Glass cladding assembly and vehicle
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2026-08-14
AI Technical Summary
在这些玻璃总成具有变色或透明度调节功能的情况下,如果包边设置不合理,会影响其变色或透明度调节的效果
[0016]本申请中,通过合理地设置注塑机的注塑参数,在包边注塑过程中,能够避免调光玻璃因受力过大而引发的调光元件受损的问题。
Smart Images

Figure CN224631518U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of intelligent vehicle technology, and more specifically, to a bezel glass assembly and a vehicle. Background Technology
[0002] With the development of vehicle technology, glass assemblies such as door windows, triangular windows, and windshields need to integrate more and more functions. For example, some glass assemblies integrate color-changing or transparency adjustment functions to adjust the color and transparency of the glass according to user needs and changes in the external environment.
[0003] Currently, glass assemblies such as triangular windows and windshields typically have edging around their edges, which is then used to secure them to the vehicle body. If these glass assemblies have chromatic aberration or transparency adjustment functions, improper edging can negatively impact the effectiveness of these adjustments. Utility Model Content
[0004] This application provides a glazing glass assembly and vehicle that can protect the light-transmitting area of the dimming glass while preventing the dimming elements in the dimming glass from being damaged due to excessive pressure, thereby improving the uniformity of the dimming effect of the dimming glass.
[0005] In a first aspect, a bezel-mounted glass assembly is provided. The bezel-mounted glass assembly (10) includes a dimming glass (100) and a bezel (200) surrounding the edge of the dimming glass. The dimming glass (100) includes a first region for providing the bezel (200) and a second region not covered by the bezel (200). The dimming glass (100) includes glass bodies (110, 120) and a dimming element (140), the dimming element (140) being disposed in a third region within the second region. The distance between the third region and the first region is greater than or equal to 1 mm and less than 5 mm.
[0006] In this application, the dimming element is placed in the area of the dimming glass that is not covered by the edge. By reasonably controlling the distance between the third area where the dimming element is located and the first area where the edge is located, the light-transmitting area of the dimming glass can be guaranteed while avoiding damage to the dimming element due to excessive clamping force and injection pressure of the edge, thereby improving the uniformity of the dimming effect of the dimming glass.
[0007] In some implementations, the glass body in the dimming glass (100) may include a first glass body (110) and a second glass body (120). In the thickness direction, the dimming glass (100) may have a sandwich structure (130) containing a dimming element (140) between the first glass body (110) and the second glass body (120); the dimming glass (100) may also include a first intermediate layer (150) disposed on the periphery of the sandwich structure (130), the first intermediate layer (150) may be used to bond the first glass body (110) and the second glass body (120).
[0008] In this application, by providing an intermediate layer for bonding the first glass body and the second glass body on the periphery of the sandwich structure, it is possible to avoid the formation of cantilever beams of the first glass body and the second glass body in the periphery of the sandwich structure, thereby reducing the possibility of abnormal warping and damage of the first glass body and the second glass body near the edge.
[0009] In some implementations, the first intermediate layer (150) can be a frame structure; the first intermediate layer (150), the first glass body (110) and the second glass body (120) can enclose and form a receiving space, which can be used to receive the sandwich structure (130).
[0010] In this application, a first intermediate layer with a frame-shaped structure is arranged around the periphery of the sandwich structure, and together with the first glass body and the second glass body, forms a space for accommodating the sandwich structure. This makes it difficult for foreign objects such as water and dust to penetrate into the part where the dimming element is located, thereby effectively avoiding the problem of performance degradation of the dimming element caused by dust, water and other substances.
[0011] In some implementations, the sandwich structure (130) may include a second intermediate layer (131) for bonding the first glass body (110) and a third intermediate layer (132) for bonding the second glass body (120). In the thickness direction of the dimming glass (100), the dimming element (140) may be disposed between the second intermediate layer (131) and the third intermediate layer (132).
[0012] In some implementations, the sandwich structure (130) may also include a touch screen (170), which can be bonded to the dimming element (140) via a fourth intermediate layer (133).
[0013] In this application, by setting a touch screen in the sandwich structure, the edge-sealed glass assembly can have both dimming and touch functions.
[0014] In some implementations, the edging (200) can be formed on the edge of the dimming glass (100) by edging injection molding.
[0015] In some implementations, during the edge-wrapping injection molding process, the holding time of the injection molding machine can be less than or equal to 7 seconds, and the clamping pressure of the injection molding machine can be less than or equal to 5 MPa.
[0016] In this application, by reasonably setting the injection parameters of the injection molding machine, the problem of damage to the dimming element caused by excessive force on the dimming glass can be avoided during the edge-wrapping injection process.
[0017] In some implementations, the edging (200) can be clamped to the edge of the dimming glass (100), and the clamping force of the edging (200) can be less than or equal to 55 Newtons.
[0018] In this application, when the edge is clamped to the dimming glass, by reasonably setting the clamping force of the edge, the problem of damage to the dimming element caused by excessive force on the dimming glass can be avoided.
[0019] In some implementations, the dimming element (140) can be a dye liquid crystal.
[0020] In some implementations, the edging (200) provided at the edge of the dimming glass (100) can surround the dimming glass (100) in a continuous or discontinuous manner.
[0021] In some implementations, the bezel glass assembly can be the triangular window glass assembly of a vehicle.
[0022] In a second aspect, a vehicle is provided. This vehicle may include the cladding glass assembly as described in the first aspect and any possible implementation thereof. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the automotive glass assembly included in a vehicle;
[0024] Figure 2 This is a diagram illustrating dimming defects caused by improper edge binding.
[0025] Figure 3 This is a schematic diagram of a framed glass assembly provided in an embodiment of this application;
[0026] Figure 4 This is a schematic diagram of a type of dimming glass provided in an embodiment of this application;
[0027] Figure 5 This is a schematic diagram of the arrangement of the intermediate layer 150 provided in the embodiments of this application;
[0028] Figure 6 This is another structural schematic diagram of the dimming glass provided in the embodiments of this application;
[0029] Figure 7This is a schematic diagram of the edging arrangement provided in the embodiments of this application. Detailed Implementation
[0030] The technical solutions in this application will now be described with reference to the accompanying drawings.
[0031] For vehicles, based on the location and function of the car's glass, it can be divided into: windshield assembly, rear windshield assembly, door glass assembly, front quarter window assembly, rear quarter window assembly, and sunroof assembly. For example, Figure 1 The diagram shows the arrangement of the windshield, rear windshield, door windows, rear quarter window, and sunroof in the vehicle.
[0032] As required by the overall vehicle design, glass assemblies such as the windshield assembly and the triangular window assembly can have edging around the edges of the glass. On the one hand, the edging provides better sealing; on the other hand, these glass assemblies can be fitted with the corresponding mounting structure of the vehicle body through the edging, so that the glass is firmly fixed to the vehicle body, thereby preventing the glass from loosening, making abnormal noises, or even falling off when the vehicle is bumpy, turning, or driving at high speed.
[0033] As vehicle technology advances, automotive glass needs to integrate more and more functions. For example, some glass assemblies integrate color-changing or transparency-adjusting functions to adjust the glass's color and transparency according to user needs and changes in the external environment.
[0034] However, for glass with color-changing or transparency-adjusting functions, these functions will be affected if the edging is not properly designed. The following examples illustrate this. Figure 2 The triangular window assembly shown is an example to illustrate this.
[0035] Assumption Figure 2 The triangular window assembly shown has a dimming function, which is achieved through a dimming element installed in the glass. Before the dimming function is activated, the dimming glass can be colorless and transparent; after the dimming function is activated, the dimming glass can be black and opaque to achieve a privacy protection effect.
[0036] Reference Figure 2 In (a) of the triangular window glass assembly, a rim is provided around the edge of the glass; mounting holes are provided on the rim. The triangular window glass assembly can be installed on the vehicle body using fasteners such as bolts and the mounting holes on the rim.
[0037] Ideally, after enabling the dimming function, the area where the dimming element is located in the glass will change color entirely, such as... Figure 2As shown in (b) in the figure. Since the edging itself serves to fix the glass, it inevitably applies a certain amount of pressure to the glass; if the edging is not set properly, the dimming element may be damaged.
[0038] Taking a dye-based liquid crystal as an example, if the edge setting is improper, the glass will be subjected to excessive pressure in some areas, leading to damaged dye-based liquid crystal within the glass. Since dye-based liquid crystals can be damaged under excessive pressure and thus lose their dimming function, if some dye-based liquid crystals within the glass are damaged, the entire glass will exhibit inconsistent dimming after the dimming function is activated. Figure 2 As shown in (c). In particular, when the area where the dimming element is located partially overlaps with the area where the bezel is located, the dimming element is easily damaged by excessive force in these overlapping areas.
[0039] Therefore, embodiments of this application provide a bezel-enclosed glass assembly and a vehicle.
[0040] The edge-sealed glass assembly may include a dimming glass and an edge surrounding the edge of the dimming glass. The dimming glass may include a first region for setting the edge and a second region not covered by the edge; the dimming glass may include a glass body and a dimming element, and the dimming element may be disposed in a third region within the second region. The distance between the third region and the first region may be greater than or equal to 1 mm and less than 5 mm.
[0041] In some implementations, the glass body in the dimming glass may include a first glass body and a second glass body; in the thickness direction, a sandwich structure containing a dimming element may be provided between the first glass body and the second glass body. The dimming glass may also include a first intermediate layer disposed around the sandwich structure, which may be used to bond the first glass body and the second glass body.
[0042] The following combination Figure 3 and Figure 4 The illustrated edge-sealed glass assembly provides an illustrative description of the first region, the second region, the third region, the first glass body, the second glass body, the interlayer structure, and the first intermediate layer.
[0043] For example, Figure 3 This is a schematic diagram of a rimmed glass assembly provided in an embodiment of this application. The rimmed glass assembly 10 can serve as a triangular window glass assembly for a vehicle.
[0044] Figure 3 Image (a) shows an example of a front view of the bezel glass assembly 10. Figure 3 (b) shows an example of a cross-sectional view of the bezel glass assembly 10 at section BB. Figure 3Image (c) shows an example of a front view of the dimming glass 100. Figure 3 (d) shows an example of a cross-sectional view of the dimming glass 100 at section CC.
[0045] Reference Figure 3 In (a), the bezel glass assembly 10 may include a dimming glass 100 and a bezel 200. The bezel 200 may be disposed at the edge of the dimming glass 100 and may surround the glass assembly 100.
[0046] Reference Figure 3 In (b) and (c), based on whether or not the dimming glass 100 is covered by the edging 200, the dimming glass 100 can be divided into an area covered by the edging 200 (i.e., area A) and an area not covered by the edging 200 (i.e., area B). Since the edging 200 is located at the edge of the dimming glass 100, area A can be closer to the center of the dimming glass 100 than area B.
[0047] Reference Figure 3 In (d), the dimming glass 100 may include glass body 110, glass body 120, and a sandwich structure 130 containing a dimming element 140. In the thickness direction, the sandwich structure 130 may be disposed between glass bodies 110 and 120. For example, the dimming element may be a dye-based liquid crystal or similar device to adjust the transmittance of the dimming glass in the visible light band. Alternatively, glass bodies 110 and 120 may be transparent white glass.
[0048] In addition to the dimming element 140, the sandwich structure 130 may also include: an intermediate layer 131 for bonding with the glass body, and an intermediate layer 132 for bonding with the glass body 120. For example... Figure 3 As shown in (d), when the sandwich structure 130 only includes intermediate layer 131, intermediate layer 132, and dimming element 140, the dimming element 140 is bonded to the glass body 110 through intermediate layer 131 and to the glass body 120 through intermediate layer 132. For example, the intermediate layer in the dimming glass 100 can be made of materials suitable for laminated glass, such as polyvinyl butyral (PVB) or SGP film.
[0049] like Figure 3 As shown in (d), the dimming element 140 can be disposed in region C within region B; region C is separated from region A by a distance D. Figure 3 In the scheme shown, region A can correspond to the first region, region B can correspond to the second region, and region C can correspond to the third region; vitreous body 110 can correspond to the first vitreous body, and vitreous body 120 can correspond to the second vitreous body.
[0050] In some embodiments, the edging 200 may be clamped to the edge of the dimming glass 100. When clamped to the edge of the dimming glass 100, the edging 200 will exert a large clamping force on the dimming glass 100 at the clamping position; correspondingly, the glass bodies 110 and 120 will exert a large pressure on the interlayer structure 130 near the clamping position. If the distance D is too small, the dimming element 140 may be damaged due to excessive pressure.
[0051] In other embodiments, the edging 200 may be formed on the edge of the dimming glass 100 by edging injection molding. In this case, during the edging injection molding process, the injection molding machine will apply greater pressure to the dimming glass at region A. If the distance D is too small, the dimming element 140 may be damaged due to excessive pressure.
[0052] To prevent the dimming element 140 from being damaged by excessive pressure, the distance D can be set to 1 mm or more. In some designs, the edge banding 200 is clamped to the edge of the dimming glass; to reduce the possibility of damage to the dimming element 140 due to the clamping force of the edge banding, the clamping force of the edge banding 200 can be set to below 55 Newtons. In some designs, the edge banding 200 is formed to the edge of the dimming glass by edge injection molding; to reduce the damage to the dimming element due to excessive pressure on the dimming glass during edge injection molding, the holding time of the injection molding machine can be set to within 7 seconds, and the clamping pressure can be set to below 5 MPa.
[0053] In addition, to improve the aesthetics of the bezel-framed glass assembly 10, the dimming glass 100 may be provided with a shielding layer to prevent the sides of the interlayer structure 130, the electrodes of the dimming element 140, and other structures from being exposed to the user's view. This shielding layer may be provided on the surface of the glass body in the dimming glass 100.
[0054] For example, refer to Figure 4 The shielding layer 161 can be disposed on the surface of the glass body 110 near the interlayer structure 130; one end of the shielding layer 161 near the interlayer structure 130 can correspond to the edge of the interlayer structure 130, and the other end of the shielding layer 161 can extend towards the edge of the dimming glass 100. Similarly, like the shielding layer 161, the shielding layer 162 can be disposed on the surface of the glass body 120 near the interlayer structure 130. For example, assuming the glass body 120 is disposed near the cockpit side, the shielding layer 163 can be disposed on the surface of the glass body 120 near the cockpit side.
[0055] In practical implementation, the dimming glass 100 may be provided with one or more of the shielding layers 161 to 163 to prevent the sides of the interlayer structure 130, the electrodes of the dimming element 140, and other structures from being exposed to the user's field of vision. For example, the black border on the triangular window glass assembly may be formed by the shielding layers 161, 162, or 163.
[0056] The presence of the edging and shielding layer divides the dimming glass 100 into light-transmitting and non-light-transmitting areas, such as... Figure 4 As shown. When the dimming function is not enabled, the light-transmitting area allows light to pass through; the non-transmitting area will have difficulty allowing light to pass through due to the obstruction of the edging and shielding layer (for example, the light transmittance will be reduced to below 1%). When the dimming function is enabled, the light-transmitting area can have a lower light transmittance under the action of the dimming element, so as to achieve the effect of privacy protection.
[0057] Depend on Figure 4 It can be seen that the width of the opaque area increases with the distance D; with the size of the dimming glass remaining constant, the larger the opaque area, the smaller the translucent area. To ensure that the dimming glass has a large translucent area, the distance D can be less than 5 mm.
[0058] In this embodiment, the dimming element is placed in the area of the dimming glass that is not covered by the edge. By reasonably controlling the distance between the third area where the dimming element is located and the first area where the edge is located, the size of the light-transmitting area in the dimming glass can be guaranteed, while avoiding damage to the dimming element due to excessive pressure, thereby improving the uniformity of the dimming effect of the dimming glass.
[0059] In some implementations, the dimming glass 100 may also include an intermediate layer 150, such as... Figure 3 As shown. The intermediate layer 150 can be disposed on the periphery of the interlayer structure 130; that is, compared to the interlayer structure 130, the intermediate layer 150 can be disposed closer to the edge of the dimming glass 100. For the dimming glass 100, in the area where the interlayer structure 130 is located, the glass body 110 can be bonded to the glass body 120 through the interlayer structure 130; while in the area outside the interlayer structure 130, the glass body 110 can be bonded to the glass body 120 through the intermediate layer 150. Figure 3 In the scheme shown, intermediate layer 150 can be used as an example of the first intermediate layer.
[0060] For the dimming glass 100, without the intermediate layer 150, the glass bodies 110 and 120 will form a cantilever beam structure at their edges. Since the edging 200 is set at the edge of the dimming glass 100, if the glass bodies 110 and 120 form a cantilever beam at their edges, these two glass bodies are prone to abnormal warping and damage due to the clamping force of the edging and the pressure of the injection molding machine.
[0061] In this embodiment of the application, by providing an intermediate layer 150 for bonding the glass bodies 110 and 120 around the periphery of the sandwich structure 130, the possibility of abnormal warping and damage to the glass bodies 110 and 120 near the edge can be reduced.
[0062] In some embodiments, the dimming glass 100 may be provided with a plurality of spaced-apart intermediate layers 150. For example, as Figure 5 As shown in (a), the dimming glass 100 may be provided with a plurality of intermediate layers 150, which may be respectively provided at different parts of the dimming glass 100 along the circumference of the dimming glass 100; the plurality of intermediate layers 150 are all arranged along the outer contour of the glass at the edge of the dimming glass 100.
[0063] In other embodiments, the intermediate layer 150 may be continuously disposed circumferentially around the dimming glass. For example, as Figure 5 As shown in (b), the intermediate layer 150 continuously arranged circumferentially around the dimming glass 100 will form a frame structure. In this case, the glass body 110, the glass body 120 and the intermediate layer 150 can be enclosed to form an accommodating space, and the sandwich structure 130 can be disposed in the accommodating space.
[0064] Compared to Figure 5 (a) in Figure 5 In scheme (b), the intermediate layer 150 with a frame structure can be arranged around the periphery of the sandwich structure 130, and foreign objects such as water and dust will not be able to invade the dimming element 140 from the side of the dimming glass 100, thereby effectively avoiding the problem of performance degradation of the dimming element 140 caused by substances such as dust, water, and oxygen.
[0065] The above combination Figures 3 to 5 The edge-sealed glass assembly provided in this application embodiment has been described by way of example. In other implementations, the structure of the edge-sealed glass assembly may differ from... Figure 3 There are differences. The following description provides an example of the shape of the dimming glass, the structure of the interlayer structure 130, and the arrangement of the edging.
[0066] exist Figure 3 In the illustrated scheme, the edge-mounted glass assembly can serve as the triangular window glass assembly of the vehicle; correspondingly, the dimming glass is approximately triangular. In some implementations, [the following is related to...] Figure 3 The proposed solutions differ; the edge-mounted glass assembly can serve as a sunroof glass assembly, rear windshield glass assembly, or other glass assemblies in a vehicle. Correspondingly, the shape of the dimming glass will be different. Figure 3 There are differences.
[0067] exist Figure 3 In the illustrated scheme, the sandwich structure 130 containing the dimming element adopts a three-layer structure. In some implementations, with Figure 3 Different schemes can be shown, and the sandwich structure 130 can also have more or fewer layers.
[0068] For example, refer to Figure 6 ,and Figure 3 The scheme is similar; the sandwich structure 130 is still bonded to the glass body 110 through the intermediate layer 131, and to the glass body 120 through the intermediate layer 132; and... Figure 3 The difference in the design is that, in addition to the dimming element 140, a touch screen 170 is also provided in the sandwich structure 130. The touch screen 170 can be located between the intermediate layers 131 and 132, and is bonded to the dimming element 140 through the intermediate layer 133.
[0069] exist Figure 6 In the scheme shown, the dimming element 140, the touch screen 170, and the intermediate layers 131 to 133 form a five-layer sandwich structure; correspondingly, the edge-mounted glass assembly can have both dimming and touch functions.
[0070] exist Figure 3 In the illustrated scheme, the edging 200 is continuously arranged around the dimming glass 100 in a ring. In some implementations, it is similar to... Figure 3 The method shown is different; the edging can be set around the dimming glass in a non-continuous manner.
[0071] For example, refer to Figure 7 In (a) of the example, the edging is not connected in some locations along the circumferential direction of the edging glass assembly. For example, see reference... Figure 7 In (b), the bezel glass assembly may be provided with multiple bezels spaced apart (such as bezel A and bezel B), which may surround the dimming glass and be provided at the edge of the dimming glass.
[0072] The above combination Figures 3 to 7 The edge-sealing glass assembly provided in the embodiments of this application is described.
[0073] This application also provides a vehicle that may include the above-described edge-sealed glass assembly and any of its possible implementations.
[0074] The vehicles involved in this application embodiment are vehicles in a broad sense, which can be means of transportation (such as commercial vehicles, passenger cars, motorcycles, flying cars, trains, etc.), industrial vehicles (such as forklifts, trailers, tractors, etc.), engineering vehicles (such as excavators, bulldozers, cranes, etc.), agricultural equipment (such as lawnmowers, harvesters, etc.), amusement equipment, toy vehicles, etc. This application embodiment does not specifically limit the type of vehicle. For example, the vehicles in this application can include pure electric vehicles (pure EV / battery EV), hybrid electric vehicles (HEV), range-extended electric vehicles (REEV), plug-in hybrid electric vehicles (PHEV), or new energy vehicles (NEV), etc.
[0075] The detailed description and accompanying drawings of the above embodiments are used to illustrate the principles of this application by way of example, but should not be used to limit the scope of this application, that is, this application is not limited to the described embodiments.
[0076] Unless the context otherwise requires, throughout the specification and claims, the term "comprise" and other forms such as the third-person singular "comprises" and the present participle "comprising" are interpreted as open and inclusive, meaning "including, but not limited to." In the description of the specification, terms such as "one embodiment," "some embodiments," "exemplary embodiments," "example," "specific example," or "some examples" are intended to indicate that a particular feature, structure, material, or characteristic associated with that embodiment or example is included in at least one embodiment or example of this application. The illustrative representations of the foregoing terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described can be included in any suitable manner in any of the embodiments or examples.
[0077] The terms "first" and "second" used in the embodiments of this application are 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 as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the embodiments of this application, unless otherwise stated, "multiple" means two or more.
[0078] The directional terms appearing in the description of the embodiments of this application refer to the directions shown in the figures and are not intended to limit the specific structures in the embodiments of this application. It should also be noted in the description of the embodiments of this application that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0079] In this application, the term "embodiment" is used to mean that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment. Those skilled in the art will explicitly and implicitly understand that the embodiments described in this application can be combined with other embodiments.
[0080] In this application, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, in this application, the character " / " generally indicates that the preceding and following related objects have an "or" relationship.
[0081] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
[0082] In addition, the use of “based on” implies openness and inclusivity, because a process, step, calculation or other action “based on” one or more of the stated conditions or values may in practice be based on additional conditions or values beyond those stated.
[0083] The terms “about,” “approximately,” or “approximately” used in this application embodiment include the stated value and the average value within an acceptable deviation range of a particular value, wherein the acceptable deviation range is determined by a person skilled in the art taking into account the measurement under discussion and the error associated with the measurement of the particular quantity, i.e., the limitations of the measurement system.
[0084] In the several embodiments provided in this application, it should be understood that the embodiments described above are merely illustrative. For example, the division of modules is only a logical functional division. In actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed.
[0085] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A type of edge-sealed glass assembly (10), characterized in that, The edge-sealed glass assembly (10) includes a dimming glass (100) and an edge-sealed rim (200) surrounding and disposed on the edge of the dimming glass. The dimming glass (100) includes a first area for setting the edging (200) and a second area not covered by the edging (200); The dimming glass (100) includes a glass body (110, 120) and a dimming element (140), wherein the dimming element (140) is disposed in a third region within the second region; The distance between the third region and the first region is greater than or equal to 1 mm and less than 5 mm.
2. The edge-sealed glass assembly (10) according to claim 1, characterized in that, The glass body in the dimming glass (100) includes a first glass body (110) and a second glass body (120). In the thickness direction, the dimming glass (100) has a sandwich structure (130) containing the dimming element (140) between the first glass body (110) and the second glass body (120). The dimming glass (100) further includes a first intermediate layer (150) disposed on the periphery of the sandwich structure (130), the first intermediate layer (150) being used to bond the first glass body (110) and the second glass body (120).
3. The edge-sealed glass assembly (10) according to claim 2, characterized in that, The first intermediate layer (150) has a frame-shaped structure. The first intermediate layer (150), the first glass body (110), and the second glass body (120) form a receiving space, which is used to receive the sandwich structure (130).
4. The edge-sealed glass assembly (10) according to claim 2 or 3, characterized in that, The sandwich structure (130) includes a second intermediate layer (131) for bonding the first glass body (110) and a third intermediate layer (132) for bonding the second glass body (120). In the thickness direction of the dimming glass (100), the dimming element (140) is disposed between the second intermediate layer (131) and the third intermediate layer (132).
5. The edge-sealed glass assembly (10) according to claim 2 or 3, characterized in that, The sandwich structure (130) also includes a touch screen (170), which is bonded to the dimming element (140) through a fourth intermediate layer (133).
6. The edge-sealed glass assembly (10) according to any one of claims 1 to 3, characterized in that, The edging (200) is formed on the edge of the dimming glass (100) by edging injection molding.
7. The edge-sealed glass assembly (10) according to claim 6, characterized in that, During the edge-wrapping injection molding process, the holding time of the injection molding machine is less than or equal to 7 seconds, and the clamping pressure of the injection molding machine is less than or equal to 5 MPa.
8. The edge-sealed glass assembly (10) according to any one of claims 1 to 3, characterized in that, The edging (200) is clamped to the edge of the dimming glass (100), and the clamping force of the edging (200) is less than or equal to 55 Newtons.
9. The edge-sealed glass assembly (10) according to any one of claims 1 to 3, characterized in that, The dimming element (140) is a dye liquid crystal.
10. The edge-sealed glass assembly (10) according to any one of claims 1 to 3, characterized in that, The edging (200) disposed at the edge of the dimming glass surrounds the dimming glass (100) in a continuous or discontinuous manner.
11. The edge-sealed glass assembly (10) according to any one of claims 1 to 3, characterized in that, The edge-mounted glass assembly (10) is the triangular window glass assembly of the vehicle.
12. A vehicle, characterized in that, Includes the edge-sealed glass assembly as described in any one of claims 1 to 11.