty during charging, and ultimately affects the user experience.
[0080] Exemplarily, the wireless charging device A is more specifically configured as follows:
[0081] Please continue to refer to Figure 2 and Figure 3 , the aforementioned recess 61 is configured to have a trapezoidal shape with a gradually decreasing width from front to back; meanwhile, the bottom surface of the recess 61 is a slope with a higher front end and a lower back end, and the recess 61 has a concave shape with a lower middle part and higher left and right parts (please refer to the dashed line outline in the figure). Correspondingly, the upper end of the aforementioned air passing member 5 is located in the back end of the recess 61 and communicates with the recess 61, so as to blow and / or send air into the recess 61.
[0082] Exemplarily, the recesses 61 are arranged in pairs on the sub-instrument panel assembly, and the recesses 61 are arranged in one-to-one correspondence with the charging modules 42 (see Figure 4 ) of the functional assembly 4, so that the sub-instrument panel assembly can simultaneously charge two charging objects. Exemplarily, in order to prevent the charging objects from colliding with each other due to bumps during driving, as shown in Figure 3 , a convex strip 62 for preventing large-area contact between the two charging objects is arranged between the recesses 61, and the convex strip 62 is fixed on the upper surface of the storage plate 6.
[0083] Exemplarily, the common charging object includes a mobile phone, and therefore the recesses 61 in the embodiment are configured to accommodate mobile phones of common sizes. In this way, when the mobile phone is placed on the recess 61, air can freely flow into and out of the recess 61 from the front and rear ends of the recess 61, so that an airflow for quickly dissipating heat from the charging object can be formed in the recess 61. Of course, the aforementioned common size of the mobile phone can be flexibly defined by those skilled in the art as needed, for example, the mobile phone can be a mobile phone with a screen size of 5.0-7 inches. Further, in order to better guide the occupant to use the wireless charging device A, the occupant can also be directly guided on the vehicle instruction, and it is suggested that the occupant directly places the charging object in a manner that ensures that a good heat dissipation airflow can be formed in the recess 61.
[0084] Please continue to refer to Figure 3 and Figure 4 Exemplarily, the fixed part B of the sub-instrument panel assembly is provided with a wrapping part B1, which is generally U-shaped with the opening facing backward, and surrounds the front edge and the left and right edges of the storage plate 6. Correspondingly, the storage plate 6 extends downward from the front of the lower surface to form a connecting shaft part 63, which is rotatably connected to the front part of the wrapping part B1 through a rotating shaft 64, and is rotatably arranged in the sub-instrument panel assembly.
[0085] Please continue to refer to Figure 4 and Figure 5 Exemplarily, the upper end of the aforementioned air passing part 5 is located in the recess 61 as described above, and the lower end extends into the functional assembly 4 to aggregate the air driven by the airflow interference assembly 41. Exemplarily, the functional assembly 4 is located on the lower side of the storage plate 6, the charging module 42 is arranged on the lower side of the recess 61, and the airflow interference assembly 41 is arranged on the lower side of the charging module 42 and includes a fan 411. When the fan 411 is working, it can accelerate the air flow around the charging module 42, and also blow and / or send air to the recess 61 through the air part 5, so as to dissipate heat for the charging object when the charging module 42 charges the charging object.
[0086] Exemplarily, to enable the fan 411 to blow and / or send air to the recess 61 through the air passage 5, the air passage 5 in the embodiment is specifically arranged at the back side of the fan 411, and the functional assembly 4 further comprises a containing shell 43, part of the air passage 5, at least part of the air flow interference assembly 41 and at least part of the charging module 42 are located in the containing shell 43, part of the fan 411 is exposed outside the containing shell 43 so as to suck and / or send air in the containing shell 43, the containing shell 43 encloses the air passage 5, the air flow interference assembly 41 and the air flow interference assembly 41 located therein to form a channel capable of guiding air flow; in this way, when the fan 411 is working, the air flow between the charging module 42 and the fan 411 can form an air flow for heat dissipation of the charging module 42, and the air flow can also pass through the air passage 5. Preferably, the fan 411 in the embodiment is arranged obliquely so as to have a larger space for air flow in the containing shell 43, more preferably, at least part of the fan 411 is located directly below the charging module 42 so as to dissipate heat for the wireless charging module 42 more quickly.
[0087] Please continue to refer to Figure 4 , the wireless charging device A in the embodiment further comprises a cover shell 7 with an upper opening, the cover shell 7 is a special-shaped member with an upper opening; please further refer to Figure 6 and Figure 7 , the bottom of the cover shell 7 is provided with two first through areas 71 and one second through area 72; when the placement plate 6, the cover shell 7, the functional assembly 4, the driving assembly 1, the first transmission member 20 and the second transmission member 3 are assembled, the driving assembly 1 is fixed at the left part of the cover shell 7, part of the first transmission member 20 and the functional assembly 4 are located in the cover shell 7, the cover shell 7 is located at the lower side of the recess 61 and is connected with the edge covering member B1 by bolts (one of the connection positions please refer to the connection ① in Figure 7 , the connecting shaft part 63 of the placement plate 6 extends out of the cover shell 7 from the inside of the cover shell 7 and is rotatably connected with the edge covering member B1, part of the first transmission member 20 extends out of the cover shell 7 through the first through area 71, and the part of the first transmission member 20 exposed out of the cover shell 7 is provided with teeth engaged with the second transmission member 3; the related cable lines (not shown in the figure) of the functional assembly 4 extend out of the cover shell 7 through the second through area 72; the cover shell 7 is connected with the inside and outside thereof by the first through area 71 and the second through area 72, so that air can enter and exit the cover shell 7, and the air flow interference assembly 41 can work normally.
[0088] Please continue to refer to Figures 7 to 8 , exemplarily, in the cover shell 7, the front and rear ends of the first transmission member 20 are connected with the placement plate 6 by bolts (one of the connection positions please refer to the connection ②); Figure 9 as shown, the front and rear ends of the functional assembly 4 are connected with the placement plate 6 by bolts (one of the connection positions please refer to the connections ③ and ④).
[0089] Please continue to refer to Figure 9 and Figure 10 In the embodiment, the first force transmission member 20 is a special-shaped member; for example, the first force transmission member 20 includes a special-shaped force transmission body 200, which is located on the lower side of the functional assembly 4, has a shape avoiding the functional assembly 4 and is arranged in a spaced manner with the functional assembly 4; of course, the force transmission body 200 also avoids the fan 411 exposed by the functional assembly 4 and is arranged in a spaced manner with the fan 411 to avoid interfering with the air suction action of the fan 411.
[0090] As described above, the special-shaped entity part 201 protrudes upward from the front and rear ends of the force transmission body 200, the special-shaped entity part 201 bypasses the functional assembly 4 and is in contact with the storage plate 6 to form the connection place ② as described above, so that the front and rear ends of the first force transmission member 20 can be fixedly connected with the storage plate 6. In addition, a cable passing hole 202 for the cable of the functional assembly 4 to pass through is arranged on the first force transmission member 20, which avoids the middle front side of the fan 411; the first force transmission member 20 also includes a toothed side wall 203 for engaging with the second force transmission member 3; the toothed side wall 203 protrudes downward from the left and right edges of the force transmission body 200 and has a first edge 2031 and a second edge 2032 connected with each other, both of which are arranged in an inclined manner on the lower side of the storage plate 6 and form a V-shaped structure with the opening facing the storage plate 6; in the embodiment, the first edge 2031 is at the rear and the second edge 2032 is at the front, the rear side surface of the first edge 2031 is provided with the aforementioned teeth for engaging with the second force transmission member 3, and the rear end of the second edge 2032 is connected with the first edge 2031 and has a trend of gradually approaching the storage plate 6 from the first edge 2031 to the front.
[0091] In the embodiment, the arrangement that the two ends of the first force transmission member 20 are fixedly connected with the storage plate 6 can make the first force transmission member 20 move together with the storage plate 6 at the same time; the arrangement that the force transmission body 200 avoids the functional assembly 4 can make most of the structure of the functional assembly 4 and the first force transmission member 20 form an approximately layered structure below the storage plate 6, so as to achieve the purpose of making the wireless charging device A compact in structure and saving the arrangement space of the wireless charging device A; the arrangement of the first edge 2031 and the second edge 2032 of the toothed side wall 203 can ensure the lightweight of the first force transmission member 20 while ensuring the force transmission relationship between the first force transmission member 20 and the second force transmission member 3.
[0092] Corresponding to the first force transmission member 20, the exemplary arrangement of the second force transmission member 3 is that the second force transmission member 3 comprises a main rod 31, a gear 32 connected to the end of the main rod 31, and a connecting portion 33, wherein both ends of the main rod 31 are provided through the bottom of the housing 7 and are rotatably connected to the housing 7 through a bearing member (not shown), the gear 32 is fixedly connected to the main rod 31 and is engaged with the teeth of the first force transmission member 20, and the connecting portion 33 is integrally connected to the end of the main rod 31 close to the driving assembly 1 and extends into the driving assembly 1 to be connected to the driving assembly 1, so that the driving assembly 1 can drive the second force transmission member 3 to rotate. Of course, those skilled in the art can flexibly adjust the specific structure of the connection between the driving assembly 1 and the second force transmission member 3 according to technical common sense and their own needs; under the premise that the placement plate 6, the first force transmission member 20, the second force transmission member 3 and the driving assembly 1 have a transmission relationship, those skilled in the art can also adjust the connection relationship between the various parts of the second force transmission member 3 according to their needs. In the present embodiment, the relative positions of the aforementioned first force transmission member 20 and second force transmission member 3 are arranged to occupy less space.
[0093] Please refer back to Figure 8 , based on the aforementioned wireless charging device A, the driving assembly 1 is a Hall motor connected to the second force transmission member 3, and the output shaft of the Hall motor is connected to the second force transmission member 3; thus, the present embodiment also provides a wireless charging device A control method, comprising the following steps:
[0094] S1: the controller in the driving assembly 1 detects whether a signal emitted by the Hall module is received within a predetermined time period at a predetermined frequency, if not, repeat this step, if yes, the driving assembly 1 drives the second force transmission member 3 to rotate in a first direction by a predetermined stroke to make the placement plate 6 flip and enter step S2; the first direction is exemplarily Figure 8 the clockwise direction of the paper surface;
[0095] S2: the controller in the driving assembly 1 detects whether the received signal changes within a predetermined time period at a predetermined frequency, if not, repeat this step, if yes, the driving assembly 1 drives the second force transmission member 3 to rotate in a second direction opposite to the first direction by a predetermined stroke to reset the placement plate 6.
[0096] Optionally, the aforementioned predetermined time period is recommended to be 0.5-1.5 seconds, the aforementioned predetermined frequency is recommended to be 1-5 times, and the aforementioned predetermined stroke can be flexibly set by those skilled in the art according to their needs, and the recommended value is not shown herein and does not affect the related implementation.
[0097] For more detailed description of the foregoing step S1, when the object to be charged is placed on the placement plate 6, the object to be charged will press the placement plate 6 by its own gravity, and the rear end of the placement plate 6 will be flipped down, so that the first force transmission member 20 is also flipped down with the placement plate 6, and the first force transmission member 20 exerts force on the second force transmission member 3 engaged therewith at the same time; after the second force transmission member 3 is subjected to the force, the gear 32 thereof synchronously generates a small amount of angular displacement, and transmits the angular displacement to the Hall motor connected with the second force transmission member 3; due to the existence of the angular displacement, a magnetic field change occurs inside the Hall motor, and the Hall module generates a corresponding signal (i.e. an electrical signal) according to the magnetic field change and sends it to the motor controller; correspondingly, the motor controller has a corresponding program pre-written therein, and after receiving the foregoing signal, the motor controller will drive the Hall motor to operate, thereby driving the second force transmission member 3 to continue rotating for a certain stroke, so that the placement plate 6 completes the action of flipping down.
[0098] Therefore, as for the passenger, the visual experience when step S1 is performed is that the object to be charged is placed on the placement plate 6, the rear end of the placement plate 6 is flipped down by a certain angle, and then the action stops. As for the passenger, when step S1 is performed, he or she can have a sense of interaction with the wireless charging device A, thereby having a good use experience; as for the object to be charged, after the placement plate 6 is flipped down, a part of the placement plate 6 will be lower than the edge covering member B1 than before, which is equivalent to that there is a "fence" around the periphery of the placement plate 6, which is advantageous to ensure that the object to be charged is not easily separated from the placement plate 6 under the action of external force (e.g. bumping) during driving.
[0099] Based on the foregoing description of step S1, for more detailed description of step S2, when the object to be charged is taken away from the placement plate 6, the force generated by the object to be charged on the placement plate 6, the first force transmission member 20 and the second force transmission member 3 due to its own gravity disappears, so that there is no longer external force transmitted to the driving assembly 1, and the foregoing signal generated by the Hall module also changes (e.g. disappears); correspondingly, the motor controller has a corresponding program pre-written therein, and when the motor controller receives the change of the signal, it will drive the Hall motor to reverse, drive the second force transmission member 3 to reverse, until the placement plate 6 is reset.
[0100] Further, after it is judged that the placement plate 6 is reset, the control flow enters step S1 again, so that the placement plate 6 can be controlled continuously.
[0101] It should be noted that the common knowledge about the Hall motor in the related art includes that the Hall motor is provided with a Hall element, when the motor rotor rotates, the Hall element in the Hall motor senses the change of the magnetic field, thereby generating an electric signal, which can be read by the controller of the motor, thereby determining the position and speed of the motor rotor. According to the information, the motor controller can adjust the output power of the motor to adapt to different working conditions.
[0102] Therefore, the speciality of the present application is that the present application reverses the principle of monitoring whether the Hall motor is stressed, and controls the Hall motor to achieve the purpose of controlling the turnover of the placement plate 6. For those skilled in the art, the corresponding control program can be written as needed on the premise of knowing the foregoing control purpose. Based on this, the wireless charging device A of the present application can not need an external inductor to monitor the stress state of the placement plate 6; the Hall module in the wireless charging device A can be the foregoing Hall element directly, and correspondingly, only the control program of the motor controller and other components of the Hall motor in the present device needs to be modified, so as to achieve the effect of controlling the placement plate 6. Of course, according to the actual needs of those skilled in the art, the Hall element originally existing in the Hall motor can not be used as the Hall module of the present device, but a Hall module is additionally arranged in the wireless charging device A.
[0103] Exemplarily, since the wireless charging device A further includes the airflow interference assembly 41, after the signal is received by the controller in the foregoing step S1, the following steps can be further included:
[0104] S11: detecting whether the charging module 42 is in the state of charging the object to be charged, if not, repeating the step, if yes, making the airflow interference assembly 41 work, blowing and / or sending air to the recess 61 through the air member 5, and entering step S12;
[0105] S12: detecting whether the charging module 42 stops charging the object to be charged, if yes, making the airflow interference assembly 41 stop working, if not, repeating the step.
[0106] It should be noted that the foregoing step S11 can be executed immediately after the signal is received by the controller, or executed after a delay of a period of time (the specific time can be designed flexibly) after the signal is received by the controller, or executed synchronously with step S2. In this way, the placement plate 6 is turned over, and the object to be charged and the charging module 42 in the functional assembly 4 can be well cooled at the same time.
[0107] Exemplarily, since the occupant may place objects such as handbags and sundries on the placement plate 6 which can not need to be charged, whether the placement plate 6 needs to be turned over at this time in the control method of the wireless charging device can be flexibly set by those skilled in the art.
[0108] For example, when it is desired to place an item that does not need to be charged, the wireless charging device A control method can include the following steps:
[0109] a: the controller in the driving assembly 1 detects whether the signal sent by the Hall module is received within a preset time period at a preset frequency, if not, repeat this step, if yes, go to step b;
[0110] b: determine whether the charging module 42 is in a state of charging the item to be charged, to determine the type of the item pressing the storage plate 6; if not, the item pressing the storage plate 6 is not the item to be charged, go to step a, if yes, the item pressing the storage plate 6 is the item to be charged, go to step c;
[0111] c: the driving assembly 1 drives the second transmission member 3 to rotate in the first direction by a preset stroke to make the storage plate 6 flip, and go to step d;
[0112] d: the controller in the driving assembly 1 detects whether the received signal changes within a preset time period at a preset frequency, if not, repeat this step, if yes, the driving assembly 1 drives the second transmission member 3 to rotate in the second direction opposite to the first direction by a preset stroke to reset the storage plate 6.
[0113] Correspondingly, after adding the related control strategy of the air flow interference assembly 41, the wireless charging device A control method can exemplarily include the following in step b: when it is determined that the item pressing the storage plate 6 is the item to be charged, it also goes to step e at the same time or after a period of time;
[0114] e: make the air flow interference assembly 41 work, blow and / or send air through the wind member 5 to the recess 61, and go to step f;
[0115] f: detect whether the charging module 42 stops charging, if yes, make the air flow interference assembly 41 stop working, if not, repeat this step.
[0116] It should be noted that the reason why it can enter step e after a period of time is that the heat generation of the item to be charged and the charging module 42 is limited when it starts to be charged, at this time, the heat dissipation operation for the item to be charged can be not performed to save energy as much as possible; when the step S11 adopts the delay execution strategy, the step S11 can also achieve the same technical effect.
[0117] Optionally, a temperature sensor can also be arranged on the storage plate 6, the delay time in the "delay a period of time to enter step e" when going from step b to step e can be determined by the temperature sensor arranged on the storage plate 6; the temperature sensor is used to detect the temperature of the item to be charged, so that the air flow interference assembly 41 starts to work after the temperature of the item to be charged reaches a certain value (for example, 45℃).
[0118] Thus, for the wireless charging device A capable of performing steps a~d, the occupant can not only feel the sense of interaction and safety (the charging object is not easy to separate from the auxiliary instrument panel assembly) when charging the charging object, but also can not worry about the object (such as a bowl with porridge) placed without charging and easy to fall over, so that the wireless charging device A can adapt to more use scenarios.
[0119] Of course, in all the above examples, a switch for controlling whether the placement plate 6 can be flipped can also be placed in the wireless charging device A, and the instruction issued by the switch has the highest priority to give the occupant more flexible operation permission, so that the occupant can make the placement plate 6 not flip even when the charging object is charging according to his own needs.
[0120] It should be noted that from all the above examples, it can be seen that the wireless charging device A is not only applicable to being installed on the auxiliary instrument panel assembly of the vehicle, but also can be installed on a carrier such as a ship or a smart home; based on this, taking the object on which the wireless charging device A is installed as the first target body (for example, the fixed part B of the auxiliary instrument panel assembly in the foregoing examples can be regarded as the first target body), the present application also provides:
[0121] A wireless charging device for being arranged on a first target body and capable of charging a charging object, comprising a placement plate 6, a driving assembly 1, a first transmission member 20, a second transmission member 3, a functional assembly 4 and an air passing member 5; the placement plate 6 is provided with a recess 61 for at least partially locating under the charging object, the functional assembly 4 comprises an air flow interference assembly 41 and a charging module 42 corresponding to the recess 61, the air passing member 5 leads to the air flow interference assembly 41 and the recess 61, and the air flow interference assembly 41 can blow and / or send air to the recess 61 through the air passing member 5 when the charging object is charging;
[0122] One end of the placement plate 6 is used for rotatable connection with the first target body; the placement plate 6 is fixedly connected with the first transmission member 20, the first transmission member 20 has a transmission relationship with the second transmission member 3, and the driving assembly 1 can drive the second transmission member 3 to rotate and comprises a Hall module; the first transmission member 20 can rotate with the placement plate 6 when the placement plate 6 is pressed, and make the second transmission member 3 rotate, and transmit the force of itself to the driving assembly 1, so that the Hall module generates a signal; the signal changes after the placement plate 6 is no longer pressed; the driving assembly 1 drives the second transmission member 3 to rotate in different directions according to the existence and change of the signal, so as to realize the flipping and resetting of the placement plate 6.
[0123] In addition, it needs to be explained that, in the possible embodiments, the external sensor (such as gravity sensor or displacement sensor) under the storage plate 6 is electrically connected with the motor controller to detect whether the object is placed on the storage plate 6, which can also achieve the effect of controlling the storage plate 6 to timely flip and reset.
[0124] In summary, by arranging the recess 61, the air flow member 5 and the air flow interference assembly 41 on the wireless charging device A, the air flow in the recess 61 is changed due to the air supply or air blowing of the air flow interference assembly 41, and the charging object can be well cooled during charging. In the charging process of the wireless charging device A of the present application, the charging object is not easy to overheat due to poor cooling, which ultimately affects the user experience.
[0125] Please refer back to Figure 1 , in addition to the aforementioned wireless charging device A, the auxiliary instrument panel assembly in the embodiment also includes a lifting cup holder C, and the wireless charging device A and the lifting cup holder C are arranged in sequence from front to back on the auxiliary instrument panel assembly.
[0126] Please continue to refer to Figure 11 and Figure 12 , for the lifting cup holder C, the embodiment relates to a structure for mounting the same, which includes the aforementioned lifting cup holder C and the aforementioned fixed part B; wherein the fixed part B is provided with a space for accommodating the lifting cup holder C, and includes a cover plate 8 covering the space and a plurality of (solid) matching clamping tables 9 located in the space; the matching clamping table 9 is provided with a clamping hole, and a part of the matching clamping table 9 is clamped with the cover plate 8 to ensure that the lifting cup holder C is limited below the cover plate 8, and a part of the matching clamping table 9 is clamped with the lifting cup holder C to make the lifting cup holder C connected with its peripheral part not only by the bolt connection.
[0127] Exemplarily, to realize the connection of the matching clamping table 9 with the cover plate 8 or the lifting cup holder C, the cover plate 8 is provided with a first sub-clamping piece 10 and a second sub-clamping piece 11 arranged one by one, the first sub-clamping piece 10 extends downward from the lower surface of the cover plate 8, and the second sub-clamping piece 11 includes an inner clamping hook 111 and an outer clamping head 112 as shown in Figure 13 , the second sub-clamping piece 11 is clamped with the first sub-clamping piece 10 by the inner clamping hook 111 to form a clamping part D, and is clamped with the matching clamping table 9 by the outer clamping head 112 to form a clamping structure between the cover plate 8 and the matching clamping table 9.
[0128] Exemplarily, the left part of the cover plate 8 of the embodiment is provided with three clamping parts D arranged in sequence from front to back, the right part is provided with three clamping parts D arranged in sequence from front to back, and the middle part is provided with one clamping part D. Corresponding to the seven clamping parts D on the cover plate 8, the left part and the right part of the fixed part B are each provided with three matching clamping tables 9, and the middle part is provided with one matching clamping table 9; due to the limitation of the viewing angle,Figure 11 and Figure 12 All the matching clamping platforms 9 and clamping portions D are not shown in FIG. 1 for the sake of clarity, Figure 11 Two pairs of matching clamping platforms 9 and cover plates 8 having corresponding relationships are shown in FIG. 2 using two dotted arrows.
[0129] It should be noted that the number of clamping portions D provided on the cover plate 8 can be flexibly set by those skilled in the art, and more clamping portions D can be provided on the cover plate 8 for clamping with other components on the fixed part B; for example, as shown in FIG. 3, Figure 3 and Figure 4 The cover plate 8 can be arranged next to the border member B1, and at this time, a clamping portion D can be further provided on the cover plate 8 for clamping with the area β at the rear of the housing 7, and the area β is provided with holes identical to the clamping holes of the matching clamping platform 9.
[0130] Please continue to refer to Figure 11 and Figure 12 Similar to the clamping structure between the cover plate 8 and the matching clamping platform 9, the lifting cup holder C of the present embodiment includes a cylindrical housing 12, the upper end of which is fixedly connected to the cover plate 8 by means of a fixing bolt E through bolt connection, and a first sub-clamping member 10 extends downward from the lower surface of the housing 12, which forms a clamping portion D with a second sub-clamping member 11 (which is blocked in the figure), so that the lower end of the housing 12 is also connected to the matching clamping platform 9 through the aforementioned clamping structure.
[0131] Based on the above description, it can be known that in the lifting cup holder mounting structure in the present embodiment, the lifting cup holder C is connected to the fixed part B not only by means of bolt connection, but also by means of the clamping structure formed between the lower end of the lifting cup holder C and the fixed part B, so that the lifting cup holder mounting structure and the fixed part B have high connection stability. Further, since the second sub-clamping member 11 is clamped with the first sub-clamping member 10 and is also used for clamping with the fixed part B, it is obvious that the second sub-clamping member 11 can be clamped on the first sub-clamping member 10 in advance, so that in the assembly process of assembling the lifting cup holder C and the fixed part B, the worker only needs to clamp the second sub-clamping member 11 with the fixed part B, thereby indirectly reducing the work complexity and work intensity of the worker in the assembly process.
[0132] More detailed exemplary settings of the lifting cup holder mounting structure are as follows:
[0133] As shown in Figure 11 and Figure 12As shown, the sub-instrument panel assembly is provided with two liftable cup holders C. Each liftable cup holder C includes a cup holder 13 that can move up and down relative to the outer casing 12, and several protrusions 121 protrude outward from the upper edge of the outer casing 12. The protrusions 121 are spaced apart along the circumference of the outer casing 12. A connecting plate F is fitted over these two liftable cup holders C and supported by the protrusions 121. The connecting plate F has holes for the cup holders 13 to be exposed. Correspondingly, the cover plate 8 also has an exposure opening 81 for the cup holders 13 to be exposed from the passenger compartment. At the same time, a hollow cylinder (in) extends downward from the lower surface of the cover plate 8. Figure 11 (The hollow cylinder is obscured from the viewpoint). The hollow cylinder is set one-to-one with the boss 121. After the cover plate 8 and the lifting cup holder C are fully assembled, the aforementioned fixing bolts E are inserted into the boss 121, the connecting plate F and the hollow cylinder from bottom to top to form a bolted connection between the outer shell 12 and the cover plate 8 (that is, a bolted connection between the lifting cup holder C and the fixed part B).
[0134] Please continue reading. Figure 13 and Figure 14 For example, the first card slot 10 is provided with a through slot 101; the aforementioned second card slot 11 is elastic; in addition to the aforementioned inner hook 111 and the aforementioned outer card head 112, the second card slot 11 also includes an approximately U-shaped body 113, the body 113 having an open end 1131 for the first card slot 10 to extend into, and a closed end 1132 for stopping the first card slot 10 from extending in; in this embodiment, the closed end 1132 of the second card slot 11 is at the bottom, the open end 1131 is at the top, and the second card slot 11 has symmetrically arranged... The device consists of two aforementioned outer card heads 112 and two mutually offset inner card hooks 111. The inner card hooks 111 are integrated with the main body 113 and extend into the opening end 1131. The portion of the inner card hook 111 extending into the opening end 1131 is U-shaped with the opening facing downwards. The outer card heads 112 are integrated with the main body 113 and protrude outwards relative to the main body 113. At the same time, the two outer card heads 112 are V-shaped with opposite openings. The lower end of the outer card head 112 is integrated with the main body 113, and the upper end of the outer card head 112 is a free end that is spaced apart from the main body 113.
[0135] Based on the above structure, after the first card part 10 and the second card part 11 are engaged, the inner card hook 111... Figure 15 The card shown is stuck on the card slot 101, and the outer card head 112 is as follows. Figure 16 The ground is engaged with the mating locking platform 9 to form the aforementioned locking structure.
[0136] Furthermore, to facilitate the assembly of the snap-fit portion D (formed by the first snap-fit component 10 and the second snap-fit component 11) with the mating snap-fit platform 9, the first snap-fit component 10 includes, as follows: Figure 14The card joint body 102 and the two side walls 103 are shown. The aforementioned card hole 101 is arranged in the middle of the card joint body 102, and the middle of the two side walls 103 is connected to the card joint body 102 on both opposite sides of the card joint body 102. Each side wall 103 has a diameter changing structure, and each side wall 103 includes a wide area 1031 and a narrow area 1032 arranged in sequence from top to bottom. The diameter of the wide area 1031 is larger than the diameter of the card hole on the matching card joint platform 9, and the diameter of the narrow area 1032 is smaller than the diameter of the card hole on the matching card joint platform 9. Thus, as shown in the figure, Figure 16 During the assembly of the card joint part D and the matching card joint platform 9, once the outer card head 112 passes the card hole of the matching card joint platform 9 from top to bottom and forms a card joint with the card hole, the wide area 1031 will also be in contact with the upper surface of the matching card joint platform 9, so that the card joint part D is hindered by the matching card joint platform 9 and cannot move downward any more. During the assembly of the card joint part D and the matching card joint platform 9, the hindering force generated thereby will be immediately fed back to the worker, so that the worker knows that the two have been assembled in place.
[0137] Please refer back to Figure 11 and Figure 12 Furthermore, since the cover plate 8 provided with the card joint part D is located above the space accommodating the lifting cup holder C, when the cover plate 8 is assembled with the matching card joint platform 9, the matching card joint platform 9 also applies a supporting force to the cover plate 8, thereby enhancing the stability of the cover plate 8 itself. Similarly, for the lifting cup holder C provided with a card joint part D at the bottom, the matching card joint platform 9 corresponding to the card joint part D is located below the shell 12, which also applies a supporting force to the lifting cup holder C, thereby enhancing the stability of the lifting cup holder C itself.
[0138] Please continue to refer to Figure 17 Exemplarily, the lifting cup holder C includes an unlocking assembly 14 and a first spring (not shown in the figure) in addition to the aforementioned cup holder 13. At least part of the cup holder 13 and the first spring are located in the shell 12, and the first spring is located between the cup holder 13 and the shell 12. The inner side surface of the shell 12 is provided with a guide groove 122 for sliding the part of the cup holder 13 therein, and the cup holder 13 is in sliding fit with the guide groove 122 to move up and down in the shell 12. The lower surface of the cup holder 13 is provided with a buckling part 131 extending downward therefrom;
[0139] Corresponding to the buckling part 131, as shown in Figure 18 and Figure 19As shown, the unlocking assembly 14 comprises an L-shaped rotating member 141, which comprises a first component 1411 connected with a second component 1412. The first component 1411 is located outside the outer surface of the shell 12 and is rotatably connected with the shell 12. The second component 1412 extends from the connection between the first component 1411 and the second component 1412 to below the bottom of the shell 12. The second component 1412 is provided with a buckling interface 1412a on the part below the bottom surface of the shell 12. The shell 12 is provided with a through hole which is at least partially aligned with the buckling interface 1412a. The buckling interface 1412a is connected to the inside of the shell 12 through the through hole and can be clamped with the buckling portion 131 when the cup holder 13 is lowered to a certain height. In this embodiment, when the first component 1411 rotates relative to the shell 12 under the action of an external force, the second component 1412 will also rotate. The buckling interface 1412a is configured to change its position with the movement of the second component 1412 to clamp or unclamp the buckling portion 131. In this embodiment, when the rotating member 141 is clamped with the buckling portion 131 of the cup holder 13 through the buckling interface 1412a, the first spring is in contact with the bottom surface of the cup holder 13 and the shell 12 and is in an elastic deformation state. If the buckling interface 1412a is unclamped with the buckling portion 131, the cup holder 13 can be reset upward under the elastic restoring force of the first spring.
[0140] Please refer back to Figure 17 and Figure 18 To achieve the above-mentioned rotation of the first component 1411 relative to the shell 12 under the action of an external force and the rotation of the second component 1412, the middle part of the first component 1411 is provided with a matching shaft 143. The shell 12 is provided with a through part 123 for suspending the matching shaft 143. The matching shaft 143 is rotatably arranged in the through part 123. In addition, the first component 1411 is provided with a button 144 fixedly connected thereto. The shell 12 is provided with a through hole 124 for the part of the button 144 to extend into the shell 12. The part of the button 144 extends into the shell 12. Based on this, when the passenger puts his hand into the shell 12 and presses the button 144, the first component 1411 will rotate around the matching shaft 143, and the second component 1412 will move relative to the shell 12, thereby moving the buckling interface 1412a.
[0141] Exemplarily, the part of the second component 1412 extending below the shell 12 is provided with a first flange 1412b arranged horizontally. The bottom of the shell 12 is provided with a limiting part 125 which can be matched with the first flange 1412b and can slide with each other. When the passenger puts his hand into the shell 12 and presses the button 144, the second component 1412 will only move in the horizontal direction and change the position of the buckling interface 1412a due to the limiting of the limiting part 125.
[0142] Exemplarily, the lifting cup holder C further comprises a second spring (not shown in the figure), the bottom of the shell 12 is provided with a second flange 126 extending downward from the lower surface of the shell 12, and the second component 1412 is further provided with a third flange 1412c in the shape of L; the middle part of the second component 1412 is provided with a long strip-shaped hollow area, the second flange 126 extends into the hollow area and is configured not to hinder the horizontal movement of the second component 1412; at the same time, the second spring is connected with the second flange 126 and the third flange 1412c respectively, and is used to elastically deform to store elastic potential energy when the second component 1412 moves horizontally due to external force, so that the second component 1412 can be reset under the action of elastic restoring force after the external force is removed.
[0143] Please continue to refer to Figure 18 and Figure 19 In the embodiment, the clamping portion 131 is provided with a clamping head area with a relatively large thickness and a non-clamping head area with a relatively small thickness; at least part of the clamping interface 1412a is located directly below the clamping portion 131 that does not descend, and the edge of the clamping interface 1412a away from the first component 1411 is configured to be on the descending track of the clamping portion 131, and the descending clamping portion 131 is configured to interfere with the second component 1412 and then make the second spring elastically deform, so that the second component 1412 moves.
[0144] Based on this, the detailed action of the clamping portion 131 and the rotating piece 141 in the embodiment includes:
[0145] When the occupant places a water cup on the cup holder 13, the cup holder 13 descends under the pressure of the water cup, the clamping portion 131 descends with the cup holder 13, and the first spring between the cup holder 13 and the shell 12 is compressed; then, the clamping portion 131 interferes with the aforementioned edge of the clamping interface 1412a, and because the second spring exists and the rotating piece 141 can rotate relative to the shell 12, under the force of the clamping portion 131, the rotating piece 141 adaptively rotates, the second component 1412 adaptively moves horizontally, the second spring is stretched, and the aforementioned edge of the clamping interface 1412a is equivalent to being “pushed away” by the clamping portion 131, until the clamping head area of the clamping portion 131 penetrates and completely passes through the clamping interface 1412a; after the clamping head area of the clamping portion 131 passes through the clamping interface 1412a, because there is a thickness difference between the clamping head area of the clamping portion 131 and the non-clamping head area of the clamping portion 131, under the action of the elastic restoring force of the second spring, the rotating piece 141 reverses its direction of rotation along the restoring force, the clamping interface 1412a also reverses its direction of movement, thereby completing the clamping of the clamping interface 1412a and the clamping portion 131, so that even if the first spring between the cup holder 13 and the shell 12 exerts force on the cup holder 13 due to elastic deformation, the cup holder 13 will not ascend.
[0146] Of course, the reverse movement stroke of the aforementioned buckle interface 1412a is flexible for those skilled in the art, for example, by designing the initial position of the buckle interface 1412a, the buckle interface 1412a can be reversely moved to the initial position, and the buckle interface 1412a is clamped with the buckle part 131.
[0147] Correspondingly, the detailed action of the buckle part 131 and the rotating part 141 disengaging in the embodiment includes that the passenger puts his hand into the shell 12 and presses the button 144, the rotating part 141 rotates, the first component 1411 rotates in the direction indicated by the arrow in Figure 19 , and drives the second component 1412 to move until the clamping head region of the buckle part 131 is completely located below the buckle interface 1412a, that is, the buckle part 131 and the buckle interface 1412a disengage. In this way, the cup holder 13 can immediately move upward in the reverse direction under the elastic restoring force of the first spring.
[0148] Please refer back to Figure 17 and Figure 18 , for example, in order to make the cup holder 13 move uniformly in the process of upward and downward movement, the cup holder 13 is provided with an L-shaped outer extension 132, which extends from the inside of the shell 12 to the outside of the shell 12 after the cup holder 13 is assembled with the shell 12, and a damping tooth 133 is fixed on the outer extension 132.
[0149] Correspondingly, the shell 12 is provided with a vertical through groove 127, so that when the cup holder 13 cooperates with the shell 12, the outer extension 132 is placed in and extends out of the shell 12 through the vertical through groove 127, and can move up and down relative to the shell 12. The shell 12 is also provided with a vertically arranged rack part 128, which is convex relative to the shell 12 on its side, and is used to engage with the damping tooth 133. Based on this, in the process of upward and downward movement of the cup holder 13, the damping tooth 133 will engage with different positions of the rack part 128 outside the outer side surface of the shell 12, so as to control the movement speed of the cup holder 13.
[0150] For example, the lifting cup holder C of the embodiment further comprises an approximately L-shaped reinforcing part 15 and a pin rake-shaped sealing part 16, wherein the upper end of the reinforcing part 15 is fixedly connected with one end of the sealing part 16, the lower end of the reinforcing part 15 is fixedly connected with the bottom of the shell 12 (the connection position of the two can be seen from the connection part ⑤ in the figure), the other end of the sealing part 16 is fixedly connected with the shell 12, and is used to seal the top end of the vertical through groove 127 after the outer extension 132 cooperates with the shell 12, and when the cup holder 13 is in the initial state of not descending, the sealing part 16 is blocked above the outer extension 132.
[0151] In this embodiment, the sealing member 16 is arranged to seal the top end of the vertical through slot 127 after the cup holder 13 is assembled with the housing 12, and to limit the reverse upward stroke of the cup holder 13 after the clamping portion 131 is disengaged from the clamping port 1412a; the reinforcing member 15 is arranged to connect with the sealing member 16 and the housing 12, to protect the rack portion 128 and the damping teeth 133, and to ensure the modal and structural strength of the entire lifting cup holder C.
[0152] Further, the reinforcing member 15 and the housing 12 are configured such that the damping teeth 133 and the rack portion 128 are located between the outer side surface of the housing 12 and the reinforcing member 15, and are exposed outside the lifting cup holder C, so as to facilitate the maintenance and repair of the rack portion 128 and the damping teeth 133.
[0153] Please refer to Figure 18 and Figure 19 for further description. For example, the lifting cup holder C further comprises a rotating member 17 and a resilient member 18 which is a torsion spring. The rotating member 17 has a plurality of portions and is rotatably arranged at intervals on the housing 12, and the housing 12 is provided with mounting ports 129 (see Figure 17 ) for mounting the rotating member 17. A portion of the rotating member 17 is located outside the housing 12, and a portion of the rotating member 17 is located inside the housing 12. The portion of the rotating member 17 located inside the housing 12 is located on the upward and downward stroke track of the cup holder 13.
[0154] Based on this, after the rotating member 17, the resilient member 18 and the housing 12 are assembled, the resilient member 18 is in contact with both the rotating member 17 and the housing 12. Thus, after the water cup is placed in the lifting cup holder C and the cup holder 13 is lowered, the cup holder 13 will collide with the rotating member 17 and apply a force to the rotating member 17, causing the rotating member 17 to be forced to flip and exit the housing 12 (i.e., flip out of the housing 12), and the resilient member 18 will be elastically deformed. After the cup holder 13 passes the rotating member 17, the rotating member 17 will be reset under the elastic restoring force of the resilient member 18, and will then contact the water cup, thereby assisting in fixing the water cup. Similarly, when the passenger needs to take away the water cup, the rotating member 17 can be adaptively rotated and will not hinder the water cup from being taken away. During the resetting of the cup holder 13, the rotating member 17 will also be adaptively rotated and will not hinder the resetting of the cup holder 13.
[0155] It should be noted that, as can be easily known from the foregoing examples, the lifting cup holder mounting structure of the present application is not only applicable to being arranged on a vehicle's auxiliary instrument panel assembly, but can also be installed on a carrier such as a ship or a smart home. Based on this, taking the object on which the lifting cup holder mounting structure is arranged as a first target object (for example, the fixed part B of the auxiliary instrument panel assembly can be regarded as the first target object), the present application further provides:
[0156] The lifting cup holder mounting structure comprises a lifting cup holder 13 and a first target body, the first target body is provided with a space capable of accommodating the lifting cup holder 13, and comprises a cover plate 8 covering the space and a plurality of matching clamping tables 9 located in the space; a part of the matching clamping tables 9 is located on the side of the lifting cup holder 13 and is clamped with the cover plate 8, and a part of the matching clamping tables 9 is located below the lifting cup holder 13 and is clamped with the lifting cup holder 13; the cover plate 8 is provided with a first sub-clamping piece 10 and a second sub-clamping piece 11 which are correspondingly arranged, the first sub-clamping piece 10 extends downward from the lower surface of the cover plate 8, and the second sub-clamping piece 11 comprises an inner clamping hook 111 and an outer clamping head 112, the second sub-clamping piece 11 is clamped with the first sub-clamping piece 10 by means of the inner clamping hook 111, is clamped with the matching clamping table 9 by means of the outer clamping head 112, and forms a clamping structure between the cover plate 8 and the matching clamping table 9.
[0157] The lifting cup holder 13 comprises a shell 12, the upper end of the shell 12 is fixedly connected with the cover plate 8, and the lower end of the shell 12 is connected with the matching clamping table 9 through the clamping structure.
[0158] In summary, by connecting the lifting cup holder C with the first target body not only in the form of bolt connection but also in the form of clamping structure formed between the lifting cup holder C and the first target body, the lifting cup holder mounting structure provided by the application has high connection stability and can indirectly reduce the work complexity and work intensity of workers in the assembly process of the first target body and the lifting cup holder C.
[0159] Please refer back to Figure 1 In addition to the wireless charging device A and the lifting cup holder C, the auxiliary instrument panel assembly in the embodiment further comprises a retractable table plate G, a slidable part H and a track I, the wireless charging device A and the lifting cup holder C are fixedly arranged on the fixed part B and cannot move forward and backward, and the wireless charging device A, the lifting cup holder C and the slidable part H are sequentially arranged on the auxiliary instrument panel assembly from front to back, the slidable part H can slide forward and backward in the passenger compartment relative to the fixed part B along the track I, and the retractable table plate G is arranged on the slidable part H. Further, the middle part of the slidable part H is provided with a storage box (not shown in the figure), and a reversible handrail J which is integrated with the fixed part B is arranged above the slidable part H, the reversible handrail J can be turned over to expose the storage box, so that the passenger can store and take out articles in the storage box. The specific turning structure of the reversible handrail J can refer to the prior art, and will not be described here.
[0160] Based on the above structure, please continue to refer to Figure 20The middle part of the slidable part H is provided with a space α for placing a storage box (not shown in the figure), the auxiliary instrument panel assembly comprises two initially vertically arranged retractable table plates G and fixed outer plates 19 corresponding to the retractable table plates G, and the two retractable table plates G are respectively located on the left and right sides of the space α; the retractable table plate G in the embodiment comprises a table plate assembly 21, wherein the table plate assembly 21 can move upwards relative to the fixed outer plate 19, and after a part of the table plate assembly 21 moves to the upper side of the fixed outer plate 19, the part of the table plate assembly 21 can rotate relative to the fixed outer plate 19 to a horizontal state for use by the passenger; in the embodiment, when the table plate assembly 21 is vertically arranged and placed on the auxiliary instrument panel assembly, the retractable table plate G is in a storage state, and when a part of the table plate assembly 21 is turned to be horizontal for use by the passenger, the retractable table plate G is in an unfolded state.
[0161] For further reference Figure 21 and Figure 22 To achieve the above functions of the retractable table plate G, in addition to the aforementioned fixed outer plate 19 and table plate assembly 21, the retractable table plate G further comprises a support 22, wherein the table plate assembly 21 comprises a table plate body 211 and a matching seat 212 which are sequentially arranged from top to bottom and are rotatably connected, the table plate body 211 is the part of the table plate assembly 21 which can be turned to be horizontal when the table plate assembly 21 is in an unfolded state, and the table plate body 211 is vertically arranged and located on the inner side of the fixed outer plate 19 when the retractable table plate G is in a storage state; the upper end of the support 22 is rotatably connected with the table plate body 211, and the lower end is rotatably connected with the matching seat 212; the matching seat 212 is provided with a sliding groove 2121, and the support 22 can move in the sliding groove 2121 along the direction of the sliding groove 2121; the table plate body 211 can move up and down under the action of external force, and after it is higher than the fixed outer plate 19, it can be flipped relative to the fixed outer plate 19 and the matching seat 212, so that the support 22 is adaptively rotated and moved, thereby being flipped to an unfolded state. In addition, the lower part of the table plate body 211 is provided with a supporting and buffering part 23, at least a part of the supporting and buffering part 23 protrudes out of the bottom of the matching seat 212, and is used to contact and support the table plate assembly 21 with a part of the auxiliary instrument panel assembly when the retractable table plate G is in a storage state, and to contact with the part of the auxiliary instrument panel assembly when the retractable table plate G is turned from an unfolded state to a storage state, so as to play a buffering and noise reduction role.
[0162] A more detailed exemplary setting of the auxiliary instrument panel assembly is as follows:
[0163] For further reference Figure 21 and Figure 22The table board assembly 21 in the embodiment further comprises a cover 24 covering the inside of the table board body 211. During the process of the table board body 211 moving upwards and reaching above the fixed outer plate 19 and rotating to be horizontal relative to the fixed outer plate 19, the cover 24 moves together with the table board body 211. When the table board body 211 is turned to be horizontal, the cover 24 faces upwards and faces the passenger.
[0164] Please continue to refer to Figures 22 to 24 Exemplarily, in order to enable the table board body 211 to rotate relative to the fixed outer plate 19 and the matching seat 212, the table board body 211 in the embodiment is rotatably connected with the matching seat 212 through a shaft II arranged at the lower part of the table board body 211. The lower part of the table board body 211 is provided with two first recessed areas 2111, and each first recessed area 2111 is provided with a decorative plate 2112 for hiding ugliness. The upper end of the support 22 is located in the first recessed area 2111 and is rotatably connected with the table board body 211 through a first shaft member 25, and meanwhile the first shaft member 25 is arranged to be unable to move up and down. Correspondingly, the matching seat 212 is provided with two second recessed areas 2122, and the lower end of the support 22 is located in the second recessed area 2122 and is rotatably connected with the matching seat 212 through a second shaft member 26. A sliding groove 2121 is arranged in the second recessed area 2122, and the second shaft member 26 is arranged to be able to slide up and down along the sliding groove 2121. In this way, after the table board body 211 moves upwards and reaches above the fixed outer plate 19, the table board body 211 can rotate relative to the fixed outer plate 19 and the matching seat 212.
[0165] Please continue to refer to Figure 22 In order to enable the table board body 211 to move upwards, the auxiliary instrument panel assembly in the embodiment further comprises guide rails 27 connected with the fixed outer plate 19. The guide rails 27 are arranged in pairs and are respectively located at the front and rear ends of the fixed outer plate 19. In the embodiment, the guide rails 27 are fixed on the auxiliary instrument panel assembly, so that the fixed outer plate 19 is also fixed in position on the auxiliary instrument panel assembly. Further, the guide rails 27 have a part protruding upwards relative to the fixed outer plate 19, and there is a height difference space III between the guide rails 27 and the fixed outer plate 19. The table board body 211 is arranged to have a part protruding upwards relative to the fixed outer plate 19 when the table board G is in the storage state. The part of the table board body 211 is located directly above the fixed outer plate 19 and makes up the height difference between the guide rails 27 and the fixed outer plate 19. In addition, the part of the table board body 211 is further covered with a supplementary decorative plate 213. The outer surface of the supplementary decorative plate 213 and the outer surface of the fixed outer plate 19 are arranged to have the same appearance, so as to ensure the unity of the appearance of the auxiliary instrument panel assembly.
[0166] Correspondingly, as Figure 24As shown, in this embodiment, a slider 214 is fixed on the front and rear ends of the mating seat 212. The slider 214 can... Figure 25 As shown, the slider 214 slides along the guide rail 27, allowing the tabletop body 211 to move up and down along the guide rail 27. To limit the maximum upward stroke of the slider 214 and thus the maximum upward stroke of the tabletop body 211, the upper end of the guide rail 27 is fixed with a... Figure 26 The blocking block 28 shown is located on the moving trajectory of the slider 214. In this embodiment, the table body 211 is configured such that after the blocking block 28 contacts the slider 214, the table body 211 moves onto the fixed outer plate 19 and can be flipped to a horizontal position relative to the mating seat 212 and the fixed outer plate 19.
[0167] It should be noted that in this embodiment, before the table body 211 moves upward and parallels above the fixed outer panel 19, the table body 211 is located inside the fixed outer panel 19; at this time, since there is a storage box disposed in the sub-instrument assembly and some solid parts of the sub-instrument assembly inside the table body 211 (please refer back to the previous section) Figure 20 Furthermore, the presence of a fixed outer plate 19 on the outer side of the tabletop body 211 hinders its rotation, naturally maintaining its vertical position. Therefore, when the tabletop body 211 moves above the fixed outer plate 19, it can flip outwards towards the outside of the fixed outer plate 19. Further, as... Figure 21 As shown, in this embodiment, a rib 2113 protrudes from the surface of the tabletop body 211 facing the fixed outer plate 19 and is formed therein. Correspondingly, a groove 2114 is provided on the fixed outer plate 19 that corresponds to the rib 2113. The rib 2113 and the groove 2114 are in a convex-concave fit. When the tabletop body 211 moves upward, the rib 2113 also slides relative to the groove 2114. The design of the rib 2113 and the groove 2114 helps to ensure the movement stability of the tabletop body 211.
[0168] Please continue reading. Figure 27 , Figure 27 The diagram shows the tabletop body 211 in a horizontal position; during this process, the upper end of the aforementioned support member 22 rotates relative to the tabletop body 211, and the lower end of the support member 22 rotates relative to the mating seat 212 as shown. Figure 28 As shown, it slides downwards to the bottom of the slide groove 2121; that is, the support member 22 and the tabletop body 211 are configured such that when the lower end of the support member 22 slides to the bottom of the slide groove 2121, the tabletop body 211 just flips to a horizontal position. At this time, the support member 22, as shown... Figure 27As shown, the support 22 is smoothly rotated due to the existence of the height difference space III, and the support 22 is in contact with the upper edge of the fixed outer plate 19. Alternatively, a receiving groove (not shown) can be formed at the position where the support 22 is expected to be in contact with the upper edge of the fixed outer plate 19, so that the support 22 can be clamped on the fixed outer plate 19 by the receiving groove, thereby increasing the stability of the table board body 211 itself.
[0169] Based on the above description, the table board body 211 in the embodiment can be up- moved to be flipped to be horizontal, so that the retractable table board G is switched from the storage state to the unfolded state. Similarly, by applying an external force to reverse the process, the table board body 211 can be first flipped from horizontal to vertical, and then down- moved to reset, so that the retractable table board G is switched from the unfolded state to the storage state.
[0170] Please refer back to Figure 23 To ensure that the table board assembly 21 does not produce excessive noise during the process of switching the retractable table board G from the unfolded state to the storage state, and to ensure that the retractable table board G does not produce excessive noise even when the vehicle is jolted when the retractable table board G is in the storage state, the support buffer part 23 is further provided at the lower part of the table board body 211 in the embodiment. At least part of the support buffer part 23 protrudes out of the bottom of the fitting seat 212, and is used to contact and support a part of the instrument panel assembly when the retractable table board G is in the storage state, and to contact the part of the instrument panel assembly when the retractable table board G is switched from the unfolded state to the storage state, thereby achieving the effects of buffering (avoiding the collision of hard structures) and reducing noise.
[0171] Exemplarily, as shown in Figure 28 and Figure 29 , the part of the instrument panel assembly for contacting the support buffer part 23 is the fixed outer plate 19. Exemplarily, the support buffer part 23 includes soft buffer parts 281 and elastic buffer parts 282. The soft buffer parts 281 are arranged in the fitting seat 212 by means such as interference fit or clamping, and at least part of the soft buffer parts 281 protrudes out of the bottom of the fitting seat 212. In the embodiment, one end of the elastic buffer part 282 is arranged in the fitting seat 212, and the fitting seat 212 is fixedly connected to the elastic buffer part 282 by means such as welding or clamping. At the same time, at least part of the elastic buffer part 282 protrudes out of the bottom of the fitting seat 212.
[0172] In the embodiment, when the support buffer part 23 is assembled with the fixed outer plate 19 and the retractable table board G is in the storage state, the two soft buffer parts 281 are located at positions IV and VII respectively, and the two elastic buffer parts 282 are located at positions V and VI respectively. For clear indication, Figure 29 Figure 29 , the two soft buffer parts 281 are located at positions IV and VII respectively, and the two elastic buffer parts 282 are located at positions V and VI respectively. For clear indication,Figure 29 The positions IV and V are marked by the combination of solid circle and dotted line. Based on this, during the process of the retractable table board G from the unfolded state to the storage state, the passenger flips the horizontal table board body 211 to be vertical, and then makes the table board body 211 to be retracted downward. When the table board body 211 cannot be retracted downward, it means that the supporting buffer part 23 has contacted with the fixed outer plate 19, and the table board body 211 has been reset to the position (i.e. retracted downward to the position). It should be noted that the supporting buffer part 23 can include at least one of the soft buffer part 281 and the elastic buffer part 282.
[0173] Please refer back to Figure 21 Since the table board body 211 can be flipped upward to be horizontal, in order to prevent the retractable table board G from being slightly upwardly slid downward due to the bumpy driving and other factors when it is in the storage state, the locking assembly 29 is exemplarily included in the embodiment. As shown in Figure 30 and Figure 31 , the locking assembly 29 is fixed on the table board body 211, and includes an upper component part 291, a lower component part 292, an unlocking button 293, a lock tongue 294, a lock seat 295 and a spring reset part 296. The upper component part 291 and the lower component part 292 are both in special shape. The unlocking button 293 is connected with the upper component part 291 through the clamping head 2911 provided on the upper component part 291. The lock tongue 294 is integrated with the outer side surface of the lower component part 292. The inclined surfaces are respectively provided on the lower part of the upper component part 291 and the upper part of the lower component part 292. The inclined surfaces of the upper component part 291 and the lower component part 292 are both towards each other and in contact with each other. Meanwhile, the end of the inclined surface of the upper component part 291 close to the lock tongue 294 is higher than the end thereof away from the lock tongue 294. The end of the inclined surface of the lower component part 292 close to the lock tongue 294 is higher than the end thereof away from the lock tongue 294.
[0174] In the embodiment, the lock seat 295 is fixed on the table board body 211 as shown in Figure 24 and Figure 32 . After the lock seat 295 is fixedly connected with the table board body 211, the lock seat 295 is located in front of the decorative cover (see Figure 22 ) and the table board body 211, and a corresponding space is formed between the lock seat 295 and the table board body 211. The upper component part 291 and the lower component part 292 are arranged in the space. The unlocking button 293 extends upward from the clamping position of the unlocking button 293 and the upper component part 291. The unlocking button 293 is arranged in the table board body 211 and located between the table board body 211 and the decorative cover 24 (see Figure 33 ), and can move up and down in the table board body 211. The upper surface of the unlocking button 293 is exposed to the table board body 211, and also exposed to the passenger cabin. Based on this, please continue to refer to Figure 30 and Figure 31The lock seat 295 in the embodiment is provided with an abutting portion 2951, and the spring reset portion 296 is located in the middle of the lower component portion 292, and the two ends thereof are in contact with the abutting portion 2951 and the lower component portion 292 respectively.
[0175] Exemplarily, the lock seat 295 is further provided with a limiting beam 2950, and the upper component portion 291 is provided with an upper stop position table 2910a and a lower stop position table 2910b located on the upper side and the lower side of the limiting beam 2950 respectively, and the limiting beam 2950 blocks the movement track of the upper stop position table 2910a and the lower stop position table 2910b; based on this, the unlocking button 293 can move downward under the action of external force until the upper stop position table 2910a is in contact with the limiting beam 2950, and can also move upward under the action of the elastic restoring force of the spring reset portion 296 until the lower stop position table is in contact with the limiting beam 2950.
[0176] In the embodiment, when the retractable table board G is in the storage state, the lower stop position table 2910b is in contact with the limiting beam 2950, and the lock tongue 294 is in clamping connection with the fixed outer plate 19 (see Figure 33 Due to the obstruction of the lock tongue 294, the table board body 211 cannot move upward relative to the fixed outer plate 19; when the unlocking button 293 moves downward under the action of external force (for example, pressed by the passenger), the upper component portion 291 drives the lower component portion 292 to move towards the inner side of the instrument panel assembly, the spring reset portion 296 is compressed, the lock tongue 294 is disengaged from the clamping connection with the fixed outer plate 19, and the table board body 211 can move upward relative to the fixed outer plate 19; thereafter, when the external force applied to the unlocking button 293 is removed, the spring reset portion 296 can reset the lower component portion 292, the upper component portion 291 and the unlocking button 293 by virtue of the elastic restoring force thereof; in this way, in the process of the retractable table board G from the unfolded state to the storage state, the passenger presses the unlocking button 293 and slides the table board body 211 into the inner side of the fixed outer plate 19 in the vertical state, and then releases the unlocking button 293 after feeling that the table board body 211 is lowered to the position, and the lock tongue 294 can be reset and restored to the clamping connection with the fixed outer plate 19.
[0177] In summary, by providing the retractable table board G having the unfolded state and the storage state on the instrument panel assembly, the instrument panel assembly provided by the application provides a larger flat surface for the passenger in the vehicle to solve the demand of the passenger for placing articles.
[0178] Further, the instrument panel assembly provided by the application comprises, for example, Figure 1The fixed part B, the sliding part H and the front and rear extending track I are shown, and the wireless charging device A and the lifting cup holder C are arranged on the fixed part B, and the retractable table board G is arranged on the sliding part H, and the present application actually provides a highly integrated and multifunctional auxiliary instrument panel assembly, which can meet the needs of passengers for charging, placing a water cup and using a table board, and due to the high integration, the structural compactness in the passenger cabin is increased, and at the same time, the arrangement space in the passenger cabin is saved.
[0179] It should be noted that from the above, it is known that the aforementioned retractable table board G of the present application can be installed not only on the auxiliary instrument panel assembly, but also on a carrier such as a ship or on a smart home; based on this, taking the object on which the retractable table board G is installed as a second target body (for example, the slidable part H of the aforementioned auxiliary instrument panel assembly can be regarded as a second target body), the present application also provides:
[0180] A retractable table board mounting structure, comprising a second target body and a retractable table board G, the second target body comprising a fixed outer plate 19, the retractable table board G having a storage state and an unfolded state, and the retractable table board being located non-rotatably between the fixed outer plate 19 and a part of the second target body when in the storage state; the retractable table board G comprising a table board assembly 21 and a support 22, the table board assembly 21 comprising a table board body 211 and a matching seat 212 arranged in sequence from top to bottom and rotatably connected, the upper end of the support 22 being rotatably connected with the table board body 211, and the lower end being rotatably connected with the matching seat 212; the matching seat 212 is provided with a sliding groove 2121, and the support 22 can move in the sliding groove 2121 along the direction of the sliding groove 2121; the table board body 211 can move up and down under the action of an external force, and after being higher than the fixed outer plate 19, it is flipped relative to the fixed outer plate 19 and the matching seat 212, so that the support 22 is adaptively rotated and moved, thereby being flipped to the unfolded state by itself;
[0181] The lower part of the table board body 211 is provided with a supporting and buffering part 23, at least part of which protrudes out of the bottom of the matching seat 212, for contacting and supporting the table board assembly 21 when the retractable table board G is in the storage state, and contacting the part of the auxiliary instrument panel assembly when the retractable table board G is converted from the unfolded state to the storage state.
[0182] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A wireless charging device for being mounted on a first target object and capable of charging the object to be charged, characterized in that, The device includes a shelf (6), a drive assembly (1), a first force transmission component (20), a second force transmission component (3), a functional assembly (4), and a ventilation component (5). The shelf (6) has a recess (61) for being located at least partially below the object to be charged. The functional assembly (4) includes an airflow interference component (41) and a charging module (42) that corresponds to the recess (61). The ventilation component (5) leads to the airflow interference component (41) and the recess (61). The airflow interference component (41) can blow air and / or deliver air to the recess (61) through the ventilation component (5) when the object to be charged is being charged. One end of the shelf (6) is rotatably connected to the first target body; the shelf (6) is fixedly connected to the first force transmission member (20), the first force transmission member (20) and the second force transmission member (3) have a transmission relationship, the drive assembly (1) can drive the second force transmission member (3) to rotate and includes a Hall module; the first force transmission member (20) can rotate with the shelf (6) when the shelf (6) is pressed, and cause the second force transmission member (3) to rotate, and transmit the force of the second force transmission member (3) to the drive assembly (1) so that the Hall module generates a signal; the signal changes after the shelf (6) is no longer pressed; the drive assembly (1) drives the second force transmission member (3) to rotate in different directions according to the presence and change of the signal, so as to realize the flipping and reset of the shelf (6).
2. The wireless charging device as described in claim 1, characterized in that, The functional assembly (4) is disposed on one side of the shelf (6); the airflow interference component (41) is disposed on the side of the charging module (42) away from the shelf (6) and includes a fan (411); the air duct (5) communicates with the recess (61) and a portion thereof extends into the functional assembly (4) to aggregate the air driven by the fan (411); the fan (411) can accelerate the airflow around the charging module (42) and can also blow and / or deliver air to the recess (61) through the air duct (5); the fan (411) can dissipate heat from the object to be charged when the charging module (42) is charging the object.
3. The wireless charging device as described in claim 2, characterized in that, It also includes a housing (43); a portion of the air duct (5), at least a portion of the airflow interference component (41), and at least a portion of the charging module (42) are located inside the housing (43); a portion of the fan (411) is exposed outside the housing (43); the housing (43) surrounds the air duct (5), the airflow interference component (41), and the charging module (42) located therein, such that when the fan (411) is working, an airflow for heat dissipation of the charging module (42) can be formed between the charging module (42) and the fan (411), and there is also airflow that can pass through the air duct (5).
4. The wireless charging device as described in claim 2, characterized in that, It also includes a housing (7), which is located on one side of the recess (61) and accommodates a portion of the first force transmission member (20) and the functional assembly (4) therein; the housing (7) is provided with a first through area (71) through which a portion of the first force transmission member (20) extends out, and a second through area (72) through which the cable of the functional assembly (4) extends out; the first through area (71) and the second through area (72) communicate the interior of the housing (7) with the exterior of the housing (7) so that the airflow interference component (41) can work; the drive component (1) is mounted on the housing (7); the second force transmission member (3) is disposed on the housing (7) and engages with the first force transmission member (20) exposed in the housing (7).
5. The wireless charging device as described in claim 2, characterized in that, The first force transmission component (20) includes a force transmission body (200), which is located on the side of the functional assembly (4) away from the shelf (6) and is spaced apart from the functional assembly (4); a solid portion (201) extends outward from the end of the force transmission body (200) and passes around the functional assembly (4) and is fixedly connected to the shelf (6); The first force transmission member (20) is provided with a cable hole (202) for the cable of the functional assembly (4) to pass through, and also with a toothed sidewall (203) for engaging with the second force transmission member (3).
6. A method for controlling a wireless charging device, characterized in that, Controlling the wireless charging device (A) as described in any one of claims 1-5 includes the following steps: S1: The controller in the drive assembly (1) detects whether it receives a signal from the Hall module at a preset frequency within a preset time period. If not, repeat this step. If yes, the drive assembly (1) drives the second force transmission component (3) to rotate a preset distance in the first direction so that the shelf (6) flips over and proceeds to step S2. S2: The controller in the drive assembly (1) detects whether the received signal has changed within a preset time period at a preset frequency. If not, repeat this step. If yes, the drive assembly (1) drives the second force transmission member (3) to rotate a preset distance in the second direction opposite to the first direction so that the placement plate (6) is reset.
7. The wireless charging device control method as described in claim 6, characterized in that, In step S1, after the controller receives the signal, the following steps are also included: S11: Detect whether the charging module (42) is in the state of charging the object to be charged. If not, repeat this step. If yes, make the airflow interference component (41) work and blow and / or deliver air to the recess (61) through the air passage component (5) and proceed to step S12. S12: Detect whether the charging module (42) has stopped charging the object to be charged. If yes, stop the airflow interference component (41) from working. If no, repeat this step.
8. A method for controlling a wireless charging device, characterized in that, Controlling the wireless charging device (A) as described in any one of claims 1-5 includes the following steps: a: The controller in the drive component (1) detects whether it receives a signal from the Hall module at a preset frequency within a preset time period. If not, repeat this step; if yes, proceed to step b. b: Determine whether the charging module (42) is in a charging state, thereby determining the type of item that applies pressure to the shelf (6); If not, determine that the item applying pressure to the shelf (6) is not a charging item and proceed to step a; if yes, determine that the item applying pressure to the shelf (6) is a charging item and proceed to step c. c: Cause the drive assembly (1) to drive the second force transmission component (3) to rotate a preset distance in the first direction so that the shelf (6) flips over, and proceed to step d; d: The controller in the drive assembly (1) detects whether the received signal changes within a preset time period at a preset frequency. If not, repeat this step. If yes, the drive assembly (1) drives the second force transmission member (3) to rotate a preset distance in the second direction opposite to the first direction so that the placement plate (6) is reset.
9. The wireless charging device control method as described in claim 8, characterized in that, Step b also includes: while determining that the item applying pressure to the shelf (6) is a charging item or after a certain period of time, proceeding to step e; e: Activate the airflow interference component (41) to blow and / or deliver air to the recess (61) through the air passage (5), and proceed to step f; f: Detect whether the charging module (42) has stopped charging. If yes, stop the airflow interference component (41) from working. If no, repeat this step.
10. A sub-instrument panel assembly, characterized in that, Includes the wireless charging device (A) as described in any one of claims 1-5, wherein the drive component (1) is a Hall motor, and the first target body is part of the sub-instrument assembly.
11. The sub-instrument assembly as claimed in claim 10, characterized in that, It also includes a liftable cup holder (13), a retractable table (G), a sliding split body (H) and a track (I). The wireless charging device (A), the liftable cup holder (13) and the sliding split body (H) are arranged sequentially from front to back on the sub-dashboard assembly. The sliding split body (H) can slide back and forth in the passenger compartment along the track (I). The retractable table (G) is arranged on the sliding split body (H).
12. A vehicle, characterized in that, Includes the sub-instrument assembly as described in claim 10 or 11, said sub-instrument assembly being connected to the vehicle floor within the passenger compartment and being located at least partially between the driver's seat and the passenger seat.
Citation Information
Patent Citations
Display device
WO2020158279A1
KR20190003114A