WO2013040841A1 - Panneau de plafond et structure d'installation associée - Google Patents

Panneau de plafond et structure d'installation associée Download PDF

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Publication number
WO2013040841A1
WO2013040841A1 PCT/CN2011/084875 CN2011084875W WO2013040841A1 WO 2013040841 A1 WO2013040841 A1 WO 2013040841A1 CN 2011084875 W CN2011084875 W CN 2011084875W WO 2013040841 A1 WO2013040841 A1 WO 2013040841A1
Authority
WO
WIPO (PCT)
Prior art keywords
flap
ceiling
positioning
magnetic member
magnetic
Prior art date
Application number
PCT/CN2011/084875
Other languages
English (en)
Chinese (zh)
Inventor
林立
Original Assignee
广州市广京装饰材料有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 广州市广京装饰材料有限公司 filed Critical 广州市广京装饰材料有限公司
Publication of WO2013040841A1 publication Critical patent/WO2013040841A1/fr

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B9/00Ceilings; Construction of ceilings, e.g. false ceilings; Ceiling construction with regard to insulation
    • E04B9/22Connection of slabs, panels, sheets or the like to the supporting construction
    • E04B9/24Connection of slabs, panels, sheets or the like to the supporting construction with the slabs, panels, sheets or the like positioned on the upperside of, or held against the underside of the horizontal flanges of the supporting construction or accessory means connected thereto
    • E04B9/248Connection of slabs, panels, sheets or the like to the supporting construction with the slabs, panels, sheets or the like positioned on the upperside of, or held against the underside of the horizontal flanges of the supporting construction or accessory means connected thereto by means of permanent magnetic force held against the underside of the supporting construction
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B9/00Ceilings; Construction of ceilings, e.g. false ceilings; Ceiling construction with regard to insulation
    • E04B9/04Ceilings; Construction of ceilings, e.g. false ceilings; Ceiling construction with regard to insulation comprising slabs, panels, sheets or the like
    • E04B9/0478Ceilings; Construction of ceilings, e.g. false ceilings; Ceiling construction with regard to insulation comprising slabs, panels, sheets or the like of the tray type

Definitions

  • the invention relates to a ceiling and its mounting structure. Background technique
  • the ceiling is very common in the decoration industry.
  • the main purpose is to use aluminum ceilings, which include the plate body and the side rails.
  • the side rails are integrally bent and formed with respect to the board body, and corresponding card positions are provided between the side rails and the keel ( Generally, it is a corresponding concave position and convex position.
  • the side rail of the ceiling is slightly deformed and clamped to the keel.
  • the existing ceiling and its mounting structure have the following defects:
  • the existing ceiling relies on the elastic force generated by its elastic deformation to achieve the clamping with the keel. After multiple deformations or after a long time, the elastic force will become smaller, which will affect the clamping between the ceiling and the keel. Force, easy to cause the ceiling to fall off;
  • the side rail of the ceiling must be located at the periphery of the board.
  • the ceiling needs to be fixed by the edge part and the keel.
  • the relative position between the keel and the ceiling is strict, which affects the replacement of the ceiling.
  • the existing ceilings are mostly rectangular structures, the structure is too simple, and the appearance is poor. Summary of the invention
  • the object of the present invention is to overcome the deficiencies of the prior art and to provide a ceiling and a mounting structure thereof.
  • the present invention can reduce the difficulty of installation and maintenance and improve the quality of installation.
  • a ceiling comprises a plate body and a plurality of side rails, wherein the plurality of side rails are respectively located at the periphery of the board body, and at least two opposite side rails are provided with magnetic members.
  • the side rail includes at least a side flap and a top flap, and the panel body is bent upward to form the side flap, and the side flap is bent inward to form the top flap.
  • the side flap, the top flap and the plate body are integrally formed.
  • the magnetic member is disposed on the top flap, and each of the top flaps provided with the magnetic member is located on the same plane.
  • Positioning grooves are provided on the two opposite side flaps, and the positions of the positioning grooves on the opposite side flaps correspond to each other. Both ends of each side flap are flush with the middle portion.
  • the positioning groove is disposed at both ends of the side flap.
  • the magnetic member is disposed on the top flap.
  • the magnetic member is a magnetic strip that is bonded to the top flap.
  • a recess is provided on the top flap, the magnetic member is a magnetic particle, and the magnetic member is placed in the recess.
  • the magnetic member is a magnetic block, and the magnetic member is disposed under the top flap.
  • the middle portion of the magnetic member is provided with a first inner side surface and a second inner side surface, and the top flap is partially bent downward.
  • the first flap and the second flap are folded, and the first flap and the second flap respectively press the first inner side surface and the second inner side surface.
  • the magnetic member is a magnetic block, the magnetic member is disposed under the top flap, and the magnetic member is provided with an opposite first outer side surface and a second outer side surface, wherein the top flap is partially bent downward The first flap and the second flap are folded, and the first flap and the second flap respectively press the first outer side surface and the second outer side surface.
  • the first outer side surface and the second outer side surface of the magnetic member are respectively provided with positioning holes, and the first flap and the second flap are respectively provided with positioning bosses, and the positioning bosses correspond to the positioning holes.
  • the first outer side surface, the second outer side surface, the first flap and the second flap of the magnetic member are respectively provided with corresponding positioning holes, and the positioning pin passes through the positioning hole to position the magnetic member.
  • An insertion groove is disposed on the top flap, and an elastic card is disposed at an end of the insertion groove, and the elastic card is integrally formed with the top flap, and the magnetic member is locked by the elastic card after being inserted into the insertion slot.
  • Guide grooves are provided on opposite sides of the magnetic member. When the magnetic members are inserted into the insertion grooves, the top flaps on both sides of the insertion groove are caught in the guide grooves on both sides of the magnetic member.
  • the magnetic member includes a magneto-optical block and a male magnet block, and the opposite sides of the magneto-magnetic block and the anode magnet block are opposite in magnetic orientation, and a corresponding positioning concave portion and a positioning convex portion are disposed between the cathode magnet block and the anode magnet block.
  • the top flap is provided with a penetration hole, and the cathode block and the anode magnet block are respectively located at two sides of the top flap, and the positioning protrusion passes through the insertion hole and cooperates with the positioning recess.
  • the positioning recess and the positioning protrusion are at least two, and correspondingly, the through holes are also at least two.
  • the top flap is provided with a receiving groove, one end of the receiving groove is a limiting end, and the other end is a receiving end, and a limiting piece is disposed at the insertion end, and the limiting piece limits the magnetic piece.
  • a receiving groove is disposed on the top flap, and a limiting piece is disposed at both ends of the receiving groove, and the limiting piece limits the magnetic piece.
  • a ceiling mounting structure comprising a plurality of ceilings and an iron keel, each ceiling comprises a plate body and a plurality of side rails, wherein the plurality of side rails are respectively located at the periphery of the board body, and at least two opposite side rails are provided with magnetic parts, magnetic parts and The iron keel is attached to connect the ceiling to the iron keel.
  • the side rail includes at least a side flap and a top flap, and the panel body is bent upward to form the side flap, and the side flap is bent inward to form the top flap, and the top flap abuts The lower part of the iron keel.
  • the side flap, the top flap and the plate body are integrally formed.
  • the magnetic member is disposed on the top flap, and each of the top flaps provided with the magnetic member is located on the same plane.
  • Positioning grooves are provided on the two opposite side flaps, and the positions of the positioning grooves on the opposite side flaps correspond to each other.
  • the side flap includes two opposite positioning side pieces and two opposite fixed side pieces, and the magnetic piece is disposed at least on a top flap connected to the fixed side piece, and the positioning groove is disposed on two of the positioning side pieces.
  • the end portion of the iron keel has a "door" type, and includes a horizontal top edge and two vertical sides, and two vertical sides are respectively located on two sides of the horizontal top edge;
  • the fixed side panels of the ceiling are adjacent to each other, and the two vertical sides of the iron keel are respectively inserted into the positioning slots of the positioning side sheets of the two adjacent ceilings.
  • the cross section of the iron keel is in the form of a "door", which comprises a horizontal top edge and two vertical sides, two vertical sides respectively located on two sides of the horizontal top edge;
  • the sheets are adjacent to each other, and the inner side edges of the top flaps of the two adjacent ceilings respectively abut against the inner sides of the two vertical sides.
  • the lower ends of the two vertical sides of the iron keel are inclined outward, so that the cross section of the iron keel is flared.
  • Each iron keel is connected with two hanging pieces, and the hanging piece includes an upper hook, a lower hook and a connecting arm between the upper hook and the lower hook; the lower hook is wrapped outside the iron keel, and the hanging hook is hung
  • the cross section of the hook is also in the form of "door"; the upper hook, the lower hook and the connecting arm of the hanging piece are integrally formed.
  • the ceiling is provided with magnetic parts.
  • the ceiling is connected to the iron keel by magnetic parts.
  • the ceiling is not required to be fixed by the elastic deformation of the ceiling, which improves the installation quality of the ceiling, and does not need to be deliberately installed during installation.
  • the ceiling is pushed up to deform it, making installation and maintenance more convenient;
  • the ceiling is connected to the iron keel through the magnetic member, the structural requirements between the ceiling and the iron keel are relatively loose in the overall structure, and the ceiling can be more easily updated to improve the aesthetics of the ceiling;
  • the ceiling includes side flaps and top flaps.
  • the side flaps of two adjacent ceilings can be pressed tightly to achieve accurate positioning of each ceiling, avoiding two adjacent ceilings. There is a gap between them; and the top flap is horizontal, which can be closely attached to the keel to improve the stability of the ceiling. After the magnetic piece is mounted on the top flap, the ceiling and the keel can be more closely adsorbed;
  • the inner side edges of the top flaps of the adjacent two ceilings respectively abut the inner sides of the two vertical sides of the iron keel, and can also position the adjacent two ceilings. Avoid moving the gap between two adjacent ceilings to create a gap;
  • the lower ends of the two vertical sides of the iron keel are inclined outward to form a flared shape.
  • the side panel of the ceiling can be more easily aligned with the iron keel, and the installation efficiency is high and the operation is more convenient;
  • the magnetic member can be a magnetic strip, a magnetic particle or a magnetic block, and the structure is not limited, such as: A.
  • the top flap is provided with a first flap and a second flap, and the two opposite sides of the magnetic block are clamped by the first flap and the second flap, and the processing process is simple, and the positioning boss and the positioning hole are adopted. Cooperating, or using the positioning pin and the positioning hole, can further improve the reliability of the magnetic block fixing;
  • An insertion slot is disposed on the top flap, and an elastic card is disposed at an end of the insertion slot.
  • the magnetic member is inserted through the insertion slot, and the elastic card inserted into the end of the slot can be returned to the original position and the magnetic member is restricted. Installation efficiency is very high;
  • a receiving groove is arranged on the top flap, and a limiting piece is arranged at one end or both ends of the receiving groove. When the magnetic piece is placed, the magnetic piece is restricted by the limiting piece.
  • FIG. 1 is a view showing a mounting structure of a ceiling and a keel in the first embodiment of the present invention
  • Figure 2 is a side view of the mounting structure of the ceiling and the keel;
  • Figure 3 is a structural view of the hanging member
  • Figure 4 is a partial enlarged view of Figure 2;
  • Figure 5 is a structural view of the ceiling
  • Figure 6 is a partial enlarged view of Figure 5;
  • Figure 7 is a schematic view of the assembly of Figure 6;
  • Figure 8 is a view showing the mounting structure of the ceiling and the keel in the second embodiment of the present invention.
  • Figure 9 is a side view of the mounting structure of the ceiling and the keel
  • Figure 10 is a partial enlarged view of Figure 9;
  • Figure 11 is a structural view of the ceiling
  • Figure 12 is a partial enlarged view of Figure 11;
  • Figure 13 is a schematic view of the assembly of Figure 12;
  • Figure 14 is a view showing the installation structure of a ceiling and a keel in the third embodiment of the present invention.
  • Figure 15 is a side view of the mounting structure of the ceiling and the keel
  • Figure 16 is a partial enlarged view of Figure 15;
  • Figure 17 is a structural view of a ceiling
  • Figure 18 is a partial enlarged view of Figure 17;
  • Figure 19 is a schematic view of the assembly of Figure 18;
  • Figure 20 is a view showing the mounting structure of the ceiling and the keel in the fourth embodiment of the present invention.
  • Figure 21 is a side view of the mounting structure of the ceiling and the keel
  • Figure 22 is a partial enlarged view of Figure 21;
  • Figure 23 is a structural view of the ceiling
  • Figure 24 is a partial enlarged view of Figure 23;
  • Figure 25 is a first assembly view of Figure 24;
  • Figure 26 is a second assembly view of Figure 24;
  • Figure 27 is a view showing the mounting structure of the ceiling and the keel in the fifth embodiment of the present invention.
  • Figure 28 is a side view showing the mounting structure of the ceiling and the keel;
  • Figure 29 is a partial enlarged view of Figure 28;
  • Figure 30 is a structural view of the ceiling
  • Figure 31 is a partial enlarged view of Figure 30;
  • Figure 32 is an assembled view of Figure 31;
  • Figure 33 is a view showing the mounting structure of the ceiling and the keel in the sixth embodiment of the present invention.
  • Figure 34 is a side view showing the mounting structure of the ceiling and the keel;
  • Figure 35 is a partial enlarged view of Figure 34;
  • Figure 36 is a structural view of the ceiling
  • Figure 37 is a partial enlarged view of Figure 36;
  • Figure 38 is an assembled view of Figure 37;
  • Figure 39 is a view showing the mounting structure of the ceiling and the keel in the seventh embodiment of the present invention.
  • Figure 40 is a side view showing the mounting structure of the ceiling and the keel;
  • Figure 41 is a partial enlarged view of Figure 40
  • Figure 42 is a structural view of a ceiling
  • Figure 43 is a partial enlarged view of Figure 42;
  • Figure 44 is an assembled view of Figure 43;
  • Figure 45 is a view showing the mounting structure of the ceiling and the keel in the eighth embodiment of the present invention.
  • Figure 46 is a side view showing the mounting structure of the ceiling and the keel;
  • Figure 47 is a partial enlarged view of Figure 46;
  • Figure 48 is a structural view of a ceiling
  • Figure 49 is a partial enlarged view of Figure 48;
  • Figure 50 is a schematic view of the assembly of Figure 49;
  • Figure 51 is a view showing the mounting structure of the ceiling and the keel in the ninth embodiment of the present invention.
  • Figure 52 is a side view showing the mounting structure of the ceiling and the keel;
  • Figure 53 is a partial enlarged view of Figure 52;
  • Figure 54 is a structural view of a ceiling
  • Figure 55 is a partial enlarged view of Figure 54;
  • Figure 56 is an assembled view of Figure 55;
  • Figure 57 is a view showing the mounting structure of a ceiling and a keel in the tenth embodiment of the present invention
  • Figure 58 is a side view of the mounting structure of the ceiling and the keel
  • Figure 59 is a partial enlarged view of Figure 58;
  • Figure 60 is a structural view of a ceiling
  • Figure 61 is a partial enlarged view of Figure 60;
  • Figure 62 is an assembled view of Figure 61;
  • Figure 63 is a view showing the mounting structure of a ceiling and a keel in the eleventh embodiment of the present invention.
  • Figure 64 is a side view of the mounting structure of the ceiling and the keel
  • Figure 65 is a partial enlarged view of Figure 64
  • Figure 66 is a structural view of the ceiling
  • Figure 67 is a partial enlarged view of Figure 66;
  • Figure 68 is a schematic view of the assembly of 67
  • Second flap 10, positioning hole, 11, positioning pin, 12, insert slot, 13, elastic card, 14, guide groove, 15, yin magnetic block, 16, male magnetic block, 17, positioning convex, 18, positioning recess, 19, Through hole, 20, accommodating groove, 21, limit piece, 22, iron keel, 23, positioning side piece, 24, fixed side piece, 25, vertical side, 26, horizontal top edge, 27, hanging piece , 28, upper hook, 29, lower hook, 30, connecting arm, 31, ceiling.
  • a ceiling mounting structure includes a plurality of ceilings 31 and an iron keel 22 .
  • Each ceiling 31 includes a panel body 1 and a plurality of side rails 2 , and a plurality of side rails 2 are respectively located on the panel body 1 .
  • at least two opposite side rails 2 are provided with a magnetic member 3, and the magnetic member 3 is attracted to the iron keel 22 to connect the ceiling 31 with the iron keel 22.
  • the side rail 2 includes a side flap 4 and a top flap 5, and the panel body 1 is bent upward to form a side flap 4, and the side flap 4 is bent inward to form a top flap 5, the side flap 4
  • the top flap 5 and the plate body 1 are integrally formed, and the top flap 5 abuts against the lower portion of the iron keel 22.
  • Positioning grooves 6 are provided at both end portions of the opposite side flaps 4, and the positions of the positioning grooves 6 on the opposite side flaps 4 correspond.
  • the side flap 4 includes two opposite positioning side pieces 23 and two opposite fixed side pieces 24, and the magnetic piece 3 is disposed on the top flap 5 connected to the fixed side piece 24, and the positioning groove 6 is disposed on Positioning the two end portions of the side panel 23;
  • the cross section of the iron keel 22 is a "door" type, which includes a horizontal top edge 26 and two vertical side edges 25, and the two vertical side edges 25 are respectively located at the horizontal top edge
  • the two sides of the two ceilings 31 are adjacent to each other, and the two vertical side edges 25 of the iron keel 22 are respectively inserted into the positioning grooves 6 of the positioning side sheets 23 of the adjacent two ceilings 31.
  • the magnetic member 3 is disposed on the top flap 5, and each of the top flaps 5 provided with the magnetic member 3 is located on the same plane.
  • Each iron keel 22 is connected to two hanging members 27, and the hanging member 27 includes an upper hook 28, a lower hook 29, and an upper hook 28 and a lower hook 29
  • the connecting arm 30; the lower hook 29 is wrapped outside the iron keel 22, and the lower hook 29 is also in the form of a "door"; the upper hook 28, the lower hook 29 and the connecting arm 30 of the hanging member 27 are Body molding.
  • the magnetic member 3 is a magnetic strip and is bonded to the top flap 5.
  • the ceiling 31 is provided with a magnetic member 3, and the ceiling 31 is connected to the iron keel 22 via the magnetic member 3.
  • the ceiling 31 is not required to be fixed by the elastic deformation of the ceiling 31, thereby improving the installation quality of the ceiling 31. It is also not necessary to deliberately push the ceiling 31 upwards to make it deform during installation, which is more convenient for installation and maintenance;
  • the ceiling 31 includes a side flap 4 and a top flap 5.
  • the side flaps 4 of the adjacent two ceilings 31 can be abutted to achieve accurate positioning of the ceilings 31.
  • the gap between the two adjacent ceilings 31 is avoided; and the top flap 5 is horizontal, which can be closely attached to the keel to improve the stability of the ceiling 31.
  • the ceiling can be made. 31 is more closely adsorbed with the keel;
  • Two positioning tabs 6 are arranged on the two side flaps 4 opposite to the ceiling 31. When installed, the two vertical side edges 25 of the iron keel 22 can be respectively inserted into the positioning slots 6 of the adjacent two ceilings 31. Thereby, the positioning of the adjacent two ceilings 31 is realized, and the distance between the adjacent two ceilings 31 is prevented from moving to generate a gap.
  • the top flap 5 is provided with a dimple 7
  • the magnetic member 3 is a magnetic particle
  • the magnetic member 3 is placed in the dimple 7.
  • the magnetic member 3 is a magnetic block
  • the magnetic member 3 is placed under the top flap 5
  • the middle portion of the magnetic member 3 is provided with a first inner portion.
  • the first flap 8 and the second flap 9 are formed by bending the first flap 8 and the second flap 9 respectively, and the first flap 8 and the second flap 9 respectively press the first inner side, Second inner side.
  • the top flap 5 is provided with a first flap 8 and a second flap 9, and the two opposite sides of the magnetic block are clamped by the first flap 8 and the second flap 9, and the processing process is simple.
  • the magnetic member 3 is a magnetic block
  • the magnetic member 3 is placed under the top flap 5
  • the magnetic member 3 is provided with a first outer portion.
  • the first flap 8 and the second flap 9 are formed by bending the first flap 8 and the second flap 9 respectively, and the first flap 8 and the second flap 9 respectively press the first outer side surface, Second outer side.
  • the first outer side surface, the second outer side surface, the first flap 8 and the second flap 9 of the magnetic member 3 are respectively provided with corresponding positioning holes 10, and the positioning pin 11 passes through the positioning hole 10 to position the magnetic member 3. .
  • the reliability of the magnetic block fixing can be further improved by the positioning boss being engaged with the positioning hole 10 or by the positioning pin 11 and the positioning hole 10.
  • the top flap 5 is provided with an insertion groove 12, and the end of the insertion groove 12 is provided with an elastic card 13, and the elastic card 13 and the top flap 5 are Body molding, the magnetic member 3 is inserted into the slot and is The elastic card 13 is limited.
  • Guide grooves 14 are provided on the opposite sides of the magnetic member 3. After the magnetic members 3 are inserted into the insertion grooves, the top flaps 5 inserted into the sides of the grooves are caught in the guide grooves 14 on both sides of the magnetic member 3.
  • the top flap 5 is provided with an insertion groove 12, and the end of the insertion groove 12 is provided with an elastic card 13, and the magnetic member 3 is inserted through the insertion groove 12, and the elastic card 13 inserted into the end of the groove 12 can be returned to the original position and The magnetic piece 3 is limited and the installation efficiency is very high.
  • the magnetic member 3 includes a magneto-optical block 15 and a male magnet block 16, and the opposite sides of the magneto-magnetic block 15 and the anode magnet block 16 have opposite magnetic properties.
  • a corresponding positioning concave portion 18 and a positioning convex portion 17 are disposed between the magnetic block 15 and the male magnetic block 16.
  • the top flap 5 is provided with a penetration hole 19, and the female magnetic block 15 and the male magnetic block 16 are respectively located at the top folding. Both sides of the sheet 5, and the positioning convex portion 17 passes through the insertion hole 19 to engage with the positioning recess 18.
  • the magneto-magnetic block 15 is affixed to the male magnet block 16 for easy assembly.
  • the positioning recess 18 and the positioning projection 17 are two compared with the seventh embodiment.
  • the penetration holes 19 are also two. Compared with the seventh embodiment, the cooperation between the female magnet block 15 and the male magnet block 16 is more reliable, and the relative movement is less likely to occur.
  • the top flap 5 is provided with a receiving groove 20, one end of the receiving groove 20 is a limiting end, and the other end is a receiving end, and the receiving end is provided with a limit. Bit slice 21.
  • the magnetic member 3 is first placed in the accommodating groove 20, and then the one end of the magnetic member 3 is restricted by the limiting piece 21.
  • the top flap 5 is provided with a receiving groove 20, and both ends of the receiving groove 20 are provided with a limiting piece 21.
  • the magnetic member 3 is first placed in the accommodating groove 20, and then the two limiting pieces 21 are pressed down and the two ends of the magnetic member 3 are restrained.
  • the cross section of the iron keel 22 is in the form of a "door", which includes a horizontal top edge 26 and two vertical side edges 25, and two vertical side edges 25 They are respectively located on two sides of the horizontal top edge 26; the side flaps 4 of the adjacent two ceilings 31 are close to each other, and the inner side edges of the top flaps 5 of the adjacent two ceilings 31 respectively abut against the two vertical sides 25 Inside.
  • the inner side edges of the top flaps 5 of the adjacent two ceilings 31 respectively abut the inner sides of the two vertical side edges 25 of the iron keel 22, and can also position the adjacent two ceilings 31 to avoid the adjacent two The distance of the ceiling 31 moves to create a gap.
  • the lower ends of the two vertical side edges 25 of the iron keel 22 are inclined outward, so that the cross section of the iron keel 22 is flared.
  • the lower ends of the two vertical sides 25 of the iron keel 22 are inclined outward to form a flared shape, and the side rail 2 of the ceiling 31 can be more easily aligned with the iron keel 22 during installation, and the installation efficiency is high and the operation is more convenient.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Finishing Walls (AREA)
  • Building Environments (AREA)

Abstract

La présente invention concerne un panneau de plafond (31) qui comprend un corps de panneau (1) et de multiples barres latérales (2). Les multiples barres latérales (2) sont respectivement agencées sur la périphérie du corps de panneau (1). Des pièces magnétiques (3) sont agencées sur au moins deux barres latérales (2) opposées. La présente invention concerne également une structure d'installation du panneau de plafond. Ladite structure d'installation comprend de multiples panneaux de plafond (31) et une poutre en fer (22). Les pièces magnétiques (3) des panneaux de plafond (31) sont attirées vers la poutre en fer (22), reliant ainsi les panneaux de plafond (31) à la poutre en fer (22). La présente invention permet de réduire les difficultés d'installation et de maintenance, et d'améliorer la qualité d'installation.
PCT/CN2011/084875 2011-09-22 2011-12-29 Panneau de plafond et structure d'installation associée WO2013040841A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201110282901.0 2011-09-22
CN2011102829010A CN102383558A (zh) 2011-09-22 2011-09-22 天花板及其安装结构

Publications (1)

Publication Number Publication Date
WO2013040841A1 true WO2013040841A1 (fr) 2013-03-28

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WO (1) WO2013040841A1 (fr)

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CN103866894B (zh) * 2014-03-31 2016-01-20 广州市广京装饰材料有限公司 卡接件

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CN201785921U (zh) * 2010-08-06 2011-04-06 上海克拉美空调有限公司 带有经纬固定结构的条状金属吊顶

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