Sky screen ceiling assembly and vehicle
By using a combination of solid and liquid adhesives, the problem of loose connection between the auxiliary support and the skylight glass was solved, resulting in a more stable connection. This enhanced the technology for a secure connection between the auxiliary support and the skylight glass, resolved the problem of unstable connection in existing technologies, and achieved greater stability and adaptability.
Patent Information
- Application Number
- CN202520283887.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-21
AI Technical Summary
In existing technologies, the connection between the auxiliary support and the canopy glass is prone to loosening, which can lead to the risk of the canopy falling off. This is especially true when the canopy glass is curved or has an angle with the canopy, resulting in incomplete connection and low bonding stability.
A combination of solid and liquid adhesives is used for bonding. Solid adhesive initially fixes the auxiliary support to the canopy glass, while liquid adhesive fills the gaps to further secure the connection and ensure its stability.
It improves the stability of the connection between the auxiliary support and the skylight glass, prevents detachment, adapts to the connection requirements of different spacing and angles, and enhances the stability and reliability of the bonding.
Smart Images

Figure CN223720811U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of vehicles, in particular to a sky roof assembly and a vehicle. BACKGROUND
[0002] With the rapid development of vehicles, the roof of the vehicle, especially the car, is often fixed to the sky glass by a mother-son buckle. The thickness of the mother-son buckle after being buckled is limited, and the maximum thickness is usually designed to be 6.6 mm. When the distance between the roof and the sky glass exceeds the thickness of the mother-son buckle after being buckled, the mother-son buckle cannot be used, that is, the connection and fixation between the roof and the sky glass cannot be achieved. In the related art, an auxiliary support is added between the roof and the sky glass, and the connection and fixation between the roof and the glass are achieved under the joint action of the auxiliary support and the mother-son buckle.
[0003] However, the connection between the auxiliary support and the sky glass is prone to loosening due to long-term stress, and the adhesion stability is low, thereby increasing the risk of roof falling off. Especially when the sky glass is arc-shaped or the sky glass and the roof have an included angle, there is a gap between the connection of the auxiliary support and the sky glass, the adhesion is not complete, and the adhesion fails after long-term use, thereby making the roof falling off phenomenon more obvious. CONTENT OF THE UTILITY MODEL
[0004] Therefore, it is necessary to overcome the defects of the prior art and provide a sky roof assembly and a vehicle, which can improve the connection stability of the auxiliary support and the sky glass.
[0005] A sky roof assembly, comprising a sky glass, a connection assembly and a roof, wherein the roof is connected to the sky glass through the connection assembly; the connection assembly comprises:
[0006] an auxiliary support;
[0007] an adhesion structure, wherein the auxiliary support is connected to the sky glass through the adhesion structure, the adhesion structure comprises a first adhesive and a second adhesive, the first adhesive is a solid adhesive and is connected between the auxiliary support and the sky glass, and the second adhesive is a liquid adhesive and is filled and solidified in a gap region between the auxiliary support and the sky glass; and
[0008] a mother-son buckle, wherein the mother-son buckle comprises a first buckle and a second buckle in clamping cooperation, the first buckle is connected to the auxiliary support, and the second buckle is connected to the roof.
[0009] In one embodiment, the auxiliary support is provided with a first connecting surface facing the sky glass, the first connecting surface is connected to the sky glass through the adhesion structure, the first connecting surface is provided with a protruding portion protruding towards the sky glass, and the protruding portion abuts against the sky glass.
[0010] In one of the embodiments, the first adhesive is 3M glue or PVB glue; and the second adhesive is PU glue, TPU glue, PVB glue, EVA or SGP glue.
[0011] In one of the embodiments, the auxiliary support is integrally injection molded; the first connecting surface is a plane, and the auxiliary support is formed with a hollow hole, and the extension direction of the hollow hole is parallel to the first connecting surface.
[0012] In one of the embodiments, the auxiliary support is further provided with a second connecting surface opposite to the first connecting surface, the second connecting surface is adhesively connected with the first buckle, the second connecting surface is provided with a limiting portion surrounding the first buckle.
[0013] In one of the embodiments, the auxiliary support is further provided with a second connecting surface opposite to the first connecting surface, the first buckle is slidingly arranged on the second connecting surface along a direction parallel to the second connecting surface; the second connecting surface is provided with a first clamping portion on each of the opposite sides in a direction perpendicular to the sliding direction, the first buckle is provided with a second clamping portion on each of the opposite sides, the second clamping portion is in clamping cooperation with the first clamping portion; the second connecting surface is provided with a positioning portion on each of the opposite sides along the sliding direction, and the two positioning portions are in positioning cooperation with the first buckle along the sliding direction.
[0014] In one of the embodiments, the two positioning portions are respectively a first positioning portion and a second positioning portion, the distance between the position farthest from the second connecting surface of the first positioning portion and the second connecting surface is S1, the distance between the position farthest from the second connecting surface of the second positioning portion and the second connecting surface is S2, and S1 < S2.
[0015] The side surface of the first positioning portion opposite to the second positioning portion is a guide surface.
[0016] In one of the embodiments, the connecting assembly is provided in plurality, and the plurality of connecting assemblies are respectively arranged at different positions of the canopy glass; the heights h2 of the auxiliary supports of the plurality of connecting assemblies are not completely same.
[0017] In one of the embodiments, each of the auxiliary supports is provided with a corresponding marking portion.
[0018] A vehicle comprising the canopy roof assembly.
[0019] In the aforementioned panoramic roof assembly and vehicle, when the auxiliary support is bonded to the panoramic glass via an adhesive structure, the auxiliary support is first connected to the panoramic glass using a first adhesive. This first adhesive is a solid adhesive, which initially secures the auxiliary support to the panoramic glass, ensuring the accurate positioning of the auxiliary support on the panoramic glass. Then, a second adhesive is applied to the gap between the auxiliary support and the panoramic glass. After the second adhesive cures, it further secures the auxiliary support to the panoramic glass. Therefore, not only is a solid first adhesive used to connect the auxiliary support and the panoramic glass support, but a liquid second adhesive is also used to fill the gap between the auxiliary support and the panoramic glass. This second adhesive effectively fills the gaps around the first adhesive, ensuring that there are virtually no gaps between the auxiliary support and the panoramic glass, thus allowing the auxiliary support to be securely installed on the panoramic glass. Attached Figure Description
[0020] Figure 1 This is a structural diagram of a canopy assembly according to an embodiment of this application.
[0021] Figure 2 This is a diagram showing the connection structure between the auxiliary support and the first buckle in a canopy assembly according to an embodiment of this application.
[0022] Figure 3 This is a diagram showing the connection structure between the auxiliary support and the first buckle in a canopy assembly according to another embodiment of this application.
[0023] Figure 4 This is a structural diagram showing the connection between the auxiliary support and the first buckle in a canopy assembly according to another embodiment of this application.
[0024] Figure 5 for Figure 4 The exploded structure diagram shown.
[0025] Figure 6 This is a structural diagram showing a plurality of connecting components arranged on a skylight glass according to an embodiment of this application.
[0026] Figure 7 for Figure 6 The diagram shows the structure of an auxiliary support for a connecting component in the structure shown.
[0027] Figure 8 for Figure 6 The diagram shows the structure of the auxiliary support for another connecting component in the structure shown.
[0028] Figure 9 for Figure 6 The diagram shows the structure of an auxiliary support for another connecting component in the structure shown.
[0029] Figure 10 for Figure 6 The diagram shows the structure of an auxiliary support for another connecting component in the structure shown.
[0030] 10, the curtain glass; 20, the connecting assembly; 21, the auxiliary support; 211, the first connecting surface; 2111, the protrusion; 212, the hollow hole; 213, the second connecting surface; 2131, the limiting part; 2132, the first clamping part; 2133, the first positioning part; 21331, the guide surface; 2134, the second positioning part; 214, the marking part; 22, the adhesive structure; 221, the first adhesive; 23, the hook and loop fastener; 231, the first buckle; 2311, the second clamping part; 232, the second buckle; 24, the spacing area; 30, the ceiling. DETAILED DESCRIPTION
[0031] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in a number of ways beyond the specific embodiments described and illustrated herein, and the present application is not limited to the specific embodiments described below. It is to be understood that other implementations can be employed and that structural and functional modifications can be made without departing from the scope of the present application.
[0032] Reference Figure 1 An embodiment of the present application provides a curtain ceiling assembly. The curtain ceiling assembly comprises a curtain glass 10, a connecting assembly 20 and a ceiling 30. The ceiling 30 is connected to the curtain glass 10 through the connecting assembly 20. The connecting assembly 20 comprises an auxiliary support 21, an adhesive structure 22 and a hook and loop fastener 23. The auxiliary support 21 is connected to the curtain glass 10 through the adhesive structure 22. The adhesive structure 22 comprises a first adhesive 221 and a second adhesive. The first adhesive 221 is solid adhesive and is arranged between the auxiliary support 21 and the curtain glass 10. The second adhesive is liquid adhesive and is filled and solidified in a spacing area 24 between the auxiliary support 21 and the curtain glass 10. The hook and loop fastener 23 comprises a first buckle 231 and a second buckle 232 which are connected in a clamping manner. The first buckle 231 is connected to the auxiliary support 21, and the second buckle 232 is connected to the ceiling 30.
[0033] When the auxiliary support 21 is connected to the awning glass 10 through the adhesive structure 22, the auxiliary support 21 is first connected to the awning glass 10 through the first adhesive 221, and the first adhesive 221 is a solid adhesive that can preliminarily fix the auxiliary support 21 to the awning glass 10 and ensure the accuracy of the installation position of the auxiliary support 21 on the awning glass 10. Then, the second adhesive is filled in the interval area 24 between the auxiliary support 21 and the awning glass 10, and the second adhesive can further fix the auxiliary support 21 to the awning glass 10 after solidification. As can be seen, not only is the first adhesive 221 in a solid state connected to the auxiliary support 21 and the awning glass 10, but also the second adhesive in a liquid state is filled between the auxiliary support 21 and the awning glass 10. The second adhesive can fully compensate for the gap area outside the first adhesive 221 and ensure that there is almost no gap between the auxiliary support 21 and the awning glass 10, so that the auxiliary support 21 is stably installed on the awning glass 10.
[0034] In addition, whether the awning glass 10 is arc-shaped or planar, the connection between the auxiliary support 21 and the awning glass 10 can achieve almost no gap under the mutual action of the first adhesive 221 and the second adhesive.
[0035] Alternatively, the adhesive connection between the auxiliary support 21 and the awning glass 10 should meet the requirements of a tensile force ≥100 N and a shear force ≥250 N. In this way, the adhesive connection between the auxiliary support 21 and the awning glass 10 is stable and less likely to fall off.
[0036] In addition, since the connection assembly 20 in the embodiment includes the auxiliary support 21, when the distance H between the awning glass 10 and the ceiling 30 is greater than the height h1 of the snap buckle 23, the height h2 of the auxiliary support 21 and / or the height h1 of the snap buckle 23 can be adjusted according to the difference between H and h1 to achieve the connection and fixation of the awning glass 10 and the ceiling 30 through the connection assembly 20.
[0037] Please refer to Figure 1 or Figure 3 In one embodiment, the auxiliary support 21 is provided with a first connecting surface 211 facing the awning glass 10. The first connecting surface 211 is connected to the awning glass 10 through the adhesive structure 22, and the first connecting surface 211 is provided with a protruding portion 2111 protruding towards the awning glass 10. The protruding portion 2111 abuts against the awning glass 10. In this way, in the step of adhering the auxiliary support 21 to the awning glass 10, the protruding portion 2111 is positioned by abutting against the awning glass 10, so that the first connecting surface 211 and the awning glass 10 form a gap. The size of the gap depends on the height h3 of the protruding portion 2111. According to the height h3 of the protruding portion 2111, the thickness of the adhesive structure 22 can be flexibly adjusted and controlled.
[0038] Optionally, the number of the protrusions 2111 includes but is not limited to 1, 2, 3, 4 or more, which can be flexibly adjusted and set according to actual needs, and is not limited herein. In this embodiment, the protrusions 2111 are for example 4, and are respectively located at the four corners of the first connecting surface 211.
[0039] H = h1 + h2 + h3.
[0040] h3 includes but is not limited to 0.8mm to 1.0mm, and is for example 0.8mm, 0.9mm or 1.0mm, etc. In this way, h3 is set to be larger, and the thickness of the adhesive structure 22 is correspondingly larger, so as to ensure that the auxiliary support 21 is stably bonded to the canopy glass 10; in addition, h3 is not set to be too large, so as to avoid that the amount of the second adhesive is too large and the solidification time of the adhesive is increased.
[0041] The first adhesive 221 includes but is not limited to a tape, and the thickness of the tape is ≥ h3. In this way, when the auxiliary support 21 is connected to the canopy glass 10 through the first adhesive 221, the first adhesive 221 plays a role of pre-positioning, realizes that the auxiliary support 21 and the canopy glass 10 are quickly connected together, and can prevent the auxiliary support 21 from moving relative to the canopy glass 10 before the second adhesive is solidified. Optionally, the thickness of the tape is for example 0.8mm to 1.4mm, and is for example 0.8mm, 0.9mm, 1.0mm, 1.2mm or 1.4mm, etc.
[0042] In this embodiment, the first adhesive 221 is taken as a tape as an example for expansion and introduction, and the number of the tape includes but is not limited to 1, 2, 3 or any other number, which can be flexibly adjusted and set according to actual needs. The connection position of the tape on the first connecting surface 211 includes but is not limited to various positions such as the middle, the side or the corner. As a specific example, the tape is set to two, and the two tapes are respectively arranged on the opposite sides of the first connecting surface 211.
[0043] On the basis of the foregoing embodiments, the first adhesive includes but is not limited to 3M glue or PVB glue and various types of solid glue. Specifically, the first adhesive 221 is preferably 3M glue, and is for example 3M double-sided tape. In addition, the second adhesive includes but is not limited to PU glue, TPU glue, PVB glue, EVA or SGP glue and various types of liquid glue. In this embodiment, the second adhesive is specifically selected to be PU glue, because PU glue has strong plasticity, and the bonding performance after solidification is stronger than the adhesive performance of 3M glue, so as to ensure that the auxiliary support 21 is more stably bonded to the canopy glass 10.
[0044] The portions of the sky glass 10 and the ceiling 30 corresponding to the installation positions of the auxiliary support 21 can be arranged in parallel to each other or at an angle, which is not limited herein. When the portions of the sky glass 10 and the ceiling 30 corresponding to the installation positions of the auxiliary support 21 are arranged at an angle, the auxiliary support 21 in this embodiment is further provided with a second connecting surface 213 arranged opposite to the first connecting surface 211, and the first connecting surface 211 and the second connecting surface 213 are arranged at an angle. The angle between the first connecting surface 211 and the second connecting surface 213 is equal to the angle between the portions of the sky glass 10 and the ceiling 30 corresponding to the installation positions of the auxiliary support 21. In this way, the sky glass 10, the connecting assembly 20 and the ceiling 30 can be connected and fixed together.
[0045] In addition, the angle between the first connecting surface 211 and the second connecting surface 213 can be flexibly adjusted and set according to the angle between the portions of the sky glass 10 and the ceiling 30 corresponding to the installation positions of the auxiliary support 21.
[0046] In addition, when the portions of the sky glass 10 and the ceiling 30 corresponding to the installation positions of the auxiliary support 21 are arranged in parallel to each other, the first connecting surface 211 and the second connecting surface 213 are arranged in parallel to each other.
[0047] Please refer to Figure 2 and Figure 3 In some embodiments, the auxiliary support 21 is integrally injection molded, which can realize mass production, improve production efficiency and reduce cost. Alternatively, the first connecting surface 211 is a flat surface, and the auxiliary support 21 is formed with a hollow hole 212. The number of the hollow holes 212 can be flexibly adjusted and set according to actual needs, for example, one or more. The number of the hollow holes 212 is specifically, for example, two, three or more.
[0048] The extension direction of the hollow hole 212 is parallel to the first connecting surface 211.
[0049] It should be noted that the "parallel" in this embodiment is not strictly "parallel" in the mathematical sense, but can also allow a deviation of ±10°.
[0050] In this way, since the hollow hole 212 is formed on the auxiliary support 21, when the height h2 of the auxiliary support 21 is too large, for example, greater than 3 mm, the shrinkage marks on the surface after injection molding can be avoided, in other words, the surface of the auxiliary support 21 can be made more flat, thereby ensuring the bonding stability of the snap buckle 23 on the auxiliary support 21.
[0051] On the basis of the foregoing embodiments, the material of the auxiliary support 21 includes, but is not limited to, common plastic materials such as PA66+GF30, PA6+GF30, PBT+GF30, PC+ASA, etc., which can be flexibly adjusted and set according to actual needs, and are not limited herein.
[0052] Referring to Figure 2 In an embodiment, the auxiliary support 21 is further provided with a second connecting surface 213 opposite to the first connecting surface 211. The second connecting surface 213 is adhesively connected with the first buckle 231. The second connecting surface 213 can be provided with a limiting portion 2131 surrounding the first buckle 231. In this way, in the step of connecting and combining the first buckle 231 and the auxiliary support 21, the limiting portion 2131 can play a limiting role, facilitating manual alignment of the first buckle 231 and the auxiliary support 21, so as to ensure the accurate installation position of the first buckle 231 on the auxiliary support 21, and facilitate stable connection of the first buckle 231 to the auxiliary support 21.
[0053] Optionally, the limiting portion 2131 includes, but is not limited to, a limiting rib, a limiting protrusion, or a limiting mark, etc., which can be flexibly adjusted and set according to actual needs.
[0054] Optionally, the limiting portion 2131 can be one and arranged circumferentially around the first buckle 231, or multiple and arranged circumferentially around the first buckle 231 in sequence.
[0055] In some embodiments, the second connecting surface 213 is a plane. In this way, the first buckle 231 can be stably adhesively connected to the second connecting surface 213. In order to adhesively connect the first buckle 231 to the second connecting surface 213, the first buckle 231 is optionally provided with various types of solid glue including, but not limited to, 3M glue or PVB glue, etc.
[0056] It should be noted that the first buckle 231 is not limited to the above-mentioned adhesion mode for fixing to the auxiliary support 21, but can also be connected to the auxiliary support 21 by, for example, clamping, or connected to the auxiliary support 21 by, for example, a fastener such as a screw or a pin.
[0057] Referring to Figure 4 and Figure 5In one embodiment, the auxiliary support 21 is further provided with a second connecting surface 213 opposite to the first connecting surface 211. The first clasp 231 is slidingly arranged on the second connecting surface 213 along a direction parallel to the second connecting surface 213. The second connecting surface 213 is provided with first clamping portions 2132 on opposite sides along a direction perpendicular to the sliding direction X, and the opposite sides of the first clasp 231 are provided with second clamping portions 2311 which are clamped and matched with the first clamping portions 2132. The second connecting surface 213 is provided with positioning portions on opposite sides along the sliding direction X, and the two positioning portions are positioned and matched with the first clasp 231 along the sliding direction. In this way, the first clasp 231 is slidingly arranged and clamped on the second connecting surface 213 during assembly to the auxiliary support 21, and the assembly operation is more convenient. In addition, after the first clasp 231 is assembled in place, the two positioning portions are positioned and matched with the first clasp 231 along the sliding direction, which can effectively prevent the first clasp 231 from slipping off the auxiliary support 21.
[0058] In one embodiment, the two positioning portions are respectively a first positioning portion 2133 and a second positioning portion 2134, the distance between the part farthest from the second connecting surface 213 of the first positioning portion 2133 and the second connecting surface 213 is S1, and the distance between the part farthest from the second connecting surface 213 of the second positioning portion 2134 and the second connecting surface 213 is S2, S1 < S2.
[0059] In this way, during the step of assembling the first clasp 231 into the auxiliary support 21, since S1 < S2, the first clasp 231 can be slidingly assembled from one side of the first positioning portion 2133, which facilitates the assembly of the first clasp 231 into the auxiliary support 21.
[0060] S1 is, for example, set to 0.3mm to 0.5mm. S2 is, for example, set to ≥2mm, but cannot exceed the height of the first clasp 231, so as not to cause interference during installation on the canopy glass 10.
[0061] In addition, the side of the first positioning portion 2133 opposite to the second positioning portion 2134 is provided with a guide surface 21331. The guide surface 21331 plays a guiding role during contact with the first clasp 231, and realizes smooth insertion of the first clasp 231 into the auxiliary support 21.
[0062] Optionally, the guide surface 21331 includes but is not limited to an arc surface or a guide inclined surface obliquely arranged relative to the second connecting surface 213, etc.
[0063] It should be noted that the connection mode of the second clasp 232 with the ceiling 30 is similar to the connection mode of the first clasp 231 with the auxiliary support 21, which will not be described here.
[0064] Please refer to Figure 6In one embodiment, the plurality of connecting assemblies 20 are arranged at different positions of the dome glass 10. In this way, the plurality of connecting assemblies 20 can stably connect the ceiling 30 to the dome glass 10.
[0065] In one embodiment, the plurality of connecting assemblies 20 are arranged at different positions of the dome glass 10. In this way, the plurality of connecting assemblies 20 can stably connect the ceiling 30 to the dome glass 10.
[0066] In one embodiment, each auxiliary support 21 is provided with a corresponding marking portion 214. In this way, the marking portion 214 can distinguish each auxiliary support 21, so that the height h2 and the connecting position of each auxiliary support 21 on the dome glass 10 can be quickly identified, and the plurality of auxiliary supports 21 can be quickly and accurately installed at different positions of the dome glass 10.
[0067] Please refer to Figures 6 to 10 Optionally, the marking portion 214 includes, but is not limited to, at least one of a number, a pattern, and a protrusion arranged on the auxiliary support 21. In one embodiment, the marking portion 214 is a protrusion arranged on the auxiliary support 21. For auxiliary supports 21 with different heights h2, the arrangement position of the marking portion 214 on the auxiliary support 21 is different, as shown in Figures 7 to 10 In other words, according to the arrangement position of the marking portion 214 on the auxiliary support 21, the height h2 and the connecting position of each auxiliary support 21 on the dome glass 10 can be quickly identified.
[0068] In one embodiment, another embodiment of the present application provides a vehicle, including but not limited to a car, a bus, a new energy vehicle, etc. The vehicle includes the dome ceiling assembly of any one of the above embodiments.
[0069] When the auxiliary support 21 is connected to the sunroof glass 10 by the adhesive structure 22, the auxiliary support 21 is first connected to the sunroof glass 10 by the solid adhesive, which can preliminarily fix the auxiliary support 21 to the sunroof glass 10 and ensure the accuracy of the installation position of the auxiliary support 21 on the sunroof glass 10; then the second adhesive is filled in the interval area 24 between the auxiliary support 21 and the sunroof glass 10, and the second adhesive can further fix the auxiliary support 21 to the sunroof glass 10 after solidification. As can be seen, not only the solid first adhesive 221 is connected to the auxiliary support 21 and the sunroof glass 10 support, but also the liquid second adhesive is filled between the auxiliary support 21 and the sunroof glass 10, which can fully make up for the gap area of the periphery of the first adhesive 221 and ensure that there is almost no gap between the auxiliary support 21 and the sunroof glass 10, so that the auxiliary support 21 is stably installed on the sunroof glass 10.
[0070] It should be noted that the "protruding part 2111" in the embodiment can be "a part of the auxiliary support 21", that is, the "protruding part 2111" is integrally formed with "other parts of the auxiliary support 21"; or it can be a separate component that can be separated from "other parts of the auxiliary support 21", that is, the "protruding part 2111" can be independently manufactured and then combined with "other parts of the auxiliary support 21" to form a whole.
[0071] It should be noted that if an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or there can be an intervening element. If an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element. If present, the terms "vertical", "horizontal", "upper", "lower", "left", "right", and similar terms as used herein are for purposes of description only and do not indicate an exclusive orientation.
[0072] The technical features of the above-described embodiments can be combined in any manner. To make the description concise, all possible combinations of the technical features in the above-described embodiments are not described, but it should be considered that any combination of the technical features is within the scope of the present disclosure, as long as the combination does not cause contradiction.
[0073] The above-described embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the application. It should be noted that for those skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the protection scope of the present application. Therefore, the patent protection scope of the present application should be subject to the appended claims.
Claims
1. A skyroof assembly comprising a skyroof glazing, a connection assembly and a roof, the roof being connected to the skyroof glazing by means of the connection assembly; characterized in that, The connecting assembly comprises: an auxiliary support; an adhesive structure connecting the auxiliary support and the sunroof glass, the adhesive structure comprising a first adhesive and a second adhesive, the first adhesive being solid adhesive and connecting between the auxiliary support and the sunroof glass, and the second adhesive being liquid adhesive and filling a gap between the auxiliary support and the sunroof glass; a snap buckle comprising a first snap buckle and a second snap buckle in clasp cooperation, the first snap buckle being connected with the auxiliary support, and the second snap buckle being connected with the roof.
2. The sky roof assembly of claim 1, wherein, The auxiliary support is provided with a first connecting surface facing the sunroof glass, the first connecting surface being connected with the sunroof glass through the adhesive structure, and the first connecting surface is provided with a protruding portion protruding towards the sunroof glass, and the protruding portion abuts against the sunroof glass.
3. The overhead canopy assembly of claim 1 or 2, wherein, The first adhesive is 3M adhesive or PVB adhesive, and the second adhesive is PU adhesive, TPU adhesive, PVB adhesive, EVA or SGP adhesive.
4. The sky roof assembly of claim 2, wherein, The auxiliary support is integrally injection molded, the first connecting surface is a plane, and the auxiliary support is formed with a hollow hole, and the extension direction of the hollow hole is parallel to the first connecting surface.
5. The sky roof assembly of claim 2, wherein, The auxiliary support is further provided with a second connecting surface opposite to the first connecting surface, the second connecting surface is adhesively connected with the first snap buckle, and the second connecting surface is provided with a limiting portion surrounding the first snap buckle.
6. The sky roof assembly of claim 2, wherein, The auxiliary support is further provided with a second connecting surface opposite to the first connecting surface, the first snap buckle is slidingly arranged on the second connecting surface along a direction parallel to the second connecting surface, the second connecting surface is provided with a first clamping portion on each of opposite sides in a direction perpendicular to the sliding direction, the first snap buckle is provided with a second clamping portion on each of opposite sides, the second clamping portion is clasp cooperated with the first clamping portion, and the second connecting surface is provided with a positioning portion on each of opposite sides in the sliding direction, and the two positioning portions are positioned and cooperated with the first snap buckle along the sliding direction.
7. The sky roof assembly of claim 6, wherein, The two positioning portions are a first positioning portion and a second positioning portion, the distance between the position farthest from the second connecting surface of the first positioning portion and the second connecting surface is S1, the distance between the position farthest from the second connecting surface of the second positioning portion and the second connecting surface is S2, and S1 < S2. The side surface of the first positioning portion opposite to the second positioning portion is a guide surface.
8. The sky roof assembly of claim 1, wherein, The connecting assembly is provided in plurality, the plurality of connecting assemblies are arranged at different positions of the sunroof glass respectively, and the heights h2 of the auxiliary supports of the plurality of connecting assemblies are not completely same.
9. The sky roof assembly of claim 8, wherein, Each of the auxiliary supports is provided with a corresponding marking portion.
10. A vehicle characterized by comprising: The vehicle comprises the sunroof assembly according to any one of claims 1 to 9.