A glass door assembly platform and method of use
By designing a glass door assembly platform with brackets and support rods, the problems of uneven adhesive distribution and waiting for drying during the glass door assembly process were solved, thereby improving the quality and efficiency of glass doors.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUANGDONG OPK SMART HOME TECH CO LTD
- Filing Date
- 2023-03-21
- Publication Date
- 2026-05-15
AI Technical Summary
In the current glass door assembly process, the adhesive on the glass panel is unevenly distributed on the door frame due to gravity, which affects the quality of the glass door. In addition, it takes time to wait for the adhesive to dry after assembly.
Design a glass door assembly platform, including a bracket, a support rod assembly, and a pulley assembly. The support end face of the support rod assembly is parallel to the bearing plane to avoid the support rods exerting pressure on the door frame and ensure that the adhesive is only subjected to the gravity of the door frame. The bottom of the bracket is equipped with a pulley assembly for easy movement.
This design ensures quality and improves assembly efficiency after glass door molding. The support rod assembly does not abut against the door frame to prevent the glass panel from tilting, and the pulley assembly facilitates the movement of the glass door, saving time.
Smart Images

Figure CN116214449B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building door and window technology, and in particular to a glass door assembly platform and its usage method. Background Technology
[0002] A glass door consists of a glass panel and a door frame. The assembly method is to attach the door frame to the four sides of the glass panel, with or without connecting sleeves between the glass panel and the door frame, and then fix them together with adhesive.
[0003] The existing glass door assembly process, such as Figure 1 As shown, the glass plate (4) is first placed on the bracket (1), and then the door frame (5) is installed on the periphery of the glass plate (4) to form a glass door. Adhesive is provided between the glass plate (4) and the door frame (5). The supporting force of the bracket (1) on the glass door is applied to the door frame (5). Due to the large mass of the glass plate (4), under the action of gravity, the adhesive at the bottom part that abuts against the door frame (5) is pressed thin, causing the glass plate (4) to shift inside the door frame (5), affecting the quality of the glass door.
[0004] Furthermore, after assembly, the glass door needs to be removed from the bracket before the next glass door can be assembled. During the assembly process, it is necessary to wait for the adhesive to dry, which wastes continuous production time. Summary of the Invention
[0005] In order to overcome at least one of the defects of the prior art, the present invention provides a glass door assembly platform and a method for using the platform, wherein the adhesive can be evenly distributed on both sides of the glass plate during the assembly process.
[0006] The technical solution adopted by this invention to solve its problem is:
[0007] In a first aspect, the present invention provides a glass door assembly platform, comprising:
[0008] A support frame is provided with a bearing plane for supporting and storing glass panels, and a door frame is installed on the periphery of the glass panels on the bearing plane to assemble them into a glass door;
[0009] A support rod assembly is provided on the bearing plane. The support rod assembly is provided in several groups for supporting the glass plate and does not abut against the door frame. Each support rod assembly includes several support rods.
[0010] The support rod includes a pair of parallel support end faces. The support end faces of the support rods forming the same group of support rods are located on the same horizontal plane and are parallel to the bearing plane.
[0011] With this configuration, the support rods do not abut against the door frame, avoiding pressure exerted between the support rods and the glass panel. The plane formed by the support end faces of the support rods in the same group of support rods is parallel to the bearing plane, so that the adhesive between the door frame and the glass panel is only affected by the weight of the door frame, preventing the glass panel from tilting to one side of the door frame and ensuring the quality of the glass door after molding.
[0012] According to a preferred embodiment, a plurality of the support rod assemblies are arranged sequentially in the horizontal direction on the bearing plane.
[0013] According to a preferred embodiment, a plurality of the support rod groups are arranged sequentially in the vertical direction on the bearing plane, and a support space for clamping the glass plate is provided between any two adjacent support rod groups.
[0014] According to a preferred embodiment, the cross-section of the support end face along the vertical direction is configured as a rectangle.
[0015] According to a preferred embodiment, the support rod is provided with a buffer portion, which is located on both support end faces.
[0016] According to a preferred embodiment, the cross-section of the support end face along the vertical direction is configured as a square.
[0017] According to a preferred embodiment, the support rod is provided with a buffer portion, which is arranged along the periphery of the edge of the square cross-section.
[0018] According to a preferred embodiment, the support is configured as a rectangular metal frame;
[0019] The bracket is provided with several support beams, and the support beams and the frame of the bracket form a triangle.
[0020] According to a preferred embodiment, the bracket also includes a pulley system disposed at the bottom of the bracket to move the bracket.
[0021] According to a preferred embodiment, the pulley block is configured as a self-locking pulley block.
[0022] Secondly, the present invention also discloses a method for using a glass door assembly platform, applied to the glass door assembly platform described above, comprising the following steps:
[0023] 1) Place a set of support rods on the bracket;
[0024] 2) Support a glass plate on the upper surface of the support end of the support rod assembly;
[0025] 3) Support a set of support rods on the upper surface of the glass plate;
[0026] 4) Repeat steps 2-3 until the supported glass plate reaches the set support height or the set number of supports.
[0027] According to a preferred embodiment, after a specified number or height of assembled glass doors are completed, the glass doors are stored in the bracket until the adhesive between the door frame and the glass door cures.
[0028] Move the bracket to move the glass door.
[0029] According to a preferred embodiment, between step 2 and step 3, the door frame with internal adhesive is joined with the glass plate.
[0030] According to a preferred embodiment, after step 4, the method further includes joining the door frame with adhesive inside to the glass panel.
[0031] According to a preferred embodiment, the end face of the door frame is parallel to the horizontal plane containing the bearing plane of the bracket.
[0032] In summary, the glass door assembly platform provided by this invention has the following technical effects:
[0033] This invention provides a glass door assembly platform comprising a bracket, a support rod assembly, a positioning part, and a pulley assembly. The bracket has a bearing plane for supporting and storing glass panels with door frames. The support rod assembly is located on the bearing plane and can be provided in several groups to support the glass panels without contacting the door frame. This arrangement prevents the support rod assembly from contacting the door frame, thus avoiding pressure between the support rod assembly and the glass panel. The adhesive between the door frame and the glass panel is only affected by the weight of the door frame, preventing the glass panel from tilting to one side of the door frame and ensuring the quality of the glass door after assembly. After the glass panel and door frame are assembled, there is no need to transport the glass door. A support rod assembly can be placed directly on the assembled glass door, and a new glass panel to be assembled can be placed on the support rod assembly. The above installation process is repeated. Therefore, the glass assembly platform provided by this invention can simultaneously store and install glass doors. Because the bracket has a pulley assembly at the bottom, the glass assembly platform of this invention also has the function of moving glass doors. Attached Figure Description
[0034] Figure 1 The structure for assembling glass doors in existing technology;
[0035] Figure 2 This is a three-dimensional structural diagram of an embodiment of the present invention;
[0036] Figure 3 This is a schematic diagram of the planar structure of an embodiment of the present invention;
[0037] Figure 4 This is a three-dimensional structural diagram of the support rod according to an embodiment of the present invention;
[0038] Figure 5 To distinguish from Figure 3 A schematic diagram of another type of support rod in three dimensions;
[0039] Figure 6 This is a three-dimensional structural diagram of the fixing clamp in this embodiment;
[0040] Figure 7 for Figure 6 A schematic diagram of the exploded structure of part A in the middle;
[0041] Figure 8 This is a cross-sectional view of the support frame along the X direction in this embodiment;
[0042] Figure 9 This is an exploded view of the locking structure in this embodiment;
[0043] Figure 10 This is a schematic diagram showing the engagement and connection of the first clamping member and the second clamping member in this embodiment.
[0044] The meanings of the reference numerals in the attached figures are as follows:
[0045] 1-Bracket, 11-Bearing plane, 12-Support beam, 2-Support rod, 21-Buffer part, 3-Pulley block, 4-Glass plate, 5-Door frame, 51-First frame, 52-Second frame;
[0046] 100-Support frame, 110-Slide rail, 120-Receiving groove, 200-Stop, 300-Padded block, 400-Locking structure, 410-Second clamping member, 411-Engaging groove, 412-Second positioning hole, 413-Clamping end face, 420-First clamping member, 421-Abutting block, 422-Engaging block, 423-First positioning hole, 430-Second locking bolt, 440-First locking bolt, 500-End cap, 600-Heating wire, 700-Connector, 800-Dust cover. Detailed Implementation
[0047] To better understand and implement this invention, the technical solutions in the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings.
[0048] In the description of this invention, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0049] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
[0050] Please refer to the following: Figure 2 and Figure 3 This invention discloses a glass door assembly platform. The glass door includes a glass panel and a door frame. The glass door assembly platform provided in this embodiment can be used to install and store glass panels, and to install the door frame on the periphery of the glass panels to assemble them into a glass door. The glass assembly platform includes a bracket 1, a support rod assembly, and a pulley assembly 3. Specifically, the bracket 1 is provided with a bearing plane 11, which is used to support and store the glass panel. The support rod assembly is provided on the bearing plane 11, and several sets can be provided for supporting the glass panel. Each support rod assembly includes several support rods 2. The support rod 2 includes a pair of parallel support end faces. The support ends of the support rods 2 forming the same support rod group are located on the same horizontal plane, parallel to the bearing plane 11. The number of support rod groups is configured to match the number of glass panels. The pulley group 3 is located at the bottom of the bracket 1 to move the bracket 1, thereby moving the glass door. It can be understood that the above-mentioned support rod groups can be arranged in two ways on the bracket 1. The first is that several support rod groups are arranged sequentially in the horizontal direction on the bearing plane 11. The second is that several support rod groups are arranged sequentially in the vertical direction on the bearing plane 11, and a support space for clamping the glass panel is provided between any two adjacent support rod groups.
[0051] In this embodiment, the second method is used as an example, that is, several support rod groups are arranged in sequence along the vertical direction to further illustrate the glass assembly platform.
[0052] Specifically, such as Figure 2 or Figure 3 As shown, each set of support rods in this embodiment includes two support rods 2. The support end faces of the two support rods 2 abut against the bearing plane 11 of the bracket 1 and the glass plate. During the assembly process, the two support rods 2 are first placed on the bearing plane 11 of the bracket 1, and then a glass plate is placed on the support end face of the support rod 2. Then, the door frame is glued and installed on the periphery of the glass plate using adhesive. It should be noted that the length of the support rod 2 is configured to be less than the length of the glass plate to ensure that the support rod 2 does not abut against the door frame, avoid the support rod 2 from applying pressure between the door frame and the glass plate, so that the adhesive between the door frame and the glass plate is only subject to the gravity of the door frame, preventing the glass plate from tilting to one side of the door frame and ensuring the quality of the glass door after molding.
[0053] On the other hand, in this embodiment, the bracket 1 is configured as a rectangular metal frame. The bracket 1 is provided with several support beams 12. The support beams 12 and the frame of the bracket 1 form a triangle, which effectively enhances the stability of the bracket 1 and prevents the bracket 1 from deforming after bearing multiple glass doors.
[0054] Furthermore, after the glass panel and door frame are assembled, there is no need to transport the glass door. A set of support rods can be placed directly on the assembled glass door, and a new glass panel to be assembled can be placed on the support rods. The above installation process is repeated. That is, the glass assembly platform provided in this embodiment has the effect of simultaneously storing and installing glass doors.
[0055] As a preferred embodiment, the glass platform in this embodiment further includes a fixing clamp for clamping the assembled glass panel and door frame. Adhesive is provided inside the door frame, which includes a pair of first frame bodies 51 and a pair of second frame bodies 52. The extending direction of the first frame bodies 51 is perpendicular to the extending direction of the second frame bodies 52. Figure 6 As shown in the coordinate system, the extension direction of the first frame 51 is defined as the X direction, the extension direction of the second frame 52 is defined as the Y direction, and the thickness direction of the door is defined as the Z direction. The fixing fixture in this embodiment includes a pair of support components and stops 200. The support components include a support frame 100 and a locking structure 400. The support frame 100 is used to position the first frame 51 in the Y direction, and the locking structure 400 is used to position the second frame 52 in the X direction. Several stops 200 are provided, arranged along the X direction on the support frame 100 and rotatably connected to the support frame 100, and are used to clamp and fix the first frame 51 in the Z direction. In this way, no matter what angle the glass door is placed at, the glass plate and the door frame remain fixed in the horizontal and vertical directions, ensuring that the adhesive between the glass plate and the door frame is evenly distributed, thereby ensuring the quality of the glass door and improving the pass rate of the finished glass door.
[0056] Specifically, please refer to Figure 7 and Figure 8In this embodiment, the support frame 100 includes a pair of adjacent support surfaces for supporting the adjacent horizontal and vertical sides of the door frame. More preferably, the adjacent support surfaces are perpendicular to each other and have horizontally extending support surfaces for supporting the first frame 51. That is, the cross-section of the support frame 100 along the X direction is configured as L-shaped, for abutting against the first frame 51 in the Y direction and supporting the first frame 51 in the Z direction. The locking structure 400 is slidably connected to the support frame 100 for abutting against and clamping the second frame 52 in the X direction. The stop 200 passes through the support frame 100 and is rotatably connected to the support frame 100 for positioning the first frame 51 in the Z direction. The fixing fixture in this embodiment also includes a pad 300, an end cap 500, a heating wire 600, a connector 700, and a dust cover 800. The pad 300 is fixedly connected to the support frame 100 for supporting the first frame 51 in the Z direction. 00 can be made of a softer material to avoid scratching the first frame 51 and affecting the appearance of the glass door; the end cap 500 is detachably connected to the support frame 100 and is used to position the locking structure 400 at its limit position on the support frame 100 to prevent the locking structure 400 from falling off; the support frame 100 is provided with a receiving groove 120, and the heating wire 600 is located in the receiving groove 120 and distributed along the extension direction of the support frame 100; the connector 700 is fixed on the end cap 500 and electrically connected to the heating wire 600. The connector 700 and the heating wire 600 are respectively located on both sides of the end cap 500. The dust cover 800 is placed on the connector 700 to provide protection. When the fixing clamp of this embodiment clamps the glass door, the connector 700 is energized and the heating wire 600 works. The heat emitted can accelerate the rapid curing of the adhesive in the door frame, so that the position of the glass plate and the door frame is fixed and the adhesive between the glass plate and the door frame is evenly distributed.
[0057] Furthermore, please refer to the following: Figure 9 and Figure 10The locking structure 400 includes a first clamping member 420, a second clamping member 410, a first locking bolt 440, and a second locking bolt 430. The first clamping member 420 and the second clamping member 410 are fixedly connected. In a preferred embodiment, one of the first clamping member 420 and the second clamping member 410 is provided with a locking block 422, and the other is provided with a corresponding locking groove 411. The locking block 422 is engaged with the locking groove 411, and then the first clamping member 420 and the second clamping member 410 are fixedly connected by screws to ensure the connection stability of the first clamping member 420 and the second clamping member 410. Specifically, in this embodiment, the locking block 422 is provided on the first clamping member 420. The clamping member 420 has a locking groove 411 on the second clamping member 410. The first clamping member 420 also has an abutment block 421 and a first positioning hole 423. The support frame 100 has a slide rail 110. The first clamping member 420 is slidably connected to the slide rail 110. The abutment block 421 protrudes from the support frame 100 and is used to abut against the first frame 51 in the Y direction. The first positioning hole 423 is located in the locking block 422. The first locking bolt 440 passes through the first clamping member 420 and is connected to the threaded screw in the first positioning hole 423. The second clamping member 410 also has a second positioning hole 412 and a clamping end face 413. The second locking bolt 430 passes through the second clamping member 410 and is connected to the second positioning hole 413. 412 threaded screw connection, clamping end face 413 is used to abut against the second frame 52 in the X direction. During installation, firstly, the two first clamping members 420 located in the X direction are slid in the slide rail 110 until the distance between the two first clamping members 420 is approximately the length of the first frame 51. Then, the pad 300 fixed to the support frame 100 abuts against the bottom of the door frame. The second locking bolt 430 is rotated so that the clamping end face 413 of the second clamping member 410 clamps and fixes the second frame 52 in the X direction. Then, the first locking bolt 440 is rotated so that the first clamping member 420 is positioned in the X direction in the slide rail 110. The abutting block 421 abuts against the first frame 51 in the Y direction. The paired support frames 100 are located on both sides of the door body in the Y direction to clamp and fix the first frame 51 in the Y direction. Finally, the stop 200 is rotated so that at least part of the projection of the stop 200 in the Z direction falls on the plane where the door frame is located, thereby clamping and fixing the glass door in the Z direction. After the glass door is fixed to the fixing fixture of this embodiment, the plane where the abutting block 421 abuts with the abutting surface of the first frame 51, the plane where the clamping end face 413 is located, and the plane where the pad block 300 abuts with the abutting surface of the first frame 51 are perpendicular to each other. This ensures that the position of the glass plate and the door frame remains fixed, and that the adhesive between the glass plate and the door frame is evenly distributed, thereby ensuring the quality of the glass door and improving the pass rate of the finished glass door.
[0058] It is understood that the two support rods 2 are preferably placed symmetrically with respect to the center of gravity of the glass plate to ensure that multiple glass plates can remain stable after being stacked. Of course, a certain range of error is allowed, as long as the glass plate can be kept horizontal. The specific range is not limited here. Such transformation methods all fall within the protection scope of this invention.
[0059] In a preferred embodiment, the support rod 2 is provided with a buffer portion 21, such as... Figure 4 As shown, the cross-section of the support end face along the vertical direction is configured as a rectangle. The extended end faces of the two long sides of the rectangle are defined as support end faces. The buffer part 21 is provided on the two support end faces. The buffer part 21 is made of flexible material to reduce the stress between the glass plate and the support rod 2, reduce the local pressure on the glass plate, and also prevent the support rod 2 from scratching the glass plate and affecting the forming quality of the glass door.
[0060] As a preferred implementation, the cross-section of the support end face along the vertical direction can be configured as a square, such as... Figure 5 As shown, the buffer part 21 is arranged along the periphery of the square cross-section edge. In this way, when the staff places the support rod 2 on the bearing end face or glass plate, there is no need to consider the orientation of the support end face. The plane on the periphery of any square edge can be regarded as the support end face, which greatly reduces the difficulty of placement and improves the installation efficiency.
[0061] Furthermore, in this embodiment, the pulley group 3 is configured as a self-locking wheel group. During the assembly of the glass plate and the door frame, the self-locking wheel group is locked to prevent the bracket 1 from moving and hindering the installation operation of the staff.
[0062] In summary, the glass door assembly platform provided in this embodiment includes a bracket 1, a support rod assembly, and a pulley assembly 3. The bracket 1 has a bearing plane 11, which is used to support and store glass panels with door frames. The support rod assembly is located on the bearing plane 11 and can be provided in several groups to support the glass panels. Each support rod assembly includes several support rods 2. Each support rod 2 includes a pair of parallel support end faces. The support end faces of the support rods 2 forming the same support rod assembly are located on the same horizontal plane and are parallel to the bearing plane 11. The pulley assembly 3 is located at the bottom of the bracket 1 to move the bracket 1, so that the glass assembly platform of this embodiment has the effect of installing, storing, and moving glass doors.
[0063] This embodiment also discloses a method for using a glass door assembly platform, applied to the glass door assembly platform described above, including the following steps:
[0064] 1) Place a set of support rods on bracket 1 and fix it in place;
[0065] 2) Support a glass plate on the upper surface of the support end of the support rod assembly and fix it in place;
[0066] 3) Support a set of support rods on the upper surface of the glass plate;
[0067] 4) Repeat steps 2-3 until the supported glass plate reaches the set support height or the set number of supports.
[0068] In steps 1 and 2, in this embodiment, the glass plate and bracket 1 are fixed by friction between the buffer part and the glass plate, without the need for additional fixing structures, thus saving costs and time. It is understood that fixing structures can also be used, and such a change also falls within the protection scope of this invention.
[0069] Furthermore, it also includes assembling a door frame with internal adhesive with a glass panel. As mentioned above, under the action of friction between the glass panel and the support 1, the position of the glass panel on the support 1 and the support rod 2 will not change during the assembly process. The assembly step can be set between steps 2 and 3, or after step 4. That is, a glass door can be assembled and then stacked. Alternatively, several glass panels can be stacked first, and then the glass panels can be inserted into the door frame around their perimeter to form a glass door. The end face of the door frame is kept parallel to the horizontal plane where the bearing plane 11 of the support 1 is located.
[0070] After assembling a specified number or height of glass doors, the glass doors are stored in bracket 1 until the adhesive between the door frame and the glass door cures; and bracket 1 can be moved at any time to move the glass doors.
[0071] The technical means disclosed in this invention are not limited to those disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of this invention, and these improvements and modifications are also considered within the scope of protection of this invention.
Claims
1. A glass door assembly platform, characterized in that, include: A bracket (1) is provided with a bearing plane (11). The bearing plane (11) is used to support and store glass plates. A door frame is installed on the periphery of the glass plate on the bearing plane (11) to assemble a glass door. The door frame includes a pair of first frame bodies and a pair of second frame bodies. The extension direction of the first frame body is perpendicular to the extension direction of the second frame body. The extension direction of the first frame body is the X direction, and the extension direction of the second frame body is the Y direction. A support rod group is provided on the bearing plane (11). The support rod group is provided in several groups for supporting the glass plate and does not abut against the door frame. Each support rod group includes several support rods (2). The support rod (2) includes a pair of parallel support end faces. The support end faces of the support rods (2) forming the same group of support rods are located on the same horizontal plane and are parallel to the bearing plane (11). The glass door assembly platform also includes a fixing clamp, which is used to clamp the assembled glass panel and door frame. The fixing clamp includes a pair of support components and stops. The support components include a support frame and a locking structure. The support frame is used to position the first frame in the Y direction, and the locking structure is used to position the second frame in the X direction. Several stops are provided, which are arranged along the X direction on the support frame and rotatably connected to the support frame, and are used to clamp and fix the first frame in the Z direction.
2. The glass door assembly platform according to claim 1, characterized in that: Several of the support rod groups are arranged sequentially in the horizontal direction on the bearing plane (11).
3. The glass door assembly platform according to claim 1, characterized in that: A number of the support rod groups are arranged in sequence along the vertical direction on the bearing plane (11), and a support space for clamping the glass plate is provided between any two adjacent support rod groups.
4. A glass door assembly platform according to claim 3, characterized in that: The cross-section of the support end face along the vertical direction is configured as a rectangle.
5. A glass door assembly platform according to claim 4, characterized in that: The support rod (2) is provided with a buffer part (21), which is located on the two support end faces.
6. A glass door assembly platform according to claim 3, characterized in that: The cross-section of the support end face along the vertical direction is configured as a square.
7. A glass door assembly platform according to claim 6, characterized in that: The support rod (2) is provided with a buffer part (21), which is arranged along the periphery of the cross-sectional edge of the square.
8. A glass door assembly platform according to claim 1, characterized in that: The bracket (1) is configured as a rectangular metal frame; The bracket (1) is provided with several support beams (12), and the support beams (12) and the frame of the bracket (1) form a triangle.
9. A glass door assembly platform according to any one of claims 1-8, characterized in that: It also includes a pulley system (3) located at the bottom of the bracket (1) to move the bracket (1).
10. A glass door assembly platform according to claim 9, characterized in that: The pulley block (3) is configured as a self-locking pulley block.
11. A method of using a glass door assembly platform, applied to a glass door assembly platform as described in any one of claims 1-10, characterized in that, Includes the following steps: 1) Place a set of support rods on the bracket (1); 2) Support a glass plate on the upper surface of the support end of the support rod assembly; 3) Support a set of support rods on the upper surface of the glass plate; 4) Repeat steps 2-3 until the supported glass plate reaches the set support height or the set number of supports.
12. The method of using a glass door assembly platform according to claim 11, characterized in that, Also includes: After assembling a specified number or height of glass doors, the glass doors are stored in the bracket (1) until the adhesive between the door frame and the glass door cures; Move the bracket to move the glass door.
13. The method of using a glass door assembly platform according to claim 11, characterized in that: Between step 2 and step 3, the process also includes joining the door frame with internal adhesive to the glass panel.
14. The method of using a glass door assembly platform according to claim 11, characterized in that: After step 4, the process also includes joining the door frame with adhesive inside to the glass panel.
15. A method of using a glass door assembly platform according to claim 13 or 14, characterized in that: The end face of the door frame is parallel to the horizontal plane where the bearing plane (11) of the bracket (1) is located.