CN214575047U - Ceiling with micro-staggered structure and applied structure - Google Patents
Ceiling with micro-staggered structure and applied structure Download PDFInfo
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- CN214575047U CN214575047U CN202023164257.0U CN202023164257U CN214575047U CN 214575047 U CN214575047 U CN 214575047U CN 202023164257 U CN202023164257 U CN 202023164257U CN 214575047 U CN214575047 U CN 214575047U
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Abstract
The utility model relates to the processing and manufacturing field of household suspended ceilings, the existing zigzag suspended ceiling has more parts and is complex to assemble, the utility model provides a zigzag structure and a suspended ceiling using the structure, wherein the zigzag structure comprises a first connecting piece and a second connecting piece which are horizontally arranged, and a second panel which is positioned between the two connecting pieces, the horizontal plane where the first connecting piece is positioned is lower than the horizontal plane where the second connecting piece is positioned; the second panel is provided with flanges on two opposite side edges, and the flanges on the two side edges are positioned on different horizontal planes; the second panel is hung on the first connecting piece and the second connecting piece through flanging racks or hooks on two sides; the height difference is formed by the height difference of the two side edges of the second panel, and the higher side edge of the second panel replaces the original vertical plate, so that the purpose of simplifying the structure is achieved, the assembly process is simplified, and the assembly efficiency is improved.
Description
Technical Field
The utility model relates to a processing and manufacturing field of domestic furred ceiling, concretely relates to furred ceiling of wrong structure and applied this structure a little.
Background
Along with the improvement of the aesthetic value of people, higher requirements are also put forward on the diversification of the integrated suspended ceiling in home decoration. Therefore, the square suspended ceiling is formed, the second panel of the suspended ceiling is not laid on the plane with the same height, but is laid on the multistage step surface formed between the peripheral wall surfaces of a room and the center of the room, and then the light irradiation is assisted, so that the attractiveness is greatly improved.
This kind of furred ceiling along the multistage step structure's of wall formation all around also is called the shape furred ceiling of returning, and the multistage structure of the shape furred ceiling that returns, and the mistake structure a little of wherein every grade all comprises one-level panel, fossil fragments (section bar), riser and second grade panel. The number of parts is large, so that the process is complicated during assembly.
Therefore, a micro-staggered structure with a simplified structure and a suspended ceiling applying the structure are urgently needed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that overcome the complicated defect of the wrong structure a little of above-mentioned current furred ceiling, provide the furred ceiling of wrong structure a little and applied this structure that the structure retrencies.
In order to achieve the above object, the present invention provides a micro-staggered structure, which includes a first connecting member and a second connecting member horizontally disposed, and a second panel located between the two connecting members, wherein the horizontal plane of the first connecting member is lower than the horizontal plane of the second connecting member; the second panel is provided with flanges on two opposite side edges, and the flanges on the two side edges are positioned on different horizontal planes; the second panel is erected on the first connecting piece and the second connecting piece through turned-up edges on two sides.
The utility model discloses further preferred scheme does: the turned-over edge is turned inwards or outwards.
The utility model discloses further preferred scheme does: the second panel is a plane plate; during assembly, the flat panel is horizontally disposed on the ceiling.
The utility model discloses further preferred scheme does: the length of one side edge is greater than that of the other side edge in two opposite side edges of the second panel; or the height of one side edge is higher than that of the other side edge in two opposite side edges of the second panel.
The utility model discloses further preferred scheme does: the second panel is a plane plate; when the device is assembled, an included angle is formed between the plane plate and the horizontal plane and ranges from 20 degrees to 70 degrees.
The utility model discloses further preferred scheme does: the sum of included angles formed between the second panel and the two side edges is two hundred and seventy degrees.
The utility model discloses further preferred scheme does: the first connecting piece is a sideline which is arranged on the wall surface; or the first connecting piece is a first section bar, and the first section bar is hung below the ceiling through the screw rod and a section bar hook at the tail end of the screw rod; or the first connecting piece is a vertical plate, the flanging of the second panel is erected at the upper end of the vertical plate and is fastened through a screw, the lower end of the vertical plate is fixed on the second profile, and the second profile is hung below the ceiling through a screw rod and a profile hook at the tail end of the screw rod.
The utility model discloses further preferred scheme does: the second connecting piece is a first section bar, and the first section bar is hung below the ceiling through a screw rod and a section bar hook at the tail end of the screw rod; or the second connecting piece is a second profile, and the second profile is hung below the ceiling through the screw rod and a profile hook at the tail end of the screw rod.
The utility model provides a shape furred ceiling returns in the second aspect, include as in any one of the first aspect a little wrong structure.
To sum up, the utility model discloses following beneficial effect has: firstly, a height difference is formed by the difference of the heights of the two side edges of the second panel, the higher side edge of the second panel replaces the original vertical plate, and a section with a larger size is omitted, so that the purpose of simplifying the structure is achieved, the assembly process is simplified, and the assembly efficiency is improved; secondly, a flanging connecting structure is adopted, and the flanging is erected or hung on the connecting piece from top to bottom during assembly, so that the assembly efficiency is improved; the flanging is of a prism structure and extends along the length or width direction of the second panel, so that the strength of the panel can be enhanced, and the bearing capacity is improved; the second panel has two structures, is matched with the second section bar and other connecting pieces, has various combinations, can form micro-wrong structural styles of various styles, and meets the aesthetic value and the selection of different users; and fifthly, the structure is simplified, the production and the manufacture can be facilitated, and the production cost is saved.
Drawings
FIG. 1 is a schematic structural view of example 1.
Fig. 2 is an enlarged view at a in fig. 1.
Fig. 3 is a schematic structural view of the second panel described in embodiment 1.
Fig. 4 is a schematic structural view of the second panel described in embodiment 2.
Fig. 5 is a structural schematic diagram of the clip-shaped suspended ceiling described in embodiment 3.
Fig. 6 is a structural schematic diagram of the clip-shaped suspended ceiling described in embodiment 4.
Fig. 7 is a structural schematic diagram of the clip-shaped suspended ceiling described in embodiment 5.
Fig. 8 is a structural schematic diagram of the clip-shaped suspended ceiling described in embodiment 6.
Fig. 9 is a schematic structural view of the clip-shaped suspended ceiling described in embodiment 7.
Fig. 10 is a structural schematic diagram of the clip-shaped suspended ceiling described in embodiment 8.
Wherein: 100. a first connecting member; 110. a hemming line; 200. a second panel; 300. a second connecting member; 400. a bolt; 410. a hook section bar; 420. a first profile; 500. a first panel; 600. a second profile; 700. a vertical plate.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications without inventive contribution to the present embodiment as required after reading the present specification, but all of them are protected by patent law within the scope of the claims of the present invention.
Example 1:
as shown in fig. 1 to 3, the present embodiment provides a micro-staggered structure including a first connector 100 and a second connector 300 horizontally disposed, and a second panel 200(200a, 200b) disposed between the two connectors. The first connector 100 and the second connector 300 are both suspended below the ceiling (indirectly) by means of bolts 400, said first connector 100 being located at a lower level than said second connector 300. The second panel 200 is provided with a flange on two opposite sides, and the flanges on the two sides are located on different horizontal planes. The second panel 200 is hooked or bridged on the first connector 100 and the second connector 300 by flanges at both sides.
In this embodiment, the first connector 100 is a border wire 110, the second connector 300 is a first profile 420, and the first profile 420 is suspended below the ceiling by a bolt 400 and a hook profile 410 at the end of the bolt 400 (see fig. 2). The second panel 200 is a flat plate horizontally disposed below the ceiling, and the flanges at the side edges are both turned inside edges (or both turned outside edges or one turned inside edge and one turned outside edge, and the specific structure is adapted according to the types of the first connecting member 100 and the second connecting member 300). In the two opposite sides of the second panel 200, the length of one side is greater than the length of the other side (see fig. 3), and the arrangement is such that the plane of the flange on the longer side is higher than the plane of the flange on the shorter side. The side of the second panel 200 with the shorter length is overlapped on the edge folding line 110 on the wall surface, and the side of the second panel 200 with the longer length is overlapped (or hooked) on the first section bar 420 through the inward flanging, and is fastened together through the screw.
Example 2:
as shown in fig. 4, the second panel 200 of the present embodiment shows another structure (the first connecting member 100 and the second connecting member 300 are omitted), and the second panel 200 of the present embodiment is different from the second panel 200 of embodiment 1 in that an included angle (i.e., the plane plate is an inclined plane) is formed between the second panel 200 (the plane plate) and the horizontal plane, and the included angle is between 20 degrees and 70 degrees, and the present embodiment is described by taking 35 degrees as an example, so that the height of one side edge is higher than the height of the other side edge in two opposite side edges of the second panel 200. The sum of the included angles formed between the second panel 200 and the two side edges is two hundred and seventy degrees, which is detailed as < B and < C in fig. 4.
Example 3:
as shown in fig. 5, a first kind of zigzag suspended ceiling is shown, which includes a slightly staggered structure and a first panel 500, the slightly staggered structure of the zigzag suspended ceiling adopts the slightly staggered structure of embodiment 1, the second panel 200 is a horizontal plane, and the side edges of the first panel 500 are lapped on the first section bar 420 and fastened by screws.
Example 4:
as shown in fig. 6, a second zigzag suspended ceiling is shown, and the slightly staggered structure of the zigzag suspended ceiling is different from that adopted in embodiment 1 in that in the slightly staggered structure of the present embodiment, the first connecting member 100 adopts a bead 110 with a lace, the second connecting member 300 adopts a second profile 600, a vertical upright plate 700 is arranged between the second profile 600 and the first panel 500, the lower end of the upright plate 700 is fastened with the second profile 600 by screws, and the side edge of the first panel 500 is erected at the upper end of the upright plate 700 and is fastened with the screws. The rest of the structure and the features are the same as those of embodiment 1, and are not described in detail here.
Example 5:
as shown in fig. 7, a third zigzag suspended ceiling is shown, which includes a slightly staggered structure and a first panel 500, the slightly staggered structure of the zigzag suspended ceiling adopts the slightly staggered structure of embodiment 2, the second panel 200 is an inclined surface, and the side edges of the first panel 500 are lapped on the first section bar 420 and fastened by screws.
Example 6:
as shown in fig. 8, a fourth type of drop ceiling is shown, which includes two staggered micro-structures and a first panel 500 arranged in series. The second panel 200 in the first micro staggered structure is a horizontal plane, the first connector 100 is a bead line 110, and the second connector 300 is a first profile 420; the second panel 200 in the second micro staggered structure is an inclined plane, the first connecting piece 100 is a first section 420 in the first micro staggered structure, the second connecting piece 300 is a second section 600, the second section 600 is provided with a vertical plate 700, and the side edge of the first panel 500 is erected at the upper end of the vertical plate 700 and is fastened with the vertical plate 700 through screws.
It should be noted that in this embodiment, on the opposite two side edges of the second panel 200 in the second minor-staggered structure, one is an outward flange, and the other is an inward flange. The flanging is lapped on the first section bar 420, and the flanging is hooked on the second section bar 600.
Example 7:
as shown in fig. 9, a fifth center-hat suspended ceiling is shown, which includes two staggered micro-structures and a first panel 500 arranged in series. The second panel 200 in the first staggered configuration is a horizontal plane, the first connector 100 is a bead 110, and the second connector 300 is a second profile 600; the second panel 200 in the second micro staggered structure is an inclined plane, the first connecting piece 100 is a vertical plate 700, the lower end of the vertical plate 700 is connected with the second section bar 600 in the first micro staggered structure, the second connecting piece 300 in the second micro staggered structure is a first section bar 420, and the side edge of the first panel 500 is fastened with the first section bar 420 through screws. The first micro-error structure is located below the second micro-error structure.
Example 8:
as shown in fig. 10, a sixth type of drop ceiling is shown, which also includes two staggered micro-structures and a first panel 500 arranged in series. The two micro-staggered structures in embodiment 8 are different from the two micro-staggered structures in embodiment 7 in that the two micro-staggered structure types in this embodiment are in reverse order to the two micro-staggered structures in embodiment 8, and the flanging directions on the second panel 200 (inclined plane) in this embodiment are the same.
In the first staggered structure of the present embodiment, the second panel 200 is an inclined plane, the first connecting member 100 is the edge-closing line 110, and the second connecting member 300 is the second profile 600; in the second staggered structure, the second panel 200 is a horizontal plane, the first connecting member 100 is a vertical plate 700, the second connecting member 300 is a first profile 420, and the side of the first panel 500 is fastened to the first profile 420 by screws. The lower end of the vertical plate 700 in the second micro-staggered structure is connected with the second section bar 600 in the first micro-staggered structure through screws. The first micro-error structure is located below the second micro-error structure.
It should be noted that in each of the above embodiments, the second profile 600 and the first profile 420 are both suspended below the ceiling by the bolt 400 and the profile hook at the end of the bolt 400. The first flat panel may be suspended below the ceiling by the bolt 400 and the first profile 420 or suspended below the ceiling by the bolt 400, the hooking profile 410 and the first profile 420. In order to enhance the aesthetic appearance, a decorative line or a decorative line with a light strip can be added on the second profile 600 or the first profile 420, which will not be described in detail herein.
In addition, in the present embodiment, when the second panel 200 adopts a horizontal structure, the panel shape is rectangular, and when the second panel 200 adopts an inclined structure, the panel shape is isosceles trapezoid.
Claims (9)
1. The micro-staggered structure comprises a first connecting piece, a second connecting piece and a second panel, wherein the first connecting piece and the second connecting piece are horizontally arranged, and the second panel is positioned between the two connecting pieces; the second panel is provided with flanges on two opposite side edges, and the flanges on the two side edges are positioned on different horizontal planes; the second panel is hung on the first connecting piece and the second connecting piece through flanging racks or hooks on two sides.
2. The micro-malposition structure of claim 1 wherein the flanges are turned in or out.
3. The micro-error structure of claim 1, wherein the second panel is a planar panel; during assembly, the flat panel is horizontally disposed on the ceiling.
4. The micro-fault structure of claim 1, wherein the length of one of the two opposite sides of the second panel is greater than the length of the other side; or the height of one side edge is higher than that of the other side edge in two opposite side edges of the second panel.
5. The micro-error structure of claim 1, wherein the second panel is a planar panel; when the device is assembled, an included angle is formed between the plane plate and the horizontal plane and ranges from 20 degrees to 70 degrees.
6. The micro-error structure of claim 5, wherein the sum of the included angles formed between the second panel and the two side edges is two hundred and seventy degrees.
7. The micro-staggered structure of claim 1, wherein the first connectors are sidelines, and the sidelines are arranged on a wall surface;
or the first connecting piece is a first section bar, and the first section bar is hung below the ceiling through the screw rod and a section bar hook at the tail end of the screw rod;
or the first connecting piece is a vertical plate, the flanging of the second panel is erected at the upper end of the vertical plate and is fastened through a screw, the lower end of the vertical plate is fixed on the second profile, and the second profile is hung below the ceiling through a screw rod and a profile hook at the tail end of the screw rod.
8. The micro-staggered structure of claim 1, wherein the second connecting piece is a first profile, and the first profile is hung below a ceiling through a screw rod and a profile hook at the tail end of the screw rod;
or the second connecting piece is a second profile, and the second profile is hung below the ceiling through the screw rod and a profile hook at the tail end of the screw rod.
9. A suspended ceiling comprising the micro-staggered structure of any of claims 1 to 7.
Applications Claiming Priority (2)
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CN202021661829 | 2020-08-11 | ||
CN2020216618293 | 2020-08-11 |
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CN202011546834.4A Pending CN112681600A (en) | 2020-08-11 | 2020-12-24 | Ceiling with micro-staggered structure and applied structure |
CN202023164257.0U Active CN214575047U (en) | 2020-08-11 | 2020-12-24 | Ceiling with micro-staggered structure and applied structure |
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CN202011546834.4A Pending CN112681600A (en) | 2020-08-11 | 2020-12-24 | Ceiling with micro-staggered structure and applied structure |
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CN113684960A (en) * | 2021-08-16 | 2021-11-23 | 中建六局(天津)绿色建筑科技有限公司 | Movable aluminum plate top surface construction process |
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RU2496953C2 (en) * | 2007-06-08 | 2013-10-27 | Армстронг Уорлд Индастриз, Инк. | Suspended system |
CN201433539Y (en) * | 2009-05-26 | 2010-03-31 | 亨特道格拉斯工业(中国)有限公司 | Metal composite plate with corrugated core and high vertical edge |
CN205935359U (en) * | 2016-07-05 | 2017-02-08 | 李新平 | Printing opacity arch suspended ceiling's mounting structure |
CN106121121A (en) * | 2016-08-31 | 2016-11-16 | 中山市施丹建材有限公司 | A kind of Combined type suspended ceiling |
CN108166666A (en) * | 2017-12-21 | 2018-06-15 | 浙江楚乔电气有限公司 | A kind of multiduty beam structure |
CN208815747U (en) * | 2018-08-21 | 2019-05-03 | 上海圣峰建材科技股份有限公司 | A kind of micro- wrong second level beam |
CN110005116A (en) * | 2019-03-29 | 2019-07-12 | 上海全筑建筑装饰集团股份有限公司 | A kind of installation component and installation method for fabricated ladder furred ceiling |
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