Glass assembly and vehicle

By using an insert snap-fit ​​structure to fix the decorative parts to the glass body, the problems of difficult installation and high maintenance costs of decorative parts are solved, achieving convenient installation and low-cost maintenance.

CN119037103BActive Publication Date: 2025-12-09FUYAO GLASS IND GROUP CO LTD
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Patent Information

Application Number
CN202411287202.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-12-09
Estimated Expiration
2044-09-13

AI Technical Summary

Technical Problem

In existing technologies, decorative parts are fixed to the windshield by adhesive bonding, which makes installation difficult, replacement difficult and expensive. Furthermore, if the decorative parts or the glass are damaged, they must be replaced at the same time, resulting in high maintenance costs.

Method used

The decorative element is fixed to the glass body by using a first and second insert snap-fit ​​structure, which simplifies the installation process and reduces the difficulty of replacement, and enables independent replacement of the decorative element and the glass body.

Benefits of technology

It improves the ease of installation and disassembly of decorative parts and glass bodies, reduces maintenance costs, increases production efficiency, and provides more options for appearance design.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides a glass assembly and a vehicle. The glass assembly comprises a first assembly component and a second assembly component. The first assembly component comprises a glass body and a first insert fixedly connected to one side of the glass body, and the second assembly component comprises a second insert and a decoration piece fixedly connected to the second insert. The second insert faces the first insert and is clamped with the first insert, and the decoration piece surrounds at least part of the edge of the glass body. The glass assembly of the application is clamped with the second insert and the first insert, so that the decoration piece is fixed on the glass body, and the assembly is convenient and the maintenance cost is low.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of vehicles, in particular to a glass assembly and a vehicle. BACKGROUND

[0002] The periphery of the windshield of an automobile is usually provided with a decorative piece. The decorative piece is bonded to the windshield by an adhesive, which results in a large difficulty in installation and later replacement of the decorative piece, and if the decorative piece or the windshield is damaged, the decorative piece and the windshield need to be replaced at the same time, which is costly. SUMMARY

[0003] The present application provides a glass assembly and a vehicle. The glass assembly is clamped with a second insert and a first insert, so as to fix the decorative piece on the glass body, which is convenient to assemble and low in maintenance cost.

[0004] In a first aspect, the present application provides a glass assembly, which comprises a first assembly component and a second assembly component;

[0005] The first assembly component comprises a glass body and a first insert, the first insert being fixedly connected to one side of the glass body, and the second assembly component comprises a second insert and a decorative piece, the decorative piece being fixedly connected to the second insert;

[0006] The second insert faces the first insert and is clamped with the first insert, and the decorative piece surrounds at least part of the edge of the glass body.

[0007] In a possible implementation, the first insert comprises a second inner surface and a second outer surface arranged oppositely, the second inner surface facing the glass body; the first insert further comprises a first clamping protrusion, the first clamping protrusion being protruded from the second outer surface away from the second inner surface, the protruded part of the first clamping protrusion being arranged in a bent manner and protruding in a first direction, so as to form a first clamping portion;

[0008] The second insert comprises a top wall and a peripheral side wall connected to the periphery of the top wall, the peripheral side wall being arranged in a bent manner relative to the top wall and located at one side of the top wall; the second insert further comprises a first clamping port, the first clamping port being located at the edge of the top wall and penetrating the top wall, and part of the inner wall of the first clamping port protruding in the first direction, so as to form a second clamping portion;

[0009] The protruding direction of the first clamping portion is opposite to the protruding direction of the second clamping portion, the first clamping portion is located in the first clamping port and clamped with the second clamping portion.

[0010] In a possible implementation, the first insert further comprises a second clamping protrusion, the second clamping protrusion being arranged in a spaced manner with the first clamping protrusion in the first direction, the second clamping protrusion being located at the edge of the first insert and protruding in the first direction;

[0011] The second insert further comprises a second clamping interface, which is spaced apart from the first clamping interface in the first direction, and which is located at the edge of the top wall and extends through the peripheral side wall, and a portion of the inner wall of the second clamping interface can protrude in the first direction to form a third clamping portion;

[0012] The protruding direction of the second clamping protrusion is opposite to the protruding direction of the third clamping portion, and at least a portion of the second clamping protrusion is located in the second clamping interface and clamped with the third clamping portion.

[0013] In a possible implementation, the second clamping protrusion is spaced apart from the first clamping protrusion in a second direction, and the second direction intersects the first direction.

[0014] In a possible implementation, the second clamping portion and the third clamping portion are spaced apart in the first direction, and the second clamping portion is located at one end of the second insert, and the third clamping portion is located at the other end of the second insert.

[0015] In a possible implementation, the first clamping interface further extends through the peripheral side wall, and the second clamping interface further extends through the top wall.

[0016] In a possible implementation, the second insert further comprises a second positioning hole, which is spaced apart from the first clamping interface and the second clamping interface, and which is located at the edge of the top wall and extends through the top wall.

[0017] The first insert further comprises a second positioning protrusion, which is spaced apart from the first clamping protrusion, and which protrudes from a portion of the second outer surface away from the second inner surface.

[0018] The second positioning protrusion comprises a first portion and a second portion, the first portion is arranged in the first direction, and the second portion is arranged in the second direction, and the second direction intersects the first direction.

[0019] The first portion and the second portion are both in abutment with the hole wall of the second positioning hole.

[0020] In a possible implementation, in the second direction, the second positioning hole is located at one end of the second insert.

[0021] In a possible implementation, the first assembly further comprises a wrapping member, a portion of the wrapping member is fixed between the glass body and the first insert, the wrapping member surrounds at least a portion of the edge of the glass body, and the decorative member covers the wrapping member.

[0022] In a possible implementation, the wrapping member comprises a main body portion and a side portion, the side portion is connected to the edge of the main body portion, the main body portion and the side portion jointly enclose a receiving space, and the side portion is provided with a receiving groove, an opening of the receiving groove faces the receiving space and communicates with the receiving space.

[0023] Part of the glass body is located in the receiving space, and at least part of the edge of the glass body is located in the receiving groove.

[0024] In a possible implementation, the edge covering member comprises a first inner surface and a first outer surface arranged oppositely, the first inner surface faces the glass body, the edge covering member further comprises a first connecting portion and a second connecting portion arranged oppositely, and the first connecting portion and the second connecting portion are both protruded from part of the first outer surface away from the first inner surface.

[0025] The first insert comprises a second inner surface and a second outer surface arranged oppositely, the second inner surface faces the glass body, and the first insert further comprises a first clamping protrusion and a third positioning protrusion arranged oppositely, and the first clamping protrusion and the third positioning protrusion are both protruded from part of the second outer surface away from the second inner surface.

[0026] The first connecting portion is embedded in the first clamping protrusion, and the second connecting portion is embedded in the third positioning protrusion.

[0027] In a possible implementation, the edge covering member further comprises a first positioning hole, the first positioning hole penetrates the first inner surface and the first outer surface, and part of the structure of the first insert is located in the first positioning hole.

[0028] The edge covering member further comprises a first positioning protrusion, and in the second direction, the first positioning protrusion and the first positioning hole are arranged oppositely, and the first positioning protrusion is protruded from part of the first outer surface away from the first inner surface.

[0029] The first insert further comprises a fourth positioning protrusion, the fourth positioning protrusion is protruded from part of the second outer surface away from the second inner surface, and the fourth positioning protrusion is embedded in the first positioning protrusion.

[0030] In a possible implementation, the first assembly component is an injection molded part.

[0031] In a possible implementation, the first insert and the second insert are arranged at an angle.

[0032] In a second aspect, the present application further provides a vehicle. The vehicle comprises a vehicle body and the glass assembly described above, and the glass assembly is mounted on the vehicle body.

[0033] In a possible implementation, the glass assembly further comprises a first sheet metal member and a second sheet metal member, the first sheet metal member is fixedly connected to the glass body, the first sheet metal member is further connected to the second sheet metal member, and the second sheet metal member is used for fixing the glass body to the vehicle body.

[0034] In the related art, the decorative piece is usually fixed to the glass body by means of adhesion, so that during the assembly of the decorative piece, the operations of applying an activator and a primer are required, and the drying of the primer is required to wait for, resulting in a longer production rhythm and a lower production efficiency. Moreover, since the decorative piece is bonded by means of adhesive tape, the installation of the decorative piece needs to be assisted by a tool during the assembly of the decorative piece, and the operation difficulty and the later replacement difficulty are large. In addition, if the decorative piece or the glass body is damaged, the decorative piece and the windshield need to be replaced at the same time, and the cost is high. The glass assembly of the present application comprises a glass body and a decorative piece. The glass body and the decorative piece are fixed by clamping through a first insert and a second insert. In this way, on the one hand, the installation between the decorative piece and the glass body is more convenient, and the disassembly is easy. Compared with the traditional structure bonded by adhesive tape, the clamping structure does not need to be operated related to the application of an activator and a primer, which is helpful to reduce the replacement difficulty of the parts and improve the production efficiency. On the other hand, when the decorative piece or the glass body is damaged, the decorative piece can be replaced without replacing the glass body, or the glass body can be replaced without replacing the decorative piece. The maintenance cost of the glass assembly is low. BRIEF DESCRIPTION OF DRAWINGS

[0035] In order to more clearly illustrate the technical solutions of the present application, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creating laborious work.

[0036] Figure 1 A vehicle schematic diagram provided for the embodiments of the present application;

[0037] Figure 2 A traditional scheme for assembling a decorative piece on a windshield;

[0038] Figure 3 Another traditional scheme for assembling a decorative piece on a windshield;

[0039] Figure 4 Partial structural exploded schematic diagram of the glass assembly provided for the embodiments of the present application in some embodiments;

[0040] Figure 5 For Figure 4 Partial assembly structure of the glass assembly shown in another angle;

[0041] Figure 6 For Figure 5 Cross-sectional schematic diagram of the partial assembly structure of the glass assembly along the A-A direction;

[0042] Figure 7 For Figure 4A structural schematic view of the second insert shown;

[0043] Figure 8 As Figure 4 A partial cross-sectional structural schematic view of the glass assembly shown in some embodiments.

[0044] Figure 9 As Figure 4 A partial cross-sectional structural schematic view of the glass assembly shown in some embodiments. DETAILED DESCRIPTION

[0045] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0046] Referring to Figure 1 The embodiments of the present application provide a vehicle 1000. The vehicle 1000 comprises a vehicle body 200 and a windshield 101. It can be understood that the windshield 101 can be a front windshield or a rear windshield of the vehicle 1000. The embodiments of the present application take the rear windshield of the vehicle 1000 as an example for description. The periphery of the windshield 101 is usually provided with a decorative piece for improving the aesthetic effect or highlighting other products, etc. The decorative piece includes but is not limited to a decorative strip, a decorative plate, etc., and the material of the decorative piece includes but is not limited to plastic, metal, etc.

[0047] Referring to Figure 2 , Figure 2 A traditional scheme for assembling the decorative piece to the windshield.

[0048] In some traditional schemes for assembling the decorative piece, the decorative piece 300 is fixed to the windshield 101a by a 3M tape. The windshield 101a is fixed to a sheet metal piece 400 by a polyurethane (PU) adhesive, and the windshield 101a can be fixed to the vehicle body by the sheet metal piece 400.

[0049] Referring to Figure 3 , Figure 3 Another traditional scheme for assembling the decorative piece to the windshield.

[0050] In some other conventional decoration assembly solutions, the decoration 300 is fixed to the windshield 101a by 3M tape. The windshield 101a is fixed to the metal piece 400 by PU glue, and the windshield 101a can be fixed to the vehicle body through the metal piece 400. An insert 500 is further arranged between the windshield 101a and the decoration 300, and the insert 500 is fixed to the decoration 300 and the windshield 101a by 3M tape. The insert 500 is internally provided with an insert support rib 600 for supporting the insert 500.

[0051] In the above solution, since the decoration 300 is fixed to the windshield 101a by 3M tape, the operations of applying activator and primer are required during the assembly of the decoration 300, and the drying of the primer needs to be waited, resulting in a longer production rhythm and lower production efficiency. Moreover, since the decoration 300 is bonded by tape, the installation needs to be assisted by tools during the assembly of the decoration 300, and the operation difficulty and the later replacement difficulty are large. In addition, if the decoration 300 or the windshield 101a is damaged, the decoration 300 and the windshield 101a need to be replaced at the same time, which is costly.

[0052] In view of this, in order to solve the above problems, the present application provides a glass assembly, which comprises a glass body and a decoration. It can be understood that the glass body is the windshield 101 described above. The glass body and the decoration are fixed by clamping through a first insert and a second insert. In this way, on the one hand, the installation between the decoration and the glass body is more convenient and easy to disassemble. Compared with the traditional structure bonded by tape, the clamping structure does not need to be operated by applying activator and primer, which is helpful to reduce the replacement difficulty of parts and improve the production efficiency. On the other hand, when the decoration or the glass body is damaged, the decoration can be replaced without replacing the glass body, or the glass body can be replaced without replacing the decoration. The maintenance cost of the glass assembly is low. In addition, the clamping fixed way also provides more possibilities for the installation of the rear environmental part, and the appearance design of the rear environmental part also has diversified choices.

[0053] The glass assembly provided by the present application will be described in detail below in combination with the drawings.

[0054] Please refer to Figure 4 , Figure 4 The partial structure exploded view of the glass assembly 100 provided by the embodiment of the present application in some embodiments.

[0055] In the present embodiment, the glass assembly 100 comprises a first assembly 10 and a second assembly 20. The first assembly 10 is installed on the second assembly 20, and the first assembly 10 and the second assembly 20 are installed on the vehicle body together.

[0056] The first assembly component 10 includes a glass body 11, a cladding member 12, and a first insert 13. The cladding member 12 can be made of plastic. The cladding member 12 includes a first inner surface 121 and a first outer surface 122 arranged oppositely. The first inner surface 121 faces the glass body 11. The cladding member 12 further includes a main body portion 1231 and a side portion 1232 connected to an edge of the main body portion 1231. The main body portion 1231 and the side portion 1232 jointly define a receiving space 1233.

[0057] The cladding member 12 further includes a first positioning hole 124 and a first positioning protrusion 125 arranged oppositely. The first positioning hole 124 penetrates the first inner surface 121 and the first outer surface 122 of the cladding member 12. The first positioning protrusion 125 protrudes from the first outer surface 122 away from the first inner surface 121. The first positioning protrusion 125 can be substantially quadrilateral annular.

[0058] The cladding member 12 further includes a first connecting portion 126 and a second connecting portion 127 arranged oppositely. The first connecting portion 126 and the second connecting portion 127 protrude from the first outer surface 122 away from the first inner surface 121. The first connecting portion 126 and the second connecting portion 127 are arranged oppositely to the first positioning hole 124 and the first positioning protrusion 125. It can be understood that the number of the first connecting portion 126 and the second connecting portion 127 can be one or more. In the embodiment, the number of the first connecting portion 126 is three, and the number of the second connecting portion 127 is four.

[0059] In the embodiment, the first insert 13 includes a second inner surface 131 and a second outer surface 132 arranged oppositely. The second inner surface 131 faces the glass body 11. When the first assembly component 10 is mounted on the vehicle body, the second inner surface 131 of the first insert 13 faces the inner side of the vehicle 1000, and the second outer surface 132 faces the outer side of the vehicle 1000.

[0060] The first insert 13 includes a second positioning protrusion 133, a third positioning protrusion 134, and a fourth positioning protrusion 135 arranged oppositely. The second positioning protrusion 133 protrudes from the second outer surface 132 away from the second inner surface 131. The second positioning protrusion 133 includes a first portion 1331 and a second portion 1332. The first portion 1331 is arranged in a first direction, and the second portion 1332 is arranged in a second direction. The first direction intersects the second direction. The second positioning protrusion 133 can be used to limit the second assembly component 20 in the first direction and the second direction. For example, the first portion 1331 can be arranged in the width direction (Y-axis direction) of the first insert 13, and the second portion 1332 can be arranged in the length direction (X-axis direction) of the first insert 13.

[0061] The third positioning protrusion 134 protrudes from a portion of the second outer surface 132 in a direction away from the second inner surface 131. The third positioning protrusion 134 is disposed along a third direction, which is perpendicular to the first and second directions. The third positioning protrusion 134 can be used to limit the positioning of the second assembly 20 in the third direction. For example, the third positioning protrusion 134 can be disposed along the thickness direction (Z-axis direction) of the first insert 13. It is understood that there can be one or more third positioning protrusions 134. In this embodiment, there are four third positioning protrusions 134.

[0062] The fourth positioning protrusion 135 protrudes from a portion of the second outer surface 132 in a direction away from the second inner surface 131. The fourth positioning protrusion 135 includes a first sub-protrusion 1351 and a second sub-protrusion 1352, which are arranged along a first direction (e.g., the Y-axis direction). The first sub-protrusion 1351 and the second sub-protrusion 1352 are used to limit the positioning of the edge banding 12 in the first direction.

[0063] The first insert 13 further includes a first engaging protrusion 136 and a second engaging protrusion 137, which are spaced apart in a first direction (i.e., the Y-axis direction) and a second direction (i.e., the X-axis direction). The first engaging protrusion 136 protrudes from a portion of the second outer surface 132 in a direction away from the second inner surface 131. A portion of the first engaging protrusion 136 is bent and protrudes along the first direction (e.g., the Y-axis direction) to form a first engaging portion 1361. It is understood that, in this embodiment, a portion of the second inner surface 131 of the first insert 13 may be recessed towards the second outer surface 132 to form a positioning groove 136a, and the first engaging protrusion 136 may be formed on the second outer surface 132.

[0064] The second latching protrusion 137 is located at the edge of the first insert 13 and protrudes along a first direction (e.g., the Y-axis direction). The protrusion direction of the second latching protrusion 137 is opposite to the protrusion direction of the first latching portion 1361 of the first latching protrusion 136. For example, the first latching portion 1361 of the first latching protrusion 136 may protrude along the negative direction of the Y-axis, and the second latching protrusion 137 may protrude along the positive direction of the Y-axis. It is understood that there can be one or more first latching protrusions 136 and second latching protrusions 137. In this embodiment, there are three first latching protrusions 136 and three second latching protrusions 137.

[0065] Please refer to the following: Figures 4 to 6 , Figure 5 for Figure 4 The diagram shows a partial assembly structure of the glass component 100 from another angle.Figure 6 As shown in FIG. 1, a glass assembly 100 is provided. The glass assembly 100 comprises a first assembly component 10 and a second assembly component 20. Figure 5 FIG. 2 shows a partial assembly structure of the glass assembly 100 along the direction of A-A. In FIG. 2, the first assembly component 10 is mainly shown. Figure 5 FIG. 3 shows a structural schematic diagram of the first assembly component 10. Figure 6 FIG. 4 shows a cross-sectional schematic diagram of the first assembly component 10 along the direction of A-A.

[0066] In the present embodiment, the first assembly component 10 can be an injection molded part, i.e., the glass body 11, the edge covering member 12 and the first insert 13 can be integrally injection molded by a mold to form a whole structural part. In this way, the glass body 11 can be assembled with the edge covering member 12 and the first insert 13 as a whole, and the glass body 11 can be assembled with other structural parts (e.g., the second assembly component 20) through the first insert 13, so that the assembly and disassembly of the glass body 11 are more convenient. In the present embodiment, part of the structure of the first insert 13 can be located in the first positioning hole 124 of the edge covering member 12. Specifically, part of the structure of the second positioning protrusion 133 of the first insert 13 can be located in the first positioning hole 124 of the edge covering member 12. The first connecting part 126 of the edge covering member 12 is located in the positioning groove 136a of the first insert 13.

[0067] It can be understood that, during the injection molding of the first assembly component 10, the relative positions of the glass body 11, the edge covering member 12 and the first insert 13 are controlled by some positioning structures of the mold itself, so that the relative positions of the glass body 11, the edge covering member 12 and the first insert 13 are more accurate.

[0068] It can be understood that, in the present embodiment, the glass body 11, the edge covering member 12 and the first insert 13 are formed by injection molding, so that the first connecting part 126 can be embedded in the first clamping protrusion 136; the second connecting part 127 can be embedded in the third positioning protrusion 134; and the fourth positioning protrusion 135 can be embedded in the first positioning protrusion 125, for example, the first sub-protrusion 1351 and the second sub-protrusion 1352 of the fourth positioning protrusion 135 can be embedded in the inner edges of the first positioning protrusion 125, respectively.

[0069] In the embodiment, part of the edge covering member 12 is fixed between the glass body 11 and the first insert 13. The side portion 1232 of the edge covering member 12 is provided with a receiving groove 1234, and the opening of the receiving groove 1234 faces the receiving space 1233 and communicates with the receiving space 1233. It can be understood that, along the thickness direction of the edge covering member 12, the receiving groove 1234 is located between the first inner surface 121 and the first outer surface 122. Part of the glass body 11 is located in the receiving space 1233, and at least part of the edge of the glass body 11 can be located in the receiving groove 1234 of the edge covering member 12. It can be understood that the receiving groove 1234 is used to receive the edge of the glass body 11 so as to mount the glass body 11 to the edge covering member 12. The edge covering member 12 surrounds at least part of the edge of the glass body 11, so as to play a role of protecting and decorating the glass body 11.

[0070] Please refer to Figure 4 and Figure 7 , Figure 7 for Figure 4 the structure diagram of the second insert 21.

[0071] In the embodiment, the second assembly 20 includes the second insert 21 and a decoration member 22. The decoration member 22 can be fixed to the second insert 21 by means of adhesion. For example, the decoration member 22 can be bonded to the second insert 21 by means of a 3M adhesive tape 23, and forms an integral whole with the second insert 21. In the embodiment, the decoration member 22 is generally used to improve the aesthetic effect or to decorate other products, etc., and even the arrangement of the decoration member 22 can improve the corrosion resistance and waterproof performance of the windshield, etc. The decoration member 22 includes but is not limited to a decoration strip, a decoration plate, etc., and the material of the decoration member 22 includes but is not limited to plastic, metal, etc.

[0072] It should be noted that the decoration member 22 provided in the embodiment is used to improve the appearance of the window and plays a role of decoration; and the decoration member 22 provided in the embodiment can be applied to various vehicles with windows, and the embodiment only illustrates the application of the decoration member 22 to the windshield 101 of the vehicle 1000. One side of the decoration member 22 has a decoration surface and plays a role of decoration, and when the decoration member 22 is applied to the vehicle 1000, the decoration member 22 can be located at the outer periphery of the windshield 101. In other embodiments, it can also be applied to other structures, such as building decoration, etc.

[0073] In this embodiment, the second insert 21 includes a top wall 211 and a peripheral side wall 212 connected to the periphery of the top wall 211. The peripheral side wall 212 is bent relative to the top wall 211 and is located on one side of the top wall 211. The peripheral side wall 212 includes a first side wall 2121, a second side wall 2122, a third side wall 2123, and a fourth side wall 2124 connected in sequence. The first side wall 2121 and the third side wall 2123 are arranged opposite each other. The first side wall 2121 and the third side wall 2123 are arranged along a first direction. The second side wall 2122 and the fourth side wall 2124 are arranged opposite each other. The second side wall 2122 and the fourth side wall 2124 are arranged along a second direction.

[0074] The second insert 21 includes a first card interface 213 and a second card interface 214, which are spaced apart in a first direction (i.e., the Y-axis direction). The first card interface 213 is located at the edge of the top wall 211 and extends through the top wall 211 and the first side wall 2121. The second card interface 214 is located at the edge of the top wall 211 and extends through the top wall 211 and the third side wall 2123. A portion of the inner wall of the first card interface 213 may protrude along the first direction (e.g., the Y-axis direction) to form a second card contact portion 2131. A portion of the inner wall of the second card interface 214 may protrude along the first direction (e.g., the Y-axis direction) to form a third card contact portion 2141. The second card contact portion 2131 and the third card contact portion 2141 are spaced apart in the first direction (i.e., the Y-axis direction), with the second card contact portion 2131 located at one end of the second insert 21 and the third card contact portion 2141 located at the other end of the second insert 21. The protruding direction of the second latching portion 2131 is opposite to that of the third latching portion 2141. For example, a portion of the structure of the second latching portion 2131 may protrude along the negative direction of the Y-axis, and the third latching portion 2141 may protrude along the positive direction of the Y-axis.

[0075] It is understood that there can be one or more first card interfaces 213 and second card interfaces 214. In this embodiment, there are three first card interfaces 213 and three second card interfaces 214.

[0076] In this embodiment, the second insert 21 further includes a second positioning hole 215. In the second direction (i.e., the X-axis direction), the second positioning hole 215 is located at one end of the second insert 21 and penetrates the top wall 211 of the second insert 21.

[0077] Please refer to the following: Figure 4 , Figure 8 and Figure 9 , Figure 8 for Figure 4 The diagram shown is a partial cross-sectional view of the glass assembly 100 in some embodiments. Figure 9 for Figure 4A partial cross-sectional structure of the glass assembly 100 is shown in some embodiments.

[0078] In the present embodiment, the first assembly component 10 is fixedly connected with the second assembly component 20. The second insert 21 of the second assembly component 20 faces the first insert 13 of the first assembly component 10 and is clamped with the first insert 13. At this time, the first insert 13 of the first assembly component 10 is located on the side of the second insert 21 away from the decorative piece 22. The partial structure of the second positioning protrusion 133 of the first insert 13 can be located in the second positioning hole 215 of the second insert 21. At least part of the first clamping protrusion 136 is located in the first clamping interface 213 of the second insert 21, and the first clamping part 1361 of the first clamping protrusion 136 is clamped with the second clamping part 2131. At least part of the second clamping protrusion 137 is located in the second clamping interface 214 of the second insert 21, and the second clamping protrusion 137 is clamped with the third clamping part 2141. The decorative piece 22 of the second assembly component 20 can cover the edge covering piece 12 and the first insert 13 and surround at least part of the edge of the glass body 11 for protecting and decorating the glass body.

[0079] It can be understood that, in the present embodiment, when the first assembly component 10 is assembled with the second assembly component 20, the second positioning protrusion 133 of the first insert 13 can pass through the second positioning hole 215 of the second insert 21; the first clamping protrusion 136 of the first insert 13 can extend into the first clamping interface 213 of the second insert 21, and part of the first clamping protrusion 136 is opposite and spaced apart from the second clamping part 2131; the second clamping protrusion 137 can extend into the second clamping interface 214 of the second insert 21, and part of the second clamping protrusion 137 is opposite and spaced apart from the third clamping part 2141. At this time, the length extension direction of the first insert 13 and the length extension direction of the second insert 21 are arranged at an angle, for example, an acute angle, so that the first assembly component 10 and the second assembly component 20 can be pre-positioned, but the first assembly component 10 and the second assembly component 20 can still move relative to each other. Then, the first assembly component 10 and the second assembly component 20 can be rotated relative to each other, for example, taking the second positioning protrusion 133 as the rotation center, the second assembly component 20 can rotate relative to the rotation center, so that the second clamping part 2131 and the first clamping part 1361 are clamped, and the third clamping part 2141 and the second clamping protrusion 137 are clamped, and the first part 1331 and the second part 1332 of the second positioning protrusion 133 can both abut the hole wall of the second positioning hole 215. At this time, the first assembly component 10 and the second assembly component 20 are fixed relative to each other. The length extension direction of the first insert 13 can be parallel to the length extension direction of the second insert 21. That is, the assembly operation between the first assembly component 10 and the second assembly component 20 is completed.

[0080] It can be understood that, during the rotation of the second assembly component 20, since the second clamping portion 2131 protrudes from the inner wall of the first clamping portion 213 and the third clamping portion 2141 protrudes from the inner wall of the second clamping portion 214, the second clamping portion 2131 and the third clamping portion 2141 can both provide guidance, facilitating the clamping of the second clamping portion 2131 and the first clamping portion 1361 and the clamping of the third clamping portion 2141 and the second clamping protrusion 137. Moreover, since the second clamping protrusion 137 and the first clamping protrusion 136 are spaced apart in the first direction and the second direction, that is, the second clamping protrusion 137 and the first clamping protrusion 136 are staggered in the X-Y plane in the first direction and the second direction, facilitating the rotation of the second assembly component 20 relative to the first assembly component 10, and further facilitating the assembly of the first assembly component 10 and the second assembly component 20 by rotation.

[0081] In addition, after the assembly of the first assembly component 10 and the second assembly component 20 is completed, the first positioning protrusion 125 can limit the second insert 21 in the Y-axis direction, and the second positioning protrusion 133 can limit the second insert 21 in the X-axis direction and the Y-axis direction, so that the second assembly component 20 is not easy to fall off. The connection between the first assembly component 10 and the second assembly component 20 is relatively stable.

[0082] It can be understood that the top wall 211 of the second insert 21 can also be provided with some protruding structures, which can be located inside the first positioning protrusion 125 after the assembly of the first assembly component 10 and the second assembly component 20 is completed, and abut against the fourth positioning protrusion 135, so that the fourth positioning protrusion 135 can limit the second insert 21 in the Y-axis direction, so that the second assembly component 20 is not easy to fall off. The connection between the first assembly component 10 and the second assembly component 20 is relatively stable.

[0083] The first assembly component 10 and the second assembly component 20 of the present application are assembled by the above method, which is beneficial to improve the assembly efficiency. In addition, since the first clamping portion 1361 of the first clamping protrusion 136 of the first insert 13 and the second clamping protrusion 137 can be clamped with the second clamping portion 2131 and the third clamping portion 2141 of the second insert 21, the positioning between the glass body 11 of the first assembly component 10 and the decorative piece 22 of the second assembly component 20 is more accurate, and the second assembly component 20 is not easy to fall off after being installed to the first assembly component 10.

[0084] In the embodiment, the glass assembly 100 further comprises a first sheet metal part 30 and a second sheet metal part 40. The first sheet metal part 30 is fixedly connected with the second sheet metal part 40. The first sheet metal part 30 can be fixed to the first assembly component 10 by means of bonding. Specifically, the first sheet metal part 30 can be fixed to the glass body 11 of the first assembly component 10 by means of PU glue.

[0085] It can be understood that, in the embodiment, the glass body 11 of the first assembly component 10 is bonded with the first sheet metal part 30 before the first assembly component 10 is assembled with the second assembly component 20. The first sheet metal part 30 is an inner sheet metal part, and the second sheet metal part 40 is an outer sheet metal part. The second sheet metal part 40 can be fixedly connected with the vehicle body 200. The glass assembly 100 can be fixed to the vehicle body 200 through the first sheet metal part 30 and the second sheet metal part 40.

[0086] It can be understood that, in the embodiment, the glass body 11 of the first assembly component 10 is bonded with the first sheet metal part 30 before the first assembly component 10 is assembled with the second assembly component 20. The first sheet metal part 30 is an inner sheet metal part, and the second sheet metal part 40 is an outer sheet metal part. The second sheet metal part 40 can be fixedly connected with the vehicle body 200. The glass assembly 100 can be fixed to the vehicle body 200 through the first sheet metal part 30 and the second sheet metal part 40. Figure 9 In the embodiment, the first insert 13 and the second insert 21 are arranged at an angle, for example, the second outer surface 132 of the first insert 13 and the top wall 211 of the second insert 21 are arranged at an angle, so as to make the appearance surface of the decorative part 22 flush with the appearance surface of the second sheet metal part 40.

[0087] The above has described the embodiments of the present application in detail. The specific examples are applied to the principle and implementation mode of the present application. The above embodiment is only used to help understand the method and core idea of the present application. Meanwhile, for the general technical personnel in the field, the specific implementation mode and application range can be changed according to the idea of the present application. The above description should not be understood as the limitation of the present application.

Claims

1. A glass assembly, characterized by, The first assembly component and the second assembly component are provided; The first assembly component comprises a glass body and a first insert fixedly connected to one side of the glass body, and the second assembly component comprises a second insert and a decoration piece fixedly connected to the second insert; The second insert faces the first insert and is clamped with the first insert, and the decoration piece surrounds at least part of the edge of the glass body; the first insert comprises a second inner surface and a second outer surface arranged oppositely, and the second inner surface faces the glass body; the first insert further comprises a first clamping protrusion protruding from part of the second outer surface away from the second inner surface, and the protruding part of the first clamping protrusion is arranged in a bent structure and protrudes in a first direction to form a first clamping part; The second insert comprises a top wall and a peripheral side wall connected to the periphery of the top wall, and the peripheral side wall is arranged in a bent structure opposite to the top wall and located at one side of the top wall; the second insert further comprises a first clamping port located at the edge of the top wall and penetrating the top wall, and part of the inner wall of the first clamping port protrudes in a first direction to form a second clamping part; The protruding direction of the first clamping part is opposite to the protruding direction of the second clamping part, the first clamping part is located in the first clamping port and clamped with the second clamping part.

2. The glass assembly of claim 1, wherein, The first insert further comprises a second clamping protrusion, and the second clamping protrusion is arranged in a spaced manner with the first clamping protrusion in the first direction, and the second clamping protrusion is located at the edge of the first insert and protrudes in the first direction; The second insert further comprises a second clamping port, and the second clamping port is arranged in a spaced manner with the first clamping port in the first direction, and the second clamping port is located at the edge of the top wall and penetrates the peripheral side wall, and part of the inner wall of the second clamping port protrudes in the first direction to form a third clamping part; The protruding direction of the second clamping protrusion is opposite to the protruding direction of the third clamping part, and at least part of the second clamping protrusion is located in the second clamping port and clamped with the third clamping part.

3. The glass assembly of claim 2, wherein, The second clamping protrusion is arranged in a spaced manner with the first clamping protrusion in a second direction intersecting the first direction.

4. The glass assembly of claim 2 or 3, wherein, In the first direction, the second clamping part and the third clamping part are arranged in a spaced manner, and the second clamping part is located at one end of the second insert, and the third clamping part is located at the other end of the second insert.

5. The glass assembly of claim 2 or 3, wherein, The first clamping port further penetrates the peripheral side wall, and the second clamping port further penetrates the top wall.

6. The glass assembly of claim 2, wherein, The second insert further comprises a second positioning hole arranged in a spaced manner with the first clamping port and the second clamping port, and the second positioning hole is located at the edge of the top wall and penetrates the top wall; The first insert further comprises a second positioning protrusion arranged in a spaced manner with the first clamping protrusion, and the second positioning protrusion protrudes from part of the second outer surface away from the second inner surface; The second positioning protrusion comprises a first part and a second part, the first part is arranged along a first direction, and the second part is arranged along a second direction intersecting the first direction. The first part and the second part are in abutment with the hole wall of the second positioning hole.

7. The glass assembly of claim 6, wherein, In the second direction, the second positioning hole is located at one end of the second insert.

8. The glass assembly of any one of claims 1-3, wherein, The first assembly component further comprises a wrapping member, a part of the wrapping member is fixed between the glass body and the first insert, the wrapping member surrounds at least part of the edge of the glass body, and the decoration member covers the wrapping member.

9. The glass assembly of claim 8, wherein, The wrapping member comprises a main body part and a side part connected to the edge of the main body part, the main body part and the side part jointly enclose a receiving space, the side part is provided with a receiving groove, the opening of the receiving groove faces the receiving space and communicates with the receiving space. Part of the glass body is located in the receiving space, and at least part of the edge of the glass body is located in the receiving groove.

10. The glass assembly of claim 8, wherein, The wrapping member comprises a first inner surface and a first outer surface arranged oppositely, the first inner surface faces the glass body, the wrapping member further comprises a first connecting part and a second connecting part arranged at intervals, and the first connecting part and the second connecting part are protruded from the first outer surface away from the first inner surface. The first insert comprises a second inner surface and a second outer surface arranged oppositely, the second inner surface faces the glass body, the first insert further comprises a first clamping protrusion and a third positioning protrusion arranged at intervals, and the first clamping protrusion and the third positioning protrusion are protruded from part of the second outer surface away from the second inner surface. The first connecting part is embedded in the first clamping protrusion, and the second connecting part is embedded in the third positioning protrusion.

11. The glass assembly of claim 10, wherein, The wrapping member further comprises a first positioning hole penetrating the first inner surface and the first outer surface, and part of the structure of the first insert is located in the first positioning hole. The wrapping member further comprises a first positioning protrusion, in the second direction, the first positioning protrusion and the first positioning hole are arranged at intervals, and the first positioning protrusion is protruded from part of the first outer surface away from the first inner surface. The first insert further comprises a fourth positioning protrusion, the fourth positioning protrusion is protruded from part of the second outer surface away from the second inner surface, and the fourth positioning protrusion is embedded in the first positioning protrusion.

12. The glass assembly of any one of claims 1-3, wherein, The first assembly component is an injection molded part.

13. The glass assembly of any one of claims 1-3, wherein, The first insert and the second insert are arranged at an angle.

14. A vehicle characterized by comprising: The vehicle body and the glass assembly according to any one of claims 1 to 13 are provided.

15. The vehicle of claim 14, wherein, The glass assembly further comprises a first sheet metal member and a second sheet metal member, the first sheet metal member is fixedly connected to the glass body, the first sheet metal member is further connected to the second sheet metal member, and the second sheet metal member is used for fixing the glass body to the vehicle body.

Citation Information

Patent Citations

  • Glass edge wrapping assembly with bright decoration strips

    CN110293825A

  • Side window edge covering mechanism, side window edge covering glass assembly and automobile

    CN113696819A