Corner window assembly and vehicle door
By using functional glass and control components in the door corner window assembly to adjust the transmittance, the problem of the door side corner windows being unable to meet diverse needs is solved, and flexible adjustment of the transmittance and improved integration are achieved.
Patent Information
- Application Number
- CN202422601940.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-10-28
AI Technical Summary
Existing door side corner windows cannot meet the diverse light transmittance needs of different groups of people. Low light transmittance affects lighting, while high light transmittance reduces privacy.
Functional glass and control components are used to adjust the transmittance of the functional glass. The control components are distributed along the edges of the functional glass to improve integration, and the wiring harness is fixed by guide rails and fixings to achieve transmittance adjustment.
The light transmittance of the corner window assembly can be adjusted to meet the needs of different groups of people, improve privacy and lighting effects, and extend the service life of the control components.
Smart Images

Figure CN223327297U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of vehicle windows, in particular to a corner window assembly and a vehicle door. Background Art
[0002] Existing car door side corner windows are generally made of tempered glass or laminated glass. In order to ensure the corner window's sealing, dustproofness, and sound insulation and noise reduction, the tempered glass or laminated glass is coated with soft rubber on the outside. A corresponding viewing area is formed on the glass to ensure the field of view and light transmission inside the vehicle. However, because the viewing area of car door side corner windows is usually small and the side corner windows are generally located in the non-primary viewing area of the car door, conventional side corner windows do not have the function of adjusting light transmittance. If glass with low light transmittance is selected for the side corner windows, although privacy inside the vehicle can be guaranteed, the lighting inside the vehicle will be affected. Conversely, if glass with high light transmittance is used, as the lighting inside the vehicle increases, privacy will also decrease accordingly. Therefore, existing side corner windows can no longer meet the diverse needs of the market. Utility Model Content
[0003] The technical problem to be solved by the utility model is to provide a corner window assembly and a vehicle door to meet the different needs of different groups of people for vehicle light transmittance.
[0004] In order to solve the above technical problems, the technical solution adopted by the present invention is:
[0005] A corner window assembly includes functional glass and a control component; the functional glass includes a front edge, a rear edge, and a lower edge; the control component is electrically connected to the functional glass, and the control component is at least partially distributed along the front edge and / or the rear edge and / or the lower edge.
[0006] Furthermore, the control component includes a wiring harness and a connector; the wiring harness includes a connection end and an output end; the output end of the wiring harness is electrically connected to the functional glass, and the wiring harness is at least partially distributed along the front edge and / or the rear edge and / or the lower edge; the connection end of the wiring harness is located outside the functional glass and is electrically connected to the connector.
[0007] Furthermore, the corner window assembly further includes a first fixing member; the front edge portion and / or the rear edge portion and / or the lower edge portion are provided with the first fixing member; the wiring harness is at least partially connected to the first fixing member. Furthermore, the first fixing member is provided with a clamping member for clamping with the wiring harness.
[0008] Furthermore, the corner window assembly also includes a guide rail; a second fixing member is provided on the guide rail; and the second fixing member is used to connect with the connector.
[0009] Furthermore, the clamping member includes at least two oppositely arranged clamping parts, a clamping channel is formed between every two oppositely arranged clamping parts, and the wiring harness of the control component is embedded in the clamping channel.
[0010] Furthermore, a conductive member is provided at the connection end of the wiring harness; the conductive member is electrically connected to the functional glass, and the conductive member is connected to the first fixing member.
[0011] Furthermore, the conductive member includes a conductive connector and a conductive sheet electrically connected to the conductive connector;
[0012] The conductive sheet is electrically connected to the functional glass;
[0013] The conductive connector is connected to the first fixing member and is electrically connected to the wiring harness. Further, part of the wiring harness is distributed on the guide rail along the distribution direction of the guide rail.
[0014] Furthermore, at least one of the front edge, the rear edge and the lower edge of the functional glass is provided with an edging, and the control component is at least partially distributed along the edging on the corresponding edge; a guide is provided on the edging, and the wiring harness is detachably embedded in the guide, and the guide is used to change the distribution direction of the wiring harness.
[0015] Furthermore, the functional glass comprises an inner glass plate, a functional layer and an outer glass plate which are stacked in sequence; the control component is electrically connected to the functional layer and extends in a direction away from the functional layer.
[0016] In order to solve the above technical problems, another technical solution adopted by the present invention is:
[0017] A vehicle door comprises the above-mentioned corner window assembly.
[0018] The beneficial effects of this utility model include: providing functional glass within a corner window assembly to adjust the light transmittance of the corner window assembly. By providing a control assembly, the functional glass within the corner window assembly can be quickly adjusted to meet the varying light transmittance requirements of different users. Furthermore, a portion of the control assembly structure is distributed along at least one edge of the functional glass, thereby improving the integration between the functional glass and the control assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic structural diagram of the corner window assembly of the present invention;
[0020] Figure 2 for Figure 1 Sectional view of the AA plane;
[0021] Figure 3 for Figure 1 Enlarged view of part A;
[0022] Figure 4 for Figure 1 Enlarged view of part B;
[0023] Figure 5 for Figure 1 Magnified view of part C.
[0024] Description of labels:
[0025] 1. Functional glass; 11. Front edge; 12. Rear edge; 13. Lower edge; 14. Edge; 141. Guide member; 142. Guide groove; 15. Inner glass sheet; 16. Functional layer; 17. Outer glass sheet;
[0026] 2. Control assembly; 21. Wiring harness; 211. Connecting end; 212. Output end; 22. Connector;
[0027] 3. First fixing member;
[0028] 4. Conductive member; 41. Conductive connector; 42. Conductive sheet;
[0029] 5. Snap-fitting member; 51. Snap-fitting portion; 6. Guide rail; 7. Second fixing member. DETAILED DESCRIPTION
[0030] In order to explain the technical content, achieved objectives and effects of the present invention in detail, the following description is given in conjunction with the embodiments and the accompanying drawings.
[0031] Please refer to Figure 1-Figure 5 A vehicle door includes a corner window assembly; the corner window assembly includes functional glass 1 and a control component 2; the functional glass 1 includes a front edge 11, a rear edge 12, and a lower edge 13; the control component 2 is electrically connected to the functional glass 1, and the control component 2 is at least partially distributed along the front edge 11 and / or the rear edge 12 and / or the lower edge 13. The edges of the functional glass 1 are provided with an edge 14, and the edge 14 is integrally injection-molded with the functional glass 1. Specifically, at least one of the front edge 11, the rear edge 12, and the lower edge 13 of the functional glass 1 is provided with an edge 14, and the control component 2 is at least partially distributed along the edge 14 on the corresponding edge. Optionally, the functional glass 1 can be a dimming glass.
[0032] It is worth noting that the front edge 11 mentioned above refers to the edge of the functional glass 1 close to the vehicle hood, the rear edge 12 refers to the edge of the functional glass 1 close to the vehicle trunk, and the lower edge 13 refers to the lower edge of the window.
[0033] It can be understood that functional glass 1 is provided within the corner window assembly to adjust its light transmittance. Control assembly 2 is provided to rapidly adjust functional glass 1 within the corner window assembly to meet the varying light transmittance requirements of different users. Furthermore, a portion of control assembly 2 is positioned along at least one edge of functional glass 1, enhancing the integration between functional glass 1 and control assembly 2.
[0034] In some embodiments, the functional glass 1 comprises an inner glass sheet 15, a functional layer 16, and an outer glass sheet 17, stacked in sequence. The control assembly 2 is electrically connected to the functional layer 16 and extends away from the functional layer 16. Preferably, in the present invention, the functional glass 1 is a dimming glass, and the functional layer 16 is a dimming layer. Furthermore, the functional layer 16 is a PDLC (polymer dispersed liquid crystal). By controlling the transmittance of the functional layer 16, the overall transmittance of the functional glass 1 can be varied to meet the varying transmittance requirements of different users.
[0035] In some embodiments, the control assembly 2 includes a wiring harness 21 and a connector 22. The wiring harness 21 includes a connection end 211 and an output end 212. The output end 212 of the wiring harness 21 is electrically connected to the functional glass 1, and the wiring harness 21 is at least partially distributed along the front edge 11, / or the rear edge 12, and / or the lower edge 13. The connection end 211 of the wiring harness 21 is located outside the functional glass 1 and is electrically connected to the connector 22. The wiring harness 21 is distributed along at least one edge of the functional glass 1, which can improve the integration of the wiring harness 21 with the functional glass 1. Optionally, the distribution area of the wiring harness 21 can be selected based on the length of the wiring harness 21. When the length of the wiring harness 21 is greater than the length of any edge of the functional glass 1, the wiring harness 21 can be distributed along two adjacent edges of the functional glass 1. The connector 22 is configured to electrically connect to a controller, which is used to control the light transmittance of the functional glass 1.
[0036] In some embodiments, the corner window assembly further includes a first fixing member 3 ; the first fixing member 3 is disposed on the front edge 11, / or rear edge 12, and / or lower edge 13 of the functional glass 1; the wiring harness 21 is at least partially connected to the first fixing member 3 . The first fixing member 3 is provided to secure the connection end 211 of the wiring harness 21 to ensure the stability of the connection between the wiring harness 21 and the functional glass 1 and prevent repeated bending at the connection point between the wiring harness 21 and the functional glass 1, which could affect the service life of the wiring harness 21. Specifically, the first fixing member 3 is disposed on the hemming 14 .
[0037] In some embodiments, the connection end 211 of the wiring harness 21 is provided with a conductive member 4; the conductive member 4 is electrically connected to the functional glass 1, and the conductive member 4 is connected to the first fixing member 3. Specifically, the conductive member 4 includes a conductive connector 41 and a conductive sheet 42. The conductive sheet 42 is electrically connected to the functional layer 16 of the functional glass 1, and the conductive connector 41 is provided on the first fixing member 3 and electrically connected to the wiring harness 21.
[0038] In some embodiments, a snap-fitting member 5 for snapping into the wiring harness 21 is provided on the first fixing member 3. Specifically, the snap-fitting member 5 is provided at a position of the first fixing member 3 close to the end of the first fixing member 3, and is used to fix the wiring harness 21 and limit the degree of freedom of the wiring harness 21. By limiting the degree of freedom of the conductive member 4 and the connection between the wiring harness 21 and the conductive member 4, the occurrence of poor contact of the wiring harness 21 and the like is reduced, thereby extending the service life.
[0039] In some embodiments, the corner window assembly further includes a guide rail 6; optionally, a second fixing member 7 is provided on the guide rail 6; the second fixing member 7 is used to connect to the connector 22. Specifically, the guide rail 6 and the edging 14 are integrally injection molded, and the guide rail 6 is provided on the front edge 11 or the rear edge 12 of the functional glass 1.
[0040] In some embodiments, a portion of the wire harness 21 is distributed on the guide rail 6 along the distribution direction of the guide rail 6. When the wire harness 21 is too long, the portion of the wire harness 21 that exceeds the edge of the functional glass 1 can also be distributed along the surface of the guide rail 6. In this case, the second fixing member 7 is mainly used to fix the connector 22.
[0041] In some embodiments, a guide member 141 is provided on the edging 14, and the wiring harness 21 is detachably embedded within the guide member 141. The guide member 141 is used to change the distribution direction of the wiring harness 21. When the wiring harness 21 is too long and the length of the wiring harness 21 exceeds the lower edge 13 of the functional glass 1 and is distributed along the surface of the guide rail 6, the guide member 141 is provided at the bend between the guide rail 6 and the lower edge 13 of the functional glass 1. The guide member 141 is used to reduce the bending angle of the wiring harness 21 and limit the degree of freedom of the wiring harness 21, thereby protecting the wiring harness 21.
[0042] In some embodiments, the clamping member 5 includes at least two oppositely disposed clamping portions 51 , a clamping channel is formed between each two oppositely disposed clamping portions 51 , and the wiring harness 21 is embedded in the clamping channel.
[0043] The first embodiment of the present invention is:
[0044] A vehicle door includes a corner window assembly; the corner window assembly includes functional glass 1, a control assembly 2, a guide rail 6, and a first fixing member 3; the functional glass 1 includes a front edge 11, a rear edge 12, and a lower edge 13; the control assembly 2 is electrically connected to the functional glass 1, and portions of the control assembly 2 are distributed along the lower edge 13 and the guide rail 6. The functional glass 1 is provided with a rim 14 on its edge, and the guide rail 6 is integrally injection-molded with the functional glass 1 through the rim 14; the guide rail 6 is provided on the front edge 11 of the functional glass 1; the lower edge 13 of the functional glass 1 is provided with a first fixing member 3, which is disposed on the rim 14.
[0045] In this embodiment, the functional glass 1 includes an inner glass plate 15 , a functional layer 16 and an outer glass plate 17 stacked in sequence; the control component 2 is electrically connected to the functional layer 16 and extends in a direction away from the functional layer 16 .
[0046] In this embodiment, the control assembly 2 includes a wiring harness 21 and a connector 22. The wiring harness 21 includes a connection end 211 and an output end 212. The output end 212 of the wiring harness 21 is electrically connected to the functional glass 1 via a conductive member 4. Part of the wiring harness 21 is distributed along the lower edge 13, while the remaining part is distributed along the surface of the guide rail 6. The connection end 211 is located outside the functional glass 1 and electrically connected to the connector 22. Specifically, the conductive member 4 includes a conductive connector 41 and a conductive sheet 42. The conductive sheet 42 is electrically connected to the functional layer 16 of the functional glass 1. The conductive connector 41 is disposed on the first fixing member 3 and electrically connected to the wiring harness 21.
[0047] In this embodiment, the first fixing member 3 is provided with a snap-fitting member 5 for snapping with the wiring harness 21. The edge 14 is provided with a guide member 141 having an arc-shaped guide groove 142 therein, into which the wiring harness 21 is removably embedded. The guide rail 6 is provided with a second fixing member 7, and correspondingly, the second fixing member 7 is also provided with a snap-fitting member 5. Specifically, the output end 212 of the wiring harness 21 and the conductive member 4 are both fixed to the first fixing member 3. The wiring harness 21 is distributed along the lower edge 13 of the functional glass 1. The middle portion of the wiring harness 21 is embedded in the guide member 141 and reverses direction. The remaining portion of the wiring harness 21 is distributed along the surface of the guide rail 6 and connected to the snap-fitting member 5 on the second fixing member 7. The connection end 211 of the wiring harness 21 is electrically connected to the plug connector 22, which is fixed to the second fixing member 7.
[0048] The working principle of this utility model is:
[0049] By setting up functional glass 1 with dimming function and distributing control components 2 on the edge of the functional glass 1 and the guide rail 6, the setting of the control component 2 can extend the distance between the controller and the functional glass 1, so that the user can quickly adjust the transmittance of the functional glass 1.
[0050] The second embodiment of the present invention is:
[0051] The difference between this embodiment and the first embodiment is that the distribution position of the control component 2 is different.
[0052] In this embodiment, the wiring harness 21 is only distributed on the front edge 11, the rear edge 12 or the lower edge 13, and a first fixing member 3 is provided on the corresponding edge. According to the actual length, multiple second fixing members 7 can be optionally provided at the corresponding positions of the corner window assembly.
[0053] In summary, the present invention provides a corner window assembly and vehicle door that utilizes functional glass instead of conventional standard glass to adjust the light transmittance of the corner window, thereby ensuring both vehicle privacy and light transmission. Furthermore, the control components are distributed along the edges of the functional glass and the surface of the guide rails, extending the distance between the controller and the functional glass, allowing the user to adjust the light transmittance of the functional glass in real time from outside the glass. Confining the control components to the corner window assembly limits their freedom, extends their service life, and improves their integration with the corner window assembly.
[0054] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent transformations made using the contents of the description and drawings of the present invention, or directly or indirectly applied in the relevant technical field, are also included in the patent protection scope of the present invention.
Claims
1. A corner window assembly, characterized in that: Includes functional glass and control components; The functional glass includes a front edge portion, a rear edge portion and a lower edge portion; The control component is electrically connected to the functional glass, and the control component is at least partially distributed along the front edge portion and / or the rear edge portion and / or the lower edge portion.
2. A corner window assembly according to claim 1, characterized in that: The control assembly includes a wiring harness and a connector; The wiring harness includes a connection end and an output end; The output end of the wiring harness is electrically connected to the functional glass, and the wiring harness is at least partially distributed along the front edge portion and / or the rear edge portion and / or the lower edge portion; The connection end of the wiring harness is located outside the functional glass and is electrically connected to the connector.
3. The corner window assembly according to claim 2, characterized in that: The corner window assembly further includes a first fixing member; The front edge portion and / or the rear edge portion and / or the lower edge portion are provided with the first fixing member; The wiring harness is at least partially connected to the first fixing member.
4. The corner window assembly according to claim 3, characterized in that: The first fixing member is provided with a clamping member for clamping with the wiring harness.
5. The corner window assembly according to claim 3, characterized in that: The corner window assembly also includes a guide rail; A second fixing member is provided on the guide rail; The second fixing member is used to connect with the plug-in member.
6. The corner window assembly according to claim 4, characterized in that: The clamping member includes at least two clamping parts that are arranged opposite to each other, and a clamping channel is formed between every two clamping parts that are arranged opposite to each other, and the wiring harness of the control component is embedded in the clamping channel.
7. The corner window assembly according to claim 3, characterized in that: The connecting end of the wiring harness is provided with a conductive member; The conductive member is electrically connected to the functional glass, and the conductive member is connected to the first fixing member.
8. The corner window assembly according to claim 7, characterized in that: The conductive member includes a conductive connector and a conductive sheet electrically connected to the conductive connector; The conductive sheet is electrically connected to the functional glass; The conductive connector is connected to the first fixing member and is electrically connected to the wiring harness.
9. The corner window assembly according to claim 5, characterized in that: Parts of the wire harness are distributed on the guide rail along a distribution direction of the guide rail.
10. A corner window assembly according to any one of claims 2 to 9, characterized in that: At least one of the front edge, the rear edge, and the lower edge of the functional glass is provided with an edge, and the control component is at least partially distributed along the edge on the corresponding edge; A guide piece is provided on the hemming, and the wire harness is detachably embedded in the guide piece, and the guide piece is used to change the distribution direction of the wire harness.
11. The corner window assembly according to claim 1, characterized in that: The functional glass comprises an inner glass plate, a functional layer and an outer glass plate which are stacked in sequence; The control component is electrically connected to the functional layer and extends in a direction away from the functional layer.
12. A vehicle door, characterized in that: It comprises a corner window assembly as described in any one of claims 1 to 11.