CN211037513U - Suspended ceiling structure - Google Patents

Suspended ceiling structure Download PDF

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Publication number
CN211037513U
CN211037513U CN201822026710.8U CN201822026710U CN211037513U CN 211037513 U CN211037513 U CN 211037513U CN 201822026710 U CN201822026710 U CN 201822026710U CN 211037513 U CN211037513 U CN 211037513U
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China
Prior art keywords
plate
edge
wall
suspended ceiling
closing
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Active
Application number
CN201822026710.8U
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Chinese (zh)
Inventor
丁欣欣
丁泽成
王文广
周东珊
钟诚
薛猛
步挺
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Zhejiang Yasha Decoration Co Ltd
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Zhejiang Yasha Decoration Co Ltd
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Priority to CN201822026710.8U priority Critical patent/CN211037513U/en
Application granted granted Critical
Publication of CN211037513U publication Critical patent/CN211037513U/en
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Abstract

The utility model discloses a suspended ceiling structure, which comprises a suspended ceiling panel, a side folding plate module and a wall body; a wall body edge sealing piece is arranged on the wall body; the edge-closing plate module comprises an edge-closing transverse plate, an edge-closing vertical plate and a fastener; the fastener comprises a mounting plate, a pressing plate and a connecting plate; the pressing plate comprises a pressing plate main body and a pressing plate upwarping end; the mounting plate is detachably mounted on the edge folding transverse plate, and the edge folding transverse plate is detachably mounted on the ceiling panel; the pressing plate main body is at least partially pressed on the wall edge sealing piece. It inserts in the top of furred ceiling panel through will receiving the slope earlier of sideboard module, then will receive the sideboard diaphragm and take earlier on the furred ceiling panel, then push towards the wall body side and receive the sideboard module, will receive the distance between sideboard riser and the wall body and adjust suitable back, through the fastener chucking on the wall body banding piece of wall body, will receive the sideboard diaphragm again and fix on the furred ceiling panel to the completion is received the installation of limit and furred ceiling, has improved installation effectiveness and installation quality.

Description

Suspended ceiling structure
Technical Field
The utility model relates to an interior decoration technical field especially relates to a furred ceiling structure.
Background
There is a grade of falling molding in traditional gypsum board furred ceiling, for pleasing to the eye, also consider paint expand with heat and contract with the fracture, design a grade of falling between wall and top panel. A tuning plate is disposed between a wall surface and a ceiling panel in an industrial fabricated suspended ceiling. But the size of current regulating plate all is fixed, when the construction, only when leaving specific clearance between with top panel and the wall, just can adorn the regulating plate between top panel and wall, and the installation standard requires highly, and the installation quality is not controlled well.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a make things convenient for furred ceiling structure of furred ceiling installation.
The technical scheme of the utility model provides a suspended ceiling structure, which comprises a suspended ceiling panel, a side board module and a wall body;
a wall body edge sealing piece is arranged on one side, facing the ceiling panel, of the wall body;
the edge closing plate module comprises an edge closing transverse plate, an edge closing vertical plate and a fastener arranged on the edge closing transverse plate;
the edge-closing vertical plate is fixedly arranged below the edge-closing transverse plate and extends downwards;
the fastener comprises a mounting plate, a pressing plate and a connecting plate connected between the mounting plate and the pressing plate;
the mounting plate and the pressing plate are respectively positioned on two sides of the connecting plate, and the pressing plate is positioned above the mounting plate;
the pressing plate comprises a pressing plate main body and a pressing plate upwarping end, one end of the pressing plate main body is connected with the connecting plate, and the pressing plate upwarping end is connected to the other end of the pressing plate main body;
the pressure plate main body gradually extends downwards in the direction from the mounting plate to the pressure plate, and the upwarping end of the pressure plate gradually extends upwards in an inclined manner;
the mounting plate is detachably mounted on the edge folding transverse plate, and the edge folding transverse plate is detachably mounted on the ceiling panel;
the pressing plate main body is at least partially pressed on the wall body edge sealing piece.
Furthermore, the upwarping end of the pressure plate is arc-shaped.
Further, in a direction from bottom to top, the connecting plate extends obliquely toward the platen side;
the connecting plate with be formed with the obtuse angle contained angle between the mounting panel, the connecting plate with be formed with the acute angle contained angle between the clamp plate main part.
Furthermore, a flexible sealing plate is arranged between the edge closing transverse plate and the wall body edge sealing piece.
Furthermore, a leveling plate is arranged on the wall body, and the wall body edge sealing piece is installed on the leveling plate.
Furthermore, a vertical plate connecting end extends towards the wall body side from the lower end of the edge-closing vertical plate;
the vertical plate connecting end is parallel to the edge-closing transverse plate, and a cushion block is arranged on the vertical plate connecting end;
a wall connecting piece is arranged on the wall above the connecting end of the vertical plate;
the cushion block is connected between the wall body connecting piece and the vertical plate connecting end.
Furthermore, the top of furred ceiling panel is provided with hangs fossil fragments hang and be provided with the furred ceiling frame on the fossil fragments the bottom of furred ceiling frame is provided with the installation base, the furred ceiling panel is connected through the adhesive layer the installation base is last.
Furthermore, a vertical plate hollow-out part is arranged in the edge-closing vertical plate.
Furthermore, the wall edge banding comprises an edge banding vertical plate used for being connected with the wall and an edge banding transverse plate used for being in contact with the fastener;
the edge banding transverse plates and the edge banding vertical plates are connected in an L shape, and the edge banding transverse plates extend towards the side of the ceiling panel;
the clamp plate main part at least partially compresses tightly on the banding piece diaphragm, the clamp plate upwarps the end and at least partially is located the upside of banding piece diaphragm.
Furthermore, edge banding spare fretwork portion is provided with respectively in the edge banding spare diaphragm with the edge banding spare riser.
By adopting the technical scheme, the method has the following beneficial effects:
the utility model provides a suspended ceiling structure inserts the top at the furred ceiling panel through will receiving the earlier slope of sideboard module, then will receive the limit diaphragm and take earlier on the furred ceiling panel, then push towards the wall body side and receive the sideboard module, will receive the distance between sideboard riser and the wall body and adjust suitable back, through the fastener chucking on the wall body banding piece of wall body, will receive the limit diaphragm again and fix on the furred ceiling panel to accomplish the installation of receiving limit and furred ceiling, improved installation effectiveness and installation quality.
The utility model provides a furred ceiling structure can the modular production, and the on-the-spot equipment has avoided the dirty indiscriminate poor condition to appear in the job site.
Drawings
Fig. 1 is a schematic view of a suspended ceiling structure according to an embodiment of the present invention;
FIG. 2 is a schematic structural view of an edge-closing plate module;
FIG. 3 is a schematic view of a fastener;
FIG. 4 is a schematic structural view of a wall edge sealing member;
FIG. 5 is a schematic view of the fastener being fastened to the edge banding of the wall;
FIG. 6 is a schematic view of the connection of the hanger grid, ceiling framework and ceiling panel;
FIG. 7 is a schematic view of the positioning of the edge panel module under the ceiling panel after installation of the ceiling panel;
FIG. 8 is a schematic view of an edge strip module inserted from a gap between a ceiling panel and a wall;
FIG. 9 is a schematic view of the edge-closing plate module being pushed to the wall side;
fig. 10 is a schematic view of the ceiling structure after installation.
Detailed Description
The following describes the present invention with reference to the accompanying drawings. In which like parts are designated by like reference numerals. It should be noted that the terms "front," "back," "left," "right," "upper" and "lower" used in the following description refer to directions in the drawings, and the terms "inner" and "outer" refer to directions toward and away from, respectively, the geometric center of a particular component.
As shown in fig. 1-5, an embodiment of the present invention provides a ceiling structure, which includes a ceiling panel 1, a side panel module 3 and a wall 2.
A wall edge sealing member 22 is arranged on one side of the wall body 2 facing the suspended ceiling panel 1.
The edge-closing plate module 3 comprises an edge-closing transverse plate 32, an edge-closing vertical plate 31 and a fastener 33 arranged on the edge-closing transverse plate 32.
The edge-closing vertical plate 31 is fixedly arranged below the edge-closing transverse plate 32 and extends downwards.
The fastener 33 includes a mounting plate 331, a pressure plate 332, and a connecting plate 333 connected between the mounting plate 331 and the pressure plate 332.
The mounting plate 331 and the pressing plate 332 are respectively located at both sides of the connecting plate 333, and the pressing plate 332 is located above the mounting plate 331.
The pressure plate 332 includes a pressure plate main body 3321 and a pressure plate upturned end 3322, one end of the pressure plate main body 3321 is connected to the connection plate 333, and the pressure plate upturned end 3322 is connected to the other end of the pressure plate main body 3321.
In a direction along the mounting plate 331 to the platen 332, the platen main body 3321 extends gradually obliquely downward, and the platen upturned end 3322 extends gradually obliquely upward.
The mounting plate 331 is detachably mounted on the edge closing cross plate 32, the edge closing cross plate 32 is detachably mounted on the ceiling panel 1, and the pressing plate main body 3321 is at least partially pressed on the wall edge sealing member 22.
The suspended ceiling structure mainly comprises a suspended ceiling panel 1, a trimming panel module 3 and a wall body 2. The edge-closing plate module 3 is assembled between the suspended ceiling panel 1 and the wall body 2 and can be rapidly assembled.
Specifically, the trimming plate module 3 mainly comprises a trimming transverse plate 32, a trimming vertical plate 31 and a fastener 33. The edge-closing transverse plate 32 is a plate horizontally arranged during installation, and the edge-closing vertical plate 31 is a plate vertically arranged during installation. The fastener 33 is installed on the trimming transverse plate 32.
The edge closing transverse plate 32 is used for sealing the gap between the suspended ceiling panel 1 and the wall body 2. The edge-closing vertical plates 31 are located below the edge-closing transverse plates 32 and adjusted to be away from the wall body 2 by a preset distance, and then the edge-closing vertical plates 31 are connected with the wall body 2 to achieve an encapsulation effect on the wall body 2.
The fastener 33 is mainly assembled by a mounting plate 331, a pressing plate 332, and a connecting plate 333. The connection plate 333 is connected between the mounting plate 331 and the pressure plate 332. In the vertical direction, the pressing plate 332 is located above the mounting plate 331, and the mounting plate 331 and the pressing plate 332 are located on both sides of the connecting plate 333, respectively.
The mounting plate 331 is used for connecting with the edge closing transverse plate 32. The press plate 332 is used to press against the wall closeout 22 to connect the ceiling panel 1 and the wall 2 together.
The buckle 33 is connected by a snap-fit manner, and the pressure plate 332 mainly comprises a pressure plate main body 3321 and a pressure plate upturned end 3322.
One end of the platen main body 3321 is connected to the connection plate 333, and the other end thereof is connected to the platen upturned end 3322. Wherein, the clamp plate main part 3321 sets up in the slope to can realize compressing tightly the function.
Specifically, the platen main body 3321 extends gradually obliquely downward in a direction along from the mounting plate 331 to the platen 332. That is, the pressure plate main body 3321 gradually extends obliquely toward the plane side where the mounting plate 331 is located in the direction from the mounting plate 331 to the pressure plate 332, and can be pressed against the wall binding 22, thereby achieving a clamping function.
The upturned end 3322 of the pressing plate tilts upwards to increase the opening area, so that the wall edge sealing piece 22 can enter the lower part of the pressing plate main body 3321, and the pressing plate main body 3321 is pressed on the wall edge sealing piece 22. Specifically, the platen upturned end 3322 extends gradually obliquely upward in a direction along from the mounting plate 331 to the platen 332. That is, in the direction from the mounting plate 331 to the pressing plate 332, the pressing plate upturned end 3322 gradually extends obliquely toward the side away from the plane where the mounting plate 331 is located, so that the area of the opening is enlarged, and the wall edge banding 9 can enter the lower part of the pressing plate main body 321.
As shown in fig. 7-10, the bead plate module 3 is pre-assembled during assembly.
The ceiling panel 1 is then suspended in a predetermined position with its ends spaced from the wall 2 by a gap 6.
The slope moves up and receives limit board module 3, and the limit diaphragm 32 and the fastener 3 that receive in the limit board module 3 insert from clearance 6 between suspended ceiling panel 1 and the wall body 2 to make and receive limit diaphragm 2 and fastener 3 and be located the top of suspended ceiling panel 1.
Then, the trimming cross plate 32 is placed above the ceiling panel 1.
Then, move receipts limit board module 3 towards wall body 2 side for receive limit diaphragm 32 and fastener 33 and move towards wall body 2 side, the distance between until receiving limit diaphragm 32 and wall body 2 accords with preset requirement, or the distance between receiving limit riser 31 and the wall body 2 accords with preset requirement, and the clearance is 1cm for example. The movement of the edge-receiving plate module 3 is stopped.
In the process of moving towards the wall body 2, the pressing plate main body 3321 of the fastener 3 is at least partially pressed on the wall body edge sealing piece 22, so that the edge-closing transverse plate 32 is connected with the wall body 2 to play a role of edge sealing.
The closeout cross plate 32 is then secured to the ceiling panel 1. The connection may be secured by screws or bolts.
And finally, connecting the lower ends of the edge-closing vertical plates 31 with the wall body 2, installing the wall body decorative plate 7, and finishing the ceiling assembly. The wall decoration plate 7 can be arranged on the surface of the edge-closing vertical plate 31 or can be directly arranged on the surface of the wall body 2.
Therefore, the utility model provides a ceiling structure inserts in the top of furred ceiling panel through will receiving the earlier slope of sideboard module, then will receive the limit diaphragm and take earlier on the furred ceiling panel, then push towards the wall body side and receive sideboard module, will receive the distance between sideboard riser and the wall body and adjust suitable back, through the fastener chucking on the wall body banding piece of wall body, will receive the limit diaphragm again and fix on the furred ceiling panel to accomplish the installation of receiving limit and furred ceiling, improved installation effectiveness and installation quality.
The utility model provides a furred ceiling structure can the modular production, and the on-the-spot equipment has avoided the dirty indiscriminate poor condition to appear in the job site.
Because the clamp plate 332 is pressed on the wall body edge sealing piece 22, when the suspended ceiling panel 1 expands with heat and contracts with cold, the clamp plate main body 3321 can slightly move on the wall body connecting piece 22, so that the requirements of expanding with heat and contracting with cold are met, and the stability of the suspended ceiling can be maintained. Through using this fastener, can realize installing the furred ceiling fast, improve installation effectiveness and installation quality.
Preferably, the mounting plate 331 is a flat plate to facilitate connection with the edge trim cross plate 32. The pressing plate main body 3321 is a flat plate, and is beneficial to being pressed on the wall edge sealing piece 22 through a plane, so that the pressing stability is improved.
Preferably, be provided with the receipts limit fastener 11 of U type on the tip of furred ceiling panel 1, receive the limit to the furred ceiling panel.
Preferably, the mounting plate 331, the connecting plate 333 and the pressing plate 332 are integrally formed, thereby improving structural strength, prolonging service life and facilitating rapid forming.
Preferably, as shown in fig. 3, the upward-warping end 3322 of the pressing plate is arc-shaped, so that on one hand, the area of the inlet is increased, and the wall connecting piece 22 can enter the lower part of the pressing plate main body 3321, and on the other hand, in the moving process, the friction force between the two parts can be reduced through the contact between the arc-shaped surface and the related object, so that the quick moving is facilitated, and the clamping is realized.
Preferably, as shown in fig. 3, the connecting plate 333 is L-shaped and connected to the mounting plate 331, and the connecting plate 333 is L-shaped and connected to the pressing plate 332, so that the rapid forming is facilitated and the pressing function by the pressing plate 332 can be realized.
Preferably, as shown in fig. 3, the connecting plate 333 extends obliquely toward the platen 332 side in the direction from bottom to top.
Specifically, an obtuse included angle is formed between the connecting plate 333 and the mounting plate 331, and an acute included angle is formed between the pressing plate main bodies 3321 of the connecting plate 333, so that the elastic deformation capacity of the pressing plate main bodies 3321 is improved, and the pressing plate main bodies can be pressed on related objects to realize a clamping function.
Preferably, as shown in fig. 2, the closing transverse plate 32 and the closing vertical plate 31 are connected by L-type connecting pieces 35.
The L-type link 35 includes a link cross plate 352 and a link riser 351 connected to the link cross plate 352.
The connecting piece transverse plate 352 is connected with the edge closing transverse plate 32, and the connecting piece vertical plate 351 is connected with the edge closing vertical plate 31.
The vertical panel of arranging during the installation of connecting piece riser 351, the panel that the level was arranged during the installation of connecting piece diaphragm 352, connecting piece diaphragm 352 and connecting piece riser 351 integrated into one piece are L type.
Connecting piece riser 351 is connected with receipts limit riser 31 through the screw, and connecting piece diaphragm 352 is connected with receipts limit diaphragm 32 through the screw, and the convenience will receive the limit diaphragm and receive the limit riser equipment together.
Preferably, as shown in fig. 2, the connecting member horizontal plate 352 and the connecting member vertical plate 351 are respectively provided with a connecting member hollow-out portion 353, and the connecting member hollow-out portion 353 is provided, so that the structural weight is reduced on one hand, and on the other hand, the L type connecting member 35 is favorably extruded and formed, and the L type connecting member 35 is a wood-plastic strip and formed through an extrusion forming process.
Preferably, as shown in fig. 5, a flexible sealing plate 36 is disposed between the edge-closing cross plate 32 and the wall sealing member 22, so as to perform a sealing function and prevent noise from being generated when the edge-closing cross plate 32 moves.
Preferably, as shown in fig. 1, a leveling plate 21 is disposed on the wall 2, and the wall edge sealing member 22 is mounted on the leveling plate 21. The leveling plate 21 is used for leveling the wall surface, and is beneficial to subsequent quick installation. The wall edge sealing piece 22 is connected to the leveling plate 21 through screws, and of course, can also be connected to the leveling plate 21 and the wall 2 through screws, so that the connection stability is improved.
Preferably, as shown in fig. 1-2, riser connecting ends 311 extend from the lower ends of the edgefold risers 31 toward the wall body 2 side. The vertical plate connecting end 311 is parallel to the edge closing transverse plate 32, and a cushion block 34 is arranged on the vertical plate connecting end 311. A wall connector 23 is arranged on the wall 2 above the vertical plate connecting end 311. The spacer 34 is connected between the wall connector 23 and the vertical plate connecting end 311.
Can adjust the height of closing limit riser 31 through cushion 34, conveniently adjust.
The wall attachment member 23 may be of the same construction as the wall closeout 22.
Preferably, as shown in fig. 1 and 6, a hanging keel 4 is arranged above the ceiling panel 1, a ceiling framework 5 is arranged on the hanging keel 4, an installation base 51 is arranged at the bottom of the ceiling framework 5, and the ceiling panel 1 is connected to the installation base 51 through a bonding adhesive layer 12 to complete the hoisting of the ceiling panel 1.
Of course, the ceiling panel 1 may be connected to the ceiling framework 5 by a connector to improve the stability of the connection.
Preferably, as shown in fig. 2, the edge riser 31 has a riser hollow portion 312 therein, and by providing the riser hollow portion 312, on one hand, the structural weight is reduced, and on the other hand, the edge riser 31 is easily extruded. The trimming vertical plate 31 and the trimming transverse plate 32 are respectively made of wood-plastic plates and are molded by a pressure molding process.
Preferably, as shown in fig. 4-5, the wall closeout 22 includes closeout risers 221 for connection to the wall 2 and closeout cross plates 222 for contact with the fastener 33.
The trim cross panel 222 is connected to the trim riser 221 in an L configuration, with the trim cross panel 222 extending toward the ceiling panel 1 side.
The clamp plate body 3321 is at least partially compressed against the closeout cross plate 222 and the clamp plate upturned end 3322 is at least partially positioned above the closeout cross plate 222.
The banding riser 221 is the vertical panel of arranging during the installation, and the banding diaphragm 222 is the panel that the level was arranged during the installation, and banding diaphragm 222 and banding riser 221 integrated into one piece are L types.
When moving receipts limit diaphragm 32 and fastener 33 towards wall 2 side, banding piece diaphragm 222 can get into the below of clamp plate main part 3321 through the below of the upward stick-up end 3322 of clamp plate to make clamp plate main part 3321 compress tightly on banding piece diaphragm 222, realize connecting.
When the furred ceiling panel 1 appears expend with heat and contract with cold, clamp plate main part 3321 can be at the corresponding slight removal of banding spare diaphragm 222 to the adaptation temperature variation has improved the stability of furred ceiling.
Preferably, as shown in fig. 3, the sealer transverse plate 222 and the sealer vertical plate 221 each have a sealer hollowed-out portion 223 therein. Through setting up banding spare fretwork portion 223, having alleviateed structural weight on the one hand, on the other hand does benefit to the extrusion of wall body banding spare 22. The wall edge sealing member 22 is a wood-plastic strip with a folded edge and is formed by an extrusion forming process.
According to the needs, the above technical schemes can be combined to achieve the best technical effect.
What has been described above is merely the principles and preferred embodiments of the present invention. It should be noted that, for those skilled in the art, on the basis of the principle of the present invention, several other modifications can be made, and the protection scope of the present invention should be considered.

Claims (10)

1. A suspended ceiling structure is characterized by comprising a suspended ceiling panel, an edge-closing plate module and a wall body;
a wall body edge sealing piece is arranged on one side, facing the ceiling panel, of the wall body;
the edge closing plate module comprises an edge closing transverse plate, an edge closing vertical plate and a fastener arranged on the edge closing transverse plate;
the edge-closing vertical plate is fixedly arranged below the edge-closing transverse plate and extends downwards;
the fastener comprises a mounting plate, a pressing plate and a connecting plate connected between the mounting plate and the pressing plate;
the mounting plate and the pressing plate are respectively positioned on two sides of the connecting plate, and the pressing plate is positioned above the mounting plate;
the pressing plate comprises a pressing plate main body and a pressing plate upwarping end, one end of the pressing plate main body is connected with the connecting plate, and the pressing plate upwarping end is connected to the other end of the pressing plate main body;
the pressure plate main body gradually extends downwards in the direction from the mounting plate to the pressure plate, and the upwarping end of the pressure plate gradually extends upwards in an inclined manner;
the mounting plate is detachably mounted on the edge folding transverse plate, and the edge folding transverse plate is detachably mounted on the ceiling panel;
the pressing plate main body is at least partially pressed on the wall body edge sealing piece.
2. The suspended ceiling structure of claim 1, wherein the raised end of the pressure plate is curved.
3. The ceiling structure according to claim 1, wherein the connection plate extends obliquely toward the platen side in a direction from bottom to top;
the connecting plate with be formed with the obtuse angle contained angle between the mounting panel, the connecting plate with be formed with the acute angle contained angle between the clamp plate main part.
4. The suspended ceiling structure of claim 1, wherein a flexible sealing plate is disposed between the deckle cross plate and the wall closeout.
5. The suspended ceiling structure of claim 1, wherein a leveling plate is provided on the wall, and the wall seals are mounted on the leveling plate.
6. The suspended ceiling structure of claim 1, wherein riser connection ends extend on lower ends of the closeout risers toward the wall side;
the vertical plate connecting end is parallel to the edge-closing transverse plate, and a cushion block is arranged on the vertical plate connecting end;
a wall connecting piece is arranged on the wall above the connecting end of the vertical plate;
the cushion block is connected between the wall body connecting piece and the vertical plate connecting end.
7. The suspended ceiling structure of claim 1, wherein a hanging keel is arranged above the suspended ceiling panel, a suspended ceiling framework is arranged on the hanging keel, a mounting base is arranged at the bottom of the suspended ceiling framework, and the suspended ceiling panel is connected to the mounting base through an adhesive layer.
8. The suspended ceiling structure of claim 1, wherein the closeout risers have riser cutouts therein.
9. The suspended ceiling structure of claim 1, wherein the wall closeout includes closeout risers for connection to a wall and closeout cross plates for contact with the fastener;
the edge banding transverse plates and the edge banding vertical plates are connected in an L shape, and the edge banding transverse plates extend towards the side of the ceiling panel;
the clamp plate main part at least partially compresses tightly on the banding piece diaphragm, the clamp plate upwarps the end and at least partially is located the upside of banding piece diaphragm.
10. The ceiling structure of claim 9, wherein the closeout cross plates and the closeout risers have closeout cutouts therein, respectively.
CN201822026710.8U 2018-12-04 2018-12-04 Suspended ceiling structure Active CN211037513U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822026710.8U CN211037513U (en) 2018-12-04 2018-12-04 Suspended ceiling structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822026710.8U CN211037513U (en) 2018-12-04 2018-12-04 Suspended ceiling structure

Publications (1)

Publication Number Publication Date
CN211037513U true CN211037513U (en) 2020-07-17

Family

ID=71532138

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822026710.8U Active CN211037513U (en) 2018-12-04 2018-12-04 Suspended ceiling structure

Country Status (1)

Country Link
CN (1) CN211037513U (en)

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