A fixed glass gap adjustment support device

By designing a glass gap adjustment support device including a sliding support plate and a linkage adjustment mechanism, the problems of difficulty in adjusting gaps and insufficient stability in the traditional glass installation method are solved, and better force application effect and stability are achieved.

CN117231104BActive Publication Date: 2025-05-06ZHEJIANG EXTERNAL GLASS TECH CO LTD
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Patent Information

Application Number
CN202311335421.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-16
Publication Date
2025-05-06
Estimated Expiration
2043-10-16

AI Technical Summary

Technical Problem

In the traditional glass installation method, the thickness of the support pad is fixed, which makes it difficult to adjust the glass gap, and a single support pad cannot provide sufficient stability, which increases installation complexity and maintenance costs.

Method used

A fixed glass gap adjustment support device is designed, including the first and second support base plates, a linkage adjustment mechanism and an elastic connection part, and the sliding support plate and a linkage adjustment mechanism achieve rapid adjustment of the glass gap and better force application effect.

Benefits of technology

It realizes rapid adjustment of glass gaps and better application effect, improves the stability and safety of glass installation, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a fixed glass gap adjustment support device, comprising a first support base plate, and a second support base plate rotatably connected to the first support base plate, a support plate is slidably arranged on the top of the first support base plate and the second support base plate; a first tilt adjustment surface is formed on the first support base plate and the second support base plate, the support plates are slidably mounted on the first tilt adjustment surface, a contact support surface is formed on the top of the support plates, and at least one surface of the fixed glass is contacted and supported by one of the support plates. The present invention is used for support during the installation of fixed glass, and is used to adjust the gap between the fixed glass and the frame to achieve the purpose of support, so that the gap between the fixed glass can be quickly adjusted to ensure the support position of the fixed glass, and can realize horizontal and vertical adjustment states, and can realize rapid synchronous adjustment to ensure the firmness, reliability and stability of the fixed glass during use.
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Description

Technical Field

[0001] The invention relates to the technical field of glass installation, and in particular to a fixed glass gap adjustment support device. Background Art

[0002] Traditional fixed glass installation methods usually use support blocks to ensure that there is an appropriate gap between the glass and the mounting base at the bottom. This installation method has been widely adopted because it provides a soft support interface for the glass, helps to disperse the stress that may occur at the bottom of the glass, and prevents the glass from directly contacting the hard bottom structure, thereby reducing the risk of glass breakage.

[0003] However, this traditional glass installation method has several obvious drawbacks:

[0004] The thickness of the support pads is fixed, which makes it very troublesome to adjust the gap during glass installation. If the ground at the installation site is uneven, multiple pads or special pads may be required to achieve the required gap, which greatly increases the complexity and time of installation;

[0005] A single support pad may not provide adequate stability, especially when installing larger glass panels or special shapes of glass, which may cause the glass to move or deform after installation, affecting the overall performance and safety of the glass;

[0006] In some cases, the support pads may be damaged or aged due to pressure, friction or environmental factors, causing them to lose their original functions and require regular replacement, increasing maintenance costs. Summary of the invention

[0007] In order to solve the above problems, the present invention provides a fixed glass gap adjustment support device, which can realize rapid adjustment of the fixed glass gap and has a synchronous adjustment function to achieve better force application, which can effectively solve the deficiencies in the prior art.

[0008] The present invention is realized by the following technical scheme: a fixed glass gap adjustment support device, comprising:

[0009] A first supporting bottom plate, and a second supporting bottom plate rotatably connected to the first supporting bottom plate, and a supporting plate slidably arranged on the top of each of the first supporting bottom plate and the second supporting bottom plate;

[0010] The first supporting bottom plate and the second supporting bottom plate each form a first tilt adjustment surface, the supporting plates are slidably mounted on the first tilt adjustment surface, the tops of the supporting plates each form a contact support surface, at least one surface of the fixed glass is in contact with one of the supporting plates for support, and the supporting plates are slid on the first tilt adjustment surface to adjust the gap between the fixed glass and the window frame;

[0011] The opposite surfaces of the first supporting bottom plate and the second supporting bottom plate each form an extended panel, an elastic connection portion is arranged between the two extended panels, and the two supporting bottom plates are arranged horizontally or vertically through the elastic connection portion. When the two supporting bottom plates are arranged vertically to each other, at least two surfaces of the fixed glass are in contact with the supporting plates for support;

[0012] It also includes a linkage adjustment mechanism, which is respectively installed on the extended panels of the first support plate and the second support plate. The linkage adjustment mechanism is respectively connected to the two sliding support plates. By rotating the linkage adjustment mechanism, the support plates on each support base plate are brought closer to each other to adjust the gap between the fixed glass and the window frame.

[0013] As a preferred technical solution, the linkage adjustment mechanism includes a docking tube fixedly mounted on one of the extension panels, and a docking mechanism with rotation adjustment capability is arranged in the docking tube;

[0014] It also includes a winding adjustment mechanism installed on another extension panel, and the supporting plates on each supporting bottom plate are moved closer to each other by rotating the winding adjustment mechanism;

[0015] When the first supporting bottom plate and the second supporting bottom plate are arranged vertically, the winding adjustment mechanism and the docking mechanism are docked with each other. At this time, rotating the docking mechanism drives the winding adjustment mechanism to rotate, thereby adjusting the support plates on the supporting bottom plates to move closer to each other.

[0016] As a preferred technical solution, the docking mechanism includes a rotating shaft, a threaded connection column is arranged on one side of the rotating shaft, and a first driving head is arranged on the other side of the rotating shaft. The rotating shaft is rotatably installed in the docking tube, and the first driving head is located outside the docking tube, and the threaded connection column is located inside the docking tube. When the docking mechanism is docked with the winding adjustment mechanism, the rotating shaft is driven to rotate, and the threaded connection column is threadedly docked with the winding adjustment mechanism.

[0017] The winding adjustment mechanism includes a winding drum, both sides of which are rotatably mounted on a fixed plate, and one side of the two fixed plates is fixedly mounted on the extension panel. The winding drum is provided with a driving cavity on one end face of the docking mechanism, and a protruding second driving head is arranged in the driving cavity. The end face of the second driving head is provided with a threaded docking hole, and the threaded connecting column of the docking mechanism is threadedly docked with the threaded docking hole. The winding drum is rotated by rotating the second driving head, or when the threaded connecting column is threadedly docked with the threaded docking hole, the winding drum is rotated by rotating the second driving head.

[0018] As a preferred technical solution, a first winding area and a second winding area are formed on the winding drum, the first winding area is fixedly wound with a first winding steel wire, and the second winding area is fixedly wound with a second winding steel wire. The first winding steel wire passes through a first wiring channel opened on the extension panel to connect to the support plate on the first support bottom plate, and the second winding steel wire passes through a second wiring channel opened on the extension panel to connect to the support plate on the second support bottom plate. The winding action of the first winding steel wire and the second winding steel wire is achieved by rotating the winding drum.

[0019] As a preferred technical solution, a first anti-slip tooth surface is arranged along the first inclination adjustment surface, a second anti-slip tooth surface is arranged at the bottom of the support plate corresponding to the first anti-slip tooth surface, and the first anti-slip tooth surface is in contact with the second anti-slip tooth surface.

[0020] As a preferred technical solution, the first inclination adjustment surface has the highest inclination height on the side close to the extension panel and the lowest inclination height on the side away from the extension panel. A second inclination adjustment surface is provided at the bottom of the support plate, and the second inclination adjustment surface is parallel to the first inclination adjustment surface.

[0021] As a preferred technical solution, a guide panel is arranged in the middle of the first supporting base plate and the second supporting base plate, a guide slot is arranged in the middle of the guide panel and along the guide panel, a guide slider is arranged at the position corresponding to the guide slot at the bottom of the support plate, the guide slider is slidably buckled into the guide slot, and limiting grooves are arranged on both sides of the inner wall of the guide slot, and the positions corresponding to the limiting structures on both sides of the guide slider are protruding for hooking the limiting groove.

[0022] As a preferred technical solution, the elastic connection portion is made of elastic material, and the first supporting base plate and the second supporting base plate are bent to 90 degrees or laid flat along the elastic connection portion.

[0023] As a preferred technical solution, one side of each of the first supporting base plate and the second supporting base plate is provided with an elastic supporting portion, and the other side surfaces of the first supporting base plate and the second supporting base plate are provided with a limiting hook portion, and the elastic supporting portion is arc-shaped.

[0024] As a preferred technical solution, guide wheels are evenly distributed in the first wiring channel and the second wiring channel, and the winding steel wire is evenly distributed on a plurality of guide wheels.

[0025] The beneficial effects of the present invention are as follows: the present invention can be installed horizontally at the bottom of the fixed glass to adjust the horizontal support gap; it can also be arranged vertically to adjust the gap between two surfaces of the fixed glass at the same time, which is convenient to use and switch. When in use, it only needs to drive the displacement of the support plate to complete the adjustment, and the stability is also better;

[0026] Since the present invention is provided with a linkage adjustment mechanism, after the initial adjustment of the support plate is completed, further gap adjustment is achieved by rotating the linkage adjustment mechanism to achieve better force application, and a better force application effect can be obtained during gap adjustment. At the same time, due to the linkage adjustment, the efficiency is higher, the consistency is better, and the operation is more convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0028] Figure 1 It is a schematic diagram of the overall structure of the present invention in a flattened state;

[0029] Figure 2 For the present invention Figure 1 A partial enlarged view of the middle A;

[0030] Figure 3 A schematic diagram of a tiling state from another viewing angle of the present invention;

[0031] Figure 4 It is a schematic diagram of the structure of the present invention in a vertical state;

[0032] Figure 5 It is a structural schematic diagram of the winding adjustment mechanism of the present invention;

[0033] Figure 6 It is a structural schematic diagram of the winding adjustment mechanism of the present invention;

[0034] Figure 7 It is a structural schematic diagram of the docking mechanism of the present invention;

[0035] Figure 8 It is a schematic diagram of the bottom structure of the present invention;

[0036] Fig. 9 It is a side schematic diagram of the present invention;

[0037] Description of reference numerals:

[0038] 1. First support base plate; 2. Elastic support part; 3. First anti-skid tooth surface; 4. First tilt adjustment surface; 5. Docking mechanism; 6. Winding adjustment mechanism; 7. Guide panel; 8. Limit hook; 9. Second anti-skid tooth surface; 10. Support plate; 11. Extension panel; 12. Elastic connection part; 13. First wiring channel; 14. Guide slide groove; 15. First winding wire; 17. Second support base plate; 18. Second drive head; 19. Threaded docking hole; 20. Guide slider; 51. Docking cylinder; 52. Rotating shaft; 53. First drive head; 54. Threaded connection column; 61. First winding area; 62. Winding cylinder; 63. Second winding area; 64. Fixed plate; 65. Second winding wire. DETAILED DESCRIPTION

[0039] All features disclosed in this specification, or steps in all methods or processes disclosed, except mutually exclusive features and / or steps, can be combined in any manner.

[0040] Any feature disclosed in this specification (including any additional claims, abstract and drawings), unless otherwise stated, may be replaced by other equivalent or alternative features with similar purposes. That is, unless otherwise stated, each feature is only an example of a series of equivalent or similar features.

[0041] like Figure 1 and Fig. 9 As shown, a fixed glass gap adjustment support device of the present invention comprises a first support bottom plate 1 and a second support bottom plate 17 rotatably connected to the first support bottom plate 1. A support plate 10 is slidably arranged on the top of the first support bottom plate 1 and the second support bottom plate 17. The first support bottom plate 1 and the second support bottom plate 17 can be arranged horizontally or vertically. Figure 1 and Figure 4 As shown;

[0042] A first tilt adjustment surface 4 is formed on the first supporting bottom plate 1 and the second supporting bottom plate 17, and the supporting plates 10 are slidably installed on the first tilt adjustment surface 4. A contact support surface is formed on the top of the supporting plates 10. At least one surface of the fixed glass is in contact with and supported by one of the supporting plates 10. The supporting plate 10 is slid on the first tilt adjustment surface 4 to adjust the gap between the fixed glass and the window frame; when the first supporting bottom plate 1 and the second supporting bottom plate 17 are arranged horizontally, one of the surfaces of the fixed glass is in contact with and supported by the supporting plate 10, and when the first supporting bottom plate 1 and the second supporting bottom plate 17 are arranged vertically, the two surfaces of the fixed glass will be in contact with and supported by the supporting plates 10 respectively. When the present invention is set at four positions of the fixed glass, the fixed glass can be adjusted in the center to achieve the gap adjustment between the fixed glass and the frame. Therefore, the present invention can be used in two states, and the position can be adjusted according to needs.

[0043] The opposite surfaces of the first support bottom plate 1 and the second support bottom plate 17 form an extended panel 11, and an elastic connection portion 12 is arranged between the two extended panels 11. The elastic connection portion 12 realizes the horizontal arrangement of the two support bottom plates or the vertical arrangement of the two support bottom plates. When the two support bottom plates are arranged perpendicular to each other, at least two surfaces of the fixed glass are in contact with the support plate 10 for support. Through the elastic connection portion 12, the first support bottom plate 1 and the second support bottom plate 17 can be arranged horizontally or vertically for use, which is very convenient.

[0044] like Figure 5-Figure 7 As shown, it also includes a linkage adjustment mechanism, which is respectively installed on the extended panels 11 of the first support plate 10 and the second support plate 10, and the linkage adjustment mechanism is respectively connected to the two sliding support plates 10. By rotating the linkage adjustment mechanism, the support plates 10 on each support base plate are brought closer to each other to adjust the gap between the fixed glass and the window frame.

[0045] The linkage adjustment mechanism includes a docking tube 51 fixedly mounted on one of the extension panels 11, and a docking mechanism 5 with rotation adjustment capability is arranged in the docking tube 51;

[0046] It also includes a winding adjustment mechanism 6 installed on another extension panel 11, and by rotating the winding adjustment mechanism 6, the support plates 10 on each support bottom plate are brought closer to each other;

[0047] When the first supporting bottom plate 1 and the second supporting bottom plate 17 are arranged vertically, the winding adjustment mechanism 6 and the docking mechanism 5 are docked with each other. At this time, rotating the docking mechanism 5 drives the winding adjustment mechanism 6 to rotate, thereby adjusting the support plates 10 on the supporting bottom plates to move closer to each other.

[0048] like Figure 1-Figure 4 As shown, the first support base plate 1 and the second support base plate 17 are in a horizontal arrangement state. At this time, the docking mechanism 5 and the winding adjustment mechanism 6 are respectively located on the extension panels 11 of the first support base plate 1 and the second support base plate 17. At this time, we can manually push the support plate 10 to achieve gap adjustment. After the manual adjustment is completed, the winding adjustment mechanism 6 can be used to rotate the tool so that the support plate 10 can be further moved on the tilt adjustment surface to achieve better force application. Because the support plate 10 is manually adjusted due to the small size of the support plate 10 and the limited space area for arrangement, it is difficult to apply force. Therefore, at this time, we can use the winding adjustment mechanism 6 to further apply force, so that the supporting force between the support plate 10 and the bottom of the fixed glass is greater, and the support of the bottom of the fixed glass is further completed, and the gap is adjusted, so that the support of the fixed glass is more stable and the gap adjustment effect is better.

[0049] When the first supporting bottom plate 1 and the second supporting bottom plate 17 are perpendicular to each other, the docking mechanism 5 is docked with the winding adjustment mechanism 6. We can also rotate the winding adjustment mechanism 6 to adjust the gap of the support plate 10. Since the two ends of the winding adjustment mechanism 6 are respectively connected to the support plates 10, the two support plates 10 can be adjusted synchronously during the winding action to achieve the purpose of synchronous gap adjustment and improve efficiency.

[0050] Please continue reading Figure 5-Figure 7 In this embodiment, the docking mechanism 5 includes a rotating shaft 52, a threaded connection column 54 is arranged on one side of the rotating shaft 52, and a first driving head 53 is arranged on the other side of the rotating shaft 52. The rotating shaft 52 is rotatably installed in the docking tube 51, and the first driving head 53 is located outside the docking tube 51, and the threaded connection column 54 is located inside the docking tube 51. When the docking mechanism 5 is docked with the winding adjustment mechanism 6, the rotating shaft 52 is driven to rotate, and the threaded connection column 54 is threadedly docked with the winding adjustment mechanism 6;

[0051] The winding adjustment mechanism 6 includes a winding drum 62, and the two sides of the winding drum 62 are rotatably mounted on a fixed plate 64 respectively, and one side of the two fixed plates 64 is fixedly mounted on the extension panel 11. The winding drum 62 is located on one end face of the docking mechanism 5 to open a driving cavity, and a protruding second driving head 18 is arranged in the driving cavity. The end face of the second driving head 18 opens a threaded docking hole 19, and the threaded connecting column 54 of the docking mechanism 5 is threadedly docked with the threaded docking hole 19. The winding drum 62 is rotated by rotating the second driving head 18, or when the threaded connecting column 54 is threadedly docked with the threaded docking hole 19, the winding drum 62 is rotated by rotating the second driving head 18.

[0052] When the docking mechanism 5 is just docked with the winding adjustment mechanism 6, the threaded connecting column 54 will not dock with the threaded docking hole 19. At this time, just use a tool to rotate the rotating shaft 52, the rotating shaft 52 rotates and is pushed out, and the threaded connecting column 54 is inserted into the threaded docking hole 19 to complete the thread locking. At this time, as the threaded connecting column 54 and the threaded docking hole 19 are locked, the rotating shaft 52 continues to rotate. At this time, the rotating shaft 52 rotates, driving the winding drum 62 to rotate. The rotation of the winding drum 62 causes the first winding steel wire 15 and the second winding steel wire 65 to be wound at the same time, thereby causing the support plate 10 connected to the winding steel wire to move along the inclined adjustment surface, thereby further adjusting the gap, thereby realizing synchronous adjustment of the gaps at both ends.

[0053] A first winding area 61 and a second winding area 63 are formed on the winding drum 62. The first winding area 61 is fixedly wound with a first winding steel wire 15, and the second winding area 63 is fixedly wound with a second winding steel wire 65. The first winding steel wire 15 passes through a first wiring channel 13 opened on the extension panel 11 to connect to the support plate 10 on the first support base plate 1, and the second winding steel wire 65 passes through a second wiring channel opened on the extension panel 11 to connect to the support plate 10 on the second support base plate 17. The winding action of the first winding steel wire 15 and the second winding steel wire 65 is achieved by rotating the winding drum 62. When the winding drum 62 is wound, the winding steel wires can be respectively wound into the winding areas to achieve further gap adjustment.

[0054] In order to prevent the support plate 10 from resetting and achieve better positioning, in this embodiment, a first anti-slip tooth surface 3 is arranged along the first inclination adjustment surface 4, and a second anti-slip tooth surface 9 is arranged at the bottom of the support plate 10 corresponding to the first anti-slip tooth surface 3. The first anti-slip tooth surface 3 is in contact with the second anti-slip tooth surface 9. Through the engagement of the first anti-slip tooth surface 3 and the second anti-slip tooth surface 9, the random displacement of the support plate 10 can be effectively prevented, so that the support plate 10 has no ability to reset after the gap adjustment is completed, thereby achieving stable support. Therefore, the toggle adjustment of the support plate 10 has a certain resistance, and accordingly, the support plate 10 also has resistance if it wants to reset.

[0055] Among them, the first tilt adjustment surface 4 has the highest tilt height on the side close to the extension panel 11, and has the lowest tilt height on the side away from the extension panel 11. A second tilt adjustment surface is arranged at the bottom of the support plate 10, and the second tilt adjustment surface is parallel to the first tilt adjustment surface 4. In this way, when the support plates 10 are adjusted in the direction of approaching each other, the height of the support plates 10 becomes higher and higher, and the gap between the support plates 10 and the fixed glass becomes smaller and smaller, so that the gap between the glass and the frame can be fully filled to reduce the gap. On the contrary, when the support plates 10 are in the direction of moving away from each other, the gap adjustment force for the fixed glass is the smallest.

[0056] like Figure 8As shown, in order to allow the support plate 10 to better guide and slide along the support bottom plate, in this embodiment, a guide panel 7 is arranged in the middle position of the first support bottom plate 1 and the second support bottom plate 17, and a guide slot 14 is arranged in the middle of the guide panel 7 along the guide panel 7. A guide slider 20 is arranged at the position of the bottom of the support plate 10 corresponding to the guide slot 14, and the guide slider 20 is slidably buckled into the guide slot 14, and limiting grooves are arranged on both sides of the inner wall of the guide slot 14. The positions of the two sides of the guide slider 20 corresponding to the limiting structure are protruding for hooking the limiting groove, and the guide slider 20 cannot be separated from the guide slot 14, so as long as the support plate 10 slides along the guide slot 14, the support can be continuously inserted between the fixed glass and the frame until the support plate 10 stops sliding, and the fixed glass can be fully supported at this time to achieve the purpose of adjusting the gap.

[0057] In this embodiment, in order to facilitate the state adjustment of the first support base plate 1 and the second support base plate 17, in this embodiment, the elastic connecting portion 12 is made of elastic material, such as elastic plastic or elastic metal material, which can achieve rapid unfolding and folding. The first support base plate 1 and the second support base plate 17 are bent 90 degrees or laid flat along the elastic connecting portion 12.

[0058] When the first support base plate 1 and the second support base plate 17 are arranged at a 90-degree angle along the elastic connection portion 12, the first support base plate 1 and the second support base plate 17 are prevented from being laid flat. The winding adjustment mechanism 6 in this embodiment can also serve as a positioning member, that is, the threaded connection column 54 will be threadedly connected with the threaded docking hole 19. At this time, the first support base plate 1 and the second support base plate 17 can be guaranteed to be in a vertical state without being reset, and the connection structure between the first support base plate 1 and the second support base plate 17 is omitted. Therefore, after the docking mechanism 5 and the winding adjustment mechanism 6 are docked, the docking mechanism 5 can also serve as a docking limiter for the first support base plate 1 and the second support base plate 17, thereby simplifying the overall structure.

[0059] Among them, an elastic support part 2 is provided on one side of the first supporting base plate 1 and the second supporting base plate 17, and a limiting hook part 8 is provided on the other side of the first supporting base plate 1 and the second supporting base plate 17. The elastic support part 2 is arc-shaped. When installing the present invention, an elastic support part 2 is provided on one side of the supporting base plate, and the limiting hook part 8 is provided therefor. Therefore, when the device is installed at the window frame position, the two side surfaces can be elastically pressed and positioned with the frame to achieve preliminary positioning of the installation of the entire device and prevent displacement of the device when the fixed glass is installed.

[0060] In order to better displace the winding steel wire and increase its service life, in this embodiment, guide wheels are evenly distributed in the first wiring channel 13 and the second wiring channel, and the winding steel wire is evenly distributed on multiple guide wheels to reduce the friction of the winding steel wire.

[0061] The above is only a specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any changes or substitutions that are not conceived through creative work should be included in the protection scope of the present invention. Therefore, the protection scope of the present invention should be based on the protection scope defined in the claims.

Claims

1. A fixed glass gap adjustment support device, characterized in that: include: A first supporting base plate (1), and a second supporting base plate (17) rotatably connected to the first supporting base plate (1), and a supporting plate (10) slidably arranged on top of each of the first supporting base plate (1) and the second supporting base plate (17); A first tilt adjustment surface (4) is formed on the first support bottom plate (1) and the second support bottom plate (17), the support plates (10) are slidably mounted on the first tilt adjustment surface (4), the tops of the support plates (10) form a contact support surface, at least one surface of the fixed glass is in contact with and supported by one of the support plates (10), and the support plate (10) is slid on the first tilt adjustment surface (4) to adjust the gap between the fixed glass and the window frame; The opposing surfaces of the first supporting bottom plate (1) and the second supporting bottom plate (17) each form an extended panel (11), an elastic connection portion (12) is provided between the two extended panels (11), and the two supporting bottom plates are arranged horizontally or vertically through the elastic connection portion (12), and when the two supporting bottom plates are arranged vertically to each other, at least two surfaces of the fixed glass are in contact with the supporting plate (10) for support; It also includes a linkage adjustment mechanism, which is respectively installed on the extension panels (11) of the first support plate (10) and the second support plate (10), and the linkage adjustment mechanism is respectively connected to the two sliding support plates (10), and the support plates (10) on each support bottom plate are moved closer to each other by rotating the linkage adjustment mechanism, so as to adjust the gap between the fixed glass and the window frame; A first anti-slip tooth surface (3) is arranged on the first tilt adjustment surface (4) along the first tilt adjustment surface (4), a second anti-slip tooth surface (9) is arranged at the bottom of the support plate (10) corresponding to the first anti-slip tooth surface (3), and the first anti-slip tooth surface (3) is in contact with the second anti-slip tooth surface (9); The first inclination adjustment surface (4) has the highest inclination height on the side close to the extension panel (11) and the lowest inclination height on the side away from the extension panel (11). A second inclination adjustment surface is provided at the bottom of each support plate (10), and the second inclination adjustment surface is parallel to the first inclination adjustment surface (4).

2. The fixed glass gap adjustment support device according to claim 1, characterized in that: The linkage adjustment mechanism comprises a docking tube (51) fixedly mounted on one of the extension panels (11), wherein a docking mechanism (5) with rotation adjustment capability is arranged in the docking tube (51); It also includes a winding adjustment mechanism (6) installed on another extension panel (11), and by rotating the winding adjustment mechanism (6), the support plates (10) on each support bottom plate are moved closer to each other; When the first supporting base plate (1) and the second supporting base plate (17) are arranged vertically, the winding adjustment mechanism (6) and the docking mechanism (5) are docked with each other. At this time, the docking mechanism (5) is rotated to drive the winding adjustment mechanism (6) to rotate, thereby adjusting the support plates (10) on the supporting base plates to move closer to each other.

3. The fixed glass gap adjustment support device according to claim 2, characterized in that: The docking mechanism (5) comprises a rotating shaft (52), a threaded connection column (54) is arranged on one side of the rotating shaft (52), and a first driving head (53) is arranged on the other side of the rotating shaft (52). The rotating shaft (52) is rotatably mounted in the docking tube (51), and the first driving head (53) is located outside the docking tube (51), and the threaded connection column (54) is located inside the docking tube (51). When the docking mechanism (5) is docked with the winding adjustment mechanism (6), the rotating shaft (52) is driven to rotate, so that the threaded connection column (54) and the winding adjustment mechanism (6) are threadedly docked. The winding adjustment mechanism (6) comprises a winding drum (62), the two sides of which are rotatably mounted on a fixed plate (64) respectively, and one side of each of the two fixed plates (64) is fixedly mounted on the extension panel (11); the winding drum (62) is provided with a driving cavity on the end face of one side of the docking mechanism (5); a protruding second driving head (18) is arranged in the driving cavity; the end face of the second driving head (18) is provided with a threaded docking hole (19); the threaded connection column (54) of the docking mechanism (5) is threadedly docked with the threaded docking hole (19); the winding drum (62) is rotated by rotating the second driving head (18); or when the threaded connection column (54) is threadedly docked with the threaded docking hole (19), the winding drum (62) is rotated by rotating the second driving head (18).

4. The fixed glass gap adjustment support device according to claim 3, characterized in that: The winding drum (62) is formed with a first winding area (61) and a second winding area (63); the first winding area (61) is fixedly wound with a first winding steel wire (15); the second winding area (63) is fixedly wound with a second winding steel wire (65); the first winding steel wire (15) passes through a first wiring channel (13) provided on the extension panel (11) to be connected to the support plate (10) on the first support bottom plate (1); the second winding steel wire (65) passes through a second wiring channel provided on the extension panel (11) to be connected to the support plate (10) on the second support bottom plate (17); and the winding action of the first winding steel wire (15) and the second winding steel wire (65) is achieved by rotating the winding drum (62).

5. The fixed glass gap adjustment support device according to claim 1, characterized in that: A guide panel (7) is arranged in the middle of the first supporting base plate (1) and the second supporting base plate (17); a guide slot (14) is arranged in the middle of the guide panel (7) along the guide panel (7); a guide slider (20) is arranged at a position corresponding to the guide slot (14) at the bottom of the supporting plate (10); the guide slider (20) is slidably buckled into the guide slot (14); and limiting grooves are arranged on both sides of the inner wall of the guide slot (14); positions corresponding to the limiting structures on both sides of the guide slider (20) are protruding for hooking the limiting groove.

6. The fixed glass gap adjustment support device according to claim 1, characterized in that: The elastic connection portion (12) is made of elastic material, and the first supporting base plate (1) and the second supporting base plate (17) are bent to 90 degrees or laid flat along the elastic connection portion (12).

7. The fixed glass gap adjustment support device according to claim 1, characterized in that: An elastic support portion (2) is provided on one side of the first support base plate (1) and the second support base plate (17), and a limiting hook portion (8) is provided on the other side of the first support base plate (1) and the second support base plate (17), and the elastic support portion (2) is in an arc shape.

8. The fixed glass gap adjustment support device according to claim 4, characterized in that: Guide wheels are evenly distributed in the first wiring channel (13) and the second wiring channel, and the winding steel wires are evenly distributed on the multiple guide wheels.

Citation Information

Patent Citations

  • Fixed glass gap adjusting and supporting device

    CN221144099U