Edge covering assembly and vehicle
Patent Information
- Application Number
- CN202521910607.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-04
AI Technical Summary
[0003]然而,现有的嵌件在底涂时,容易产生涂偏或者漏涂的问题,进而导致底涂失效,使得塑胶包边与嵌件注塑成型后的粘接强度低,影响包边总成整体的结构稳定性
[0029] In this embodiment, the reinforcing member is equipped with a marking section. On-site personnel or machinery can apply a primer to the reinforcing member based on the position of the marking section, forming a primer area. This primer area can be positioned around the edge of the marking section, reducing the risk of missed or misaligned application during primer application and preventing primer failure. During the integral injection molding of the reinforcing member, the edge banding member, and the glass body, the bonding precision between the support boss of the edge banding member and the reinforcing member within the primer area increases the bonding strength between the edge banding member and the reinforcing member, improving the structural stability of the edge banding assembly and consequently enhancing the structural stability of the vehicle.
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Figure CN224766455U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of transportation technology, specifically to an edge-sealing assembly and a transportation vehicle. Background Technology
[0002] With the development of modern society, people are using transportation tools more and more widely, especially vehicles. The existing vehicle edging assembly is usually a one-piece injection molded system consisting of the window glass body, plastic edging, and inserts. The plastic edging confines the inserts and window glass body to the vehicle body sheet metal. Before injection molding the inserts and plastic edging, a primer is usually applied to the area where the inserts and plastic edging will bond to ensure good adhesion between the plastic edging and the inserts.
[0003] However, existing inserts are prone to uneven or incomplete coating during the primer application process, which can lead to primer failure. This results in low bonding strength between the plastic edging and the insert after injection molding, affecting the overall structural stability of the edging assembly. Utility Model Content
[0004] The purpose of this application is to provide an edge-sealing assembly and a vehicle that can effectively prevent the failure of the primer coating of the reinforcing parts, ensure the bonding strength between the edge-sealing parts and the reinforcing parts, and thus improve the overall structural stability of the edge-sealing assembly.
[0005] In a first aspect, embodiments of this application provide an edge-binding assembly. The edge-binding assembly includes:
[0006] Glass body.
[0007] An edge-binding component, comprising an edge-binding body and a supporting boss, wherein the edge-binding body includes an assembly outer surface and the supporting boss protrudes from the assembly outer surface.
[0008] The reinforcing member includes an outer surface and a base coat inner surface, the outer surface and the base coat inner surface being disposed opposite to each other along the thickness direction of the reinforcing member, and the reinforcing member also includes a base coat area.
[0009] The reinforcing member is also provided with an identification portion, and along the thickness direction of the reinforcing member, the projection of the base coating area and the projection of the identification portion are at least partially overlapped or adjacent to each other.
[0010] The edging piece surrounds and connects to the side edge of the glass body, the outer surface of the assembly faces away from the glass body, the reinforcing member is embedded in the side of the edging piece facing away from the glass body, the edging body and the supporting boss are located on both sides of the thickness direction of the reinforcing member, the edging body is bonded to the inner surface of the primer, and the supporting boss is bonded to the outer surface of the primer area.
[0011] Along the thickness direction of the edge banding, the edge of the projection of the support boss is at least partially located within the projection of the base coating area.
[0012] In one embodiment, the marking portion is an opening that extends through the outer surface and the inner surface of the base coating, and the base coating area is disposed around the edge of the marking portion and connected to the edge of the marking portion.
[0013] The edging component also includes a positioning boss, which passes through the marking portion and is located between the supporting boss and the edging body. The positioning boss is connected to the supporting boss and the edging body.
[0014] Along the thickness direction of the edging piece, the projection of the marking portion lies within the projection of the supporting boss.
[0015] In one embodiment, the reinforcing member further includes a base coat edge surface, which is connected to the inner surface of the base coat and the outer surface, and the marking portion also penetrates the base coat edge surface.
[0016] In one embodiment, the distance from the outer edge of the base coating area to the edge of the marking portion is greater than or equal to 1 mm.
[0017] In one embodiment, the marking portion is disposed around the edge of the base coating area. Along the thickness direction of the edge banding, the projection of the marking portion is disposed around the edge of the projection of the support boss, and the projection of the marking portion is connected to the edge of the projection of the support boss or spaced apart from the edge of the projection of the support boss.
[0018] In one embodiment, the marking portion is a planar pattern, which is printed on the outer surface of the reinforcing member; or,
[0019] The marking portion is a groove, which is recessed into the outer surface of the reinforcing member and recessed towards the inner surface of the primer; or...
[0020] The marking portion is a protrusion, which protrudes from the outer surface of the reinforcing member.
[0021] In one embodiment, along the thickness direction of the edge banding, the projection of the base coating area is located within the projection of the marking portion, and the marking portion is a groove or a boss.
[0022] In one embodiment, the edging member, the glass body, and the reinforcing member are integrally injection molded.
[0023] In one embodiment, the edging body further includes a first segment and a second segment, which are connected and together surround and connect the side edge of the glass body.
[0024] The reinforcing member is provided in the first section and / or the second section.
[0025] In one embodiment, the first segment has a lip protruding on the side facing away from the glass body, and the lip is spaced apart from the reinforcing member.
[0026] Secondly, embodiments of this application provide a means of transportation. The means of transportation includes a tool body, a sealant, and the edge-sealing assembly. The edge-sealing assembly and the sealant are mounted together on the tool body. The sealant is located between the glass body and the tool body and is held by the glass body and the tool body. The edge-sealing assembly and the tool body form a clearance space. The reinforcing member is located within the clearance space, and the supporting boss abuts against the tool body.
[0027] In one embodiment, the edging body and supporting boss of the edging component are spaced apart from the sealant.
[0028] In related technologies, the inserts of existing edge-binding assemblies do not have primer markings. On-site manual or mechanical equipment can only perform primer coating on the inserts by referring to the pictures on the coating process card. However, during this primer coating process, problems such as coating deviation or omission are easy to occur, which leads to primer failure. This results in low bonding strength between the plastic edge-binding and the insert after injection molding, affecting the overall structural stability of the edge-binding assembly.
[0029] In this embodiment, the reinforcing member is equipped with a marking section. On-site personnel or machinery can apply a primer to the reinforcing member based on the position of the marking section, forming a primer area. This primer area can be positioned around the edge of the marking section, reducing the risk of missed or misaligned application during primer application and preventing primer failure. During the integral injection molding of the reinforcing member, the edge banding member, and the glass body, the bonding precision between the support boss of the edge banding member and the reinforcing member within the primer area increases the bonding strength between the edge banding member and the reinforcing member, improving the structural stability of the edge banding assembly and consequently enhancing the structural stability of the vehicle.
[0030] Furthermore, if the markings on the reinforcing parts are punched to form openings, the weight of the edge-sealing assembly can be reduced to a certain extent, which is beneficial to achieving the requirement of lightweight vehicles.
[0031] In this embodiment, after the edge-binding assembly is assembled into the tool body, the supporting boss of the edge-binding part can support the tool body, and the reinforcing part can improve the overall structural strength of the edge-binding assembly, prevent the edge-binding assembly from collapsing, and improve the structural stability of the vehicle. Attached Figure Description
[0032] To more clearly illustrate the technical solution of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0033] Figure 1 A schematic diagram of the structure of a means of transportation provided in an embodiment of this application;
[0034] Figure 2 for Figure 1 A structural diagram of a portion of the vehicle shown;
[0035] Figure 3 for Figure 2 An exploded structural diagram of a portion of the vehicle shown.
[0036] Figure 4 for Figure 3 A schematic diagram of the structure of a first embodiment of the edge-wrapping assembly of the vehicle shown;
[0037] Figure 5 for Figure 4 The diagram shows a cross-sectional view of the edge-binding assembly along AA;
[0038] Figure 6 for Figure 5 The diagram shows the structural schematic of the reinforcing component in the edge-sealing assembly.
[0039] Figure 7 for Figure 6 The diagram shows the structural schematic of the reinforcing member at another angle;
[0040] Figure 8 for Figure 4 A schematic diagram of the cross-section of the edge-sealing component along AA in the edge-sealing assembly shown;
[0041] Figure 9 for Figure 4 The diagram shows a cross-sectional view of the edge-sealing assembly along BB.
[0042] Figure 10 for Figure 2 A schematic cross-sectional view of part of the vehicle's structure along the CC direction;
[0043] Figure 11 for Figure 3 A schematic diagram of the second embodiment of the edge-wrapping assembly of the vehicle shown;
[0044] Figure 12 for Figure 11 The diagram shows a cross-sectional view of the edge-sealing assembly along DD;
[0045] Figure 13 for Figure 11 A schematic diagram of the reinforcing component of the edging assembly shown;
[0046] Figure 14 for Figure 13 The diagram shows the structural schematic of the reinforcing member at another angle;
[0047] Figure 15 for Figure 11 The diagram shows a cross-sectional view of the edge banding component of the edge banding assembly along DD.
[0048] The terms corresponding to the markings in the attached drawings are as follows: Vehicle 1000, Vehicle Body 200, Inner Surface 201, Outer Surface 202, Window 203, Edge Banding Assembly 100, Glass Body 10, Inner Glass Surface 11, Outer Glass Surface 12, Side Glass Surface 13, Bottom Surface 131, Top Surface 132, Reinforcing Member 20, Inner Surface of Primer a, Outer Surface b, Edge Surface of Primer c, First Bend Section 21, Inner Surface of First Primer 21a, First Outer Surface 21b, Edge Surface of First Primer 21c, Marking Section 211, Primer Area 212, Second Bend Section 22, Inner Surface of Second Primer 22a, Second Outer Surface 22b, Edge Surface of Second Primer 22c 23. Middle section, 23a. Third primer inner surface, 23b. Third outer surface, 30. Edge banding, 31. Assembly outer surface, 311. Assembly inner surface, 312. Assembly groove, 313. First section, 314. Second section, 315. Top section, 3151. Side section, 3152. Mounting groove, 316. Groove bottom wall, 317. Groove side wall, 318. First groove bottom wall, 317a. Middle groove bottom wall, 317c. Second groove bottom wall, 317b. First groove side wall, 318a. Second groove side wall, 318b. Support boss, 32. Connecting surface, 321. Supporting surface, 322. Positioning boss, 33. Lip, 319. Sealant, 300. Clearance space, M. Detailed Implementation
[0049] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0050] In this application, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances. Furthermore, "multiple" in this application refers to two or more.
[0051] Please refer to the following: Figure 1 , Figure 2 and Figure 3 , Figure 1 This is a structural schematic diagram of a means of transportation provided in an embodiment of this application. Figure 2 for Figure 1 The diagram shows a partial structural representation of the vehicle. Figure 3 for Figure 2 The diagram shows an exploded view of a portion of the vehicle's structure.
[0052] This application provides a means of transportation 1000. The means of transportation 1000 may be a vehicle, ship, submarine, airplane, etc. In this embodiment, the means of transportation 1000 is as follows: Figure 1 The vehicle shown is used as an example for illustration.
[0053] The vehicle can be, but is not limited to, a sedan, a multi-purpose vehicle (MPV), a sport / suburban utility vehicle (SUV), an off-road vehicle (ORV), a pickup truck, a van, a bus, a truck, etc. In the specific embodiment of this application, the vehicle shown in the figure is a sedan.
[0054] For ease of description, in this application, the following definitions are used. Figure 1 The width of the vehicle 1000 shown is the X-axis, the length is the Y-axis, and the height is the Z-axis. The X-axis, Y-axis, and Z-axis are all perpendicular to each other.
[0055] The directional terms such as "top," "bottom," "front," and "back" used in the description in this application are based on the appendix to the specification. Figure 1The vehicle's orientation is described as follows: the positive direction towards the X-axis is designated as "left" of vehicle 1000, and the negative direction towards the X-axis is designated as "right". The positive direction towards the Y-axis is designated as "front" of vehicle 1000, and the negative direction towards the Y-axis is designated as "rear". The positive direction towards the Z-axis is designated as "top" of vehicle 1000, and the negative direction towards the Z-axis is designated as "bottom".
[0056] like Figure 2 and Figure 3 As shown, the vehicle 1000 includes a tool body 200, an edge-sealing assembly 100, and a sealant 300. Both the edge-sealing assembly 100 and the sealant 300 are mounted on the tool body 200. The sealant 300 is located between the edge-sealing assembly 100 and the tool body 200, and is held between them. Both the sealant 300 and the edge-sealing assembly 100 provide sealing and sound insulation for the vehicle 1000. Furthermore, the sealant 300 is elastic, which helps to dampen vibrations during the vehicle 1000's bumpy operation. In this embodiment, the sealant 300 can be made of, but is not limited to, polyurethane resin (PU). The sealant 300 has a ring-shaped structure.
[0057] The tool body 200 includes an inner surface 201 and an outer surface 202. The inner surface 201 and the outer surface 202 are arranged opposite to each other along the thickness direction of the tool body 200. The tool body 200 also has a window 203. The window 203 extends through the inner surface 201 and the outer surface 202 of the tool body 200. When the tool body 200 is assembled with the edge-sealing assembly 100, the outer surface 202 of the tool body 200 faces the outside of the vehicle 1000, and the inner surface 201 of the tool body 200 faces the inside of the vehicle 1000, and is connected to the edge-sealing assembly 100 by sealant 300. The window 203 of the tool body 200 protrudes from the edge-sealing assembly 100 and completely covers the sealant 300. In this embodiment, the tool body 200 is a sheet metal part. For example, the tool body 200 can be made of vehicle body sheet metal.
[0058] The edge-sealing assembly 100 can be a front side window edge-sealing assembly, a rear side window edge-sealing assembly, a front windshield edge-sealing assembly, a rear windshield edge-sealing assembly, a corner window assembly, etc., of the vehicle 1000. In this embodiment, the edge-sealing assembly 100 is... Figure 1 The rear side window edging assembly on the left side of the vehicle 1000 shown is used as an example for illustration.
[0059] Please refer to the following: Figure 3 , Figure 4 and Figure 5 , Figure 4 for Figure 3The diagram shows a structural schematic of a first embodiment of the edge-sealing assembly of the vehicle shown. Figure 5 for Figure 4 The diagram shows a cross-sectional view of the edge-binding assembly along AA.
[0060] like Figure 4 and Figure 5 As shown, the edge-sealing assembly 100 also includes a glass body 10, a reinforcing member 20, and an edge-sealing member 30. The edge-sealing member 30 is located between the glass body 10 and the reinforcing member 20. The edge-sealing member 30 surrounds and connects to the side edge of the glass body 10. The reinforcing member 20 is located on the side of the edge-sealing member 30 facing away from the glass body 10 and is embedded in the edge-sealing member 30. The edge-sealing member 30 is elastic and can be used for sealing between the tool body 200 and the glass body 10. The reinforcing member 20 is used to provide internal skeleton support for the edge-sealing member 30 to improve the overall structural strength of the edge-sealing assembly 100. In this embodiment, the glass body 10, the edge-sealing member 30, and the reinforcing member 20 are fixedly connected by integral injection molding. The edge-sealing member 30 is adapted to the shape of the glass body 10. For example, the shape of the glass body 10 is trapezoidal. The edge-sealing member 30 is generally a trapezoidal ring structure.
[0061] The glass body 10 can be the front side window glass, rear side window glass, sunroof glass, windshield glass, rear windshield glass, corner window glass, etc. of the vehicle 1000. In this embodiment, the edging assembly 100 is the edging assembly of the rear side window on the left side of the vehicle 1000, and correspondingly, the glass body 10 is the rear side window glass on the left side of the vehicle 1000.
[0062] like Figure 5 As shown, the glass body 10 includes an inner glass surface 11, an outer glass surface 12, and a side glass surface 13. The inner glass surface 11 and the outer glass surface 12 are arranged opposite to each other along the thickness direction of the glass body 10. The side glass surface 13 connects the outer glass surface 12 and the inner glass surface 11, and is arranged at an angle to the inner glass surface 11 and the outer glass surface 12, respectively. When the edging assembly 100 is installed on the tool body 200, the inner glass surface 11 of the glass body 10 faces the interior of the vehicle 1000, and the outer glass surface 12 of the glass body 10 faces the exterior of the vehicle 1000, partially exposing the window 203 of the tool body 200. The glass body 10 can be a single-layer glass or a laminated glass, and this application does not limit this.
[0063] In this embodiment, the side glass surface 13 includes a bottom surface 131, a top surface 132, and two side surfaces (not shown). The bottom surface 131 and the top surface 132 are the two surfaces of the side glass surface 13 in the height direction (i.e., the Z-axis direction) of the glass body 10. The top surface 132 is closer to the top of the vehicle 1000 than the bottom surface 131. The two side surfaces are the two surfaces of the side glass surface 13 in the length direction (i.e., the Y-axis direction) of the glass body 10. The two side surfaces connect the bottom surface 131 and the top surface 132.
[0064] Please refer to the following: Figure 6 and Figure 7 , Figure 6 for Figure 5 The diagram shown is a structural schematic of the reinforcing component in the edge-sealing assembly. Figure 7 for Figure 6 The diagram shows the structure of the reinforcing member at another angle.
[0065] The reinforcing member 20 includes a first bent segment 21, a second bent segment 22, and a middle segment 23. The length directions of the first bent segment 21, the second bent segment 22, and the middle segment 23 are the same as the length direction of the reinforcing member 20. In a direction intersecting the length direction of the reinforcing member 20, such as the width direction of the reinforcing member 20, the middle segment 23 connects to the first bent segment 21 and the second bent segment 22. Both the first bent segment 21 and the second bent segment 22 are set at an angle to the middle segment 23, and both the first bent segment 21 and the second bent segment 22 extend away from the middle segment 23. The extension direction of the first bent segment 21 is opposite to the extension direction of the second bent segment 22. In this embodiment, the reinforcing member 20 can be made of metal or a plastic material with high structural strength, such as polypropylene (PP). For example, the reinforcing member 20 is a strip metal piece with a Z-shaped cross-section.
[0066] The first bent segment 21 includes a first primer inner surface 21a, a first outer surface 21b, and a first primer edge surface 21c. The first primer inner surface 21a and the first outer surface 21b are disposed opposite to each other along the thickness direction of the first bent segment 21. The first primer edge surface 21c connects the first primer inner surface 21a and the first outer surface 21b. The first primer edge surface 21c is the surface of the first bent segment 21 away from the middle segment 23.
[0067] The first bending section 21 further comprises an identification portion 211. In this embodiment, the identification portion 211 is an opening, which may be formed by a method not limited to punching. The identification portion 211 penetrates through the first primer inner surface 21a and the first outer appearance surface 21b, and the identification portion 211 penetrates through the first primer edge surface 21c. The identification portion 211 is configured to cooperate with the hemming member 30. The number of the identification portion 211 may be one or more. For example, the number of the identification portions 211 is three. The three identification portions 211 are arranged at intervals along the length direction of the reinforcing member 20, and all three identification portions 211 are substantially rectangular openings.
[0068] The first bending section 21 further has a primer region 212. In this embodiment, as Figure 7 shown, the primer region 212 is arranged around the edge of the identification portion 211, and the primer region 212 is connected to the edge of the identification portion 211. The shape of the primer region 212 is adapted to the shape of the identification portion 211. The distance from the outer edge of the primer region 212 to the edge of the identification portion 211 (i.e., the width of the primer region 212) is H, and H is greater than or equal to 1 mm. The number of the primer regions 212 is the same as that of the identification portions 211, and may be one or more. Exemplarily, the primer region 212 can be generally regarded as a U-shaped region. The number of the primer regions 212 is three.
[0069] In some embodiments, the edge of the identification portion 211 is spaced apart from the first primer edge surface 21c, that is, the identification portion 211 does not penetrate through the first primer edge surface 21c. In this case, the primer region 212 is arranged around the edge of the identification portion 211, the primer region 212 is substantially a square-shaped region, and the area of the primer region 212 is increased.
[0070] The second bending section 22 comprises a second primer inner surface 22a, a second outer appearance surface 22b and a second primer edge surface 22c. The second primer inner surface 22a and the second outer appearance surface 22b are arranged opposite to each other along the thickness direction of the second bending section 22. The second primer edge surface 22c is connected to the second primer inner surface 22a and the second outer appearance surface 22b. The second primer edge surface 22c is a surface of the second bending section 22 away from the intermediate section 23.
[0071] The intermediate section 23 comprises a third primer inner surface 23a and a third outer appearance surface 23b. The third primer inner surface 23a and the third outer appearance surface 23b are arranged opposite to each other along the thickness direction of the intermediate section 23.
[0072] In this embodiment, the third inner surface 23a of the intermediate segment 23 is connected to the first inner surface 21a of the first bent segment 21 and the second inner surface 22a of the second bent segment 22, and the third inner surface 23a is set at an angle to the first inner surface 21a and the second inner surface 22a, respectively. The third outer surface 23b of the intermediate segment 23 is connected to the first outer surface 21b of the first bent segment 21 and the second outer surface 22b of the second bent segment 22, and the third outer surface 23b is set at an angle to the first outer surface 21b and the second outer surface 22b, respectively.
[0073] It is understood that the reinforcing member 20 includes an inner base coating surface a, an outer surface b, and an outer base coating edge surface c. The inner base coating surface a and the outer surface b are arranged opposite to each other along the thickness direction of the reinforcing member 20. The outer base coating edge surface c connects the inner base coating surface a and the outer surface b. The inner base coating surface a includes a first inner base coating surface 21a, a second inner base coating surface 22a, and a third inner base coating surface 23a. The outer surface b includes a first outer surface surface 21b, a second outer surface surface 22b, and a third outer surface surface 23b. The outer base coating edge surface c includes a first outer base coating edge surface 21c, a second outer base coating edge surface 22c, and two edge surfaces arranged opposite to each other along the length direction of the reinforcing member 20. The first outer base coating edge surface 21c and the second outer base coating edge surface 22c are arranged opposite to each other along the width direction of the reinforcing member 20. The outer surface b, the inner base coating surface a, and the outer base coating edge surface c within the base coating area 212 together constitute the base coating surface of the reinforcing member 20.
[0074] In this embodiment, the reinforcing member 20 is primed before being integrally injection molded with the glass body 10 and the edge-sealing member 30. This enhances the interfacial bonding performance between the reinforcing member 20 and the edge-sealing member 30, thereby increasing the bonding strength between them and ensuring the overall structural stability of the edge-sealing assembly 100. Furthermore, the marking portion 211 is open, and the primed area 212 is positioned around the edge of the marking portion 211. This design, while ensuring the bonding strength between the edge-sealing member 30 and the reinforcing member 20, can save on primed material to some extent.
[0075] Please refer to the following: Figure 4 , Figure 5 and Figure 8 , Figure 8 for Figure 4 The diagram shows a cross-sectional view of the edge-sealing component along AA in the edge-sealing assembly shown.
[0076] The edge-binding component 30 includes an edge-binding body 31. The edge-binding body 31 includes an outer mounting surface 311 and an inner mounting surface 312. The outer mounting surface 311 and the inner mounting surface 312 are disposed opposite to each other along the thickness direction of the edge-binding body 31. In this embodiment, both the outer mounting surface 311 and the inner mounting surface 312 are annular surfaces.
[0077] The edging body 31 also includes an assembly groove 313. The assembly groove 313 is recessed in the inner assembly surface 312 of the edging body 31. The assembly groove 313 is used to mate with the glass body 10 to fix the glass body 10 and the edging component 30 together. In this embodiment, the assembly groove 313 is an annular groove.
[0078] In this embodiment, the edging body 31 further includes a first segment 314 and a second segment 315. The second segment 315 has a top segment 3151 and two side segments 3152 that are opposite to each other and spaced apart along the Y-axis direction. The two side segments 3152 are connected to both ends of the top segment 3151 along its length. The two ends of the first segment 314 along its length direction are respectively connected to the two side segments 3152 of the second segment 315, and the top segments 3151 of the first segment 314 and the second segment 315 are opposite to each other and spaced apart along the Z-axis direction. The first segment 314 is closer to the bottom of the vehicle 1000 than the top segment 3151. The first segment 314 and the second segment 315 together surround the edge of the glass body 10. The first segment 314 is used to connect to the bottom surface 131 of the glass body 10. The top segment 3151 of the second segment 315 is used to connect to the top surface 132 of the glass body 10, and the two side segments 3152 are used to connect to the two sides of the glass body 10. In this embodiment, the first segment 314 is generally a long strip structure with an arc-shaped cross-section, and its arc curvature is opposite to that of the second segment 315. The first segment 314 is used to connect with the reinforcing member 20. The second segment 315 is generally a U-shaped strip structure.
[0079] The first segment 314 includes a mounting groove 316. The mounting groove 316 is formed by bending the first segment 314. The shape of the mounting groove 316 is adapted to the shape of the reinforcing member 20. The mounting groove 316 includes a bottom wall 317 and a side wall 318. The bottom wall 317 and the side wall 318 are connected and arranged at an angle. The bottom wall 317 includes a first bottom wall 317a, an intermediate bottom wall 317c, and a second bottom wall 317b. The side wall 318 includes a first side wall 318a and a second side wall 318b. The first bottom wall 317a and the second bottom wall 317b are both connected to the intermediate bottom wall 317c, and the first bottom wall 317a and the second bottom wall 317b are respectively arranged at an angle to the intermediate bottom wall 317c. The orientation of the first bottom wall 317a is the same as the orientation of the second bottom wall 317b. The first groove sidewall 318a is connected to the edge of the first groove bottom wall 317a away from the intermediate groove bottom wall 317c, and is set at an angle to the first groove bottom wall 317a. The second groove sidewall 318b is connected to the edge of the second groove bottom wall 317b away from the intermediate groove bottom wall 317c, and is set at an angle to the second groove bottom wall 317b. Along the width direction of the first segment 314, the first groove sidewall 318a and the second groove sidewall 318b are spaced apart, and the wall surface of the second groove sidewall 318b away from the first groove sidewall 318a is provided with a lip 319. That is, the lip 319 and the mounting groove 316 are spaced apart along the width direction of the first segment 314. The length direction of the lip 319 is consistent with the length direction of the first segment 314. The lip 319 is used to overlap with the tool body 200 to achieve a seal between the glass body 10 and the tool body 200.
[0080] In some embodiments, the walls of the bottom wall 317 and the side wall 318 of the mounting groove 316 can be regarded as the outer surface 311 of the edging body 31. The support boss 32 protrudes from the outer surface 311 of the edging body 31, and the connecting surface 321 of the support boss 32 is opposite to and spaced apart from the outer surface 311.
[0081] The edging component 30 also includes a support boss 32. The support boss 32 protrudes from the mounting surface 311 of the edging body 31 and connects to the first groove sidewall 318a of the mounting groove 316. The support boss 32 is used to support the reinforcing member 20 and the tool body 200, and is bonded to the outer surface b within the primer area 212 of the reinforcing member 20. The support boss 32 includes a connecting surface 321 and a supporting surface 322. The connecting surface 321 and the supporting surface 322 are arranged opposite to each other along the thickness direction of the support boss 32. In this embodiment, the connecting surface 321 faces the bottom wall 317a of the first groove, and the connecting surface 321 is at least partially opposite and spaced from the bottom wall 317a of the first groove along the thickness direction of the first segment 314. The connecting surface 321 connects to the wall surface of the first groove sidewall 318a facing the mounting groove 316 and is arranged at an angle to this wall surface. In this embodiment, the support boss 32 is generally a rectangular protrusion. The number of support bosses 32 can be one or more. For example, the number of support bosses 32 is three, and the three support bosses 32 are spaced apart along the length direction of the first segment 314.
[0082] The edging piece 30 also includes a positioning boss 33. The positioning boss 33 is located between the mounting groove 316 and the supporting boss 32, and connects to the first groove bottom wall 317a of the mounting groove 316 and the connecting surface 321 of the supporting boss 32. In this embodiment, the positioning boss 33 is connected to the wall surface of the first groove side wall 318a facing the mounting groove 316. The positioning boss 33 is used to pass through the marking portion 211 of the reinforcing member 20 to position and fix the edging piece 30 and the reinforcing member 20. The shape of the positioning boss 33 matches the shape of the marking portion 211 of the reinforcing member 20. The number of positioning bosses 33 is the same as the number of marking portions 211 of the reinforcing member 20, and can be one or more. For example, the positioning boss 33 is generally a rectangular protrusion, and the number of positioning bosses 33 is three. The three positioning bosses 33 are spaced apart along the length direction of the first segment 314. Each positioning boss 33 is used to pass through one marking portion 211 of the reinforcing member 20.
[0083] In this embodiment, along the thickness direction of the first segment 314, the projection of the positioning boss 33 is completely located within the projection of the supporting boss 32. The portion of the connecting surface 321 of the supporting boss 32 that is opposite to and spaced apart from the bottom wall 317a of the first groove is a U-shaped surface. It can be understood that each positioning boss 33 and a supporting boss 32 are integrally connected to form a protruding structure with a T-shaped cross-section.
[0084] In the embodiment where the marking part 211 does not penetrate the first base coat edge surface 21c, the outer side surface of the positioning boss 33 is spaced apart from the wall surface of the first groove sidewall 318a facing the mounting groove 316, thereby increasing the area of the part where the connecting surface 321 of the supporting boss 32 is spaced apart from the bottom wall 317a of the first groove, thereby increasing the contact area between the connecting surface 321 and the base coat area 212, and increasing the bonding strength between the edge banding 30 and the reinforcing member 20.
[0085] Please refer to the following: Figure 4 , Figure 5 and Figure 9 , Figure 9 for Figure 4 The diagram shows a cross-sectional view of the edge-binding assembly along BB.
[0086] In this embodiment, the edge trim 30, the glass body 10, and the reinforcing member 20 are integrally formed by injection molding.
[0087] Specifically, the edge of the glass body 10 is fitted into the mounting groove 313 of the edging member 30 and connected to the groove wall of the mounting groove 313. The bottom surface 131 of the glass body 10 is connected to the first section 314 of the edging member 30. The top surface 132 and the two side surfaces of the glass body 10 are connected to the second section 315 of the edging member 30, thus achieving a fixed connection between the glass body 10 and the edging member 30. In this embodiment, the edge portion of the outer glass surface 12, the edge portion of the inner glass surface 11, and the side glass surface 13 of the glass body 10 constitute the edge of the glass.
[0088] The reinforcing member 20 is housed within the mounting groove 316 of the first section 314. The primer surface of the reinforcing member 20 is connected to the edge banding member 30, thereby achieving adhesive bonding and fixation between the edge banding member 30 and the reinforcing member 20. Specifically, the inner surface 21a of the first primer of the first bent portion is connected to the bottom wall 317a of the first groove of the mounting groove 316, the edge surface 21c of the first primer is connected to the side wall 318a of the first groove of the mounting groove 316, and the outer surface 21b faces away from the bottom wall 317a of the first groove. The inner surface 23a of the third primer of the intermediate section 23 is connected to the bottom wall 317c of the intermediate groove of the mounting groove 316, and the outer surface 23b faces away from the bottom wall 317c of the intermediate groove. The inner surface 22a of the second primer of the second bent portion is connected to the bottom wall 317b of the second groove of the mounting groove 316, the edge surface 22c of the second primer is connected to the side wall 318b of the second groove of the mounting groove 316, and the outer surface 22b faces away from the bottom wall 317b of the second groove.
[0089] like Figure 5 and Figure 9As shown, the positioning boss 33 passes through the marking portion 211 of the reinforcing member 20. The edging body 31 and the supporting boss 32 are located on opposite sides of the thickness direction of the reinforcing member 20. The edging body 31 is connected to the inner surface a of the base coat of the reinforcing member 20, and the supporting boss 32 covers the marking portion 211 and the base coat area 212 surrounding the marking portion 211. The connecting surface 321 of the supporting boss 32 is connected to the first outer surface 21b within the base coat area 212. Along the thickness direction of the first segment 314, the projection of the marking portion 211 is located within the projection of the supporting boss 32, and the edge of the projection of the connecting surface 321 of the supporting boss 32 is at least partially located within the projection of the base coat area 212. For example, along the thickness direction of the first segment 314, the edge of the projection of the supporting boss 32 completely coincides with the outer edge of the projection of the base coat area 212, that is, the edge of the projection of the connecting surface 321 completely coincides with the outer edge of the projection of the first outer surface 21b within the base coat area 212. Figure 5 The dashed lines represent the boundaries between the supporting boss 32 and the positioning boss 33 and the first groove sidewall 318a, the boundary between the positioning boss 33 and the supporting boss 32, and the boundary between the positioning boss 33 and the first groove bottom wall 317a. Figure 9 The dashed line in the middle represents the boundary between the supporting boss 32 and the first groove sidewall 318a.
[0090] It is understandable that the reinforcement 20 is provided with the marking part 211. When the edge-wrapping part 30 is integrally injection molded with the glass body 10 and the reinforcement 20, the edge-wrapping material forming the edge-wrapping part 30 will not only bypass the first base coating inner surface 21a of the reinforcement 20 and cover the first outer surface 21b in the base coating area 212, but will also pass through the marking part 211 to cover the base coating area 212 of the first outer surface 21b, thereby speeding up the preparation efficiency of the edge-wrapping assembly 100. The width of the base coating area 212 is greater than or equal to 1 mm, and the width of the part of the connecting surface 321 opposite to the bottom wall 317a of the first groove is greater than or equal to 1 mm. The part of the connecting surface 321 opposite to the bottom wall 317a of the first groove coincides with the base coating area 212 and is bonded to the first appearance surface 21b in the base coating area 212, ensuring that the supporting boss 32 and the reinforcing member 20 have sufficient contact area, thereby ensuring the bonding strength between the reinforcing member 20 and the edge banding member 30.
[0091] Furthermore, the marking section 211 on the reinforcing member 20 not only reduces the weight of the reinforcing member 20, thereby reducing the overall weight of the edging assembly 100 and facilitating its lightweight design, but also provides a clear marking function. This allows on-site personnel or machinery to directly apply a base coat to the first outer surface 21b within a range of 1 mm or more from the edge of the marking section 211, forming a base coat area 212. This prevents the reinforcing member 20 from being missed or from having a deviation between the actual base coat position and the predetermined base coat position. It also prevents the base coat of the reinforcing member 20 from failing and affecting the bonding accuracy between the supporting boss 32 and the first outer surface 21b within the base coat area 212. This avoids poor bonding between the supporting boss 32 and the outer surface b, increases the bonding strength between the edging member 30 and the reinforcing member 20, and thus ensures the structural stability of the edging assembly 100.
[0092] In some embodiments, the reinforcing member 20 may also be provided on the second segment 315 of the edging member 30 to further increase the overall structural strength of the edging assembly 100. In some embodiments, the reinforcing member 20 may be provided around the circumference of the edging member 30, such as the reinforcing member 20 being adapted to the shape of the edging member 30 and being a trapezoidal ring structure.
[0093] Please refer to the following: Figure 2 and Figure 10 , Figure 10 for Figure 2 The diagram shows a partial structural view of the vehicle along a cross-section of the CC.
[0094] In this embodiment, the edge binding assembly 100 and the sealant 300 are mounted together on the tool body 200.
[0095] Specifically, the inner glass surface 11 of the glass body 10 is opposite to and spaced apart from the outer surface 202 of the tool body 200, and a portion of the outer glass surface 12 is exposed above the window 203 of the tool body 200. That is, the glass body 10 completely covers the window 203 of the tool body 200. In other words, along the thickness direction of the glass body 10, the projection of the window 203 is completely within the projection of the glass body 10.
[0096] The sealant 300 is located between the inner glass surface 11 of the glass body 10 and the outer surface 202 of the tool body 200. The glass body 10 and the tool body 200 together clamp and compress the sealant 300. The sealant 300 not only seals the glass body 10 and the tool body 200, but also buffers the tool body 200 and the glass body 10, reducing the impact of the vibration of the tool body 200 on the glass body 10.
[0097] The edging piece 30 is located between the glass body 10 and the tool body 200, and the reinforcing piece 20 is located between the tool body 200 and the edging piece 30. The inner mounting surface 312 of the edging piece 30 faces the glass body 10. The outer mounting surface 311 of the edging piece 30 and the outer surface b of the reinforcing piece 20 both face the tool body 200 and are spaced apart from the outer surface 202 of the tool body 200. The arc-shaped bending direction of the first segment 314 of the edging piece 30 faces the tool body 200 and forms a clearance space M with the tool body 200. The supporting surface 322 of the supporting boss 32 of the edging piece 30 abuts against the outer surface 202 of the tool body 200, and the lip 319 overlaps with the tool body 200 to support the clearance space M and prevent the edging assembly 100 from collapsing towards the tool body 200. Furthermore, the reinforcing member 20 is located within the clearance space M and embedded in the first segment 314 to enhance the structural strength of the first segment 314, further preventing the edge-binding assembly 100 from collapsing towards the tool body 200. The support boss 32 is located between the outer surface b of the reinforcing member 20 and the outer surface 202 of the tool body 200 to support the reinforcing member 20 and separate it from the tool body 200, preventing collisions between the reinforcing member 20 and the tool body 200 that could cause abnormal noises. At the same time, it also provides a safe distance between the reinforcing member 20 and the tool body 200, preventing manufacturing tolerances from causing poor fit between the tool body 200 and the reinforcing member 20; thereby ensuring the structural stability of the assembly of the edge-binding assembly 100 and the tool body 200.
[0098] In this embodiment, the edge-sealing member 30 forms a support boss 32 on the outer surface b side of the outer surface by bypassing the inner surface a of the base coating of the reinforcing member 20 and the edge coating edge surface c. This makes the first groove sidewall 318a of the first segment 314 and the support boss 32 spaced apart from the sealant 300, so as to provide a clearance area for the sealant 300 and prevent the sealant 300 and the edge-sealing member 30 from interfering with each other and affecting the sealing performance between the glass body 10 and the tool body 200.
[0099] In this embodiment, the edge-sealing component 30 is elastic. Its lip 319 can not only overlap the tool body 200 and deform to achieve a seal between the glass body 10 and the tool body 200, but the edge-sealing component 30 as a whole can also play a buffering role between the glass body 10 and the tool body 200, reducing the impact of the vibration of the tool body 200 on the glass body 10.
[0100] In the relevant technology, the inserts of the existing edge-binding assembly 100 do not have primer markings. On-site manual or mechanical equipment can only perform primer coating on the inserts by referring to the pictures on the coating process card. However, during this primer coating process, problems such as coating deviation or omission are easy to occur, which leads to primer failure. This results in low bonding strength between the plastic edge-binding and the insert after injection molding, affecting the overall structural stability of the edge-binding assembly 100.
[0101] In this embodiment, the reinforcing member 20 is provided with a marking portion 211. On-site manual labor or mechanical equipment can apply a primer to the reinforcing member 20 according to the position of the marking portion 211 to form a primer area 212. The primer area 212 can be set around the edge of the marking portion 211, reducing the risk of missed or misaligned application during primer application and preventing primer failure. When the reinforcing member 20, the edge-sealing member 30, and the glass body 10 are integrally injection molded, the bonding accuracy between the support boss 32 of the edge-sealing member 30 and the reinforcing member 20 in the primer area 212 increases the bonding strength between the edge-sealing member 30 and the reinforcing member 20, improves the structural stability of the edge-sealing assembly 100, and thus improves the structural stability of the vehicle 1000.
[0102] In addition, the marking part 211 of the reinforcing member 20 is punched to form an opening, which can reduce the weight of the edge-sealing assembly 100 to a certain extent, which is conducive to meeting the lightweight requirements of the vehicle 1000.
[0103] In this embodiment, after the edge-binding assembly 100 is assembled into the tool body 200, the support boss 32 of the edge-binding component 30 can support the tool body 200, and the reinforcing component 20 can improve the overall structural strength of the edge-binding assembly 100, prevent the edge-binding assembly 100 from collapsing, and improve the structural stability of the vehicle 1000.
[0104] Please see Figure 11 and Figure 12 , Figure 11 for Figure 3 The diagram shows a second embodiment of the edge-sealing assembly of the vehicle shown. Figure 12 for Figure 11 The diagram shows a cross-sectional view of the edge-wrapping assembly along DD.
[0105] In this embodiment, unlike the structure of the edge-binding assembly 100 in the first embodiment described above, the structures of the edge-binding member 30 and the reinforcing member 20 in the edge-binding assembly 100 of this embodiment are different from those in the first embodiment described above.
[0106] The specific structure of the second embodiment of the edge-binding assembly 100 will be described below.
[0107] Please refer to the following: Figure 13 and Figure 14 , Figure 13 for Figure 11 The diagram shows the structural design of the reinforcing component of the edge-sealing assembly. Figure 14 for Figure 13 The diagram shows the structure of the reinforcing member at another angle.
[0108] In this embodiment, the structure of the reinforcing member 20 differs from that in the first embodiment described above. In this embodiment, as... Figure 14As shown, the marking portion 211 is disposed on the outer surface b of the reinforcing member 20, but does not penetrate the inner surface a of the base coat of the reinforcing member 20, and the marking portion 211 is disposed around the edge of the base coat area 212. Along the thickness direction of the first segment 314, the projection of the marking portion 211 is disposed around the edge of the projection of the base coat area 212. The shape of the marking portion 211 is approximately U-shaped. The first outer surface 21b within the base coat area 212 is approximately rectangular. The marking portion 211 can be a U-shaped planar pattern, a U-shaped protrusion, or a U-shaped groove, etc. It should be noted that in this embodiment, the marking portion 211 and the reinforcing member 20 are separately formed, that is, the marking portion 211 is formed on the outer surface b of the reinforcing member 20 after the reinforcing member 20 is formed.
[0109] In one embodiment, the marking portion 211 is a U-shaped protrusion. The marking portion 211 protrudes from the outer surface b of the reinforcing member 20. In this embodiment, the marking portion 211 can be formed on the outer surface b of the reinforcing member 20 by means of welding, bonding, riveting, bolting, 3D printing, etc. For example, the marking portion 211 can be a protrusion structure formed by one or more small protrusions in a U-shape.
[0110] In one embodiment, the marking portion 211 is a U-shaped groove. The marking portion 211 is recessed on the outer surface b of the reinforcing member 20 and is recessed towards the inner surface a of the primer. In this embodiment, the marking portion 211 can be formed on the outer surface b of the reinforcing member 20 by means of etching, finishing, laser removal, engraving, 3D printing, etc. For example, the marking portion 211 can be a U-shaped groove structure formed by one or more small grooves.
[0111] In one embodiment, the marking portion 211 is a U-shaped planar pattern. In this embodiment, the marking portion 211 can be formed on the outer surface b of the reinforcing member 20 by means of methods not limited to printing.
[0112] In some embodiments, the marking portion 211 is not limited to a U-shape; it can also be adjusted according to the shape of the supporting boss 32, such as being semi-circular, triangular, etc. This application does not impose any limitations on this.
[0113] It should be noted that the parts of the reinforcing member 20 in this embodiment that are structurally identical to those in the first embodiment described above will not be repeated here.
[0114] Please see Figure 15 , Figure 15 for Figure 11 The diagram shows a cross-sectional view of the edge banding component of the edge banding assembly along DD.
[0115] In this embodiment, unlike the structure of the edge-binding member 30 in the first embodiment described above, the edge-binding member 30 does not have a positioning boss 33, and the connecting surface 321 of the supporting boss 32 is opposite to and spaced apart from the bottom wall 317a of the first groove along the thickness direction of the first segment 314. It can be understood that the supporting boss 32 is suspended above the bottom wall 317a of the first groove.
[0116] It should be noted that the parts of the edge banding 30 in this embodiment that are structurally identical to those in the first embodiment described above will not be repeated here.
[0117] Please refer to it again. Figure 12 .in, Figure 12 The dashed line mentioned above represents the boundary between the supporting boss 32 and the first groove sidewall 318a.
[0118] In this embodiment, the edge trim 30, the glass body 10, and the reinforcing member 20 are integrally formed by injection molding.
[0119] The support boss 32 of the edging member 30 is located on the outer surface b side of the reinforcing member 20 and covers the base coating area 212 surrounded by the marking portion 211. The connecting surface 321 of the support boss 32 is connected to the outer surface b within the base coating area 212. Along the thickness direction of the first segment 314, the projection of the support boss 32 is at least partially located within the projection of the base coating area 212, that is, the edge of the projection of the support boss 32 is at least partially located within the base coating area 212. The projection of the marking portion 211 is arranged around the edge of the projection of the support boss 32. In this embodiment, along the thickness direction of the first segment 314, the projection of the marking portion 211 can be connected to the edge of the projection of the support boss 32 or spaced apart from the edge of the projection of the support boss 32. For example, along the thickness direction of the first segment 314, the projection of the support boss 32 completely coincides with the projection of the base coating area 212. That is, the edge of the projection of the support boss 32 completely coincides with the edge of the projection of the base coating area 212. The projection of the marking part 211 is set around the edge of the projection of the support boss 32 and connected to the edge of the projection of the support boss 32.
[0120] It is understandable that the reinforcing member 20 is provided with the marking part 211. When the edge-wrapping member 30 is integrally injection molded with the glass body 10 and the reinforcing member 20, the edge-wrapping material forming the edge-wrapping member 30 will bypass the first base coating edge surface 21c of the reinforcing member 20 from the inner surface 21a of the first base coating and cover the first outer surface 21b within the base coating area 212. The size of the base coating area 212 is sufficient to provide enough contact area between the supporting boss 32 and the reinforcing member 20, thereby ensuring the bonding strength between the reinforcing member 20 and the edge-wrapping member 30.
[0121] In addition, after the reinforcing member 20 is formed, a marking part 211 is provided, which makes it convenient for manual or mechanical equipment on site to directly apply a base coat to the outer surface b surrounded by the marking part 211 to form a base coat area 212. This provides a more obvious marking effect on the bonding of the supporting boss 32, further eliminates the base coat deviation, improves the bonding accuracy of the supporting boss 32 and the outer surface b in the base coat area 212, and ensures the bonding strength of the edge banding part 30 and the reinforcing member 20.
[0122] In some embodiments, the marking portion 211 can be a recess or a boss. Along the thickness direction of the first segment 314, the projection of the base coating area 212 lies within the projection of the marking portion 211. In one embodiment, the marking portion 211 can be a rectangular recess, recessed on the outer surface b of the reinforcing member 20 and recessed towards the inner surface a of the base coating. The wall surface of the recess is coated with a base coating to form the base coating area 212. The supporting boss 32 is at least partially installed in the recess, and the connecting surface 321 of the supporting boss 32 is bonded to the wall surface within the base coating area 212, achieving a fixed connection between the edge-sealing member 30 and the reinforcing member 20. Along the thickness direction of the first segment 314, the projection of the base coating area 212 lies within the projection of the recess. In one embodiment, the marking portion 211 can be a rectangular boss. The boss protrudes from the outer surface b of the reinforcing member 20. The boss includes a boss surface, the orientation of which is the same as the orientation of the outer surface b. The boss surface is primed to form a primed area 212. The connecting surface 321 of the supporting boss 32 is bonded to the boss surface in the primed area 212 to achieve a fixed connection between the edge banding 30 and the reinforcing member 20. Along the thickness direction of the first segment 314, the projection of the primed area 212 is located within the projection of the boss.
[0123] It is understood that in this application, the reinforcing member 20 is provided with a marking portion 211 and a base coat area 212 is provided based on the marking portion 211. Along the thickness direction of the reinforcing member 20, the projection of the base coat area 212 at least partially overlaps with or is adjacent to the projection of the marking portion 211.
[0124] The embodiments of this application have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. An edge-sealing assembly, characterized in that, The edge-sealing assembly includes: Glass body; An edge-binding component, the edge-binding component including an edge-binding body and a supporting boss, the edge-binding body including an assembly outer surface, and the supporting boss protruding from the assembly outer surface; A reinforcing member, the reinforcing member comprising an outer surface and a base coating inner surface, the outer surface and the base coating inner surface being disposed opposite to each other along the thickness direction of the reinforcing member, the reinforcing member further comprising a base coating area; The reinforcing member is also provided with an identification portion, and along the thickness direction of the reinforcing member, the projection of the base coating area and the projection of the identification portion are at least partially overlapped or adjacent to each other; The edge banding is surrounded and connected to the side edge of the glass body. The outer surface of the assembly faces away from the glass body. The reinforcing member is embedded in the side of the edge banding facing away from the glass body. The edge banding body and the supporting boss are located on both sides of the thickness direction of the reinforcing member. The edge banding body is bonded to the inner surface of the primer. The supporting boss is bonded to the outer surface of the primer area. Along the thickness direction of the edge banding, the edge of the projection of the support boss is at least partially located within the projection of the base coating area.
2. The edge-sealing assembly according to claim 1, characterized in that, The marking portion is an opening that extends through the outer surface and the inner surface of the base coat. The base coat area is arranged around the edge of the marking portion and connected to the edge of the marking portion. The edging component also includes a positioning boss, which passes through the marking portion and is located between the supporting boss and the edging body. The positioning boss is connected to the supporting boss and the edging body. Along the thickness direction of the edging piece, the projection of the marking portion lies within the projection of the supporting boss.
3. The edge-sealing assembly according to claim 2, characterized in that, The reinforcing member also includes a base coat edge surface, which is connected to the inner surface of the base coat and the outer surface, and the marking portion also penetrates the base coat edge surface.
4. The edge-sealing assembly according to claim 2, characterized in that, The distance from the outer edge of the base coating area to the edge of the marking part is greater than or equal to 1 mm.
5. The edge-sealing assembly according to claim 1, characterized in that, The marking portion is arranged around the edge of the base coating area. Along the thickness direction of the edge banding, the projection of the marking portion is arranged around the edge of the projection of the support boss, and the projection of the marking portion is connected to the edge of the projection of the support boss or spaced apart from the edge of the projection of the support boss.
6. The edge-sealing assembly according to claim 5, characterized in that, The marking portion is a planar pattern, which is printed on the outer surface of the reinforcing member; or, The marking portion is a groove, which is recessed into the outer surface of the reinforcing member and recessed towards the inner surface of the primer; or... The marking portion is a protrusion, which protrudes from the outer surface of the reinforcing member.
7. The edge-binding assembly according to claim 1, characterized in that, Along the thickness direction of the edge banding, the projection of the base coating area is located within the projection of the marking part, which is a groove or a boss.
8. The edge-binding assembly according to any one of claims 1-7, characterized in that, The edge banding, the glass body, and the reinforcing member are integrally injection molded.
9. The edge-binding assembly according to any one of claims 1-7, characterized in that, The edging body also includes a first segment and a second segment, which are connected and together surround and connect the side edge of the glass body; The reinforcing member is provided in the first section and / or the second section.
10. The edge-binding assembly according to claim 9, characterized in that, The first segment has a lip protruding on the side facing away from the glass body, and the lip is spaced apart from the reinforcing member.
11. A means of transportation, characterized in that, The vehicle includes a tool body, a sealant, and an edge-sealing assembly as described in any one of claims 1-10. The edge-sealing assembly and the sealant are mounted together on the tool body. The sealant is located between the glass body and the tool body and is held by the glass body and the tool body. The edge-sealing component and the tool body form a clearance space. The reinforcing component is located within the clearance space. The supporting boss abuts against the tool body.
12. The means of transport according to claim 11, characterized in that, The edge-binding body and supporting boss of the edge-binding component are spaced apart from the sealant.