Glass sliding part, glass assembly and vehicle
By setting glue receptacle grooves and overflow holes in the fixed part of the glass slide, the problem of adhesive overflow affecting the appearance of lifting glass is solved, and stronger bonding connections and more beautiful glass slide design are achieved.
Patent Information
- Application Number
- CN202421571498.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-04
AI Technical Summary
When the existing glass sliders are bonded to the lifting glass, the adhesive easily overflows to the area where the glass sliders are not provided, affecting the appearance of the lifting glass.
A glue receptacle groove is provided on the first surface of the fixing portion of the glass slider, and extends along the length direction of the fixing portion to prevent the adhesive from overflowing; at the same time, a glue receptacle hole is provided on the bottom wall of the groove of the glue receptacle to provide an overflow channel of excess adhesive.
Effectively prevent the adhesive from overflowing along the width of the lifting glass, avoid affecting the appearance of the lifting glass, and overflowing excess adhesive through the overflowing glue holes, maintaining the bonding strength between the glass slider and the lifting glass.
Smart Images

Figure CN222832675U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field related to automobile accessories, in particular to glass sliding parts, glass assemblies and vehicles. Background Art
[0002] At present, a glass sliding member is usually provided on the lifting glass of a car, and the lifting glass is lifted and lowered by slidingly connecting the glass sliding member with a guide member of the car. An adhesive is provided between the glass sliding member and the lifting glass, and the adhesive enables the glass sliding member to be bonded and connected with the lifting glass. In the prior art, the surface where the glass sliding member is bonded and connected with the lifting glass is a plane. When the glass sliding member is bonded and connected with the lifting glass, the adhesive is easy to overflow from between the glass sliding member and the lifting glass to the area on the lifting glass where the glass sliding member is not provided, thereby affecting the appearance of the lifting glass. Utility Model Content
[0003] The purpose of the present application is to provide a glass sliding part, a glass assembly and a vehicle, which can improve the appearance of the lifting glass.
[0004] A first aspect of the present application provides a glass sliding member, comprising a fixing portion and a sliding portion, wherein the fixing portion comprises a fixing body, the fixing body comprises a first surface and a second surface, the first surface and the second surface are arranged in opposite directions along a thickness direction of the fixing body, and the sliding portion is convexly arranged on the second surface;
[0005] The fixed body is provided with a glue containing groove and a glue overflow hole. Along the thickness direction of the fixed body, the glue containing groove is recessed on the first surface, and the glue containing groove extends along the length direction of the fixed body. The glue containing groove includes a groove bottom wall and two groove side walls. Along the width direction of the fixed body, the two groove side walls are arranged opposite to each other, and the groove bottom wall is connected between the two groove side walls. Along the thickness direction of the fixed body, the glue overflow hole passes through the groove bottom wall and the second surface.
[0006] It is understandable that in the present application, by providing a glue groove on the first surface of the fixed part of the glass sliding part, and the glue groove extends along the length direction of the fixed part, when the glass sliding part and the lifting glass are bonded together by adhesive, the two groove side walls of the glue groove can prevent the adhesive in the glue groove from overflowing to the window area of the lifting glass along the width direction of the lifting glass, thereby avoiding affecting the appearance of the lifting glass. In addition, by providing an overflow hole on the bottom wall of the glue groove, when there is too much adhesive in the glue groove, the excess adhesive can overflow from the overflow hole to the second surface of the fixed part, that is, the overflow hole provides an overflow channel for the excess adhesive, thereby avoiding the excess adhesive from overflowing to the window area of the lifting glass and affecting the appearance of the lifting glass. Therefore, the present application can improve the appearance of the lifting glass.
[0007] In a possible implementation manner, the surface of the groove bottom wall is a rough surface, and the roughness Ra of the surface of the groove bottom wall is 1.0 mm-10.0 mm.
[0008] In a possible implementation manner, the fixing portion further includes at least one protrusion, the protrusion is protruding from the bottom wall of the glue containing groove, and along the thickness direction of the fixing body, the protrusion is limited in the glue containing groove.
[0009] In a possible embodiment, the fixing portion further includes at least one support column, which is formed on the bottom wall of the glue containing groove, and extends along the thickness direction of the fixed body. The support column has a support end, and along the thickness direction of the fixed body, the support end protrudes from the first surface, and the distance between the support end and the first surface is less than or equal to 0.15 mm.
[0010] In a possible implementation manner, the fixing portion includes four support columns, and the four support columns are distributed in a quadrilateral.
[0011] In a possible implementation manner, the fixing body is provided with a third surface and a fourth surface which are arranged in back-to-back relation, the third surface and the fourth surface are located in the length direction of the fixing body, and the third surface and the fourth surface are both connected between the first surface and the second surface;
[0012] The glue containing groove passes through the third surface and the fourth surface, and forms openings on both the third surface and the fourth surface.
[0013] A second aspect of the present application provides a glass assembly, comprising a lifting glass, an adhesive and a glass sliding member as described above, wherein the lifting glass comprises an inner surface, the fixing body is connected to the lifting glass, the first surface is opposite to and connected to the inner surface, the groove bottom wall is opposite to the inner surface at a distance, and the adhesive is connected to the inner surface and fills the adhesive groove.
[0014] In a possible implementation manner, the fixing body is provided with a third surface and a fourth surface which are arranged in back-to-back relation, the third surface and the fourth surface are located in the length direction of the fixing body, and the third surface and the fourth surface are both connected between the first surface and the second surface;
[0015] The adhesive containing groove passes through the third surface and the fourth surface, and forms openings on both the third surface and the fourth surface, and the adhesive also seals the two openings.
[0016] In a possible implementation manner, the adhesive also covers the first surface, and the adhesive connects the inner surface and the first surface.
[0017] A third aspect of the present application provides a vehicle, comprising a pillar, a guide member and the glass assembly as described above, wherein the pillar is provided with a receiving groove, the receiving groove extends along the height direction of the vehicle, the groove opening of the receiving groove faces the length direction of the vehicle, the guide member is located in the receiving groove and connected to the groove wall of the receiving groove;
[0018] Along the length direction of the vehicle, the lifting glass is located on one side of the pillar, the fixing portion is located in the receiving groove, and the sliding portion is slidably connected to the guide member.
[0019] The beneficial effect of the present application is that: in the present application, by setting a glue-receiving groove on the first surface of the fixing part of the glass sliding member, and the glue-receiving groove extends along the length direction of the fixing part, when the glass sliding member and the lifting glass are connected by adhesive, the two groove side walls of the glue-receiving groove can prevent the adhesive in the glue-receiving groove from overflowing to the window area of the lifting glass along the width direction of the lifting glass, thereby avoiding affecting the appearance of the lifting glass. In addition, by setting an overflow hole on the groove bottom wall of the glue-receiving groove, when there is too much adhesive in the glue-receiving groove, the excess adhesive can overflow from the overflow hole to the second surface of the fixing part, that is, the overflow hole provides an overflow channel for the excess adhesive, avoiding the excess adhesive overflowing to the window area of the lifting glass, affecting the appearance of the lifting glass. The opposite ends of the length direction of the glue-receiving groove are provided with openings, so the excess adhesive can also overflow from the two openings of the glue-receiving groove to the installation area of the lifting glass. Since the lifting glass is installed on the column, the installation area of the lifting glass is located in the receiving groove of the column, it will not affect the appearance of the window area of the lifting glass. Therefore, the present application can improve the appearance of the lifting glass. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 A schematic diagram of the structure of a vehicle provided in an embodiment of the present application;
[0021] Figure 2 for Figure 1 A schematic structural diagram of a glass assembly of the vehicle shown, wherein a schematic structural diagram of a glass sliding member at a first angle is shown;
[0022] Figure 3 for Figure 2 A schematic structural diagram of a second angle of the glass sliding member shown;
[0023] Figure 4 for Figure 2 A schematic structural diagram of the glass sliding member at a third angle;
[0024] Figure 5 for Figure 2 A schematic structural diagram of the glass sliding member O shown;
[0025] Figure 6for Figure 4 A schematic cross-sectional view of the glass sliding member in the AA direction;
[0026] Figure 7 for Figure 4 A schematic cross-sectional view of the glass sliding member in the BB direction;
[0027] Figure 8 for Figure 2 A schematic cross-sectional view of the glass assembly in the CC direction is shown;
[0028] Fig. 9 for Figure 2 A schematic cross-sectional view of the glass assembly in the DD direction is shown.
[0029] Description of reference numerals:
[0030] 1000-vehicle, 400-vehicle body, 300-pillar, 100-glass assembly, 40-lifting glass, 310-receiving groove, 30-glass sliding part, 41-inner surface, M-installation area, N-window area, 10-fixing part, 20-sliding part, 11-fixing body, 111-first surface, 112-second surface, 113-third surface, 114-fourth surface, 115-glue containing groove, 1151-groove bottom wall, 1152-groove side wall, 116-glue overflow hole, 12-bump, 12(a)-first bump, 12(b)-second bump, 12(c)-third bump, 13-support column. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present application.
[0032] Please refer to Figure 1 and Figure 2The vehicle 1000 includes a vehicle body 400, a pillar 300, a guide member (not shown) and a glass assembly 100. The pillar 300 is connected to the vehicle body 400. The pillar 300 is provided with a receiving groove 310. The receiving groove 310 extends in the height direction of the vehicle 1000, and the groove opening of the receiving groove 310 faces the length direction of the vehicle 1000. The guide member is located in the receiving groove 310 and is connected to the groove wall of the receiving groove 310. The guide member extends in the height direction of the vehicle 1000. The glass assembly 100 includes a lifting glass 40 and a glass sliding member 30, and the glass sliding member 30 is fixedly connected to the lifting glass 40. The glass sliding member 30 of the glass assembly 100 is slidably connected to the guide member. The glass sliding member 30 slides along the guide member, and can drive the lifting glass 40 to slide along the pillar 300.
[0033] For the convenience of description, we define Figure 2 The width direction of the glass assembly 100 is the X-axis direction, the thickness direction of the glass assembly 100 is the Y-axis direction, and the height direction of the glass assembly 100 is the Z-axis direction. The X-axis direction, the Y-axis direction, and the Z-axis direction are perpendicular to each other. The directional words such as "top" and "bottom" involved in this application are oriented toward the positive direction of the Z-axis as "top" and oriented toward the negative direction of the Z-axis as "bottom", and similar descriptions in the following text can be understood in the same way.
[0034] Please continue reading Figure 2 The lifting glass 40 includes an inner surface 41 and an outer surface, wherein the inner surface 41 is the surface of the lifting glass 40 facing the inside of the vehicle 1000 when the lifting glass 40 is installed on the vehicle body 400; the outer surface is the surface of the lifting glass 40 facing the outside of the vehicle 1000 when the lifting glass 40 is installed on the vehicle body 400. The lifting glass 40 includes an installation area M and a window area N. The installation area M is the area of the lifting glass 40 located in the receiving groove 310 of the pillar 300 when the lifting glass 40 is installed on the pillar 300. The window area N is the area of the lifting glass 40 exposed outside the pillar 300 when the lifting glass 40 is installed on the pillar 300.
[0035] It should be noted that the lifting glass 40 may be a single-layer glass or a laminated glass. This application only takes the lifting glass 40 as a laminated glass as an example for description. Figure 2 The installation area M and the window area N in FIG. 4 are divided by dotted lines, which cannot form a limitation on the structure of the lifting glass 40 .
[0036] Please refer to Figure 2 and Figure 3, the glass sliding member 30 includes a fixing portion 10 and a sliding portion 20. The fixing portion 10 includes a fixing body 11. The fixing body 11 includes a first surface 111, a second surface 112, a third surface 113 and a fourth surface 114. Along the thickness direction of the fixing portion 10, the first surface 111 and the second surface 112 are arranged in back-to-back relationship. Along the length direction of the fixing portion 10, the third surface 113 and the fourth surface 114 are arranged in back-to-back relationship; the third surface 113 and the fourth surface 114 are connected between the first surface 111 and the second surface 112. The specifications of the fixing portion 10 can be specifically set according to the size of the lifting glass 40 and actual needs. Exemplarily, the width of the fixing portion 10 is 8.22 mm.
[0037] The sliding portion 20 is protruded from the second surface 112 and extends away from the second surface 112. An angle is formed between the sliding portion 20 and the second surface 112.
[0038] Please refer to Figures 3 to 5 , the fixed body 11 is provided with a glue containing groove 115. The glue containing groove 115 is recessed in the first surface 111 of the fixed body 11 and extends along the length direction of the fixed part 10. The glue containing groove 115 includes a groove bottom wall 1151 and two groove side walls 1152. Along the width direction of the fixed part 10, the two groove side walls 1152 are arranged opposite to each other and connected to the opposite sides of the groove bottom wall 1151. The specifications of the glue containing groove 115 can be specifically set according to the size of the fixed body 11 and actual needs. Exemplarily, the width of the glue containing groove 115 is 6.26mm. The depth of the glue containing groove 115 is 1.35mm.
[0039] In this embodiment, the wall surface of the bottom wall 1151 of the adhesive groove 115 is a smooth plane. Along the length direction of the fixing portion 10, the adhesive groove 115 penetrates the third surface 113 and the fourth surface 114 of the fixing body 11. It can be understood that the adhesive groove 115 is formed with openings on both the third surface 113 and the fourth surface 114. In other words, along the length direction of the fixing portion 10, the adhesive groove 115 is provided with openings at opposite ends thereof.
[0040] In other embodiments, the wall surface of the bottom wall 1151 of the adhesive groove 115 may also be a rough surface, for example, the wall surface of the bottom wall 1151 of the adhesive groove 115 is an uneven surface. Along the length direction of the fixing portion 10, the adhesive groove 115 may also only penetrate one end surface of the fixing body 11; or the adhesive groove 115 may not penetrate any end surface of the fixing body 11.
[0041] Please refer to Figure 3 , Figure 4 and Figure 6 The fixing body 11 is further provided with a glue overflow hole 116. Along the thickness direction of the fixing part 10, the glue overflow hole 116 penetrates the bottom wall 1151 of the glue containing groove 115 and the second surface 112 of the fixing part 10.
[0042] In this embodiment, the number of the overflow holes 116 is multiple. The multiple overflow holes 116 are arranged at intervals. Specifically, the number of the overflow holes 116 is four. The shape of the overflow holes 116 can be, but is not limited to, circular, square, or triangular. The size of the overflow holes 116 can be specifically set according to the size of the glue containing groove 115 and actual needs. Exemplarily, the aperture of the overflow hole 116 is 2.0 mm. In other embodiments, the number of the overflow holes 116 can also be one, two, three, or more.
[0043] Please continue reading Figure 3 and Figure 4 In this embodiment, the fixing portion 10 also includes a protrusion 12. The protrusion 12 is protruding from the bottom wall 1151 of the glue containing groove 115. Along the thickness direction of the fixing portion 10, the protrusion 12 is limited to the glue containing groove 115. In other words, along the thickness direction of the fixing portion 10, the protrusion 12 does not protrude from the glue containing groove 115. The shape of the protrusion 12 can be but is not limited to a rectangle, a circle, a triangle, etc. The size of the protrusion 12 can be specifically set according to the size of the glue containing groove 115 and actual needs. Exemplarily, the thickness of the protrusion 12 is 0.55 mm. In other embodiments, the fixing portion 10 may also not include the protrusion 12.
[0044] In this embodiment, there are multiple bumps 12. The multiple bumps 12 are arranged at intervals from each other. The shapes of the multiple bumps 12 can be the same or different. The multiple bumps 12 can be arranged in any form.
[0045] Specifically, the plurality of bumps 12 are divided into several first bumps 12 (a), two second bumps 12 (b) and two third bumps 12 (c). Among them, the first bump 12 (a) is roughly rectangular. The second bump 12 (b) and the third bump 12 (c) are both roughly zigzag. Along the length direction of the fixing portion 10, the two second bumps 12 (b) are respectively located at the two openings of the adhesive groove 115. Several first bumps 12 (a) are located between the two openings of the adhesive groove 115. Several first bumps 12 (a) are arranged in a matrix. The two third bumps 12 (c) are located between the two second bumps 12 (b).
[0046] Please refer to Figure 3 , Figure 4 and Figure 7, the fixing portion 10 further includes at least one support column 13. The support column 13 is formed on the bottom wall 1151 of the glue containing groove 115. The support column 13 can be directly protruded from the bottom wall 1151 of the glue containing groove 115, or can be protruded from the surface of any one of the protrusions 12. The support column 13 extends along the thickness direction of the fixing portion 10. Along the thickness direction of the fixing portion 10, the end of the support column 13 facing away from the bottom wall 1151 of the glue containing groove 115 is the support end. Along the thickness direction of the fixing portion 10, the support end of the support column 13 protrudes from the first surface 111 of the fixing body 11. The distance between the support end and the first surface 111 of the fixing body 11 is less than or equal to 0.15 mm.
[0047] In this embodiment, the number of support columns 13 is multiple. The multiple support columns 13 are distributed in a polygonal shape. Specifically, the number of support columns 13 is four. The four support columns 13 are distributed in a quadrilateral shape. Two of the support columns 13 are convexly disposed on the surface of a third protrusion 12 (c), and the two support columns 13 are arranged side by side along the width direction of the fixing portion 10. Another two support columns 13 are convexly disposed on the surface of another third protrusion 12 (c), and the two support columns 13 are arranged side by side along the width direction of the fixing portion 10.
[0048] In other embodiments, the number of the supporting columns 13 may also be one, two, three or more.
[0049] Please refer to Figure 8 and Fig. 9 , the glass sliding member 30 is installed in the installation area M of the lifting glass 40. The glass sliding member 30 is bonded to the inner surface 41 of the lifting glass 40. Specifically, the first surface 111 of the fixing portion 10 of the glass sliding member 30 faces the inner surface 41 of the lifting glass 40. The bottom wall 1151 of the adhesive groove 115 of the fixing portion 10 is spaced and opposite to the inner surface 41 of the lifting glass 40. The supporting end of the supporting column 13 of the fixing portion 10 is in contact with the inner surface 41 of the lifting glass 40. The adhesive connects the inner surface 41 of the lifting glass 40 and fills the adhesive groove 115.
[0050] In this embodiment, the adhesive also covers the first surface 111 of the fixing body 11. The adhesive also connects the inner surface 41 of the lifting glass 40 and the first surface 111 of the fixing part 10. Along the thickness direction (Z-axis direction) of the glass assembly 100, the thickness of the adhesive between the inner surface 41 of the lifting glass 40 and the first surface 111 of the fixing part 10 is less than or equal to 0.15 mm. In other embodiments, the adhesive may not cover the first surface 111 of the fixing body 11.
[0051] In a possible implementation, the width of the fixing portion 10 is 8.22 mm, the width of the adhesive groove 115 is 6.26 mm, the depth of the adhesive groove 115 is 1.35 mm, and the thickness of the bump 12 is 0.55 mm. The bonding area between the fixing portion 10 and the lifting glass 40 is 1215 mm 2 .
[0052] The installation process of the glass sliding member 30 and the lifting glass 40 is as follows: first, the glue groove 115 of the fixing portion 10 of the glass sliding member 30 is filled with adhesive; then, the glass sliding member 30 is picked up by the tooling, and the first surface 111 of the fixing portion 10 is bonded to the inner surface 41 of the lifting glass 40; then, the tooling is separated from the glass sliding member 30; finally, the adhesive is cured.
[0053] It can be understood that in the present application, by providing a glue groove 115 on the first surface 111 of the fixing part 10 of the glass sliding member 30, and the glue groove 115 extends along the length direction of the fixing part 10, when the glass sliding member 30 and the lifting glass 40 are bonded and connected by adhesive, the two groove side walls 1152 of the glue groove 115 can prevent the adhesive in the glue groove 115 from overflowing to the window area N of the lifting glass 40 along the width direction of the lifting glass 40, thereby avoiding affecting the appearance of the lifting glass 40. In addition, by providing an overflow hole 116 on the groove bottom wall 1151 of the glue groove 115, when there is too much adhesive in the glue groove 115, the excess adhesive can overflow from the overflow hole 116 to the second surface 112 of the fixing part 10, that is, the overflow hole 116 provides an overflow channel for the excess adhesive, thereby avoiding the excess adhesive from overflowing to the window area N of the lifting glass 40, thereby affecting the appearance of the lifting glass 40. Therefore, the present application can improve the appearance of the lifting glass 40.
[0054] The adhesive groove 115 has openings at opposite ends in the length direction, so that the excess adhesive can also overflow from the two openings of the adhesive groove 115 to the installation area M of the lifting glass 40, that is, the adhesive member blocks the two openings of the adhesive groove 115. When the lifting glass 40 is installed on the column 300, the installation area M of the lifting glass 40 is located in the receiving groove 310 of the column 300, so the appearance of the window area M of the lifting glass 40 will not be affected.
[0055] In addition, the adhesive groove 115 can increase the space for accommodating adhesive. The bottom wall 1151 of the adhesive groove 115 is provided with a protrusion 12, which can also increase the contact area between the adhesive and the glass sliding member 30, thereby ensuring the bonding strength between the glass sliding member 30 and the lifting glass 40.
[0056] When the adhesive fills the adhesive groove 115 and further covers the first surface 111 of the fixing part 10, the adhesive has a larger contact area with the glass sliding member 30 compared to the case where the adhesive groove 115 is not provided on the fixing part 10, thereby further enhancing the bonding strength between the glass sliding member 30 and the lifting glass 40. At this time, the first surface 111 of the fixing part 10 only needs to be covered with a thin layer of adhesive to ensure the bonding strength between the glass sliding member 30 and the lifting glass 40; in order to ensure the bonding strength between the glass sliding member 30 and the lifting glass 40, a thicker layer of adhesive is avoided on the first surface 111 of the fixing part 10, and when the glass sliding member 30 is installed on the lifting glass 40, the adhesive overflows from between the glass sliding member 30 and the lifting glass 40 to the window area N of the lifting glass 40. Therefore, the present application improves the appearance of the lifting glass 40 while also enhancing the bonding strength between the glass sliding member 30 and the lifting glass 40.
[0057] In addition, the fixing part 10 further includes a support column 13. Along the thickness direction of the fixing part 10, the support end of the support column 13 protrudes from the first surface 111 of the fixing body 11. When the glass sliding part 30 is mounted on the lifting glass 40 by the tooling, the support column 13 can support the glass sliding part 30 and the inner surface 41 of the lifting glass 40, so as to avoid that the gap between the first surface 111 of the fixing part 10 and the lifting glass 40 is too small, and the adhesive between the first surface 111 of the fixing body 11 and the lifting glass 40 overflows to the outside of the fixing part 10, thereby affecting the appearance of the lifting glass 40. When the tooling is separated from the glass sliding part 30, the support end of the support column 13 is connected to the inner surface 41 of the lifting glass 40 by the uncured adhesive (relatively weaker than the adhesive force after curing), thereby preventing the glass sliding part 30 from being offset as the tooling is removed, thereby affecting the installation accuracy of the glass sliding part 30.
[0058] The embodiments of the present application are introduced in detail above. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method and core idea of the present application. At the same time, for general technical personnel in this field, according to the idea of the present application, there will be changes in the specific implementation method and application scope. In summary, the content of this specification should not be understood as a limitation on the present application.
Claims
1. A glass sliding part, characterized in that: It comprises a fixed part and a sliding part, wherein the fixed part comprises a fixed body, the fixed body comprises a first surface and a second surface, the first surface and the second surface are arranged in opposite directions along the thickness direction of the fixed body, and the sliding part is convexly arranged on the second surface; The fixed body is provided with a glue containing groove and a glue overflow hole. Along the thickness direction of the fixed body, the glue containing groove is recessed on the first surface, and the glue containing groove extends along the length direction of the fixed body. The glue containing groove includes a groove bottom wall and two groove side walls. Along the width direction of the fixed body, the two groove side walls are arranged opposite to each other, and the groove bottom wall is connected between the two groove side walls. Along the thickness direction of the fixed body, the glue overflow hole passes through the groove bottom wall and the second surface.
2. The glass sliding member according to claim 1, characterized in that The wall surface of the groove bottom wall is a rough surface, and the roughness Ra of the wall surface of the groove bottom wall is 1.0mm-10.0mm.
3. The glass sliding member according to claim 1, characterized in that The fixing portion further comprises at least one protrusion, which is protruding from the bottom wall of the adhesive containing groove, and along the thickness direction of the fixing body, the protrusion is limited in the adhesive containing groove.
4. The glass sliding member according to claim 3, characterized in that The fixing portion also includes at least one support column, which is formed on the bottom wall of the glue containing groove, and extends along the thickness direction of the fixed body. The support column has a support end, and along the thickness direction of the fixed body, the support end protrudes from the first surface, and the distance between the support end and the first surface is less than or equal to 0.15mm.
5. The glass sliding member according to claim 4, characterized in that The fixing portion includes four support columns, and the four support columns are distributed in a quadrilateral.
6. The glass sliding member according to any one of claims 1 to 5, characterized in that: The fixing body is provided with a third surface and a fourth surface which are arranged in back-to-back directions, the third surface and the fourth surface are located in the length direction of the fixing body, and the third surface and the fourth surface are both connected between the first surface and the second surface; The glue containing groove passes through the third surface and the fourth surface, and forms openings on both the third surface and the fourth surface.
7. A glass assembly, characterized in that: It comprises a lifting glass, an adhesive and a glass sliding part as described in any one of claims 1 to 5, the lifting glass comprises an inner surface, the fixing body is connected to the lifting glass, the first surface is opposite to and connected to the inner surface, the groove bottom wall is opposite to the inner surface at a distance, and the adhesive is connected to the inner surface and fills the adhesive groove.
8. The glass assembly according to claim 7, characterized in that: The fixing body is provided with a third surface and a fourth surface which are arranged in back-to-back directions, the third surface and the fourth surface are located in the length direction of the fixing body, and the third surface and the fourth surface are both connected between the first surface and the second surface; The adhesive containing groove passes through the third surface and the fourth surface, and forms openings on both the third surface and the fourth surface, and the adhesive also seals the two openings.
9. The glass assembly according to claim 8, characterized in that: The adhesive also covers the first surface, and the adhesive connects the inner surface and the first surface.
10. A vehicle, characterized in that: The invention comprises a column, a guide member and a glass assembly as claimed in any one of claims 7 to 9, wherein the column is provided with a receiving groove, the receiving groove extends in the height direction of the vehicle, the notch of the receiving groove faces the length direction of the vehicle, the guide member is located in the receiving groove and connected to the groove wall of the receiving groove; Along the length direction of the vehicle, the lifting glass is located on one side of the pillar, the fixing portion is located in the receiving groove, and the sliding portion is slidably connected to the guide member.