A ceiling installation structure with irregular aluminum square tube shape

By designing detachable connecting components, the problem of resource waste in the existing aluminum square pass ceiling installation structure is solved, and the flexible connection between aluminum square pass and ceiling is realized and the efficient utilization of resources is achieved.

CN118756890BActive Publication Date: 2025-05-23LONGDU IND GRP CO LTD
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Patent Information

Application Number
CN202411078430.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-23
Estimated Expiration
2044-08-07

AI Technical Summary

Technical Problem

In the existing aluminum square pass ceiling installation structure, the suspension parts and the aluminum square pass cannot be disassembled. Once the aluminum square pass is damaged, the connected suspension parts will also be scrapped, resulting in waste of resources.

Method used

A ceiling installation structure with irregular aluminum square pass shape is designed, using removable connecting components, including mounting rods, fixing blocks, sliding cylinders, clamping blocks and adjustment nuts, through which the removable connection between the aluminum square pass and the ceiling is achieved.

Benefits of technology

The removable connection between the aluminum square pass and the connecting assembly is realized. Even if the aluminum square pass is damaged, the connecting assembly can still be used for other aluminum square passes, avoiding waste of resources.

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Abstract

The present invention relates to the field of ceiling technology, and in particular to a ceiling installation structure with an irregular aluminum square tube shape, comprising an aluminum square tube, a plurality of upper docking components, a plurality of lower docking components, a plurality of telescopic components and a plurality of connecting components; the connecting components comprise a mounting rod, a fixing block, a sliding cylinder, a clamping block and an adjusting nut; when connecting, the fixing block is slid from the opening of the aluminum square tube to the crest or trough of the aluminum square tube, and then the sliding cylinder is lowered to drive the clamping block to move downward, and the adjusting nut is screwed so that the adjusting nut moves downward to press the sliding cylinder tightly, so that the clamping block cooperates with the fixing block to clamp the aluminum square tube, and when disassembling, the adjusting nut is screwed upward to move the clamping block upward, and the fixing block is slid along the internal channel of the aluminum square tube and taken out; the connecting component is detachably connected to the aluminum square tube, and even if the aluminum square tube is damaged and scrapped, the connecting component can still be used for another aluminum square tube and will not be scrapped together, thereby avoiding cost waste.
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Description

Technical Field

[0001] The invention relates to the technical field of ceilings, and in particular to a suspended ceiling installation structure with an irregular aluminum square tube shape. Background Art

[0002] Aluminum square tube is one of the ceiling materials produced in recent years. Aluminum square tube has an open view, ventilation, air permeability, and its lines are bright and neat, with distinct layers, reflecting a simple and clear modern style. It is easy to install and disassemble, and has become a major product that has swept the decoration market in recent years. It is used in public places with many hidden projects and dense traffic. It is convenient for air circulation, exhaust, and heat dissipation, and can make the light evenly distributed, making the entire space spacious and bright. It is widely used in open places such as subways, high-speed rail stations, stations, airports, large shopping malls, passages, leisure places, public toilets, hotels, school restaurants, and building exterior walls.

[0003] The prior art (CN109184064B) discloses a ceiling installation component and a construction method for installing a wavy aluminum square tube ceiling. A plurality of fixed hangers are fixed on the top of the wall, and a plurality of docking hangers are correspondingly fixed on the aluminum square tube. The aluminum square tube can be hoisted to the top of the wall by docking the docking hangers with the fixed hangers.

[0004] However, when the above method is adopted, the docking hangers and the aluminum square tube cannot be disassembled. Once the aluminum square tube is damaged and scrapped, the multiple docking hangers connected to the aluminum square tube will also be scrapped, which is quite wasteful. Summary of the invention

[0005] The purpose of the present invention is to provide a ceiling installation structure with an irregular aluminum square tube shape, which can avoid cost waste.

[0006] To achieve the above-mentioned object, the present invention provides a ceiling installation structure with an irregular aluminum square tube shape, comprising an aluminum square tube, a plurality of upper docking components, a plurality of lower docking components, a plurality of telescopic components and a plurality of connecting components;

[0007] The plurality of upper docking assemblies are respectively located above the aluminum square tube; the plurality of lower docking assemblies are respectively located below the plurality of upper docking assemblies; the plurality of telescopic assemblies are respectively arranged at the bottom of the plurality of lower docking assemblies; the plurality of connecting assemblies are respectively arranged at the bottom of the plurality of telescopic assemblies; the connecting assembly comprises a mounting rod, a fixed block, a sliding cylinder, a clamping block and an adjusting nut; the mounting rod is arranged at the bottom of the telescopic assembly; the fixed block is fixedly connected to the mounting rod and is located at the bottom of the mounting rod; the sliding cylinder is slidably connected to the mounting rod and is sleeved on the mounting rod; the clamping block is fixedly connected to the sliding cylinder and is penetrated by the sliding cylinder; the adjusting nut is threadedly connected to the mounting rod and is located on one side of the mounting rod.

[0008] Preferably, the mounting rod includes a rod body and two guide blocks; the rod body is fixedly connected to the fixed block, and is slidably connected to the sliding cylinder, and passes through the sliding cylinder; the two guide blocks are respectively fixedly connected to the rod body, and are respectively slidably connected to the sliding cylinder, and are respectively located on the sides of the rod body.

[0009] Preferably, the upper docking assembly includes a fixed plate, a plurality of expansion bolts, a hanging plate and an upper docking block; the fixed plate is located above the aluminum square tube; the plurality of expansion bolts all pass through the fixed plate; the hanging plate is fixedly connected to the fixed plate and is located at the bottom of the fixed plate; the upper docking block is fixedly connected to the hanging plate and is located at the bottom of the hanging plate; the upper docking block has two sockets.

[0010] Preferably, the lower docking assembly comprises a lower docking block and two plug-in blocks; the lower docking block is located below the upper docking block; the two plug-in blocks are respectively fixedly connected to the lower docking block and are respectively located at the bottom of the lower docking block.

[0011] Preferably, the telescopic assembly includes a U-shaped plate, a telescopic screw, an upper nut and a lower nut; the U-shaped plate is fixedly connected to the rod body and is located at the top of the rod body; the telescopic screw is fixedly connected to the lower docking block and passes through the U-shaped plate; the upper nut is threadedly connected to the telescopic screw and is located on one side of the telescopic screw; the lower nut is threadedly connected to the telescopic screw and is located on one side of the telescopic screw.

[0012] Preferably, the irregular aluminum square tube-shaped ceiling installation structure further includes a plurality of tightening components; the plurality of tightening components are respectively arranged on the plurality of upper docking blocks.

[0013] Preferably, the tightening assembly includes a hand screw and a resisting plate; the hand screw is threadedly connected to the upper docking block and passes through the upper docking block; the resisting plate is rotationally connected to the hand screw and is located on one side of the hand screw.

[0014] The present invention provides a ceiling installation structure of irregular aluminum square tube shape, wherein the upper docking component is fixed to the wall top, and the lower docking component is adapted to the upper docking component and can be docked and fixed with each other to realize a detachable connection; the telescopic component can adjust its own length to adapt to the changes in the appearance of the aluminum square tube, and can also adjust the lifting height of the aluminum square tube and the height of the lower docking component; the aluminum square tube is wavy, with crests and troughs, and the connecting components are arranged at the crests and troughs; after a plurality of the connecting components are connected to the aluminum square tube, the plurality of the lower docking components are adjusted to the same horizontal plane through the plurality of the telescopic components, and then the plurality of the lower docking components and the plurality of the upper docking components can be docked, and the aluminum square tube can be hoisted to the wall top; the clamping block is slidably arranged on the mounting rod through the sliding cylinder, and the fixing block The length is adapted to the width of the interior of the aluminum square tube; when connecting the aluminum square tube, the fixing block is slid from one side opening of the aluminum square tube to the crest or trough of the aluminum square tube, and then the sliding cylinder is slid down to drive the clamping block to move down, and the aluminum square tube is slightly clamped with the fixing block, and then the adjusting nut is screwed so that the adjusting nut moves down to tighten the sliding cylinder, so that the clamping block cooperates with the fixing block to clamp the aluminum square tube. When disassembling, the adjusting nut is screwed up, the sliding cylinder is slid up, the clamping block is driven to move up, and then the fixing block is slid along the internal channel of the aluminum square tube and taken out; the connecting assembly is detachably connected to the aluminum square tube, and even if the aluminum square tube is damaged and scrapped, the connecting assembly can still be used for another aluminum square tube, and it will not be scrapped together, thereby avoiding cost waste. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art are briefly introduced below.

[0016] Figure 1 It is a schematic structural diagram of the first embodiment of the present invention.

[0017] Figure 2 yes Figure 1 A partial enlargement of detail A.

[0018] Figure 3 It is a schematic structural diagram of another angle of the first embodiment of the present invention.

[0019] Figure 4 yes Figure 3 A partial enlargement of detail B.

[0020] Figure 5 yes Figure 3 A partial enlargement of detail C.

[0021] Figure 6 is a cross-sectional view of a connection assembly according to a first embodiment of the present invention.

[0022] Figure 7 It is a schematic structural diagram of the second embodiment of the present invention.

[0023] Figure 8 yes Figure 7 A partial enlargement of detail D.

[0024] Fig. 9 It is a schematic structural diagram of the third embodiment of the present invention.

[0025] Fig.10 yes Fig. 9 A partial enlargement of detail E.

[0026] 101-aluminum square tube, 102-upper docking assembly, 103-lower docking assembly, 104-telescopic assembly, 105-connecting assembly, 106-mounting rod, 107-fixed block, 108-sliding cylinder, 109-clamping block, 110-adjusting nut, 111-rod body, 112-guide block, 113-fixed plate, 114-expansion bolt, 115-hanging plate, 116-upper docking block, 117-socket, 118-lower docking block, 119-insert block, 120-U-shaped plate, 121-telescopic screw, 122-upper nut, 123-lower nut, 201-tightening assembly, 202-hand screw, 203-relief plate, 301-constraint assembly, 302-constraint cylinder, 303-constraint rod. DETAILED DESCRIPTION

[0027] The first embodiment of the present application is:

[0028] See also Figure 1-Figure 6 The present invention provides a ceiling installation structure with an irregular aluminum square tube shape: it includes an aluminum square tube 101, multiple upper docking components 102, multiple lower docking components 103, multiple telescopic components 104 and multiple connecting components 105; the connecting component 105 includes a mounting rod 106, a fixing block 107, a sliding cylinder 108, a clamping block 109 and an adjusting nut 110; the mounting rod 106 includes a rod body 111 and two guide blocks 112; the upper docking component 102 includes a fixing plate 113, multiple expansion bolts 114, a hanging plate 115 and an upper docking block 116; the upper docking block 116 has two plug holes 117; the lower docking component 103 includes a lower docking block 118 and two plug blocks 119; the telescopic component 104 includes a U-shaped plate 120, a telescopic screw 121, an upper nut 122 and a lower nut 123; the above scheme can avoid cost waste.

[0029] The plurality of upper docking assemblies 102 are respectively located above the aluminum square tube 101; the plurality of lower docking assemblies 103 are respectively located below the plurality of upper docking assemblies 102; the plurality of telescopic assemblies 104 are respectively arranged at the bottom of the plurality of lower docking assemblies 103; the plurality of connecting assemblies 105 are respectively arranged at the bottom of the plurality of telescopic assemblies 104; the connecting assembly 105 comprises a mounting rod 106, a fixing block 107, a sliding cylinder 108, a clamping block 109 and an adjusting nut 110; the mounting rod 106 is arranged at the bottom of the telescopic assembly 104; the fixing block 107 is fixedly connected to the mounting rod 106 and is located at the bottom of the mounting rod 106; the sliding cylinder 108 is slidably connected to the mounting rod 106 and is sleeved on the mounting rod 106; the clamping block 109 is fixedly connected to the sliding cylinder 108 and is penetrated by the sliding cylinder 108; the adjusting nut 110 is threadedly connected to the mounting rod 106 and is located on one side of the mounting rod 106.The upper docking assembly 102 is fixed to the top of the wall, and the lower docking assembly 103 is adapted to the upper docking assembly 102, and can be docked and fixed with each other to achieve a detachable connection; the telescopic assembly 104 can adjust its own length, so as to adapt to the changes in the appearance of the aluminum square tube 101, and can also adjust the hoisting height of the aluminum square tube 101 and the height of the lower docking assembly 103; the aluminum square tube 101 is wavy, with crests and troughs, and the connecting assembly 105 is arranged at the crests and troughs; after a plurality of the connecting assemblies 105 are connected to the aluminum square tube 101, the plurality of the lower docking assemblies 103 are adjusted to the same horizontal plane through the plurality of the telescopic assemblies 104, and then the plurality of the lower docking assemblies 103 and the plurality of the upper docking assemblies 102 can be docked, and the aluminum square tube 101 can be hoisted to the top of the wall; the clamping block 109 is slidably arranged on the mounting rod 106 through the sliding cylinder 108, and the length of the fixing block 107 is adapted to the width inside the aluminum square tube 101 When connecting the aluminum square tube 101, slide the fixing block 107 from one side opening of the aluminum square tube 101 to the crest or trough of the aluminum square tube 101, and then slide the sliding cylinder 108 down to drive the clamping block 109 to move down, cooperate with the fixing block 107 to slightly clamp the aluminum square tube 101, and then screw the adjusting nut 110 to move the adjusting nut 110 down to tighten the sliding cylinder 108, so that the clamping block 109 cooperates with the fixing block 107. Clamp the aluminum square tube 101. When disassembling, twist the adjusting nut 110 to move upward, slide the sliding cylinder 108 upward, drive the clamping block 109 to move upward, and then slide the fixing block 107 along the internal channel of the aluminum square tube 101 to take it out; the connecting assembly 105 is detachably connected to the aluminum square tube 101. Even if the aluminum square tube 101 is damaged and scrapped, the connecting assembly 105 can still be used for another aluminum square tube 101 and will not be scrapped together, thereby avoiding cost waste. It should be noted that since the aluminum square tube 101 is wavy, the fixing block 107 and the clamping block 109 cannot be displaced along the length direction of the aluminum square tube 101 after they are clamped at the crest or trough of the aluminum square tube 101, so the clamping is relatively stable.

[0030] The rod body 111 is fixedly connected to the fixed block 107, and is slidably connected to the sliding cylinder 108, and passes through the sliding cylinder 108; the two guide blocks 112 are respectively fixedly connected to the rod body 111, and are respectively slidably connected to the sliding cylinder 108, and are respectively located at the sides of the rod body 111. The bottom of the rod body 111 is fixed with the fixed block 107, and the upper half has a section of thread for threading the adjusting nut 110. The sliding cylinder 108 has a sliding groove adapted to the two guide blocks 112. The two guide blocks 112 make the sliding cylinder 108 only slide up and down, so that the clamping block 109 can only move up and down along the rod body 111, and is always aligned with the fixed block 107.

[0031] Secondly, the fixing plate 113 is located above the aluminum square tube 101; the plurality of expansion bolts 114 all pass through the fixing plate 113; the hanging plate 115 is fixedly connected to the fixing plate 113 and is located at the bottom of the fixing plate 113; the upper docking block 116 is fixedly connected to the hanging plate 115 and is located at the bottom of the hanging plate 115; the upper docking block 116 has two insertion holes 117. The fixing plate 113 is fixed to the top of the wall by the plurality of expansion bolts 114, and then the upper docking block 116 is supported by the hanging plate 115, and the upper docking block 116 has an engagement cavity.

[0032] Meanwhile, the lower docking block 118 is located below the upper docking block 116; the two plug blocks 119 are respectively fixedly connected to the lower docking block 118 and are respectively located at the bottom of the lower docking block 118. The lower docking block 118 is adapted to the engagement cavity of the upper docking block 116, the height of the engagement cavity is greater than the thickness of the lower docking block 118, and the two plug blocks 119 are adapted to the two plug holes 117, so when docking, the lower docking block 118 is inserted into the engagement cavity of the upper docking block 116, and then the lower docking block 118 is released, and the two plug blocks 119 are aligned and inserted into the two plug holes 117, and the docking is completed.

[0033] In addition, the U-shaped plate 120 is fixedly connected to the rod body 111 and is located at the top of the rod body 111; the telescopic screw 121 is fixedly connected to the lower docking block 118 and passes through the U-shaped plate 120; the upper nut 122 is threadedly connected to the telescopic screw 121 and is located at one side of the telescopic screw 121; the lower nut 123 is threadedly connected to the telescopic screw 121 and is located at one side of the telescopic screw 121. The telescopic screw 121 can be telescopically adjusted on the U-shaped plate 120 by the upper nut 122 and the lower nut 123, thereby changing the overall length of the U-shaped plate 120 and the telescopic screw 121 to achieve length adjustment.

[0034] The present embodiment describes a ceiling installation structure of an irregular aluminum square tube shape, wherein the upper docking component 102 is fixed to the top of the wall, and the lower docking component 103 is adapted to the upper docking component 102, and can be docked and fixed with each other to achieve a detachable connection; the telescopic component 104 can adjust its own length to adapt to the change of the shape of the aluminum square tube 101, and can also adjust the hoisting height of the aluminum square tube 101 and the height of the lower docking component 103; the aluminum square tube 101 is wavy, with crests and troughs, and the crests The connecting components 105 are arranged at the wave troughs; after the multiple connecting components 105 are connected to the aluminum square tube 101, the multiple lower docking components 103 are adjusted to the same horizontal plane through the multiple telescopic components 104, and then the multiple lower docking components 103 and the multiple upper docking components 102 can be docked, and the aluminum square tube 101 can be hoisted to the top of the wall; the clamping block 109 is slidably arranged on the mounting rod 106 through the sliding cylinder 108, and the length of the fixing block 107 is the same as that of the The width of the aluminum square tube 101 is adapted; when connecting the aluminum square tube 101, the fixing block 107 is slid from the opening on one side of the aluminum square tube 101 to the crest or trough of the aluminum square tube 101, and then the sliding cylinder 108 is slid down to drive the clamping block 109 to move down, and the aluminum square tube 101 is slightly clamped with the fixing block 107, and then the adjusting nut 110 is screwed to make the adjusting nut 110 move down to tighten the sliding cylinder 108, so that the clamping block 109 cooperates with the The fixing block 107 clamps the aluminum square tube 101. When disassembling, the adjusting nut 110 is screwed upward, the sliding cylinder 108 is slid upward, and the clamping block 109 is driven to move upward, and then the fixing block 107 is slid along the internal channel of the aluminum square tube 101 and taken out; the connecting assembly 105 is detachably connected to the aluminum square tube 101. Even if the aluminum square tube 101 is damaged and scrapped, the connecting assembly 105 can still be used for another aluminum square tube 101 and will not be scrapped together, thereby avoiding cost waste. It should be noted that since the aluminum square tube 101 is wavy, the fixing block 107 and the clamping block 109 cannot be displaced along the length direction of the aluminum square tube 101 after they are clamped at the crest or trough of the aluminum square tube 101, so the clamping is relatively stable.

[0035] The second embodiment of the present application is:

[0036] Based on the first embodiment, please refer to Figure 7-Figure 8 The irregular aluminum square tube-shaped ceiling installation structure provided by the present invention also includes a plurality of fastening components 201; the fastening components 201 include hand screws 202 and abutment plates 203.

[0037] The plurality of abutting assemblies 201 are respectively arranged on the plurality of upper docking blocks 116. The lower docking block 118 is inserted into the engagement cavity of the upper docking block 116, and after the two plug blocks 119 are inserted into the two insertion holes 117, the abutting assemblies 201 are used to abut the lower docking block 118, so that the lower docking block 118 cannot move upward and drive the two plug blocks 119 to move out of the two insertion holes 117, so that the docking is more stable.

[0038] The hand screw 202 is threadedly connected to the upper docking block 116 and passes through the upper docking block 116; the abutment plate 203 is rotatably connected to the hand screw 202 and is located on one side of the hand screw 202. The lower docking block 118 is inserted into the engagement cavity of the upper docking block 116, and after the two plug blocks 119 are inserted into the two insertion holes 117, the hand screw 202 is turned to drive the abutment plate 203 to move downward to abut the lower docking block 118, so that the lower docking block 118 cannot move upward and drive the two plug blocks 119 to move out of the two insertion holes 117, so that the docking is more stable.

[0039] The present embodiment describes an irregular aluminum square tube-shaped ceiling installation structure, wherein the lower docking block 118 is inserted into the meshing cavity of the upper docking block 116, and after the two plug blocks 119 are inserted into the two insertion holes 117, the hand screw 202 is turned to drive the abutment plate 203 to move downward to abut the lower docking block 118, so that the lower docking block 118 cannot move upward to drive the two plug blocks 119 to move out of the two insertion holes 117, thereby making the docking more stable.

[0040] The third embodiment of the present application is:

[0041] Based on the second embodiment, please refer to Figure 9-10 The present invention provides an irregular aluminum square tube-shaped ceiling installation structure, which further includes a plurality of constraint components 301 ; the constraint components 301 include a constraint tube 302 and a constraint rod 303 .

[0042] The plurality of constraint components 301 are respectively located at the sides of the plurality of telescopic screws 121. The constraint components 301 are used to constrain the telescopic screws 121 to prevent the telescopic screws 121 from rotating during telescopic adjustment, thereby driving the lower docking block 118 to rotate.

[0043] The constraint cylinder 302 is fixedly connected to the U-shaped plate 120 and is located on one side of the U-shaped plate 120; the constraint rod 303 is fixedly connected to the lower docking block 118 and is slidably connected to the constraint cylinder 302 and passes through the constraint cylinder 302. The constraint cylinder 302 is vertically downward and is used to guide the constraint rod 303. The constraint rod 303 guides the lower docking block 118, so that the telescopic screw 121 can only be telescopically adjusted and cannot rotate, thereby preventing the lower docking block 118 from rotating.

[0044] In the ceiling installation structure of irregular aluminum square tube shape described in this embodiment, the constraint tube 302 is vertically downward, used to guide the constraint rod 303, and the constraint rod 303 guides the lower docking block 118, so that the telescopic screw rod 121 can only be telescopically adjusted and cannot rotate, thereby preventing the lower docking block 118 from rotating. The constraint rod 303 will not affect the docking of the lower docking block 118 with the upper docking block 116.

[0045] What is disclosed above is only one or more preferred embodiments of the present application, and cannot be used to limit the scope of rights of the present application. Ordinary technicians in this field can understand that all or part of the processes of implementing the above embodiments and equivalent changes made according to the claims of the present application are still within the scope covered by the present application.

Claims

1. A ceiling installation structure with irregular aluminum square tube shape, characterized by: It includes an aluminum square tube, a plurality of upper docking components, a plurality of lower docking components, a plurality of telescopic components and a plurality of connecting components; A plurality of upper docking assemblies are respectively located above the aluminum square tube; a plurality of lower docking assemblies are respectively located below the plurality of upper docking assemblies; a plurality of telescopic assemblies are respectively arranged at the bottom of a plurality of lower docking assemblies; a plurality of connecting assemblies are respectively arranged at the bottom of a plurality of telescopic assemblies; the connecting assembly comprises a mounting rod, a fixed block, a sliding cylinder, a clamping block and an adjusting nut; the mounting rod is arranged at the bottom of the telescopic assembly; the fixed block is fixedly connected to the mounting rod and is located at the bottom of the mounting rod; the sliding cylinder is slidably connected to the mounting rod and is sleeved on the mounting rod; the clamping block is fixedly connected to the sliding cylinder and is penetrated by the sliding cylinder; the adjusting nut is threadedly connected to the mounting rod and is located on one side of the mounting rod; The mounting rod comprises a rod body and two guide blocks; the rod body is fixedly connected to the fixing block, and is slidably connected to the sliding cylinder and passes through the sliding cylinder; the two guide blocks are respectively fixedly connected to the rod body, and are respectively slidably connected to the sliding cylinder, and are respectively located on the sides of the rod body; The upper docking assembly includes a fixing plate, a plurality of expansion bolts, a hanging plate and an upper docking block; the fixing plate is located above the aluminum square tube; the plurality of expansion bolts all pass through the fixing plate; the hanging plate is fixedly connected to the fixing plate and is located at the bottom of the fixing plate; the upper docking block is fixedly connected to the hanging plate and is located at the bottom of the hanging plate; the upper docking block has two plug holes; The lower docking assembly comprises a lower docking block and two plug-in blocks; the lower docking block is located below the upper docking block; the two plug-in blocks are respectively fixedly connected to the lower docking block and are respectively located at the bottom of the lower docking block; The telescopic assembly includes a U-shaped plate, a telescopic screw, an upper nut and a lower nut; the U-shaped plate is fixedly connected to the rod body and is located at the top of the rod body; the telescopic screw is fixedly connected to the lower docking block and passes through the U-shaped plate; the upper nut is threadedly connected to the telescopic screw and is located on one side of the telescopic screw; the lower nut is threadedly connected to the telescopic screw and is located on one side of the telescopic screw.

2. The irregular aluminum square tube ceiling installation structure according to claim 1, characterized in that: The irregular aluminum square tube-shaped ceiling installation structure further includes a plurality of tightening components; the plurality of tightening components are respectively arranged on the plurality of upper docking blocks.

3. The irregular aluminum square tube ceiling installation structure according to claim 2, characterized in that: The tightening assembly includes a hand screw and a resisting plate; the hand screw is threadedly connected to the upper docking block and passes through the upper docking block; the resisting plate is rotationally connected to the hand screw and is located on one side of the hand screw.

Citation Information

Patent Citations

  • Ceiling installation components and construction methods applied to the installation of corrugated aluminum square tube ceilings

    CN109184064B

  • Suspended ceiling installation component and construction method applied to waveform aluminum square tube suspended ceiling installation

    CN109184064A

  • U-shaped double-curved-surface aluminum square tube clamp type mounting structure

    CN113931372A