Bracket assembly, vehicle glass and vehicle

By installing bracket components on the inner and outer sides of the frameless door glass to ensure symmetrical distribution of force, the problem of poor installation stability of frameless door glass during vehicle driving is solved, the risk of glass breakage and lobes is reduced, and clamping reliability is improved.

CN223131769UActive Publication Date: 2025-07-22FUYAO GLASS IND GROUP CO LTD
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Patent Information

Application Number
CN202421863864.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-07-22
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The frameless door glass lacks window frame support during vehicle driving, resulting in poor installation stability. The existing plastic support structure is prone to deformation under the action of external forces, reducing installation stability.

Method used

A bracket assembly is designed, including a first clamping member and a second clamping member, respectively arranged on the inner and outer sides of the glass assembly, and contacts the glass through a buffer structure, and connects the two clamping members by a connecting structure to ensure symmetrical distribution of force.

Benefits of technology

It improves the installation stability of frameless door glass, reduces the risk of glass breakage and lobes, and enhances clamping reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a bracket assembly, vehicle glass and a vehicle, and relates to the technical field of vehicles, the bracket assembly is used for being arranged between a glass assembly and a lifting structure, the bracket assembly comprises a first clamping piece, a second clamping piece, a buffering structure and a connecting structure, and the first clamping piece is arranged on the inner side of the glass assembly; the second clamping piece is arranged on the outer side of the glass assembly; the buffer structure is arranged on the first clamping piece and / or the second clamping piece and abuts against the glass assembly. The connecting structure is detachably connected with the first clamping piece and the second clamping piece. According to the utility model, the problem of glass breakage caused by staggered-layer stress of the glass assembly due to asymmetric force application is reduced by applying the bracket component, and the mounting stability is improved. And moreover, the buffer structure abuts against the glass assembly, and the buffer structure can further reduce the stress effect of the clamping piece on the glass assembly in the assembling process, so that the risk that the glass assembly cracks is reduced, and the clamping reliability is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of vehicles, and particularly relates to a bracket assembly, a vehicle glass and a vehicle. Background Art

[0002] The frameless door glass has the advantages of high-end, fashionable and personalized, etc. The use of the frameless door glass improves the aesthetics of the vehicle and increases the grade sense of the vehicle. Therefore, the frameless door glass and the frameless door glass lifting structure are increasingly used on more and more new models. Since the vehicle is in a positive pressure inside the window and a negative pressure outside the window during driving, the door glass needs to bear the acting force of outward inclination. The four sides of the framed door glass are supported by the window frame, and the fixed part between the door glass and the lifting structure bears a smaller acting force. However, the frameless door glass lacks the support of the window frame, and the fixed part between the door glass and the lifting structure needs to bear a larger acting force. The existing plastic support structure arranged between the door glass and the lifting structure is prone to deformation problems under this acting force, thereby reducing the installation stability of the frameless door glass. Therefore, how to improve the installation stability of the frameless door glass has become a technical problem to be solved urgently at present. Summary of the Utility Model

[0003] In order to overcome the above-mentioned defects of the prior art, the technical problem to be solved by the embodiments of the present utility model is to provide a bracket assembly, a vehicle glass and a vehicle for improving the installation stability of the frameless door glass.

[0004] The above object of the present utility model can be achieved by the following technical solutions. The present utility model provides a bracket assembly for being arranged between a glass assembly and a lifting structure, comprising:

[0005] A first clamping member, which is arranged inside the glass assembly;

[0006] A second clamping member, which is arranged outside the glass assembly and is arranged opposite to the first clamping member;

[0007] A buffer structure, which is arranged on the first clamping member and / or the second clamping member and abuts against the glass assembly;

[0008] A connection structure, which detachably connects the first clamping member and the second clamping member.

[0009] In a preferred embodiment of the present utility model, the first clamping member comprises a first clip, the second clamping member comprises a second clip, and the first clip and the second clip are arranged opposite to each other on both sides of the glass assembly.

[0010] In a preferred embodiment of the present utility model, the second clamping member further includes a metal member, the metal member is stacked with the second clip and disposed outside the second clip, and the connection structure detachably connects the first clip and the metal member.

[0011] In a preferred embodiment of the present utility model, the metal member is snap-connected or adhesively connected to the second clip, the metal member is a cold-rolled steel plate or a stainless steel plate, and the thickness of the metal member is 1.5 mm to 3 mm.

[0012] In a preferred embodiment of the present utility model, the glass assembly is provided with a mounting hole, the connection structure includes a connection hole provided on the first clip, a locking member provided on the metal member, and a connecting member, and the connecting member can pass through the connection hole, the mounting hole and be detachably connected to the locking member.

[0013] In a preferred embodiment of the present utility model, the size of the mounting hole is 15 mm to 30 mm, and the distance between the mounting hole and the edge of the glass assembly is 30 mm to 60 mm.

[0014] In a preferred embodiment of the present utility model, the first clip is further provided with a partition portion disposed around the connection hole, and at least a part of the partition portion can be inserted into the mounting hole and is disposed between the inner wall of the mounting hole and the locking member.

[0015] In a preferred embodiment of the present utility model, the locking member includes a flanging nut provided on the metal member, and the connecting member includes a connecting bolt.

[0016] In a preferred embodiment of the present utility model, the first clip and the second clip are integrally formed.

[0017] In a preferred embodiment of the present utility model, the buffer structure includes a first cushioning member and a second cushioning member. The first cushioning member is disposed on the side end face of the first clip facing the glass assembly. Along the thickness direction of the glass assembly, at least a part of the first cushioning member protrudes from the first clip and abuts against the glass assembly, and at least a part of the second cushioning member protrudes from the second clip and abuts against the glass assembly.

[0018] In a preferred embodiment of the present utility model, along the thickness direction of the glass assembly, the projections of the first cushioning member and the second cushioning member are located within the metal member.

[0019] In a preferred embodiment of the present utility model, the first cushioning member and the second cushioning member are symmetrically arranged with respect to the glass assembly.

[0020] In a preferred embodiment of the present utility model, the first cushion member extends on the first clamping piece to form a closed loop; and / or, the second cushion member extends on the second clamping piece to form a closed loop.

[0021] In a preferred embodiment of the present utility model, the distance between the first cushion member and the mounting hole is not less than 3 mm; and / or, the distance between the second cushion member and the mounting hole is not less than 3 mm.

[0022] In a preferred embodiment of the present utility model, the first cushion member is formed by an elastic material or an adhesive; and / or, the second cushion member is formed by an elastic material or an adhesive.

[0023] In a preferred embodiment of the present utility model, the elastic material is a TPE material or an EPDM material, and the hardness of the elastic material is between HA50 - 80°.

[0024] In a preferred embodiment of the present utility model, the adhesive is a polyurethane adhesive, the polyurethane adhesive is a one - component polyurethane adhesive or a two - component polyurethane adhesive, and the hardness of the polyurethane adhesive after curing is between HA30 - 70°.

[0025] In a preferred embodiment of the present utility model, the first clamping piece is formed by a plastic material; and / or, the second clamping piece is formed by a plastic material.

[0026] In a preferred embodiment of the present utility model, the plastic material is one or a combination of more of PBT, PA6, PP, POM or glass fiber.

[0027] The present utility model also provides a vehicle glass, including a glass assembly and the foregoing bracket assembly provided on the glass assembly, and the glass assembly is used to connect a lifting structure through the bracket assembly.

[0028] In a preferred embodiment of the present utility model, the glass assembly includes a frameless door glass.

[0029] The present utility model also provides a vehicle, including a vehicle body and the foregoing vehicle glass, and the vehicle glass is provided on the vehicle body.

[0030] The technical solution of the present utility model has the following remarkable beneficial effects:

[0031] When the bracket assembly of the present utility model is in use, the bracket assembly is fixed on the glass assembly, and the glass assembly and the lifting structure are connected through the bracket assembly. Specifically, the first clamping member and the second clamping member are respectively arranged on both sides of the glass assembly, and the connecting structure is used to connect the first clamping member and the second clamping member to play a fixing role. By making the first clamping member and the second clamping member be symmetrically arranged relative to the glass assembly, the pressures borne on the inner and outer surfaces of the glass assembly are symmetric, avoiding the problem of glass breakage caused by uneven force application and resulting in staggered stress on the glass assembly, and improving the installation stability. Moreover, a buffer structure is also arranged between the first clamping member and / or the second clamping member and the glass assembly. The buffer structure abuts against the glass assembly, and the buffer structure can further reduce the stress of the clamping member on the glass assembly during the assembly process, thereby reducing the risk of glass fragments in the glass assembly and improving the clamping reliability. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0033] The drawings described herein are only for explanatory purposes and are not intended to limit the scope of the disclosure of the present utility model in any way. Additionally, the shapes and proportional dimensions of the components in the drawings are only schematic for helping the understanding of the present utility model and do not specifically limit the shapes and proportional dimensions of the components of the present utility model. Those skilled in the art can, under the teaching of the present utility model, select various possible shapes and proportional dimensions according to specific circumstances to implement the present utility model.

[0034] Figure 1 It is an exploded structural schematic diagram of an embodiment of the bracket assembly of the present utility model;

[0035] Figure 2 It is a three-dimensional structural schematic diagram of an embodiment of the first clamping member of the present utility model;

[0036] Figure 3 It is a three-dimensional structural schematic diagram of an embodiment of the second clip of the present utility model;

[0037] Figure 4 It is a three-dimensional structural schematic diagram of an embodiment of the metal part of the present utility model;

[0038] Figure 5 It is a structural schematic diagram of a state where the buffer structure of the present utility model is in abutment with the glass assembly;

[0039] Figure 6 A structural schematic diagram of the first cushioning member and the glass assembly of the present utility model in a butt-joint state.

[0040] Reference numerals in the above drawings:

[0041] 10. Glass assembly; 11. Mounting hole;

[0042] 20. Lifting structure;

[0043] 100. First clamping member; 110. First clamping piece; 111. Connecting hole; 112. Partition portion;

[0044] 200. Second clamping member; 210. Second clamping piece; 220. Metal part; 221. Locking member;

[0045] 300. Buffer structure; 310. First cushioning member; 320. Second cushioning member;

[0046] 400. Connecting structure; 410. Connecting piece;

[0047] 500. Adhesive tape. Specific embodiments

[0048] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0049] Embodiment 1

[0050] Please refer to Figures 1 to 6 As shown, in an embodiment of the present utility model, a bracket assembly is provided for being disposed between a glass assembly 10 and a lifting structure 20. The bracket assembly includes a first clamping member 100, a second clamping member 200, a buffer structure 300, and a connecting structure 400. The first clamping member 100 is disposed inside the glass assembly 10; the second clamping member 200 is disposed outside the glass assembly 10 and is oppositely arranged with the first clamping member 100; the buffer structure 300 is disposed on the first clamping member 100 and / or the second clamping member 200 and is in butt-joint with the glass assembly 10; the connecting structure 400 detachably connects the first clamping member 100 and the second clamping member 200.

[0051] Overall, when the bracket assembly is in use, the bracket assembly is fixed to the glass assembly 10, and the glass assembly 10 and the lifting structure 20 are connected through the bracket assembly. Specifically, the first clamping member 100 and the second clamping member 200 are respectively arranged on both sides of the glass assembly 10, and the connecting structure 400 is used to connect the first clamping member 100 and the second clamping member 200 to play a fixing role. By making the first clamping member 100 and the second clamping member 200 be arranged approximately symmetrically with respect to the glass assembly 10, the pressures borne on the inner and outer surfaces of the glass assembly 10 are symmetric, avoiding the problem of glass breakage caused by uneven force application resulting in misaligned stress on the glass assembly 10, and improving the installation stability. Moreover, a buffer structure 300 is further arranged between the first clamping member 100 and / or the second clamping member 200 and the glass assembly 10. The buffer structure 300 abuts against the glass assembly 10, and the buffer structure 300 can further reduce the stress action of the clamping member on the glass assembly 10 during the assembly process, thereby reducing the risk of the glass assembly 10 cracking and improving the clamping reliability.

[0052] In an embodiment of the present invention, as Figure 1 , Figure 2 and Figure 3 shown in the embodiments, the first clamping member 100 includes a first clamping piece 110, the second clamping member 200 includes a second clamping piece 210, and the first clamping piece 110 and the second clamping piece 210 are oppositely arranged on both sides of the glass assembly 10.

[0053] Specifically, the first clamping piece 110 is arranged on the inner side of the glass assembly 10, and the second clamping piece 210 is arranged on the outer side of the glass assembly 10. Moreover, the first clamping piece 110 and the second clamping piece 210 are flat-shaped. After the connecting structure 400 connects the first clamping piece 110 and the second clamping piece 210, the first clamping piece 110 and the second clamping piece 210 can play a better clamping role on the glass assembly 10.

[0054] Designers can adjust the specific structure of the first clamping piece 110 and the second clamping piece 210 according to the use requirements. For example, the first clamping piece 110 and the second clamping piece 210 can be set to be rectangular, circular, oval or other shapes, which are not specifically limited herein. Preferably, both the first clamping piece 110 and the second clamping piece 210 are set to be rectangular.

[0055] Since the pressure inside the vehicle window is positive and the pressure outside the vehicle window is negative during the driving of the vehicle, the door glass needs to bear the acting force of outward inclination, which easily causes the second clamping member 200 to deform. To solve the above problems, in an embodiment of the present invention, the second clamping member 200 further includes a metal member 220. The metal member 220 is stacked with the second clamping piece 210 and is arranged outside the second clamping piece 210, and the connecting structure 400 detachably connects the first clamping piece 110 and the metal member 220.

[0056] By laminating the metal part 220 and the second clip 210, the structural strength of the second clamping part 200 is significantly improved, so that the second clamping part 200 can better support the glass assembly 10 on the outside of the glass assembly 10.

[0057] Designers can adjust the specific structure of the metal part 220 according to the usage requirements. For example, the metal part 220 can be set as a rectangle, a circle, an ellipse or other shapes, which are not specifically limited here. Preferably, the metal part 220 is set as a rectangle.

[0058] Specifically, as Figure 1 and Figure 4 shown in the embodiment, the metal part 220 is a cold-rolled steel plate or a stainless steel plate, and the thickness of the metal part 220 is 1.5 mm to 3 mm. Designers can adjust the specific material and thickness of the metal part 220 according to the usage requirements, which are not specifically limited here.

[0059] By setting the metal part 220 as a cold-rolled steel plate or a stainless steel plate, the metal part 220 has better strength, so that the structural strength of the second clamping part 200 can be improved. Moreover, the cost of the cold-rolled steel plate or the stainless steel plate is relatively low, which is beneficial to reducing the manufacturing cost of the bracket assembly.

[0060] Furthermore, designers can adjust the connection method between the metal part 220 and the second clip 210 according to the usage requirements. For example, the metal part 220 and the second clip 210 are connected by snap connection or adhesive connection, which are not specifically limited here.

[0061] In the embodiment of the present utility model, as Figure 1 and Figure 6 shown in the embodiment, the glass assembly 10 is provided with a mounting hole 11. The connection structure 400 includes a connection hole 111 provided on the first clip 110, a locking member 221 provided on the metal part 220, and a connecting member 410. The connecting member 410 can pass through the connection hole 111, the mounting hole 11 and be detachably connected to the locking member 221.

[0062] Specifically, the lower part of the glass assembly 10 is provided with a mounting part, and at least one mounting hole 11 is provided on the mounting part. A connection hole 111 is provided on the first clip 110, and the connection hole 111 is coaxially arranged with the mounting hole 11.

[0063] During installation, the connecting piece 410 passes through the connecting hole 111 and the mounting hole 11 and is connected to the locking piece 221, thereby realizing the locking operation between the first clamping piece 110 and the second clamping piece 210, and playing a role in fixing the first clamping piece 110, the glass assembly 10 and the second clamping piece 210. Since the metal piece 220 has better structural strength, by arranging the locking piece 221 on the metal piece 220, it is beneficial to improve the connection strength.

[0064] Designers can adjust the specific size and setting position of the mounting hole 11 according to the usage requirements, and no specific restrictions are made here. Preferably, the size of the mounting hole 11 is 15 mm to 30 mm, and the distance between the mounting hole 11 and the edge of the glass assembly 10 is 30 mm to 60 mm.

[0065] By controlling the distance between the mounting hole 11 and the edge of the glass assembly 10, it is avoided that the mounting hole 11 is too close to the edge of the glass assembly 10 and causes excessive stress on the edge of the glass assembly 10, thereby reducing the risk of the glass assembly 10 cracking.

[0066] In the embodiment of the present utility model, as Figure 4 shown in the embodiment, the locking piece 221 includes a flanging nut arranged on the metal piece 220, and the connecting piece 410 includes a connecting bolt. Among them, the size of the flanging nut is small, so that the size of the mounting hole 11 can be reduced, and the problem that the compressive stress of the first clamping piece 110 and the second clamping piece 210 on the glass assembly 10 is reduced due to the too large size of the mounting hole 11 is avoided.

[0067] Of course, in other feasible embodiments, designers can adjust the specific structure of the locking piece 221 and the connecting piece 410 according to the usage requirements, and no specific restrictions are made here. For example, the locking piece 221 can also be a nut welded on the metal piece 220. Or, the locking piece 221 can also be set as other types of locking structures.

[0068] Since the locking piece 221 is a rigid structure, when the locking piece 221 contacts the glass assembly 10, especially when contacting the inner wall of the mounting hole 11, the locking piece 221 may damage the glass assembly 10, resulting in a risk of the glass assembly 10 cracking.

[0069] To solve the above problems, in the embodiment of the present utility model, as Figure 2 shown in the embodiment, the first clamping piece 110 is further provided with a partition portion 112 arranged around the connecting hole 111, and at least part of the partition portion 112 can be inserted into the mounting hole 11 and placed between the inner wall of the mounting hole 11 and the locking piece 221.

[0070] Specifically, the partition portion 112 is generally cylindrical and is arranged around the connection hole 111. By inserting at least a part of the partition portion 112 into the mounting hole 11, the inner wall of the mounting hole 11 and the locking member 221 can be isolated by the partition portion 112, avoiding the contact between the locking member 221 and the inner wall of the mounting hole 11, thereby reducing the risk of the glass assembly 10 being broken.

[0071] Of course, in other feasible embodiments, the designer can adjust the specific structure of the partition portion 112 according to the usage requirements, and no specific limitation is made here.

[0072] In a feasible embodiment of the present utility model, as Figure 1 shown in the embodiment, the first clamping piece 110 and the second clamping piece 210 are arranged in a split manner. By arranging the first clamping piece 110 and the second clamping piece 210 in a split manner, the first clamping piece 110 and the second clamping piece 210 are independent of each other. Thus, during the maintenance process, the damaged first clamping piece 110 or the second clamping piece 210 can be repaired separately, improving the maintenance efficiency and reducing the usage cost.

[0073] In another feasible embodiment of the present utility model, the first clamping piece 110 and the second clamping piece 210 are arranged in an integral structure. By arranging the first clamping piece 110 and the second clamping piece 210 in an integral structure, the structural linkage between the first clamping piece 110 and the second clamping piece 210 is improved, the positioning difficulty between the first clamping piece 110 and the second clamping piece 210 is reduced, and it is beneficial to realize the precise installation of the first clamping piece 110 and the second clamping piece 210.

[0074] In the embodiment of the present utility model, the first clamping piece 110 is formed by a plastic material; and / or, the second clamping piece 210 is formed by a plastic material. Preferably, both the first clamping piece 110 and the second clamping piece 210 are formed by a plastic material.

[0075] The designer can adjust the specific plastic material components of the first clamping piece 110 and the second clamping piece 210 according to the usage requirements, and no specific limitation is made here. Preferably, the plastic material is one or a combination of more than one of PBT, PA6, PP, POM or glass fiber.

[0076] Of course, in other feasible embodiments, the designer can also manufacture the first clamping piece 110 and the second clamping piece 210 through other materials, and no specific limitation is made here.

[0077] When the first clamping piece 110 and the second clamping piece 210 are in direct contact with the glass assembly 10, the first clamping piece 110 and the second clamping piece 210 will exert a stress on the glass assembly 10, causing uneven stress distribution on the glass assembly 10, thereby increasing the risk of the glass assembly 10 having cracks.

[0078] To solve the above problems, in the embodiments of the present utility model, as shown in Figure 1 and Figure 5 in the illustrated embodiments, the buffer structure 300 includes a first cushion member 310 and a second cushion member 320. The first cushion member 310 is disposed on one side end face of the first clip 110 facing the glass assembly 10. Along the thickness direction of the glass assembly 10, at least a part of the first cushion member 310 protrudes from the first clip 110 and abuts against the glass assembly 10, and at least a part of the second cushion member 320 protrudes from the second clip 210 and abuts against the glass assembly 10.

[0079] Specifically, the area ratio of the first cushion member 310 on the first clip 110 is not less than 50%; and / or, the area ratio of the second cushion member 320 on the second clip 210 is not less than 50%. Moreover, the hardness of the first cushion member 310 is less than the hardness of the first clip 110, and the hardness of the second cushion member 320 is less than the hardness of the second clip 210.

[0080] Designers can adjust the area ratio of the first cushion member 310 and the second cushion member 320 according to the usage requirements, and no specific numerical limitations are provided here.

[0081] By adding the first cushion member 310 with a lower hardness between the first clip 110 and the glass assembly 10, the first cushion member 310 serves as an intermediate transition and abuts against the inner sides of the first clip 110 and the glass assembly 10 respectively. Through the first cushion member 310, the stress exerted by the first clip 110 on the glass assembly 10 during the assembly process can be reduced, thereby improving the stress condition on the glass assembly 10 and reducing the risk of the glass assembly 10 cracking.

[0082] Similarly, by adding the second cushion member 320 with a lower hardness between the second clip 210 and the glass assembly 10, the second cushion member 320 serves as an intermediate transition and abuts against the outer sides of the second clip 210 and the glass assembly 10 respectively. Through the second cushion member 320, the stress exerted by the second clip 210 on the glass assembly 10 during the assembly process can be reduced, thereby improving the stress condition on the glass assembly 10 and reducing the risk of the glass assembly 10 cracking.

[0083] In the embodiments of the present utility model, along the thickness direction of the glass assembly 10, the projections of the first cushion member 310 and the second cushion member 320 are located within the metal member 220.

[0084] By making the projections of the first cushion member 310 and the second cushion member 320 located within the metal member 220, when the connecting member 410 connects the locking member 221 on the metal member 220 and the connecting hole 111 on the first clip 110, the metal member 220 can better press against the second cushion member 320 on the second clip 210, improving the crimping effect of the first cushion member 310, the second cushion member 320 and the glass assembly 10.

[0085] Furthermore, the first cushion member 310 and the second cushion member 320 are symmetrically arranged relative to the glass assembly 10. By symmetrically arranging the first cushion member 310 and the second cushion member 320 relative to the glass assembly 10, the stresses borne on the inner and outer surfaces of the glass assembly 10 are symmetric, avoiding the problem of glass breakage caused by misaligned stress on the glass assembly 10 due to asymmetric force application.

[0086] In an embodiment of the present invention, the first cushion member 310 extends on the first clip 110 to form a closed loop; and / or, the second cushion member 320 extends on the second clip 210 to form a closed loop.

[0087] Preferably, the first cushion member 310 extends on the first clip 110 to form a closed loop; and, the second cushion member 320 extends on the second clip 210 to form a closed loop. That is, the first cushion member 310 is arranged around the connection hole 111, and the second cushion member 320 is arranged around the locking member 221.

[0088] By arranging both the first cushion member 310 and the second cushion member 320 as closed loops, the first cushion member 310 and the second cushion member 320 can apply force to the glass assembly 10 more uniformly along the circumferential direction of the mounting hole 11, improving the uniformity of force application.

[0089] Of course, in other feasible embodiments, the designer can adjust the specific arrangement of the first cushion member 310 and the second cushion member 320 according to the usage requirements. For example, the first cushion member 310 extends on the first clip 110 to form a non-closed loop, and the second cushion member 320 extends on the second clip 210 to form a non-closed loop, which is not specifically limited herein.

[0090] In an embodiment of the present invention, the distance between the first cushion member 310 and the mounting hole 11 is not less than 3 mm; and / or, the distance between the second cushion member 320 and the mounting hole 11 is not less than 3 mm. Preferably, the distance between the first cushion member 310 and the mounting hole 11 is not less than 3 mm; the distance between the second cushion member 320 and the mounting hole 11 is not less than 3 mm.

[0091] By controlling the distance between the first cushion member 310 and the mounting hole 11, as well as the gap between the second cushion member 320 and the mounting hole 11, it is avoided that the distances between the first cushion member 310, the second cushion member 320 and the mounting hole 11 are too small, enabling the first cushion member 310 and the second cushion member 320 to avoid the area with relatively low stress values around the mounting hole 11, reducing the risk of the glass assembly 10 cracking.

[0092] The designer can adjust the specific distance between the first cushion member 310, the second cushion member 320 and the mounting hole 11 according to the usage requirements, and no specific numerical limit is provided herein.

[0093] In an embodiment of the present utility model, the first cushion member 310 is formed by an elastic material or an adhesive; and / or, the second cushion member 320 is formed by an elastic material or an adhesive. Preferably, both the first cushion member 310 and the second cushion member 320 are formed by an elastic material or an adhesive.

[0094] In a feasible embodiment, both the first cushion member 310 and the second cushion member 320 are formed by an elastic material.

[0095] In another feasible embodiment, both the first cushion member 310 and the second cushion member 320 are formed by an adhesive.

[0096] In still another feasible embodiment, the first cushion member 310 is formed by an elastic material, and the second cushion member 320 is formed by an adhesive.

[0097] In still another feasible embodiment, the first cushion member 310 is formed by an adhesive, and the second cushion member 320 is formed by an elastic material.

[0098] In order to reduce the processing and manufacturing difficulty of the first cushion member 310 and the second cushion member 320, and improve the mechanical property uniformity of the first cushion member 310 and the second cushion member 320. Preferably, the first cushion member 310 and the second cushion member 320 are made of the same material.

[0099] Designers can adjust the specific composition of the elastic material according to the usage requirements, and no specific limitation is made here. For example, the elastic material is a TPE material or an EPDM material, and the hardness of the elastic material is between HA50 - 80°.

[0100] Designers can adjust the specific composition of the adhesive according to the usage requirements, and no specific limitation is made here. For example, the adhesive is a polyurethane adhesive. More preferably, the polyurethane adhesive is a one - component polyurethane adhesive or a two - component polyurethane adhesive, and the hardness of the cured polyurethane adhesive is between HA30 - 70°.

[0101] Furthermore, in order to improve the installation convenience of the first clip 110 and the second clip 210, at least one tape 500 can be provided on the first clip 110 and / or the second clip 210, and the tape 500 can be used to pre - fix the first clip 110, the second clip 210 and the glass assembly 10. Preferably, multiple tapes 500 are provided on both the first clip 110 and the second clip 210, so as to achieve a multi - point pre - fixing effect.

[0102] After the bracket assembly of the present utility model is used, it is verified through on-site products. In the existing solution, the torque value that the glass can withstand when it breaks is approximately 10 - 20 N·m (the general torque requirement for customer vehicle loading is 10 N·m, and there is a risk that the existing solution may not meet the torque value requirement and result in cracked glass). However, the torque value that the glass assembly 10 with the bracket assembly described in the present utility model can withstand before breaking rises to 40 - 50 N·m. From the experimental tests, after adopting the bracket assembly of the present utility model, the glass assembly 10 can withstand a greater assembly torque, avoiding the risk of cracked glass during the assembly process and vehicle driving process of the glass assembly 10.

[0103] Embodiment 2

[0104] In an embodiment of the present utility model, a vehicle glass is provided, including a glass assembly 10 and a bracket assembly as described in Embodiment 1 disposed on the glass assembly 10. The glass assembly 10 is used to connect to a lifting structure 20 through the bracket assembly.

[0105] The specific structure, working principle, and beneficial effects of this bracket assembly are the same as those described in Embodiment 1 and will not be elaborated here. By applying the bracket assembly, this vehicle glass reduces the problem of glass breakage caused by the misaligned force on the glass assembly 10 due to asymmetric force application, improving the installation stability.

[0106] Specifically, the bracket assembly includes a first clip 110 and a second clip 210. The first clip 110 can be connected to the lifting structure 20, so that the lifting structure 20 can drive the glass assembly 10 to perform lifting adjustment, having a better use effect.

[0107] In an embodiment of the present utility model, the glass assembly 10 includes a frameless door glass. Specifically, the frameless door glass is a front window glass and / or a rear window glass.

[0108] Embodiment 3

[0109] In an embodiment of the present utility model, a vehicle is further provided, including a vehicle body and the vehicle glass as described in Embodiment 2. The vehicle glass is disposed on the vehicle body. The specific structure, working principle, and beneficial effects of this vehicle glass are the same as those described in Embodiment 1 and will not be elaborated here. By applying the vehicle glass, this vehicle improves the installation stability of the window glass, enables the window glass to withstand greater torque, and reduces the risk of cracked window glass during the assembly process and vehicle driving process.

[0110] All articles and references disclosed, including patent applications and publications, are incorporated herein by reference for various purposes. The term "consisting essentially of" describing a combination shall include the identified elements, ingredients, components or steps and other elements, ingredients, components or steps that do not materially affect the basic novel features of the combination. The use of the terms "comprising" or "including" to describe the combinations of elements, ingredients, components or steps herein also contemplates embodiments consisting essentially of these elements, ingredients, components or steps. By using the term "may" herein, it is intended that any of the attributes described as "may" include be optional. A plurality of elements, ingredients, components or steps can be provided by a single integrated element, ingredient, component or step. Alternatively, a single integrated element, ingredient, component or step can be divided into separate multiple elements, ingredients, components or steps. The disclosure of "a" or "an" to describe an element, ingredient, component or step does not mean to exclude other elements, ingredients, components or steps.

[0111] Each embodiment in this specification is described in a progressive manner. Each embodiment focuses on the differences from other embodiments. For the same and similar parts among the various embodiments, reference can be made to each other. The above embodiments are only for illustrating the technical concept and features of the present invention, and the purpose is to enable those skilled in the art to understand the content of the present invention and implement it accordingly. It should not be used to limit the protection scope of the present invention. Any equivalent changes or modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims

1. A bracket assembly for being disposed between a glass assembly and a lifting structure, characterized in that Comprising: A first clamping member, which is arranged inside the glass assembly; A second clamping member, which is arranged outside the glass assembly and is arranged opposite to the first clamping member; A buffer structure, which is arranged on the first clamping member and / or the second clamping member and abuts against the glass assembly; A connection structure, which detachably connects the first clamping member and the second clamping member.

2. The bracket assembly according to claim 1, characterized in that, The first clamping member includes a first clamping piece, the second clamping member includes a second clamping piece, and the first clamping piece and the second clamping piece are arranged opposite to each other on both sides of the glass assembly.

3. The bracket assembly according to claim 2, wherein, The second clamping member further includes a metal part, the metal part is laminated with the second clamping piece and is arranged outside the second clamping piece, and the connection structure detachably connects the first clamping piece and the metal part.

4. The bracket assembly according to claim 3, characterized in that, The metal part is connected to the second clamping piece by clamping or pasting, the metal part is a cold-rolled steel plate or a stainless steel plate, and the thickness of the metal part is 1.5 mm to 3 mm.

5. The bracket assembly according to claim 3, characterized in that, The glass assembly is provided with a mounting hole, the connection structure includes a connection hole arranged on the first clamping piece, a locking member arranged on the metal part, and a connecting member, and the connecting member can pass through the connection hole, the mounting hole and be detachably connected to the locking member.

6. The bracket assembly according to claim 5, characterized in that, The size of the mounting hole is 15 mm to 30 mm, and the interval between the mounting hole and the edge of the glass assembly is 30 mm to 60 mm.

7. The bracket assembly according to claim 5, wherein, The first clamping piece is further provided with a partition portion arranged around the connection hole, and at least part of the partition portion can be inserted into the mounting hole and is arranged between the inner wall of the mounting hole and the locking member.

8. The bracket assembly according to claim 7, wherein, The locking member includes a flanging nut arranged on the metal part, and the connecting member includes a connecting bolt.

9. The bracket assembly according to claim 2, wherein, The first clamping piece and the second clamping piece are arranged in an integral structure.

10. The bracket assembly according to claim 5, characterized in that, The buffer structure includes a first cushioning member and a second cushioning member. The first cushioning member is arranged on the side end face of the first clamping piece facing the glass assembly. Along the thickness direction of the glass assembly, at least part of the first cushioning member protrudes on the first clamping piece and abuts against the glass assembly, and at least part of the second cushioning member protrudes on the second clamping piece and abuts against the glass assembly.

11. The bracket assembly according to claim 10, wherein, Along the thickness direction of the glass assembly, the projections of the first cushioning member and the second cushioning member are located inside the metal part.

12. The bracket assembly according to claim 10, wherein, The first cushioning member and the second cushioning member are symmetrically arranged with respect to the glass assembly.

13. The bracket assembly according to claim 10, characterized in that, The first cushioning member extends on the first clamping piece to form a closed loop; and / or, the second cushioning member extends on the second clamping piece to form a closed loop.

14. The bracket assembly according to claim 10, characterized in that, The distance between the first cushioning member and the mounting hole is not less than 3 mm; and / or, the distance between the second cushioning member and the mounting hole is not less than 3 mm.

15. The bracket assembly according to claim 10, wherein, The first cushioning member is formed by an elastic material or an adhesive; and / or, the second cushioning member is formed by an elastic material or an adhesive.

16. The bracket assembly according to claim 15, wherein The elastic material is a TPE material or an EPDM material, and the hardness of the elastic material is between HA50-80°.

17. The bracket assembly according to claim 15, wherein, The bonding adhesive is a polyurethane adhesive, the polyurethane adhesive is a one-component polyurethane adhesive or a two-component polyurethane adhesive, and the hardness of the cured polyurethane adhesive is between HA30 and 70°.

18. The bracket assembly according to claim 2, wherein The first clamping piece is formed by a plastic material; and / or, the second clamping piece is formed by a plastic material.

19. The bracket assembly according to claim 18, wherein, The plastic material is one or a combination of more than one of PBT, PA6, PP, POM or glass fiber.

20. A vehicle glass, characterized in that, It includes a glass assembly and a bracket assembly as described in any one of claims 1 to 19 provided on the glass assembly, and the glass assembly is used to connect a lifting structure through the bracket assembly.

21. The vehicle glass according to claim 20, wherein, The glass assembly includes a frameless door glass.

22. A vehicle, characterized in that, It includes a vehicle body and vehicle glass as described in claim 20, and the vehicle glass is provided on the vehicle body.