Titanium-magnesium fireproof assembly type baking varnish suspended ceiling structure

Through the titanium-magnesium fireproof assembled paint ceiling structure, the titanium-magnesium fireproof board and the ceiling keel are connected into a whole using connecting blocks and pull strips, which solves the problem of collapse and deformation of the middle part of the titanium-magnesium fireproof board and realizes flexible installation and convenient maintenance.

CN223358518UActive Publication Date: 2025-09-19SICHUAN JIUDIAN ASSEMBLY DECORATION CO LTD +1
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Patent Information

Application Number
CN202422629923.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-09-19
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

In the prior art, titanium magnesium fireproof panels are directly fixed on the ceiling keels, which can easily cause the middle part to collapse and deform, and are inconvenient to install, difficult to adapt to the needs of different room sizes, and inconvenient to remove and repair later.

Method used

A titanium-magnesium fireproof assembled paint ceiling structure is adopted. The titanium-magnesium fireproof board is connected and fixed by connecting blocks and pull-joints. The ceiling keels are staggered and connected and fixed. The connecting blocks set at intervals are connected into one body using connectors. A connecting port is provided at the lower end of the connecting block. The two sides of the titanium-magnesium fireproof board are inserted into the connecting port. The ceiling keels are crisscrossed and the lower part of the ceiling keel is an inverted T-shaped fixing part. The two ends of the titanium-magnesium fireproof board are placed on the fixing parts of adjacent ceiling keels and reinforced by pull strips and connectors.

Benefits of technology

It effectively avoids the collapse and deformation of the middle part of the titanium-magnesium fireproof board, adapts to the installation requirements of different room sizes, and improves the installation efficiency and convenience of subsequent maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a titanium-magnesium fireproof assembly type baking varnish suspended ceiling structure, and belongs to the technical field of building decoration. The structure comprises ceiling joists (3), titanium-magnesium fireproof plates (1), connecting blocks (2) and pulling and connecting strips (6), the connecting blocks (2) are arranged at intervals and connected through the pulling and connecting strips (6), connecting openings (21) are formed in the lower ends of the connecting blocks (2), the two sides of each titanium-magnesium fireproof plate (1) are inserted into the corresponding connecting openings (21), the ceiling joists (3) are arranged at intervals, the lower portions of the ceiling joists (3) are provided with inverted-T-shaped fixing parts (32), and the two ends of each titanium-magnesium fireproof plate (1) are placed on the fixing parts (32) of the adjacent ceiling joists (3). According to the structure, the long-size titanium-magnesium fireproof plate (1) is reinforced through the connecting blocks (2) and the pulling and connecting strips (6), the strength of the titanium-magnesium fireproof plate (1) is improved, and deformation and damage are avoided. The problem that in the prior art, the middle of a titanium-magnesium fireproof plate (1) is prone to collapsing and deforming when the titanium-magnesium fireproof plate (1) is directly clamped on a ceiling joist (3) is solved.
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Description

Technical Field

[0001] The utility model relates to a titanium-magnesium fireproof assembled paint-baking ceiling structure, belonging to the technical field of building decoration. Background Art

[0002] A building's ceiling provides insulation, heat insulation, and sound absorption, and also serves as a concealed layer for electrical, ventilation and air conditioning, communications, fire protection, and alarm pipeline equipment. However, the decorative panels of existing ceiling structures are typically manufactured to fixed specifications. However, the layout and size of the ceilings in each owner's room vary, and installation often requires cutting the ceiling decoration at the edges. This cutout decorative panel is difficult to coordinate with the overall structure, and the size of the decorative panel is small, resulting in a poor overall decorative effect. The snap-on installation method introduces inconvenience during installation and construction, which inadvertently reduces construction efficiency. This structure also places high demands on the installation position of the keel, which cannot be adjusted according to the roof size. The ceiling decorative panels also require cutting at the corners. Furthermore, the snap-on connection method inevitably results in the later removal and replacement of damaged decorative panels, which inevitably leads to damage at the panel snaps and subsequent repairs.

[0003] Existing large-span suspended ceilings often use large-size panels such as honeycomb panels or titanium-magnesium fireproof panels to achieve large-area suspended ceilings in houses. However, the existing technology often directly places large-size panels such as honeycomb panels or titanium-magnesium fireproof panels on the ceiling keels. Since some panels are up to 3 meters long and no fixings are added during installation, it is easy to cause the middle part of the panel to collapse and deform, affecting the structure and decorative appearance of the entire suspended ceiling. Utility Model Content

[0004] The technical problem solved by the utility model is that the existing technology directly clamps the titanium magnesium fireproof board on the ceiling keel, which easily causes the middle part of the titanium magnesium fireproof board to collapse and deform.

[0005] The technical solution adopted by the utility model to solve its technical problems is: a titanium-magnesium fireproof assembled paint ceiling structure, including a ceiling keel and a titanium-magnesium fireproof board, and also including a connecting block and a pull-joint strip. The connecting blocks are arranged at intervals and are connected and fixed by the pull-joint strip. The lower end of the connecting block is provided with a connecting port, and the two sides of the titanium-magnesium fireproof board are inserted into the connecting port. The ceiling keels are arranged in a criss-cross manner, and the lower part of the ceiling keel is an inverted T-shaped fixing part. The two ends of the titanium-magnesium fireproof board are placed on the fixing parts of adjacent ceiling keels.

[0006] The above structure also includes a connecting piece, the connecting block is an inverted F-shaped structure, and a connecting hole is provided on the upper part. One end of the connecting piece is inserted into the connecting hole, and the other end is connected to the pull bar.

[0007] Furthermore, the connecting piece in the above structure is an L-shaped structure, and a threaded hole is provided on the side wall. A T-shaped hole is provided on one side wall of the pull-connecting strip along its length direction. A positioning strip is vertically provided on the upper horizontal edge of the connecting block. The upper end of the connecting block is bent downward. The connecting hole is a T-shaped hole formed by the bent edge and the positioning strip. The two ends of the connecting piece are respectively inserted into the T-shaped holes on the pull-connecting strip and the connecting block, and screws are screwed into the threaded holes to fix the connecting piece to the pull-connecting strip and the connecting block.

[0008] Among them, the above structure also includes a hanging piece, and a hanging strip is provided at the upper end of the ceiling keel, so that the upper part of the ceiling keel is a T-shaped structure, and the hanging piece is a "]"-shaped structure, and a connecting hole is provided at the upper end, and a through groove is provided at the lower end. The through groove extends to the bent side wall, and the width after extension is greater than the width of the lower end, so that the hanging piece can be stuck into the hanging strip for contact connection.

[0009] Wherein, the above structure also includes a clamping piece, and adjacent ceiling keels are connected by the clamping piece.

[0010] Furthermore, in the above structure, the clamping member is a T-shaped structure, and a T-shaped slot is provided on the end surface of the clamping member, and the clamping member is respectively clamped into the upper ends of adjacent ceiling keels at the intersection.

[0011] Furthermore, the above structure also includes a lamp tube plate, which is a strip structure, and the lower ends of the crisscrossed ceiling keels are provided with strip holes, and both sides of the lamp tube plate are placed on the fixing parts of adjacent ceiling keels located at the strip holes.

[0012] Furthermore, the above structure also includes a screw rod, which is arranged along the width direction of the lamp tube plate and has clamping parts at both ends, and the T-shaped clamping groove is away from the screw rod end and is clamped on the upper end of the ceiling keel on both sides of the lamp tube plate.

[0013] Wherein, in the above structure, the length of the upper horizontal side of the connecting piece is greater than the length of the lower horizontal side, and the positioning bar is vertically arranged on the upper horizontal side of the connecting block close to the vertical side.

[0014] Wherein, the horizontal sides of the connecting blocks in the above structure are all provided with anti-slip grooves.

[0015] The beneficial effects of the present utility model are as follows: the present structure connects the spaced connection blocks into one piece by means of tie bars, and places the two ends of the titanium-magnesium fireproof board in the connection opening, so that the titanium-magnesium fireproof board, the connection blocks and the tie bars are combined into an integral structure. In fact, the combined integral structure can be directly placed on the fixed portion of the lower end of the ceiling keel set at intervals. The present structure reinforces the structural strength of the titanium-magnesium fireproof board by means of the connection blocks and tie bars, and actually divides the long titanium-magnesium fireproof board into several short titanium-magnesium fireproof boards by means of the connection blocks and tie bars, thus avoiding the collapse and deformation of the middle part of the titanium-magnesium fireproof board when a large span is installed. At the same time, the present structure can be adjusted according to the size of the house to meet the installation requirements of any size, making it more convenient to use and quicker to install. The buckle connection flange can be removed and repaired later. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the assembly structure of the titanium magnesium plate, the connecting block and the tie bar of the utility model;

[0017] Figure 2 For this utility model Figure 1 Left view structural diagram;

[0018] Figure 3 This is a structural diagram of the connecting block of the utility model;

[0019] Figure 4 This is a schematic diagram of the front structure of the connecting block of the utility model;

[0020] Figure 5 This is a schematic diagram of the structure of the connector of the utility model;

[0021] Figure 6 This is a schematic diagram of the structure of the pull-joint strip of the utility model;

[0022] Figure 7 This is a schematic diagram of the partial structure of the suspended ceiling structure of the utility model;

[0023] Figure 8 For this utility model Figure 7 Schematic diagram of the top view structure;

[0024] Figure 9 For this utility model Figure 7 Schematic diagram of the structure viewed from above;

[0025] Figure 10 For this utility model Figure 7 Schematic diagram of ceiling keel installation layout;

[0026] Figure 11 This is a schematic diagram of the structure of the suspended ceiling keel of the utility model.

[0027] Figure 12 This is a schematic diagram of the front view structure of the ceiling keel of the utility model;

[0028] Figure 13 This is a schematic diagram of the structure of the lifting part of the utility model;

[0029] Figure 14 This is a schematic structural diagram of the clamping member of the present utility model;

[0030] Figure 15 This is a bottom view of the structure of the clamping member of the present invention.

[0031] Markings in the figure are: 1 is the titanium-magnesium fireproof board, 2 is the connecting block, 21 is the connecting port, 22 is the positioning strip, 23 is the connecting hole, 3 is the ceiling keel, 31 is the hanging strip, 32 is the fixing part, 4 is the hanging part, 41 is the hanging hole, 42 is the through groove, 5 is the connecting part, 6 is the pulling strip, 7 is the screw rod, 8 is the lamp tube plate, 9 is the clamping part, and 91 is the T-shaped slot. DETAILED DESCRIPTION

[0032] The present invention will be further described below with reference to the accompanying drawings.

[0033] like Figures 1 to 15As shown, the titanium-magnesium fireproof assembled paint ceiling structure of the present invention includes a ceiling keel and a titanium-magnesium fireproof board, and also includes a connecting block and a pull strip. The connecting blocks 2 are arranged at intervals and are connected and fixed by a pull strip 6. The lower end of the connecting block 2 is provided with a connecting port 21, and the two sides of the titanium-magnesium fireproof board 1 are inserted into the connecting port 21. The ceiling keels 3 are arranged in a criss-cross manner, and the lower part of the ceiling keel 3 is an inverted T-shaped fixing part 32. The two ends of the titanium-magnesium fireproof board 1 are placed on the fixing parts 32 of the adjacent ceiling keels 3. Those skilled in the art should understand that this structure connects the spaced connection blocks 2 into one piece through the tie bars 6. In practice, it is preferred that the tie bars 6 and the connection blocks 2 are connected in an I-shaped structure, and the two sides of the titanium-magnesium fireproof board 1, that is, the two sides in the width direction, are placed in the connection port 21. At the same time, the titanium-magnesium fireproof board 1, the connection blocks 2, and the tie bars 6 are combined into an integral structure. In practice, by increasing the load-bearing capacity in the width direction, the structural strength of the titanium-magnesium fireproof board 1 is actually increased. Since the standard width of the titanium-magnesium fireproof board 1 is 600mm, it is actually only necessary to increase the number of connection blocks 2 and tie bars 6 according to different lengths to achieve the reinforcement of titanium-magnesium fireproof boards 1 of different lengths. The setting of this structure can actually make a single titanium-magnesium fireproof board 1, the connection blocks 2, and the tie bars 6 into a single ceiling board, thereby increasing the structural strength of the titanium-magnesium fireproof board 1 and overcoming the problem of deformation and damage in the middle of a large-span installation. At the same time, it is preferred that a sealant is provided on the upper end face of the titanium-magnesium fireproof board 1 so that the upper end of the titanium-magnesium fireproof board 1 is connected to the corresponding side of the connection block 2 as a whole. In fact, the ceiling keels 3 are hoisted on the roof at intervals to keep their horizontal height consistent. Since the lower part of the ceiling keel 3 is an inverted T-shaped fixing part 32, the titanium-magnesium fireproof board 1, the connecting block 2 and the pull-jointing strip 6 are actually directly made into a single ceiling board and placed as a whole on the lower fixing part 32 of the spaced ceiling keel 3. The two ends of the length of the titanium-magnesium fireproof board 1 are directly placed on the fixing part 32, and the width direction is reinforced by the connecting block 2 and placed on the lower fixing part 32 of the ceiling keel 3 on the corresponding side.

[0034] Preferably, the above structure further includes a connector 5, the connecting block 2 is an inverted F-shaped structure, and a connecting hole 23 is provided on the upper portion, one end of the connector 5 is inserted into the connecting hole 23, and the other end is connected to the tie bar 6. It should be understood by those skilled in the art that, in order to facilitate installation and connection, it is actually preferred to further include a connector 5, and it is preferred that the connecting block 2 is an inverted F-shaped structure, the actual connection port 21 is the opening formed by the two horizontal sides and the vertical sides of the connecting block 2, and a connecting hole 23 is further provided on the upper portion of the connecting block 2, one end of the connector 5 is inserted into the connecting hole 23, and the other end is connected to the tie bar 6, so that the connecting block 2 and the tie bar 6 are connected as one.

[0035] Preferably, the connecting member 5 in the above structure is an L-shaped structure, and a threaded hole 51 is provided on the side wall, a T-shaped hole is provided on one side wall of the pull strip 6 along its length direction, a positioning strip 22 is vertically provided on the upper horizontal edge of the connecting block 2, and the upper end of the connecting block 2 is bent downward, and the connecting hole 23 is a T-shaped hole formed by the bent edge and the positioning strip 22, and the two ends of the connecting member 5 are respectively inserted into the T-shaped holes on the pull strip 6 and the connecting block 2, and screws are screwed into the threaded holes 51 to fix the connecting member 5 to the pull strip 6 and the connecting block 2. Those skilled in the art should understand that, in this structure, the preferred connecting member 5 is an L-shaped structure, and a T-shaped hole is provided on one side wall of the tie bar 6 along its length direction, and a positioning bar 22 is vertically provided on the upper horizontal edge of the connecting block 2. The upper end of the connecting block 2 is bent downward so that the connecting hole 23 is a T-shaped hole formed by the bent edge and the positioning bar 22. The connecting member 5 is actually passed through the T-shaped hole on the adjacent tie bar 6 and the connecting block 2. Since a threaded hole 51 is provided on the side wall of the connecting member 5, the connecting block 2 can be connected to the tie bar 6 and the connecting block 2 into one by actually screwing in the screw.

[0036] Preferably, the above structure also includes a hanging part 4, and a hanging strip 31 is provided at the upper end of the ceiling keel 3, so that the upper part of the ceiling keel 3 is a T-shaped structure, and the hanging part 4 is a "]"-shaped structure, and a connecting hole 41 is provided at the upper end, and a through groove 42 is provided at the lower end. The through groove 42 extends to the bent side wall, and the width after extension is greater than the width of the lower end, so that the hanging part 4 can be stuck in the hanging strip 31 for contact connection. Those skilled in the art should understand that, since the hanging keel 3 will be connected to the leveling rod on the top of the wall during actual installation, in order to facilitate installation, it is actually preferred to also include a hanging part 4, and the hanging part 4 is preferably a "]"-shaped structure, and a hanging hole 41 is provided at the upper end. The setting of the hanging hole 41 is convenient for connection with the screw rod 7 at the end of the rod, and a through groove 42 is provided at its lower end. The through groove 42 is provided to facilitate hanging with the hanging strip 31 at the upper end of the ceiling keel 3. It is actually preferred that the through groove 42 extends to the bent side wall, and the width after extension is greater than the width of the lower end, so that the hanging part 4 can be stuck into the upper part of the vertical side of the ceiling keel 3 and contact and connect with the hanging strip 31.

[0037] Preferably, the above structure further includes a clamping member 9, and adjacent ceiling keels 3 are connected by the clamping member 9. It should be understood by those skilled in the art that in order to facilitate the fixing of adjacent ceiling keels 3 and ensure the stability of the entire keel structure, the present device arranges the ceiling keels 3 in a crisscross manner, and actually connects the crisscrossed ceiling keels 3 by the clamping member 9, that is, the ceiling keels 3 at the intersection are connected by the clamping member 9.

[0038] Preferably, the connector 9 in the above structure is T-shaped, and a T-shaped slot 91 is provided on the end surface of the connector 9. The connector 9 is respectively engaged with the upper ends of adjacent ceiling keels 3 at the intersection. It should be understood by those skilled in the art that the specific structure of the connector 9 is preferably such that the ceiling keels 3 at the intersection are actually engaged and fixed through the grooves on the corresponding sides of the T-shaped slot 91, thereby achieving a connection between the two.

[0039] Preferably, the above structure further includes a lamp tube plate 8, which is a strip-shaped structure, and the lower ends of the crisscrossed ceiling keels 3 are provided with strip holes, and the two sides of the lamp tube plate 8 are placed on the fixing parts 32 of the adjacent ceiling keels 3 located at the strip holes. It should be understood by those skilled in the art that, in order to facilitate the installation of lamp tubes, the present device preferably has strip holes between the adjacent crisscrossed ceiling keels 3, that is, no vertical or horizontal ceiling keels 3 are arranged perpendicular to the two horizontally or vertically arranged ceiling keels 3, so that the two horizontally or vertically arranged ceiling keels 3 are not connected by the ceiling keels 3. At the same time, the two sides of the lamp tube plate 8 are placed on the fixing parts 32 of the two ceiling keels 3 located at the strip holes to achieve the fixation of the lamp tube plate 8, and the light strip can be directly arranged on the upper end of the lamp tube plate 8.

[0040] Preferably, the above structure also includes a screw rod 7, which is arranged along the width direction of the lamp tube plate 8, and is clamped with a clamping piece 9 at both ends, and a T-shaped clamping slot 91 is clamped on the upper ends of the ceiling keels 3 on both sides of the lamp tube plate 8 away from the ends of the screw rod 7. It should be understood by those skilled in the art that in order to achieve the connection and fixation of the ceiling keels 3 on both sides of the lamp tube plate 8, this structure is preferably implemented by the screw rod 7 and the clamping piece 9. Specifically, the screw rod 7 is arranged along the width direction of the lamp tube plate 8, and is clamped with a clamping piece 9 at both ends, and the T-shaped clamping slot 91 is clamped on the upper ends of the ceiling keels 3 on both sides of the lamp tube plate 8 away from the ends of the screw rod 7, that is, the two ends of the screw rod 7 are inserted into the vertical grooves of the clamping piece 9, and the horizontal grooves of the clamping piece 9 are directly clamped on the ceiling keels 3 on both sides of the lamp tube plate 8, and the length of the screw rod 7 is the same as the width of the lamp tube plate 8.

[0041] Preferably, in the above structure, the upper horizontal side length of the connecting member 5 is greater than the lower horizontal side length, and the positioning strip 22 is vertically arranged on the upper horizontal side of the connecting block 2 near the vertical side. It should be understood by those skilled in the art that in order to ensure that the connection between the titanium-magnesium fireproof board 1 and the tie strip 6 and the connecting block 2 is stressed, the present structure preferably has the upper horizontal side length of the connecting member 5 greater than the lower horizontal side length, and the positioning strip 22 is vertically arranged on the upper horizontal side of the connecting block 2 near the vertical side, thereby increasing the contact area between the tie strip 6 and the upper horizontal side of the connecting block 2.

[0042] Preferably, the horizontal edges of the connecting block 2 in the above structure are provided with anti-slip grooves. Those skilled in the art should understand that in order to increase friction, the structure preferably provides anti-slip grooves on the horizontal edges of the connecting block 2, that is, anti-slip grooves are provided on the upper sides of both horizontal edges.

Claims

1. A titanium-magnesium fireproof assembled paint ceiling structure, comprising a ceiling keel (3) and a titanium-magnesium fireproof board (1), characterized in that: It also includes connecting blocks (2) and tie bars (6), wherein the connecting blocks (2) are arranged at intervals and connected and fixed by tie bars (6), the lower end of the connecting block (2) is provided with a connecting port (21), the two sides of the titanium-magnesium fireproof board (1) are inserted into the connecting port (21), the ceiling keels (3) are arranged in a crisscross manner, and the lower part of the ceiling keel (3) is an inverted T-shaped fixing portion (32), and the titanium-magnesium fireproof board (1) is placed on the fixing portion (32) of the adjacent ceiling keel (3).

2. The titanium-magnesium fireproof assembled paint ceiling structure according to claim 1 is characterized by: It also includes a connecting piece (5), the connecting block (2) is an inverted F-shaped structure, and a connecting hole (23) is provided on the upper part, one end of the connecting piece (5) is inserted into the connecting hole (23), and the other end is connected to the tension bar (6).

3. The titanium-magnesium fireproof assembled paint ceiling structure according to claim 2 is characterized by: The connecting member (5) is an L-shaped structure, and a threaded hole (51) is provided on the side wall. A T-shaped hole is provided on one side wall of the tie bar (6) along its length direction. A positioning bar (22) is vertically provided on the upper horizontal edge of the connecting block (2). The upper end of the connecting block (2) is bent downward. The connecting hole (23) is a T-shaped hole formed by the bent edge and the positioning bar (22). The two ends of the connecting member (5) are respectively inserted into the T-shaped holes on the tie bar (6) and the connecting block (2), and screws are screwed into the threaded holes (51) to fix the connecting member (5) to the tie bar (6) and the connecting block (2).

4. The titanium-magnesium fireproof assembled paint ceiling structure according to claim 1 is characterized by: The invention also includes a hanging piece (4), wherein a hanging strip (31) is provided at the upper end of the ceiling keel (3), so that the upper part of the ceiling keel (3) is a T-shaped structure, and the hanging piece (4) is a "]"-shaped structure, and a hanging hole (41) is provided at the upper end, and a through groove (42) is provided at the lower end. The through groove (42) extends to the bent side wall, and the width after extension is greater than the width of the lower end, so that the hanging piece (4) can be stuck into the hanging strip (31) for contact connection.

5. The titanium-magnesium fireproof assembled paint ceiling structure according to claim 1 is characterized by: It also includes a clamping piece (9), and adjacent ceiling keels (3) are connected via the clamping piece (9).

6. The titanium-magnesium fireproof assembled paint-coated ceiling structure according to claim 5 is characterized by: The clamping member (9) is a T-shaped structure, and a T-shaped clamping groove (91) is provided on the end surface of the clamping member (9). The clamping member (9) is respectively clamped into the upper ends of adjacent ceiling keels (3) at the intersection.

7. The titanium-magnesium fireproof assembled paint-coated ceiling structure according to claim 6 is characterized by: It also includes a lamp tube plate (8), which is a strip-shaped structure, and the lower ends of the ceiling keels (3) arranged in a crisscross pattern are provided with strip holes, and both sides of the lamp tube plate (8) are placed on the fixing parts (32) of the adjacent ceiling keels (3) located at the strip holes.

8. The titanium-magnesium fireproof assembled paint-coated ceiling structure according to claim 7 is characterized by: It also includes a screw rod (7), which is arranged along the width direction of the lamp tube plate (8) and has clamping parts (9) at both ends, and the T-shaped clamping grooves (91) are respectively clamped to the upper ends of the ceiling keels (3) on both sides of the lamp tube plate (8) away from the ends of the screw rod (7).

9. The titanium-magnesium fireproof assembled paint-coated ceiling structure according to claim 1, characterized in that: The length of the upper horizontal side of the connecting block (2) is greater than the length of the lower horizontal side, and the positioning strip (22) is vertically arranged on the upper horizontal side of the connecting block (2) close to the vertical side.

10. The titanium-magnesium fireproof assembled paint-coated ceiling structure according to claim 1, characterized in that: The horizontal sides of the connecting block (2) are all provided with anti-slip lines.