Glass assembly and vehicle

By designing the limiting groove and connecting structure in the glass assembly, the problem of misalignment between the trim strip and the edge of the window glass was solved, achieving a stable connection between the trim and the glass body and convenient maintenance, thus improving the vehicle's appearance coordination.

CN223443273UActive Publication Date: 2025-10-17FUYAO GLASS IND GROUP CO LTD
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Patent Information

Application Number
CN202422355260.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-10-17
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

Misalignment between vehicle trim strips and the edge of the window glass can easily occur, causing the trim strips to deform, disrupting the vehicle's overall appearance and creating a negative visual experience for users.

Method used

Design a glass assembly including a glass body, an edging, decorative parts, and connectors. Through the structural design of the limiting groove and connectors, ensure a stable connection between the decorative parts and the glass body, improve alignment accuracy, and prevent deformation of the decorative parts.

Benefits of technology

This achieves a stable connection between the decorative element and the glass body, improves alignment accuracy, prevents deformation of the decorative element, and facilitates the disassembly and maintenance of the decorative element.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a glass assembly and a vehicle. The glass assembly comprises a glass body, a covering edge, a decorating part and a connecting part. The decorating part is provided with a limiting groove, and the groove top wall and the groove bottom wall of the limiting groove are opposite and arranged in a spaced mode. The connecting piece comprises a first connecting part and a second connecting part, the first connecting part is located in the limiting groove, the first connecting part comprises a first edge and a second edge, the first edge and the second edge are oppositely arranged in the length direction of the first connecting part, and at least part of the first edge and at least part of the second edge abut against the groove top wall; the middle portion of the first connecting portion abuts against the groove bottom wall, the section of the first connecting portion is in an arc shape in the length direction parallel to the first connecting portion, one end of the second connecting portion is connected with the first connecting portion in a bent mode, and the other end of the second connecting portion extends out of the limiting groove and is connected with the covered edge. According to the technical scheme, the alignment precision of the decoration body and the glass body can be improved, and deformation of the decoration body after the decoration body is connected to the glass body is avoided.
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Description

TECHNICAL FIELD

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

[0002] At present, the edge of the vehicle window glass is generally integrated with a decorative strip to beautify the joint between the edge of the vehicle window glass and the vehicle body. Since the length of the decorative strip is relatively long, the alignment between the decorative strip and the edge of the vehicle window glass is prone to deviation, which may cause the deformation of the decorative strip, damage the coordination of the vehicle appearance, and further bring the user an adverse visual experience. CONTENT OF THE UTILITY MODEL

[0003] Embodiments of the present application provide a glass assembly and a vehicle, which can stably connect a decorative body and a glass body, improve the alignment accuracy of the decorative body and the glass body, and avoid the deformation of the decorative body after being connected to the glass body.

[0004] In a first aspect, the present application provides a glass assembly, comprising:

[0005] a glass body;

[0006] an edge covering part covering at least part of the edge of the glass body;

[0007] a decorative part provided with a limiting groove, the limiting groove comprising a groove top wall and a groove bottom wall, the groove top wall and the groove bottom wall being oppositely and spacedly arranged; and

[0008] a connecting part comprising a first connecting part and a second connecting part, the first connecting part being located in the limiting groove, the first connecting part comprising a first edge and a second edge, the first edge and the second edge being oppositely arranged along the length direction of the first connecting part, at least part of the first edge and at least part of the second edge abutting against the groove top wall, the middle part of the first connecting part abutting against the groove bottom wall, the cross-sectional shape of the first connecting part being arc-shaped along the length direction of the first connecting part, one end of the second connecting part being foldably connected with the first connecting part, the other end of the second connecting part extending out of the limiting groove and being connected with the edge covering part.

[0009] In the embodiment, the first connecting part of the connecting part can be a curved structure, when the first connecting part of the connecting part is inserted into the limiting groove, the curved first edge and the curved second edge oppositely close to each other can abut against the groove top wall of the limiting groove, and the middle part of the first connecting part can abut against the groove bottom wall of the limiting groove.

[0010] After the first connecting part is inserted into the limiting groove, the bending degree of the first connecting part is reduced, the first connecting part is elastically deformed, the friction between the first edge and the second edge and the top wall of the limiting groove and the friction between the middle part of the first connecting part and the limiting groove are increased, the first connecting part is more difficult to fall off from the limiting groove, the stability of the connection between the connecting part and the decorative part is improved, and the position of the connecting part on the decorative part is more accurate, so that the connecting part can be better aligned with the edge covering, and deformation of the decorative part caused by poor alignment between the connecting part and the edge covering is avoided.

[0011] In addition, the decorative part of the vehicle may be damaged due to environmental factors or unexpected situations during use. The decorative part and the connecting part are provided separately, so that the decorative strip can be detached from the edge covering, so that the owner or maintenance personnel can more easily check, maintain and replace it without replacing the entire glass assembly.

[0012] In a possible implementation, the first connecting part further includes a third edge and a fourth edge, the third edge and the fourth edge are arranged opposite to each other along the width direction of the first connecting part, at least part of the third edge and at least part of the fourth edge abut against the top wall, and the cross-sectional shape of the first connecting part along the width direction is arc-shaped.

[0013] In the embodiment, the cross sections of the first connecting part along the length direction and the width direction can be arc-shaped. The overall shape of the first connecting part can be similar to a partial spherical surface. The middle part of the first connecting part can protrude relative to the periphery. When the first connecting part is inserted into the limiting groove, the bending degree of the first connecting part along the length direction is reduced, the bending degree of the first connecting part along the width direction is reduced, the first connecting part is elastically deformed, and the first connecting part can be supported between the top wall and the bottom wall of the limiting groove.

[0014] The middle part of the first connecting part abuts against the bottom wall of the limiting groove, the middle part of the first connecting part receives an external force applied by the bottom wall and transmits the external force to the first edge, the second edge, the third edge and the fourth edge around the middle part, so as to increase the acting force between the edges of the first connecting part and the top wall of the limiting groove. Since the edges of the first connecting part along the length direction and the width direction abut against the top wall of the limiting groove, when the first connecting part is subjected to an external force in any direction, a friction force in the opposite direction can be generated, so as to avoid movement of the connecting part relative to the decorative part, to ensure better alignment of the connecting part with the edge covering, and to avoid deformation of the decorative part caused by poor alignment between the connecting part and the edge covering.

[0015] In a possible implementation, the first edge, the third edge, the second edge and the fourth edge are sequentially connected end to end, and the intersection between the two adjacent edges abuts against the top wall.

[0016] In actual use, the first edge, the second edge, the third edge and the fourth edge are difficult to keep completely abutting against the groove top wall of the limiting groove. Thus, the friction force of the connecting piece at different positions with the decorative strip is different. When the connecting piece is subjected to external force, the position of the connecting piece with the smaller friction force with the decorative strip is prone to relative sliding, thus causing the relative angle or position of the connecting piece with the decorative strip to deviate.

[0017] The present application controls the contact position of the connecting piece with the decorative piece at the intersection of the first edge, the third edge, the second edge and the fourth edge, controls the abutting position of the connecting piece with the decorative piece, thus making the direction of the friction force of the connecting piece more uniform, so that the friction force between the connecting piece and the decorative piece can offset the external force in each direction, to avoid the connecting piece from moving relative to the decorative piece, ensure that the connecting piece can be better aligned with the edge covering, and avoid the connecting piece from being misaligned with the edge covering to cause the deformation of the decorative piece.

[0018] In a possible implementation, the connecting piece further comprises a first clamping tooth and a second clamping tooth.

[0019] The limiting groove further comprises a groove side wall connected between the groove top wall and the groove bottom wall, the first connecting part further comprises a third edge and a fourth edge, the third edge and the fourth edge are oppositely arranged along the width direction of the first connecting part, the first clamping tooth is protruded from the third edge, the second clamping tooth is protruded from the fourth edge, and the first clamping tooth and the second clamping tooth abut against the groove side wall.

[0020] In the present embodiment, the first clamping tooth and the second clamping tooth can increase the contact points of the first connecting part with the groove side wall, thus increasing the friction force between the first connecting part and the groove side wall, to avoid the connecting piece from moving relative to the decorative piece, ensure that the connecting piece can be better aligned with the edge covering, and avoid the connecting piece from being misaligned with the edge covering to cause the deformation of the decorative piece.

[0021] In a possible implementation, the first connecting part comprises a first surface and a second surface, the first surface and the second surface are oppositely arranged in the thickness direction of the first connecting part, the first surface is a convex surface, the second surface is a concave surface, and the second connecting part is connected to the middle region of the second surface.

[0022] In the present embodiment, when the second connecting part is clamped to the edge covering and subjected to external force from the edge covering, the second connecting part has a tendency to move close to the edge covering. At this time, the second connecting part transmits the external force to the middle part of the first connecting part, increases the abutting force of the first connecting part with the groove top wall of the limiting groove, thus increasing the friction force between the first connecting part and the limiting groove, to avoid the connecting piece from moving relative to the decorative piece, ensure that the connecting piece can be better aligned with the edge covering, and avoid the connecting piece from being misaligned with the edge covering to cause the deformation of the decorative piece.

[0023] In a possible implementation, the first connecting part is provided with a groove, the groove penetrates the first connecting part along the thickness direction of the first connecting part, and the groove penetrates the first edge, and the second connecting part is connected to the groove wall of the groove towards the first edge.

[0024] The decoration part is provided with an avoiding groove, the avoiding groove is communicated with the limiting groove, and the second connecting part is arranged in the avoiding groove.

[0025] In a possible implementation, the second connecting part is connected with the first connecting part to form an integrated structure.

[0026] In a possible implementation, when the connecting part is in an initial state, the first connecting part is located outside the limiting groove, and the thickness of the first connecting part is a first thickness.

[0027] The ratio of the first thickness to the depth of the limiting groove is in the range of 6 / 5-3 / 2.

[0028] In the embodiment, the thickness of the first connecting part that is greater than the depth of the limiting groove is the interference amount of the first connecting part. When the first connecting part is inserted into the limiting groove, the interference amount of the first connecting part is flattened, so as to adapt to the structure of the limiting groove. When the interference amount of the first connecting part is less than 1 / 5, it is found that the friction between the first connecting part and the groove wall of the limiting groove is small after the first connecting part is inserted into the limiting groove. In actual use, when the connecting part or the decoration part is subjected to an external force, the relative position of the connecting part and the decoration part changes, so that the decoration part is easily deformed. When the interference amount of the first connecting part is greater than 1 / 2, the elastic force of the first connecting part is large after the first connecting part is inserted into the limiting groove, and the structure of the limiting groove is easily damaged.

[0029] In a possible implementation, the depth of the limiting groove is in the range of 0.3mm-1mm.

[0030] In a second aspect, the application provides a vehicle, comprising a vehicle body and a glass assembly as described above, and the glass assembly is connected to the vehicle body. BRIEF DESCRIPTION OF DRAWINGS

[0031] 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 also be obtained from these drawings without creative labor for those skilled in the art.

[0032] Figure 1 is a structural schematic diagram of a vehicle provided by the embodiment of the present application.

[0033] Figure 2 is a structural schematic diagram of the glass assembly shown in Figure 1

[0034] Figure 3 is a structural schematic diagram of the decorative piece shown in Figure 2

[0035] Figure 4 is a cross-sectional schematic diagram of the decorative piece shown in Figure 3

[0036] Figure 5 is a structural schematic diagram of the connecting piece shown in Figure 3

[0037] Figure 6 is a cross-sectional schematic diagram of the connecting piece shown in Figure 5

[0038] Figure 7 is a structural schematic diagram of the connecting piece shown in Figure 5

[0039] Figure 8 is another structural schematic diagram of the connecting piece shown in Figure 2

[0040] BRIEF DESCRIPTION OF DRAWINGS: vehicle 100, vehicle body 10, glass assembly 20, glass body 21, edge wrapping 22, decorative piece 23, connecting piece 24, limiting hole 220, first limiting body 231, second limiting body 232, first sub-part 2311, second sub-part 2312, third sub-part 2321, fourth sub-part 2322, limiting groove 230, groove bottom wall 2301, groove top wall 2302, avoidance groove 2303, first connecting part 241, second connecting part 242, first surface 2411, second surface 2412, first edge 2412a, second edge 2412b, third edge 2412c, fourth edge 2412d, first end point 241a, second end point 241b, midpoint 241c, groove 2410, first clamping tooth 2401, second clamping tooth 2402. DETAILED DESCRIPTION

[0041] For the convenience of understanding, first, the terms involved in the embodiments of the present application are explained.

[0042] and / or: is only a description of the association relationship of the associated object, indicating that there can be three relationships, for example, A and / or B, which can represent: A exists alone, A and B exist together, and B exists alone.

[0043] Multiple: refers to two or more than two.

[0044] ​​​​​​​Connection: should be understood in a broad sense, for example, A is connected with B, which can be A and B are directly connected, or A and B are indirectly connected through intermediate media.

[0045] The specific embodiments of the present application will be clearly described below with reference to the drawings.

[0046] Please refer to Figure 1 , Figure 1 is a structural schematic diagram of a vehicle 100 provided by an embodiment of the present application. The vehicle 100 includes a vehicle body 10 and a glass assembly 20. The glass assembly 20 is connected to the vehicle body 10.

[0047] It should be noted that Figure 1 The purpose of the above is only to schematically describe the connection relationship between the vehicle body 10 and the glass assembly 20, and is not a specific limitation on the connection position, specific structure and number of each device. The structure schematically shown in the embodiment of the present application does not constitute a specific limitation on the vehicle 100. In other embodiments of the present application, the vehicle 100 includes more or fewer components than those shown in the figure, or combines some components, or splits some components, or different component arrangements. Figure 1

[0048] At present, the edge of the vehicle window glass generally integrates a decorative strip, so as to beautify the edge of the vehicle window glass and the joint with the vehicle body. Since the length of the decorative strip is relatively long, the alignment of the decorative strip with the edge of the vehicle window glass is prone to deviation, thus the decorative strip is prone to deformation, which destroys the coordination of the appearance of the vehicle, and further brings a bad visual experience to the user.

[0049] Based on this, an embodiment of the present application provides a glass assembly, which can stably connect a decorative body with a glass body, and improve the alignment accuracy of the decorative body and the glass body, so as to avoid deformation of the decorative body after being connected to the glass body.

[0050] Please refer to Figure 2 , Figure 2 is Figure 1 a structural schematic diagram of the glass assembly 20 shown in the figure. Figure 2 The X direction is the width direction of the glass assembly 20, the Y direction is the thickness direction of the glass assembly 20, and the Z direction is the height direction of the glass assembly 20. Among them, the width direction of the glass assembly 20 can be parallel to the plane direction of the glass of the glass assembly 20. The thickness direction of the glass assembly 20 can be perpendicular to the direction of the plane of the glass of the glass assembly 20. The height direction of the glass assembly 20 can be along the direction from the roof of the vehicle 100 to the bottom of the vehicle 100.

[0051] ​The glass assembly 20 comprises a glass body 21, a cladding 22, a decoration 23 and a connecting member 24. The cladding 22 covers at least part of the edge of the glass body 21. One end of the connecting member 24 is connected to the cladding 22, and the other end is connected to the decoration 23, so as to fix the decoration 23 to the glass body 21.

[0052] The glass body 21 can be tempered glass. The tempered glass can be transparent low-iron glass (also known as ultra-white glass), soda-lime glass, borosilicate glass, aluminosilicate glass or K glass, etc. The glass body 21 can also be tempered glass. The glass body 21 is tempered, so that the glass body 21 has strong rigidity and small deformation. In actual use, the strong rigidity can make the glass body 21 not easy to be damaged by external force, and can adapt to more use scenarios. The glass body 21 can also be semi-tempered glass. The glass body 21 has the characteristics of high strength of tempered glass, while avoiding the disadvantage of whole-body crushing of full-tempered glass. When the semi-tempered glass body 21 is damaged, it can crack radially along the crack source, generally without tangential crack propagation, so it can still maintain the integrity of the whole after being damaged without falling.

[0053] The glass body 21 can also be laminated glass. The laminated glass is a composite glass product in which one or more layers of organic polymer interlayer film are sandwiched between two or more pieces of glass, and after special high-temperature pre-pressing (or vacuumizing) and high-temperature high-pressure processing, the glass and the interlayer film are permanently bonded together. The laminated glass has good safety performance. The laminated glass also has the functions of sound insulation, sunlight control and ultraviolet light control.

[0054] The glass body 21 can also be any one of the commonly used vehicle window glasses. The present application does not limit the specific structure of the glass body 21. The above description of the glass body 21 is only exemplary.

[0055] The glass body 21 can be a quarter window, a side window, a sunroof or a windshield of the vehicle 100. The present application does not limit the installation position of the glass assembly 20 on the vehicle 100. For the convenience of description, the glass body 21 is taken as a quarter window of the vehicle 100 for illustration by way of example.

[0056] Please refer to Figure 2 The cladding 22 can be connected at any position of the edge of the glass body 21. The cladding 22 is provided with a limiting hole 220, which can penetrate the cladding 22 in the thickness direction of the glass assembly 20. Among them, the thickness direction of the glass assembly 20 can be understood as the thickness direction of the glass body 21. The length direction of the glass assembly 20 described below can be understood as the extension direction of the edge of the glass body 21 and the cladding 22. The width direction of the glass assembly 20 can be perpendicular to the thickness direction and the length direction of the glass body 21.

[0057] In the thickness direction of the glass assembly 20, the decorative member 23 can be stacked with the edging 22. Figure 3 , Figure 3 yes Figure 2 The decorative member 23 is shown as a schematic structural diagram. The decorative member 23 is provided with a first stopper 231 and a second stopper 232. The first stopper 231 and the second stopper 232 are both protruding from the surface of the decorative member 23 facing the edging 22. The first stopper 231 and the second stopper 232 may be spaced apart and opposed to each other in the width direction of the glass assembly 20.

[0058] See also Figure 4 , Figure 4 yes Figure 3 A schematic cross-sectional view of the decorative member 23 at point AA is shown. The first retaining member 231 includes a first sub-portion 2311 and a second sub-portion 2312. The first sub-portion 2311 and the second sub-portion 2312 are connected by a bend. The first sub-portion 2311 is connected to the surface of the decorative member 23 facing the edging 22 and extends toward the edging 22. The second sub-portion 2312 is connected to the end of the first sub-portion 2311 facing away from the decorative member 23. The second sub-portion 2312 is spaced apart from the surface of the decorative member 23 facing the edging 22.

[0059] The second limiting body 232 includes a third sub-section 2321 and a fourth sub-section 2322. The third sub-section 2321 is bent and connected to the fourth sub-section 2322. The third sub-section 2321 is connected to the surface of the decorative member 23 facing the edging 22 and extends toward the edging 22. In the width direction of the glass assembly 20, the third sub-section 2321 is spaced apart from the first sub-section 2311. The fourth sub-section 2322 is connected to the end of the third sub-section 2321 facing away from the decorative member 23. In the width direction of the glass assembly 20, the fourth sub-section 2322 and the second sub-section 2312 are arranged in sequence. The fourth sub-section 2322 is spaced apart from the surface of the decorative member 23 facing the edging 22. The fourth sub-section 2322 extends relative to the second sub-section 2312.

[0060] The first limiting body 231 and the second limiting body 232, together with the decorative piece 23, form a limiting groove 230. Specifically, the surfaces of the second sub-portion 2312 and the fourth sub-portion 2322 towards the decorative piece 23 can be the groove bottom wall 2301 of the limiting groove 230. The surface of the decorative piece 23 towards the second sub-portion 2312 and the fourth sub-portion 2322 can be the groove top wall 2302 of the limiting groove 230. The groove top wall 2302 and the groove bottom wall 2301 are opposite and spaced apart. The opposite surfaces of the first sub-portion 2311 and the third sub-portion 2321 can be the groove side wall (not labeled in the figure) of the limiting groove 230. The groove side wall is connected between the groove top wall 2302 and the groove bottom wall 2301. The depth h of the limiting groove 230 ranges between 0.3mm-1mm (including the end point values 0.3mm and 1mm). The depth h of the limiting groove 230 is the distance between the groove top wall 2302 and the groove bottom wall 2301. Specifically, the depth h of the limiting groove 230 can range between 0.4mm-0.6mm (including the end point values 0.4mm and 0.6mm).

[0061] The distance between the first sub-portion 2311 of the first limiting body 231 and the second sub-portion 2312 of the second limiting body 232 can be the width of the limiting groove 230. The width d of the limiting groove 230 ranges between 5mm-20mm (including the end point values 5mm and 20mm). Specifically, the width d of the limiting groove 230 can range between 8mm-15mm (including the end point values 8mm and 15mm).

[0062] In some other embodiments, the surfaces of the second sub-portion 2312 and the fourth sub-portion 2322 towards the decorative piece 23 can be the groove top wall 2302 of the limiting groove 230. The surface of the decorative piece 23 towards the second sub-portion 2312 and the fourth sub-portion 2322 can be the groove bottom wall 2301 of the limiting groove 230. In the figure, only the surfaces of the second sub-portion 2312 and the fourth sub-portion 2322 towards the decorative piece 23 are the groove bottom wall 2301 of the limiting groove 230. The surface of the decorative piece 23 towards the second sub-portion 2312 and the fourth sub-portion 2322 is the groove top wall 2302 of the limiting groove 230 is described as an example. But it is not limited thereto.

[0063] The second sub-portion 2312 of the first limiting body 231 and the fourth sub-portion 2322 of the second limiting body 232 can be spaced apart, so that the second sub-portion 2312 and the fourth sub-portion 2322 form an avoiding groove 2303. That is, the avoiding groove 2303 penetrates the groove top wall 2302 or the groove bottom wall 2301 of the limiting groove 230. The avoiding groove 2303 communicates with the limiting groove 230.

[0064] Please refer to Figure 5 and Figure 6 , Figure 5 is Figure 3 a structural schematic view of the connecting piece 24 shown inFigure 6 is Figure 5 is a sectional view of the connecting piece 24 at B-B shown in FIG. 2. The connecting piece 24 includes a first connecting portion 241 and a second connecting portion 242 connected to each other. The first connecting portion 241 is connected to the second connecting portion 242 by bending. The first connecting portion 241 is configured to be inserted into the limiting groove 230. The second connecting portion 242 is configured to pass through the avoiding groove 2303 and be connected to the edge 22.

[0065] The first connecting portion 241 is configured to be elastically deformed to a certain extent. For example, the first connecting portion 241 can be made of a metal material or a plastic material. When the connecting piece 24 is in an initial state, the connecting piece 24 is located outside the limiting groove 230, and the connecting piece 24 has not been connected to the decoration piece 23. The thickness of the first connecting portion 241 in the initial state is a first thickness L1. When the connecting piece 24 is in a connected state, the first connecting portion 241 of the connecting piece 24 is located in the limiting groove 230, and the thickness of the first connecting portion 241 of the connecting piece 24 is a second thickness, which is smaller than the first thickness L1. The second thickness can be the same as the depth of the limiting groove 230, or the second thickness can be greater than the depth of the limiting groove 230. The ratio of the first thickness L1 to the depth h of the limiting groove 230 is in a range of 6 / 5-3 / 2 (including the end values 6 / 5 and 3 / 2). Specifically, the ratio of the first thickness L1 of the first connecting portion 241 in the initial state to the depth h of the limiting groove 230 is in a range of 5 / 4-4 / 3 (including the end values 5 / 4 and 4 / 3).

[0066] In the embodiment, the portion of the first connecting portion 241 with the thickness L1 greater than the depth h of the limiting groove 230 is an interference amount of the first connecting portion 241. When the first connecting portion 241 is inserted into the limiting groove 230, the interference amount of the first connecting portion 241 is flattened to adapt to the structure of the limiting groove 230. When the interference amount of the first connecting portion 241 is less than 1 / 5, it is found that when the first connecting portion 241 is inserted into the limiting groove 230, the friction between the first connecting portion 241 and the groove wall of the limiting groove 230 is small. In actual use, when the connecting piece 24 or the decoration piece 23 is subjected to an external force, the relative position of the connecting piece 24 and the decoration piece 23 changes, thereby easily causing the decoration piece 23 to deform. When the interference amount of the first connecting portion 241 is greater than 1 / 2, the elastic force of the first connecting portion 241 is large after the first connecting portion 241 is inserted into the limiting groove 230, and the structure of the limiting groove 230 is easily damaged.

[0067] The first connecting portion 241 includes a first surface 2411 and a second surface 2412, which are oppositely arranged in the thickness direction of the first connecting portion 241. The first surface 2411 is a convex surface, and the second surface 2412 is a concave surface. The second connecting portion 242 is connected to a middle region of the second surface 2412.

[0068] In the present embodiment, when the second connecting portion 242 is clamped to the bound 22 and subjected to an external force from the bound 22, the second connecting portion 242 has a tendency to approach the bound 22. At this time, the second connecting portion 242 transmits the external force to the middle portion of the first connecting portion 241, increases the abutting force between the first connecting portion 241 and the top wall 2302 of the limiting groove 230, and thus increases the friction between the first connecting portion 241 and the limiting groove 230, so as to avoid the movement of the connecting piece 24 relative to the decorative piece 23, and ensure that the connecting piece 24 can be better aligned with the bound 22, and avoid the deformation of the decorative piece 23 due to the misalignment between the connecting piece 24 and the bound 22.

[0069] Please refer to Figure 7 , Figure 7 is Figure 5 the structural schematic view of another angle of the connecting piece 24. The second surface 2412 can include a first edge 2412a, a second edge 2412b, a third edge 2412c and a fourth edge 2412d. The first edge 2412a and the second edge 2412b are arranged opposite to each other along the length direction of the first connecting portion 241. Wherein, the length direction of the first connecting portion 241 can be understood as the X direction in the drawing. Please refer to Figure 6 , in the length direction of the first connecting portion 241, the first connecting portion 241 is arranged in a curved manner. That is, the cross-sectional shape of the first connecting portion 241 parallel to the length direction of the first connecting portion 241 is arc-shaped. Specifically, the first connecting portion 241 has a first end point 241a, a second end point 241b and a middle point 241c in the cross section parallel to the X direction. The first end point 241a, the middle point 241c and the second end point 241b are arranged in sequence along the X direction. Wherein, the arc-shaped cross-sectional shape means that the first end point 241a, the second end point 241b and the middle point 241c are not in the same straight line. The middle point 241c is located on the side of the Y direction of the line connecting the first end point 241a and the second end point 241b. The middle region where the middle point 241c of the cross section is located is arranged in a convex manner relative to the edge region where the first end point 241a and the second end point 241b are located.

[0070] The third edge 2412c and the fourth edge 2412d are arranged opposite to each other along the width direction of the first connecting portion 241.

[0071] The first connecting portion 241 can be provided with a groove 2410. Along the thickness direction of the first connecting portion 241, the groove 2410 penetrates the first surface 2411 and the second surface 2412 of the first connecting portion 241, and the groove 2410 penetrates the first edge 2412a. The second connecting portion 242 is connected to the groove wall of the groove 2410 toward the first edge 2412a.

[0072] In the embodiment, the second connecting portion 242 and the first connecting portion 241 can be integrally formed in actual production. The plate body in the groove 2410 of the first connecting portion 241 can be bent to form the second connecting portion 242.

[0073] In some other embodiments, the first connecting portion 241 and the second connecting portion 242 can be separately arranged, and the first connecting portion 241 and the second connecting portion 242 can be connected by riveting, welding, bolting or the like.

[0074] In the first possible embodiment, please refer to Figure 5 and Figure 7 In the first possible embodiment, please refer to Figure 5 and Figure 7 In the first connecting portion 241, the first connecting portion 241 can be curved in the width direction. That is, the cross-sectional shape of the first connecting portion 241 parallel to the width direction of the first connecting portion 241 is arc-shaped. The length direction of the first connecting portion 241 can be the same as the length direction of the glass assembly 20. The width direction of the first connecting portion 241 can be the same as the width direction of the glass assembly 20.

[0075] When the first connecting portion 241 is curved in the length direction and the width direction, it can be understood that the surface of the first connecting portion 241 can be spherical. The middle part of the first connecting portion 241 can be recessed or protruded relative to the four peripheral edges of the first connecting portion 241, that is, the middle part of the first connecting portion 241 is not in the same plane as the four peripheral edges of the first connecting portion 241.

[0076] The first connecting portion 241 is inserted into the limiting groove 230, and at least part of the first edge 2412a and at least part of the second edge 2412b abut against the groove top wall 2302. The middle part of the first connecting portion 241 abuts against the groove bottom wall 2301.

[0077] In the embodiment, the first connecting portion 241 of the connecting piece 24 can be curved. When the first connecting portion 241 of the connecting piece 24 is inserted into the limiting groove 230, the first connecting portion 241 can abut against the groove top wall 2302 relative to the first edge 2412a and the second edge 2412b close to each other, and the middle part of the first connecting portion 241 abuts against the groove bottom wall 2301 of the limiting groove 230.

[0078] After the first connecting portion 241 is inserted into the limiting groove 230, the bending degree of the first connecting portion 241 becomes smaller, and the first connecting portion 241 undergoes elastic deformation, thereby increasing the friction between the first edge 2412a and the second edge 2412b and the groove top wall 2302 of the limiting groove 230, and the friction between the middle part of the first connecting portion 241 and the limiting groove 230, making it more difficult for the first connecting portion 241 to fall off from the limiting groove 230, thereby improving the stability of the connection between the connecting member 24 and the decorative member 23, and further making the position of the connecting member 24 on the decorative member 23 more precise, so that the connecting member 24 can be better aligned with the edging 22, avoiding poor alignment of the connecting member 24 and the edging 22 and causing deformation of the decorative member 23.

[0079] In addition, the decorative member 23 of the vehicle 100 may be damaged during use due to environmental factors or unexpected circumstances. By separating the decorative member 23 from the connecting member 24, the decorative strip can be removed from the edging 22, making it easier for the vehicle owner or maintenance personnel to inspect, maintain, and replace it without having to replace the entire glass assembly 20.

[0080] In some possible implementations, at least a portion of the third edge 2412 c and at least a portion of the fourth edge 2412 d may abut against the groove top wall 2302 .

[0081] The cross-sections of the first connecting portion 241 in both the length and width directions can be arc-shaped. The overall shape of the first connecting portion 241 can be similar to a partial sphere. The middle portion of the first connecting portion 241 can be convex relative to the surrounding area. When the first connecting portion 241 is inserted into the limiting groove 230, the curvature of the first connecting portion 241 in the length direction becomes smaller, the curvature of the first connecting portion 241 in the width direction becomes smaller, the first connecting portion 241 undergoes elastic deformation, and the first connecting portion 241 can be supported between the groove top wall 2302 and the groove bottom wall 2301 of the limiting groove 230.

[0082] The middle part of the first connection part 241 abuts against the bottom wall 2301 of the limiting groove 230. The middle part of the first connection part 241 receives the external force applied by the bottom wall 2301 and transmits it to the first edge 2412a, the second edge 2412b, the third edge 2412c and the fourth edge 2412d around it to increase the force between the edge of the first connection part 241 and the top wall 2302 of the limiting groove 230. Since the edges of the first connection part 241 in the length and width directions abut against the top wall 2302 of the limiting groove 230, when the first connection part 241 is subjected to external force in any direction, friction force in the opposite direction can be generated to prevent the connecting part 24 from moving relative to the decorative part 23, ensuring that the connecting part 24 can be better aligned with the edging 22, and avoiding deformation of the decorative part 23 due to poor alignment of the connecting part 24 and the edging 22.

[0083] In some other embodiments, the first edge 2412a, the second edge 2412b, the third edge 2412c and the fourth edge 2412d can be arc-shaped. The middle of each edge can be concave relative to the two ends. The first edge 2412a, the third edge 2412c, the second edge 2412b and the fourth edge 2412d are sequentially connected end to end, and the intersection of the two adjacent edges abuts against the top wall 2302 of the limiting groove 230.

[0084] In actual use, it is difficult for the first edge 2412a, the second edge 2412b, the third edge 2412c and the fourth edge 2412d to keep completely abutting against the top wall 2302 of the limiting groove 230. Thus, the frictional force of the connecting piece 24 at different positions with the decorative strip is different. When the connecting piece 24 is subjected to an external force, the position of the connecting piece 24 with smaller frictional force with the decorative strip is prone to relative sliding, thereby causing the relative angle or position of the connecting piece 24 and the decorative strip to deviate.

[0085] The present application controls the contact position of the connecting piece 24 and the decorative piece 23 at the intersection of the first edge 2412a, the third edge 2412c, the second edge 2412b and the fourth edge 2412d, and controls the abutting position of the connecting piece 24 and the decorative piece 23, so that the direction of the frictional force received by the connecting piece 24 is more uniform. Thus, the frictional force between the connecting piece 24 and the decorative piece 23 can counteract the external force in each direction, so as to avoid the connecting piece 24 from moving relative to the decorative piece 23, ensure that the connecting piece 24 can be better aligned with the edge cover 22, and avoid the connecting piece 24 from being misaligned with the edge cover 22 to cause the decorative piece 23 to be deformed.

[0086] One end of the second connecting portion 242 can be bent and connected to the middle region of the second surface 2412 of the first connecting portion 241. The other end of the second connecting portion 242 extends out of the limiting groove 230, and the second connecting portion 242 is arranged in the avoiding groove 2303. The end of the second connecting portion 242 away from the first connecting portion 241 is connected with the edge cover 22.

[0087] In the second possible embodiment, please refer to Figure 8 , Figure 8 is Figure 2Another structure of the connector 24 is shown. The connector 24 further comprises a first latch 2401 and a second latch 2402. The first latch 2401 protrudes from the third edge 2412c, and the second latch 2402 protrudes from the fourth edge 2412d. The first latch 2401 and the second latch 2402 are in contact with the slot side wall of the limiting slot 230. The protruding size L3 of the first latch 2401 relative to the first edge 2412a and the protruding size L3 of the second latch 2402 relative to the fourth edge 2412d can range from 0.1mm to 0.5mm (including the end values 0.1mm and 0.5mm). Specifically, the range of L3 can be from 0.2mm to 0.3mm (including the end values 0.2mm and 0.3mm).

[0088] In the present embodiment, the first connecting portion 241 can only bend in the length direction, and the cross section of the first connecting portion 241 in the width direction can be linear.

[0089] It can be understood that the first latch 2401 and the second latch 2402 can increase the contact points between the first connecting portion 241 and the slot side wall, thereby increasing the friction between the first connecting portion 241 and the slot side wall, to avoid the movement of the connector 24 relative to the decorative piece 23, and to ensure that the connector 24 can be better aligned with the edge cover 22, thereby avoiding the misalignment between the connector 24 and the edge cover 22 and the deformation of the decorative piece 23.

[0090] The above describes the embodiments of the present application in detail. The specific examples are applied to the principles and implementation modes of the present application. The above description of the embodiments is only used to help understand the method and core idea of the present application. Meanwhile, for those skilled in the art, according to the idea of the present application, the specific implementation mode and application range can be changed. In summary, the content of the present description should not be understood as a limitation of the present application.

Claims

1. A glass assembly, characterized in that: include: Glass body; Edge wrapping, covering at least a portion of the edge of the glass body; The decorative piece is provided with a limiting groove, wherein the limiting groove includes a groove top wall and a groove bottom wall, and the groove top wall and the groove bottom wall are opposite to each other and spaced apart; and The connecting member includes a first connecting part and a second connecting part, the first connecting part is located in the limiting groove, the first connecting part includes a first edge and a second edge, the first edge and the second edge are arranged opposite to each other along the length direction of the first connecting part, at least part of the first edge and at least part of the second edge abut against the top wall of the groove, the middle part of the first connecting part abuts against the bottom wall of the groove, and the cross-sectional shape of the first connecting part is arc-shaped along the length direction parallel to the first connecting part, one end of the second connecting part is bent and connected to the first connecting part, and the other end of the second connecting part extends out of the limiting groove and is connected to the edging.

2. The glass assembly according to claim 1, characterized in that: The first connecting portion also includes a third edge and a fourth edge, and the third edge and the fourth edge are arranged opposite to each other along the width direction of the first connecting portion. At least part of the third edge and at least part of the fourth edge abut against the top wall of the groove. Along the width direction parallel to the first connecting portion, the cross-sectional shape of the first connecting portion is an arc.

3. The glass assembly according to claim 2, characterized in that: The first edge, the third edge, the second edge and the fourth edge intersect each other end to end in sequence, and the intersection of two adjacent edges abuts against the groove top wall.

4. The glass assembly according to claim 1, characterized in that: The connecting member further includes a first latching tooth and a second latching tooth; The limiting groove also includes a groove side wall, which is connected between the groove top wall and the groove bottom wall. The first connecting portion also includes a third edge and a fourth edge. The third edge and the fourth edge are arranged opposite to each other along the width direction of the first connecting portion. The first latch tooth is protruded from the third edge, and the second latch tooth is protruded from the fourth edge. The first latch tooth and the second latch tooth both abut against the groove side wall.

5. The glass assembly according to any one of claims 1 to 4, characterized in that: The first connecting portion includes a first surface and a second surface. In the thickness direction of the first connecting portion, the first surface and the second surface are arranged opposite to each other, the first surface is convex, and the second surface is concave. The second connecting portion is connected to the middle area of ​​the second surface.

6. The glass assembly according to any one of claims 1 to 4, characterized in that: The first connecting portion is provided with a groove, which passes through the first connecting portion along the thickness direction of the first connecting portion and the first edge, and the second connecting portion is connected to the groove wall facing the first edge; The decorative component is provided with an avoidance groove, the avoidance groove is communicated with the limiting groove, and the second connecting portion is passed through the avoidance groove.

7. The glass assembly according to claim 5, characterized in that: The second connecting portion is connected to the first connecting portion to form an integrated structure.

8. The glass assembly according to any one of claims 1 to 4, characterized in that: When the connecting member is in an initial state, the first connecting portion is located outside the limiting groove, and the thickness of the first connecting portion is a first thickness; The ratio of the first thickness to the depth of the limiting groove is in the range of 6 / 5-3 / 2.

9. The glass assembly according to claim 8, characterized in that: The depth of the limiting groove ranges from 0.3 mm to 1 mm.

10. A vehicle, characterized in that: The invention comprises a vehicle body and a glass assembly according to any one of claims 1 to 9, wherein the glass assembly is connected to the vehicle body.