Stable high crystal plate with built-in framework

Through the built-in skeleton structure and threaded connection design, the problems of insufficient length and disassembly damage of the suspension parts are solved, and the stable casting and convenient disassembly of high crystal panels are achieved, which improves the construction efficiency and the service life of the materials.

CN223281535UActive Publication Date: 2025-08-29CHUZHOU YIFEI CONSTR TECH CO LTD
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Patent Information

Application Number
CN202422644221.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-08-29
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The existing high crystal panels have a short length of hanging parts during hanging drying, which leads to inconvenience in pouring and can easily damage the high crystal panels when disassembling the hanging parts.

Method used

Design a high crystal panel with a built-in skeleton, including an outer frame, an inner frame, abutment frame, connecting strips and threaded rod structures. The skeleton is installed and disassembled through threaded connections, and suspended and dried using connecting ropes and rings to avoid affecting the pouring quality.

Benefits of technology

It realizes convenient skeleton installation and disassembly, avoids damage to the high crystal panels by hanging parts, and does not affect the quality of the pouring process. The ring can be reused after hanging and drying.

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Abstract

The utility model discloses a stable type high crystal plate with built-in skeleton relates to high crystal plate technical field, including high crystal plate body and abutting frame, the interior of high crystal plate body is equipped with outer frame and inner frame from outside to inside in proper order, the abutting frame is equipped with the connecting strip, the opposite side of abutting frame is equipped with the clamping block, and the clamping block is equipped with the connecting strip. And a middle block is installed between the abutting frames, a first threaded rod is installed above the middle block, a limiting plate is arranged above the middle block, and the outer frame, the inner frame and the connecting strips are connected through second threaded rods. The stable high-crystal plate with the built-in framework is provided with a connecting rope and a circular ring, when the high-crystal plate body is poured, the connecting rope is tied to the circular ring and can be located outside a pouring body, the pouring quality cannot be affected, meanwhile, after pouring is completed, the high-crystal plate body can be hung and aired through the circular ring, and the high-crystal plate body is convenient to use. And finally, the connecting rope is cut off along the edge of the high crystal plate body, and the circular ring can be detached for repeated use.
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Description

Technical Field

[0001] The utility model relates to the technical field of high-crystal panels, in particular to a stable high-crystal panel with a built-in skeleton. Background Art

[0002] High-crystal board, also known as high-crystal ceiling, is a new and improved product primarily used for suspended ceilings. It is an improvement over traditional gypsum-based ceiling panels, such as gypsum board and calcium silicate board. High-crystal board is primarily composed of gypsum but does not contain asbestos. It features high joint strength and low water absorption, resulting in a long service life and resistance to moisture.

[0003] Due to its excellent performance, high crystal board is widely used as ceiling material in home decoration, hospitals, schools, offices and other places. Its simple installation and convenient maintenance greatly reduce the subsequent maintenance costs.

[0004] For example, a high-crystal panel lining frame with application number 202220503612.2 is provided with a lining frame and a hanging piece. When casting the high-crystal panel, the lining frame with the hanging piece is placed in the high-crystal panel mold, and the high-crystal panel additive is injected into the mold. After the high-crystal panel is demoulded, it is hung to dry by the hanging piece. After drying, the hanging piece is removed, which facilitates the drying of the high-crystal panel and saves space. However, the device still has certain defects;

[0005] The high crystal slab is hung to dry by hanging parts, but the length of the hanging parts is short, which brings inconvenience during the casting process of the high crystal slab. At the same time, the high crystal slab is easily damaged when the hanging parts are dismantled.

[0006] Therefore, we propose a stable high-crystal plate with a built-in skeleton to solve the above problems. Utility Model Content

[0007] The purpose of the present utility model is to provide a stable high-crystal plate with a built-in frame to solve the problem raised in the above background technology that the high-crystal plate is currently hung and dried by hanging parts in the market, but the length of the hanging parts is short, which brings inconvenience during the casting process of the high-crystal plate, and the high-crystal plate is easily damaged when the hanging parts are disassembled.

[0008] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a stable high-crystal plate with a built-in skeleton, comprising a high-crystal plate body and an abutment frame, the interior of the high-crystal plate body is sequentially provided with an outer frame and an inner frame from the outside to the inside, and the inner left and right sides of the inner frame are abutted with abutment frames, connecting bars are installed on the abutment frames, and clamping blocks are installed on the opposite sides of the abutment frames, intermediate blocks are installed between the abutment frames, and through grooves are provided on the left and right sides of the intermediate blocks, a first threaded rod is installed above the intermediate block, and a limiting nut is installed on the first threaded rod, and a limiting plate is provided above the intermediate block, the outer frame, inner frame and connecting bar are connected by a second threaded rod, and a connecting rope is installed at the opposite end of the second threaded rod, and a ring is installed on the connecting rope.

[0009] Preferably, the outer frame, the inner frame and the connecting bar are respectively provided with a first threaded hole, a second threaded hole and a third threaded hole, and the center lines of the first threaded hole, the second threaded hole and the third threaded hole coincide with the center line of the second threaded rod.

[0010] With the above structural design, the second threaded rod is rotated so that the second threaded rod passes through the first threaded hole, the second threaded hole and the third threaded hole in sequence, thereby achieving the installation of the outer frame, the inner frame and the connecting bar.

[0011] Preferably, the first threaded hole, the second threaded hole and the third threaded hole are connected to the second threaded rod by a threaded structure.

[0012] With the above structural design, when disassembling the outer frame, inner frame and connecting strip, the second threaded rod is rotated to disengage the second threaded rod from the first threaded hole, the second threaded hole and the third threaded hole in sequence, thereby facilitating the disassembly of the outer frame, inner frame and connecting strip.

[0013] Preferably, the thickness of the clamping block is smaller than the thickness of the clamping slot, and protrusions are provided above opposite sides of the clamping block.

[0014] With the above structural design, the clamping block can be moved into the inside of the clamping groove, which facilitates the subsequent fixation of the clamping block.

[0015] Preferably, a threaded structure connection is formed between the first threaded rod and the intermediate block, and a threaded structure connection is formed between the limiting nut and the first threaded rod.

[0016] Using the above-mentioned structural design, move the limit plate upward, move the abutment frame, so that the clamping block on the abutment frame is located inside the clamping groove, and then loosen the limit plate, move the limit plate downward, and the lower ends of the left and right sides of the limit plate abut against the clamping block, and then rotate the limit nut, and the limit nut rotates downward on the first threaded rod to tighten the limit plate.

[0017] Preferably, the first threaded rod passes through the limiting plate, and the limiting plate is slidably connected to the through slot.

[0018] With the above structural design, the limiting plate can move up and down along the through slot when subjected to force.

[0019] Preferably, the connecting rope is fastened to the ring, and the connecting rope extends to the outside of the high crystal plate body.

[0020] With the above structural design, when the high crystal board body is cast, the connecting rope bolted to the ring can be located outside the casting body, which will not affect the casting quality. At the same time, after the casting is completed, the high crystal board body can be hung to dry by the ring, and finally the connecting rope can be cut along the edge of the high crystal board body, and the ring can be removed for reuse.

[0021] Compared with the prior art, the beneficial effects of the present invention are as follows: the stable high-crystal plate with a built-in skeleton:

[0022] 1. An outer frame, an inner frame and a connecting bar are provided. When disassembling the outer frame, the inner frame and the connecting bar, the second threaded rod is rotated to disengage the second threaded rod from the first threaded hole, the second threaded hole and the third threaded hole in sequence, thereby facilitating the disassembly of the outer frame, the inner frame and the connecting bar. At the same time, the limiting plate is moved upward to disassemble the abutment frame, thereby facilitating the disassembly of the skeleton inside the high crystal plate body and facilitating placement;

[0023] 2. A connecting rope and a ring are provided. When the high crystal board body is cast, the connecting rope is bolted to the ring and can be located outside the casting body, which will not affect the casting quality. At the same time, after the casting is completed, the high crystal board body can be hung to dry by the ring. Finally, the connecting rope can be cut along the edge of the high crystal board body, and the ring can be removed for reuse. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a schematic diagram of the main cross-sectional structure of the utility model;

[0025] Figure 2 This is an enlarged structural diagram of point A in the convex portion 1 of the present invention;

[0026] Figure 3 This is a schematic diagram of the structure of the utility model when the limiting plate and the middle block are separated;

[0027] Figure 4 This is a structural diagram of the utility model when the abutment frame and the middle block are installed;

[0028] Figure 5 This is a structural diagram of the utility model when the abutment frame and the middle block are disassembled.

[0029] In the figure: 1. Crystal plate body; 2. Outer frame; 3. Inner frame; 4. Abutment frame; 5. Connecting bar; 6. First threaded hole; 7. Second threaded hole; 8. Third threaded hole; 9. Clamping block; 10. Intermediate block; 11. Clamping groove; 12. Through groove; 13. First threaded rod; 14. Limiting nut; 15. Limiting plate; 16. Second threaded rod; 17. Connecting rope; 18. Ring. DETAILED DESCRIPTION

[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0031] See also Figure 1-Figure 5 The utility model provides a technical solution: a stable high crystal plate with a built-in skeleton, including a high crystal plate body 1, an outer frame 2, an inner frame 3, an abutment frame 4, a connecting bar 5, a first threaded hole 6, a second threaded hole 7, a third threaded hole 8, a clamping block 9, an intermediate block 10, a clamping groove 11, a through groove 12, a first threaded rod 13, a limiting nut 14, a limiting plate 15, a second threaded rod 16, a connecting rope 17 and a ring 18. The interior of the high crystal plate body 1 is sequentially provided with an outer frame 2 and an inner frame 3 from the outside to the inside, and the inner left and right sides of the inner frame 3 are abutted with the abutment frame 4, and connecting bars 5 are installed on the abutment frame 4. The outer frame 2, the inner frame 3 and the connecting bar 5 are respectively provided with a first threaded hole 6, a second threaded hole 7 and a third threaded hole 8, and the center lines of the first threaded hole 6, the second threaded hole 7 and the third threaded hole 8 are all aligned with the center line of the second threaded rod 16 The lines coincide with each other, and the second threaded rod 16 is rotated so that the second threaded rod 16 passes through the first threaded hole 6, the second threaded hole 7 and the third threaded hole 8 in sequence, thereby realizing the installation of the outer frame 2, the inner frame 3 and the connecting bar 5. The first threaded hole 6, the second threaded hole 7 and the third threaded hole 8 all form a threaded structure connection with the second threaded rod 16. When disassembling the outer frame 2, the inner frame 3 and the connecting bar 5, the second threaded rod 16 is rotated so that the second threaded rod 16 is disengaged from the first threaded hole 6, the second threaded hole 7 and the third threaded hole 8 in sequence, thereby facilitating the disassembly of the outer frame 2, the inner frame 3 and the connecting bar 5. A clamping block 9 is installed on the opposite side of the abutment frame 4. The thickness of the clamping block 9 is less than the thickness of the clamping groove 11, and a protrusion is provided above the opposite side of the clamping block 9, so that the clamping block 9 can be moved to the inside of the clamping groove 11, which is convenient for subsequent fixation of the clamping block 9.

[0032] An intermediate block 10 is installed between the abutment frames 4, and through slots 12 are provided on the left and right sides of the intermediate block 10. A first threaded rod 13 is installed above the intermediate block 10, and a threaded structure connection is formed between the first threaded rod 13 and the intermediate block 10, and a threaded structure connection is formed between the limiting nut 14 and the first threaded rod 13. Move the limiting plate 15 upward, move the abutment frame 4, so that the clamping block 9 on the abutment frame 4 is located inside the clamping groove 11, and then loosen the limiting plate 15, and the limiting plate 15 moves downward. The lower ends of the left and right sides of the limiting plate 15 abut against the clamping block 9, and then rotate the limiting nut 14. The limiting nut 14 rotates downward on the first threaded rod 13 to tighten the limiting plate 15, and the limiting nut 14 is installed on the first threaded rod 13. A limiting plate 15 is set above the intermediate block 10, and the first The threaded rod 13 passes through the limit plate 15, and the limit plate 15 is slidably connected to the through groove 12. The limit plate 15 can move up and down along the through groove 12 when subjected to force. The outer frame 2, the inner frame 3 and the connecting bar 5 are connected by a second threaded rod 16. A connecting rope 17 is installed at the opposite end of the second threaded rod 16, and a ring 18 is installed on the connecting rope 17. The connecting rope 17 is bolted to the ring 18, and the connecting rope 17 extends to the outside of the high crystal board body 1. When the high crystal board body 1 is cast, the connecting rope 17 is bolted to the ring 18 and can be located outside the casting body, which will not affect the casting quality. At the same time, after the casting is completed, the high crystal board body 1 can be hung to dry by the ring 18, and finally the connecting rope 17 can be cut along the edge of the high crystal board body 1, and the ring 18 can be removed and reused.

[0033] Working principle: When using the stable high crystal plate with built-in skeleton, first, move the limit plate 15 upwards, move the abutment frame 4, so that the clamping block 9 on the abutment frame 4 is located inside the clamping groove 11, and then loosen the limit plate 15, and the limit plate 15 moves downwards, and the lower ends of the left and right sides of the limit plate 15 abut against the clamping block 9, and then rotate the limit nut 14, and the limit nut 14 rotates downward on the first threaded rod 13 to tighten the limit plate 15, completing the installation of the abutment frame 4, and then place the abutment frame 4 inside the inner frame 3 so that the abutment The left and right sides of the frame 4 are in contact with the left and right sides of the inner wall of the inner frame 3, and then the second threaded rod 16 is rotated so that the second threaded rod 16 passes through the first threaded hole 6, the second threaded hole 7 and the third threaded hole 8 in sequence, thereby realizing the installation of the outer frame 2, the inner frame 3 and the connecting bar 5, and then the installed skeleton is placed in the mold for casting. After the high crystal board body 1 is cast and formed, the high crystal board body 1 can be hung to dry by the ring 18, and finally the connecting rope 17 can be cut along the edge of the high crystal board body 1, and the ring 18 can be removed and reused. Thus, a series of tasks are completed. The content not described in detail in this specification belongs to the existing technology known to professional and technical personnel in this field.

[0034] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A stable high-crystal plate with a built-in frame, comprising a high-crystal plate body (1) and an abutment frame (4), characterized in that: The interior of the high crystal plate body (1) is sequentially provided with an outer frame (2) and an inner frame (3) from the outside to the inside, and the inner left and right sides of the inner frame (3) are abutted with abutment frames (4), and the abutment frames (4) are each installed with a connecting bar (5), and the opposite side of the abutment frames (4) is installed with a clamping block (9), and an intermediate block (10) is installed between the abutment frames (4), and the left and right sides of the intermediate block (10) are each provided with a through groove (12), a first threaded rod (13) is installed above the intermediate block (10), and a limiting nut (14) is installed on the first threaded rod (13), and a limiting plate (15) is provided above the intermediate block (10), and the outer frame (2), the inner frame (3) and the connecting bar (5) are connected by a second threaded rod (16), and the opposite end of the second threaded rod (16) is installed with a connecting rope (17), and a ring (18) is installed on the connecting rope (17).

2. The stable high-crystal plate with a built-in skeleton according to claim 1, characterized in that: The outer frame (2), the inner frame (3) and the connecting bar (5) are respectively provided with a first threaded hole (6), a second threaded hole (7) and a third threaded hole (8), and the center lines of the first threaded hole (6), the second threaded hole (7) and the third threaded hole (8) coincide with the center line of the second threaded rod (16).

3. The stable high-crystal plate with a built-in skeleton according to claim 2, characterized in that: The first threaded hole (6), the second threaded hole (7) and the third threaded hole (8) are all connected to the second threaded rod (16) by a threaded structure.

4. The stable high-crystal plate with a built-in skeleton according to claim 1, characterized in that: The thickness of the clamping block (9) is smaller than the thickness of the clamping slot (11), and protrusions are provided above opposite sides of the clamping block (9).

5. The stable high-crystal plate with a built-in skeleton according to claim 1, characterized in that: A threaded structural connection is formed between the first threaded rod (13) and the intermediate block (10), and a threaded structural connection is formed between the limiting nut (14) and the first threaded rod (13).

6. The stable high-crystal plate with a built-in skeleton according to claim 1, characterized in that: The first threaded rod (13) passes through the limiting plate (15), and the limiting plate (15) is slidably connected to the through slot (12).

7. The stable high-crystal plate with a built-in skeleton according to claim 1, characterized in that: The connecting rope (17) is bolted to the ring (18), and the connecting rope (17) extends outside the high crystal plate body (1).

Citation Information

Patent Citations

  • High crystal plate lining framework

    CN217292764U