Mounting structure for glass suspended ceiling
By combining back-bolt installation with Z-shaped brackets and elastic steel sheets, the stability problem of glass ceiling panels is solved, enabling independent and stable installation of each glass panel and easy maintenance.
Patent Information
- Application Number
- CN202520428884.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-03-12
AI Technical Summary
The existing installation structure of glass ceiling panels cannot guarantee the stability and firmness of the glass panels, especially when the surface material is heavy, resulting in insufficient installation stability.
The base housing, which is installed using back bolts, is combined with the hanging keel components. Through the cooperation of Z-shaped hangers and elastic steel sheets, the position and movement of the hangers are restricted by adjustable components and limit sliders, ensuring that each glass panel is installed independently and stably.
This design achieves stability and firmness of the glass panel, preventing shaking and tearing, improving installation stability and disassembly, and facilitating maintenance.
Smart Images

Figure CN223974785U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of ceiling technology, and in particular relates to an installation structure for glass ceilings. Background Technology
[0002] A suspended ceiling refers to the decoration of the top of a living environment. Simply put, it refers to the decoration of the ceiling and is an important part of interior decoration. In some projects, suspended ceilings have the functions of heat insulation, sound insulation, and sound absorption. They also serve as a concealed layer for electrical, ventilation, air conditioning, communication, fire protection, and alarm pipeline equipment. Suspended ceilings are classified differently depending on the material of the decorative panels. When choosing suspended ceiling decoration materials and design schemes, the principles of being economical, sturdy, safe, beautiful, and practical should be followed.
[0003] The ceiling surface material will be designed as glass or natural stone. Due to the heavy weight of the surface material, the safety of installation and fixing is very important. Therefore, we designed an installation structure for glass ceilings. The glass panels are installed by back-bolt hooks, and then the hooks are hung on the keel. After hanging, the hooks are restricted by spring clips. Each glass panel is independent, and the stability and firmness are guaranteed. Utility Model Content
[0004] The purpose of this utility model is to provide an installation structure for glass ceiling panels, which features a method of installing glass panels by using back-bolt hooks, and then hooking the hooks to the keel for installation. After hooking, the hooks are restricted by spring clips, and each glass panel is independent, thus ensuring stability and firmness. This solves the problems mentioned in the background art.
[0005] The technical solution of this utility model to solve the above-mentioned technical problems is as follows: An installation structure for glass ceiling is provided, which includes a base shell installed on the top of a glass panel by pre-embedded bolts and a hanging keel component installed on the end of a ceiling threaded rod by two nuts. A Z-shaped hanger is slidably connected to the inner cavity of the base shell. An adjustable component is provided between the Z-shaped hanger and the base shell. The end of the Z-shaped hanger is hung on the hanging keel component. An elastic steel sheet is installed in the inner cavity of the hanging keel component by two bolts. A sloping protrusion is provided on one side of the end of the Z-shaped hanger. The bottom of the elastic steel sheet abuts against the sloping protrusion.
[0006] The present invention provides an installation structure for glass ceilings as described above, further comprising: a long bolt that is installed through the hanging keel.
[0007] The present invention further comprises the following: the end of the Z-shaped hanger is provided with a limiting cavity I sleeved on the surface of the long bolt, and the bottom of the elastic steel sheet is provided with a movable cavity II sleeved on the surface of the long bolt.
[0008] The present invention provides an installation structure for glass ceilings as described above, further comprising: the adjustable component including a threaded rod rotatably connected to the inner cavity of the base housing, the surface of the threaded rod being threadedly connected to a threaded sleeve that slides within the inner cavity of the base housing, and the bottom of the threaded sleeve being fixedly connected to a Z-shaped hanger.
[0009] The present invention further comprises the following: a rectangular groove is provided on the base housing, and the end of the threaded rod passes through the inner cavity of the rectangular groove and is fixedly connected to a knob.
[0010] The present invention further comprises the following: on both sides of the Z-shaped hanger, a limiting slider is fixedly connected, and on both sides of the base housing, a limiting groove is provided for the limiting slider to slide.
[0011] The present invention provides an installation structure for glass ceilings as described above, further comprising: two mounting holes for bolts to pass through on one side of the hanging keel and one side of the elastic steel sheet.
[0012] The present invention provides an installation structure for glass ceilings as described above, further comprising: side holes for long bolts to pass through on both sides of the hanging keel component.
[0013] The beneficial effects of this utility model are:
[0014] 1. This utility model uses glass back bolts to install the base housing onto the glass plate. The position of the Z-shaped hanger on the base housing can be adjusted by an adjustable component according to the position of the hanging keel. The Z-shaped hanger is then hung on the hanging keel. The elastic steel sheet will eventually abut against the inclined protrusion on the Z-shaped hanger. The elastic steel sheet restricts the free movement of the Z-shaped hanger, preventing the glass plate from shaking after installation. This achieves the goal of installing the glass plate by using back bolts to install hooks, and then hanging the hooks onto the keel. After hanging, the hooks are restricted by springs, ensuring that each glass plate is independent and that stability and firmness are guaranteed.
[0015] 2. By setting up a limiting slider and a limiting groove, the Z-shaped pendant will move during its movement, causing the limiting slider to slide within the inner cavity of the limiting groove. This limits and guides the movement of the Z-shaped pendant, improving its stability and preventing it from slipping off the base housing.
[0016] 3. The long bolts in this invention reinforce the connection points of the keel components, effectively preventing tearing and improving the stability of the keel components after connection.
[0017] 4. By setting up a limiting cavity one and a movable cavity two, this utility model restricts the lateral movement of the Z-shaped pendant when the limiting cavity on the Z-shaped pendant is placed on the surface of the long bolt, thereby further improving the stability of the Z-shaped pendant after installation. Attached Figure Description
[0018] The advantages of the present invention, as described above and / or in the following detailed description in conjunction with the accompanying drawings, will become clearer and more readily understood. These drawings are merely illustrative and do not limit the scope of the present invention.
[0019] Figure 1 This is a perspective view of one embodiment of the present utility model;
[0020] Figure 2 A three-dimensional disassembled schematic diagram of the hanging keel component and the Z-shaped hanging component according to one embodiment;
[0021] Figure 3 This is a three-dimensional disassembled schematic diagram of the hanging keel component and the elastic steel in one embodiment;
[0022] Figure 4 This is a three-dimensional schematic diagram of the Z-shaped hanger and the elastic steel sheet in abutting state according to one embodiment.
[0023] The attached diagram lists the components represented by each number as follows:
[0024] 1. Glass plate, 2. Base shell, 3. Ceiling threaded rod, 4. Hanging keel component, 5. Z-shaped hanger, 6. Adjustable component, 61. Threaded rod, 62. Threaded sleeve, 63. Knob, 64. Limiting slider, 65. Limiting groove, 7. Bolt, 8. Elastic steel sheet, 9. Angled protrusion, 10. Long bolt, 11. Limiting cavity one, 12. Movable cavity two. Detailed Implementation
[0025] In the following description, embodiments of the installation structure for glass ceiling panels of this utility model will be described with reference to the accompanying drawings.
[0026] The embodiments described herein are specific implementations of this utility model, used to illustrate the concept of this utility model. They are all illustrative and exemplary, and should not be construed as limiting the implementation methods or scope of this utility model. In addition to the embodiments described herein, those skilled in the art can employ other obvious technical solutions based on the content disclosed in the claims and specification of this application. These technical solutions include those that make any obvious substitutions and modifications to the embodiments described herein.
[0027] The accompanying drawings in this specification are schematic diagrams used to illustrate the concept of this utility model, and schematically show the shapes of the various parts and their interrelationships. Please note that, in order to clearly show the structure of the components of the embodiments of this utility model, the drawings are not drawn to the same scale. The same reference numerals are used to indicate the same parts.
[0028] Example 1
[0029] Figure 1-4 This invention illustrates an embodiment of an installation structure for a glass ceiling, comprising a base housing 2 installed on the top of a glass panel 1 via pre-embedded bolts, and a hanging keel 4 installed on the end of a ceiling threaded rod 3 via two nuts. A Z-shaped hanger 5 is slidably connected to the inner cavity of the base housing 2. An adjustable component 6 is provided between the Z-shaped hanger 5 and the base housing 2. The end of the Z-shaped hanger 5 is hooked onto the hanging keel 4. An elastic steel sheet 8 is installed in the inner cavity of the hanging keel 4 via two bolts 7. Two mounting holes for the bolts 7 to pass through are provided on one side of the hanging keel 4 and one side of the elastic steel sheet 8. A beveled protrusion 9 is provided on one side of the end of the Z-shaped hanger 5, and the bottom of the elastic steel sheet 8 abuts against the beveled protrusion 9. A long bolt 10 is installed through the entire structure. The long bolt 10 reinforces the position of the hanging keel 4, effectively preventing tearing at the hanging position and improving the stability of the hanging keel 4 after installation. Side holes for the long bolt 10 to pass through are provided on both sides of the hanging keel 4. The end of the Z-shaped hanger 5 has a limiting cavity 11 that fits on the surface of the long bolt 10. The bottom of the elastic steel sheet 8 has a movable cavity 12 that fits on the surface of the long bolt 10. With the setting of the limiting cavity 11 and the movable cavity 12, when the limiting cavity 11 on the Z-shaped hanger 5 fits on the surface of the long bolt 10, it restricts the lateral movement of the Z-shaped hanger 5, further improving the stability of the Z-shaped hanger 5 after installation.
[0030] Example 2
[0031] Figure 1-4This invention illustrates an embodiment of an installation structure for a glass ceiling, comprising a base housing 2 installed on top of a glass panel 1 via pre-embedded bolts, and a hanging keel 4 installed at the end of a ceiling threaded rod 3 via two nuts. A Z-shaped hanger 5 is slidably connected to the inner cavity of the base housing 2. An adjustable component 6 is provided between the Z-shaped hanger 5 and the base housing 2. The adjustable component 6 includes a threaded rod 61 rotatably connected to the inner cavity of the base housing 2. A threaded sleeve 62, which slides within the inner cavity of the base housing 2, is threadedly connected to the surface of the threaded rod 61. The bottom of the threaded sleeve 62 is fixedly connected to the Z-shaped hanger 5. A rectangular groove is provided on the base housing 2. The end of the threaded rod 61 penetrates into the inner cavity of the rectangular groove and is fixedly connected to a knob 63. Limiting sliders 6 are fixedly connected to both sides of the Z-shaped hanger 5. 4. Both sides of the base housing 2 are provided with limiting grooves 65 for the sliding of the limiting slider 64. Through the setting of the limiting slider 64 and the limiting groove 65, the Z-shaped hanging piece 5 will drive the limiting slider 64 to slide in the inner cavity of the limiting groove 65 during the movement, which limits and guides the movement of the Z-shaped hanging piece 5, improves the stability of the movement of the Z-shaped hanging piece 5, and also restricts the Z-shaped hanging piece 5 from slipping off the base housing 2. The end of the Z-shaped hanging piece 5 is attached to the hanging keel 4. The inner cavity of the hanging keel 4 is equipped with an elastic steel sheet 8 by two bolts 7. Two mounting holes for the bolts 7 to pass through are opened on one side of the hanging keel 4 and one side of the elastic steel sheet 8. A sloping protrusion 9 is provided on one side of the end of the Z-shaped hanging piece 5, and the bottom of the elastic steel sheet 8 abuts against the sloping protrusion 9.
[0032] Working principle: In use, the base housing 2 is fixedly installed by the glass back bolts on the glass plate 1. The distance between the two hanging keel parts 4 is measured. Then, according to the requirements, the knob 63 is turned to drive the threaded rod 61 to rotate. Due to the thread, the threaded sleeve 62 drives the Z-shaped hanging part 5 to move, adjusting the position of the Z-shaped hanging part 5 on the glass plate 1. After the adjustment is completed, the Z-shaped hanging part 5 drives the limiting slider 64 to slide in the inner cavity of the limiting groove 65, limiting and guiding the movement of the Z-shaped hanging part 5, and hanging the Z-shaped hanging part 5 on the hanging keel part 4. The inclined protrusion 9 on the Z-shaped bracket 5 abuts against the elastic steel sheet 8, causing the elastic steel sheet 8 to deform. When the inclined protrusion 9 on the Z-shaped bracket 5 enters the extreme of the inner cavity of the hanging keel 4, the restoring force of the elastic steel sheet 8 will abut against the top of the inclined protrusion 9, restricting the Z-shaped bracket 5 from moving up and down. In addition, the elastic steel sheet 8 will also press the Z-shaped bracket 5 against the hanging keel 4, restricting the Z-shaped bracket 5 from swaying arbitrarily to the side, ensuring the stability of the glass panel 1. Each glass panel 1 is detachable, making it easy to inspect and maintain the internal equipment pipelines.
[0033] In summary, this glass ceiling installation structure uses glass back bolts to install the base housing 2 onto the glass panel 1. The position of the Z-shaped hanger 5 on the base housing 2 can be adjusted via the adjustable component 6 according to the position of the hanging keel component 4. The Z-shaped hanger 5 is then hung on the hanging keel component 4. The elastic steel sheet 8 ultimately abuts against the inclined protrusion 9 on the Z-shaped hanger 5, restricting its free movement and preventing the glass panel 1 from wobbling after installation. This achieves the goal of installing the glass panel using back bolts and hooks, which are then hung on the keel. After hanging, the hooks are restricted by spring clips, ensuring that each glass panel is independent and its stability and firmness are guaranteed.
[0034] The technical features disclosed above are not limited to the combinations of the disclosed features with other features. Those skilled in the art can also make other combinations of the technical features according to the purpose of the utility model in order to achieve the purpose of the utility model.
Claims
1. An installation structure for a glass ceiling, characterized in that, The application relates to a glass plate installation device, which comprises a base shell (2) installed on the top of a glass plate (1) through a pre-embedded bolt, a hanging keel piece (4) installed on the end of a ceiling screw rod (3) through two screw nuts, a Z-shaped hanging piece (5) slidably connected with the inner cavity of the base shell (2), an adjustable assembly (6) arranged between the Z-shaped hanging piece (5) and the base shell (2), the end of the Z-shaped hanging piece (5) being hung on the hanging keel piece (4), an elastic steel sheet (8) installed in the inner cavity of the hanging keel piece (4) through two bolts (7), an inclined convex block (9) arranged on one side of the end of the Z-shaped hanging piece (5), and the bottom of the elastic steel sheet (8) abutting against the inclined convex block (9).
2. The mounting structure for a glass ceiling panel according to claim 1, wherein The hanging keel piece (4) is provided with a long bolt (10) penetratingly installed thereon.
3. The mounting structure for a glass ceiling panel according to claim 2, wherein The end of the Z-shaped hanging piece (5) is provided with a limiting cavity I (11) sleeved on the surface of the long bolt (10), and the bottom of the elastic steel sheet (8) is provided with a movable cavity II (12) sleeved on the surface of the long bolt (10).
4. The mounting structure for a glass ceiling panel according to claim 3, wherein The adjustable assembly (6) comprises a threaded rod (61) rotationally connected with the inner cavity of the base shell (2), the surface of the threaded rod (61) is threadedly connected with a threaded sleeve (62) slidably arranged in the inner cavity of the base shell (2), and the bottom of the threaded sleeve (62) is fixedly connected with the Z-shaped hanging piece (5).
5. The mounting structure for a glass ceiling panel according to claim 4, wherein The base shell (2) is provided with a rectangular groove, the end of the threaded rod (61) penetrates into the inner cavity of the rectangular groove and is fixedly connected with a knob (63).
6. A mounting structure for a glass ceiling panel according to claim 5, wherein Both sides of the Z-shaped hanging piece (5) are fixedly connected with limiting sliding blocks (64), and both sides of the base shell (2) are provided with limiting sliding grooves (65) for the sliding blocks (64) to slide.
7. The mounting structure for a glass ceiling panel according to claim 6, wherein One side of the hanging keel piece (4) and one side of the elastic steel sheet (8) are provided with two installation holes for the bolts (7) to pass through.
8. The mounting structure for a glass ceiling panel according to claim 7, wherein Both sides of the hanging keel piece (4) are provided with side holes for the long bolt (10) to pass through.