CN214941532U - Assembled superelevation suspended ceiling conversion layer - Google Patents
Assembled superelevation suspended ceiling conversion layer Download PDFInfo
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- CN214941532U CN214941532U CN202121394570.5U CN202121394570U CN214941532U CN 214941532 U CN214941532 U CN 214941532U CN 202121394570 U CN202121394570 U CN 202121394570U CN 214941532 U CN214941532 U CN 214941532U
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Abstract
The utility model relates to an assembled ultrahigh suspended ceiling conversion layer, which comprises a square tube hanging column, a channel steel beam, a beam wall support, a U-shaped hanging piece and a square tube hanging piece, wherein a circular mounting plate is welded at the top end of the square tube hanging column; two side walls of the U-shaped hanging piece are connected with the bottom of the square tube hanging column through bolts and nuts which are screwed mutually, the U-shaped hanging piece is reversely buckled on the channel steel beam, the square tube hanging piece is connected with two side walls of the U-shaped hanging piece through bolts and nuts which are screwed mutually, and a vertical internal threaded pipe is welded in the square tube hanging piece; the head of the channel steel beam is placed on the beam wall support. The beneficial effects are that: a conversion layer is built below a floor slab of a building through the cooperation of a square tube hanging column, a channel steel cross beam, a cross beam wall support, a U-shaped hanging piece, a square tube hanging piece, a bolt, a nut and an expansion bolt, then the ceiling is installed below the conversion layer through a threaded hanging rod, the length of the threaded hanging rod can be shortened, and the risk of deformation of the threaded hanging rod is reduced.
Description
Technical Field
The utility model relates to a suspended ceiling technical field especially relates to an assembled superelevation suspended ceiling conversion layer.
Background
Indoor buildings with floor height of more than 3.5 meters exist in some commercial and government venues, but the floor height of the indoor buildings is not required to be so high when the indoor buildings are used, a suspended ceiling can be generally selected, the floor height can be reduced, pipelines can be hidden in the suspended ceiling, and the beautifying effect is achieved. But generally directly adopt the screw thread jib to hang the fossil fragments on the floor of building, when the ceiling appears from upwards external force down, because the length overlength of screw thread jib appears the bending easily, causes smallpox structural deformation.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome the above problem that prior art exists, provide an assembled superelevation suspended ceiling conversion layer.
For realizing above-mentioned technical purpose, reach above-mentioned technological effect, the utility model discloses a following technical scheme realizes:
an assembled ultrahigh suspended ceiling conversion layer comprises square tube hanging columns, channel steel cross beams, cross beam wall supports, U-shaped hanging pieces and square tube hanging pieces, wherein circular mounting plates are welded at the top ends of the square tube hanging columns, and mounting holes for expansion bolts to penetrate through are formed in the circular mounting plates; two side walls of the U-shaped hanging piece are connected with the bottom of the square tube hanging column through bolts and nuts which are screwed mutually, the U-shaped hanging piece is reversely buckled on the channel steel beam, the square tube hanging piece is connected with two side walls of the U-shaped hanging piece through bolts and nuts which are screwed mutually, a vertical internal thread tube is welded in the square tube hanging piece, and a threaded suspender through hole communicated with a screw hole in the center of the internal thread tube is arranged on the square tube hanging piece; the beam wall support is installed on the wall body through expansion bolts, and the head of the channel steel beam is placed on the beam wall support.
The square hanging column is provided with a plurality of I-shaped clamping holes which are evenly spaced, and the I-shaped steel wire pipe frame is clamped into the clamping holes.
And the wedge-shaped plate is inserted into a gap between the channel steel beam and the bottom end of the square tube lifting column or between the U-shaped lifting pieces.
Further, the crossbeam wall holds in palm including rectangle mounting panel, two triangle-shaped backup pads, rectangle layer board, the perpendicular welding of rectangle layer board is in one side of rectangle mounting panel, the welding of triangle-shaped backup pad is between rectangle layer board and rectangle mounting panel, the both sides of rectangle mounting panel are equipped with the mounting hole that supplies expansion bolts to pass respectively, the top of rectangle mounting panel is equipped with the screw, the spiro union has stop screw in the screw.
Furthermore, a right-angled triangular rib plate is welded between the square tube hanging column and the circular mounting plate.
The steel channel beam is characterized by further comprising a square tube longitudinal beam, the square tube longitudinal beam is placed at the top end of the steel channel beam, the square tube longitudinal beam is perpendicular to the steel channel beam, and self-tapping screws are respectively installed on two sides, located on the steel channel beam, of the bottom end of the square tube longitudinal beam.
The utility model has the advantages that: a conversion layer is built below a floor slab of a building through the matching of a square tube hanging column, a channel steel cross beam, a cross beam wall support, a U-shaped hanging piece, a square tube hanging piece, a bolt, a nut and an expansion bolt, and then a ceiling is installed below the conversion layer by utilizing a threaded suspender, so that the length of the threaded suspender can be shortened, and the risk of deformation of the threaded suspender is reduced; and the cutting processing is good in the factory, and only simple assembly is needed on the construction site, so that the site construction time is shortened, and the site installation is convenient.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the invention without undue limitation to the invention. In the drawings:
fig. 1 is a schematic structural diagram of a translation layer in an embodiment of the present invention;
FIG. 2 is a schematic structural view of the connection between the square tube hanging post and the channel steel beam in the embodiment of the present invention;
FIG. 3 is a schematic structural view of the U-shaped hanger and the square tube hanger installed on the channel steel beam in the embodiment of the present invention;
FIG. 4 is a schematic structural view of the square tube longitudinal beam installed on the channel steel beam in the embodiment of the present invention;
fig. 5 is a schematic structural view of the assembly of the channel steel beam and the beam wall bracket in the embodiment of the present invention;
FIG. 6 is a schematic structural view of an embodiment of the square tube suspension post of the present invention;
FIG. 7 is a schematic structural view of the U-shaped hanger and the square tube hanger in the embodiment of the present invention;
fig. 8 is a schematic structural view of the cross beam wall support in the embodiment of the present invention.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
As shown in fig. 1 to 8, the fabricated ultrahigh suspended ceiling conversion layer comprises a square tube hanging column 1, a channel steel beam 2, a beam wall support 3, a U-shaped hanging piece 4, a U-shaped hanging piece 5 and a square tube hanging piece 6, wherein a circular mounting plate 7 is welded at the top end of the square tube hanging column 1, a right-angled triangular rib plate 8 is welded between the square tube hanging column 1 and the circular mounting plate 7, and a mounting hole 9 for an expansion bolt to pass through is formed in the circular mounting plate 7; two side walls of the U-shaped hanging piece 4 are connected with the bottom of the square tube hanging column 1 through bolts 10 and nuts 11 which are screwed mutually, the U-shaped hanging piece 5 is buckled on the channel steel beam 2 in an inverted mode, the square tube hanging piece 6 is connected with two side walls of the U-shaped hanging piece 5 through the bolts 10 and the nuts 11 which are screwed mutually, a vertical internal threaded tube 12 is welded in the square tube hanging piece 6, a threaded hanging rod through hole 13 communicated with a screw hole in the center of the internal threaded tube 12 is formed in the square tube hanging piece 6, and the threaded hanging rod penetrates through the threaded hanging rod through hole 13 and then is screwed with the internal threaded tube 12; the beam wall support 3 is arranged on the wall body through expansion bolts, and the head of the channel steel beam 2 is placed on the beam wall support 3.
Crossbeam wall support 3 includes rectangle mounting panel 19, two triangle-shaped backup pads 20, rectangle layer board 21 vertical welding is in one side of rectangle mounting panel 19, triangle-shaped backup pad 20 welds between rectangle layer board 21 and rectangle mounting panel 19, the both sides of rectangle mounting panel 19 are equipped with the mounting hole 9 that supplies expansion bolts to pass respectively, the top of rectangle mounting panel 19 is equipped with screw 22, the spiro union has stop screw 23 in the screw 22, utilize stop screw 23's head and 2 top surfaces butts of channel-section steel crossbeam, prevent that the head of channel-section steel crossbeam 2 from beating from top to bottom on crossbeam wall support 3.
According to the technical scheme, a conversion layer is built below a floor slab of a building through the matching of a square tube hanging column, a channel steel beam, a beam wall support, a U-shaped hanging piece, a square tube hanging piece, a bolt, a nut and an expansion bolt, and then a ceiling is installed below the conversion layer through a threaded hanging rod, so that the length of the threaded hanging rod can be shortened, and the risk of deformation of the threaded hanging rod is reduced; and the cutting processing is good in the factory, and only simple assembly is needed on the construction site, so that the site construction time is shortened, and the site installation is convenient. Specifically, in order to adjust the levelness of the channel steel beam, the conversion layer further comprises a wedge-shaped plate 16, and the wedge-shaped plate 16 is inserted into a gap between the channel steel beam 2 and the bottom end of the square tube hanging column 1 or a gap between the U-shaped hanging pieces 4. The conversion layer further comprises an I-shaped steel wire pipe frame 14, a plurality of I-shaped clamping holes 15 with uniform intervals are formed in the square hanging column 1, and the I-shaped steel wire pipe frame 14 is clamped into the clamping holes 15 so as to facilitate the arrangement and installation of pipelines. For the convenience of worker carries out the pipeline and lays, this conversion layer still includes square tube longeron 17, and square tube longeron 17 is placed on 2 tops of channel-section steel crossbeam, square tube longeron 17 and 2 mutually perpendicular of channel-section steel crossbeam, and self-tapping screw 18 is installed respectively to the both sides that the bottom of square tube longeron 17 is located channel-section steel crossbeam 2, utilizes self-tapping screw 18 to make between square tube longeron and the channel-section steel crossbeam relatively fixed.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention.
Claims (6)
1. The utility model provides an assembled superelevation suspended ceiling conversion layer which characterized in that: the steel tube expansion bolt hanging device comprises a square tube hanging column, a channel steel cross beam, a cross beam wall support, a U-shaped hanging piece and a square tube hanging piece, wherein a round mounting plate is welded at the top end of the square tube hanging column, and a mounting hole for an expansion bolt to pass through is formed in the round mounting plate; two side walls of the U-shaped hanging piece are connected with the bottom of the square tube hanging column through bolts and nuts which are screwed mutually, the U-shaped hanging piece is reversely buckled on the channel steel beam, the square tube hanging piece is connected with two side walls of the U-shaped hanging piece through bolts and nuts which are screwed mutually, a vertical internal thread tube is welded in the square tube hanging piece, and a threaded suspender through hole communicated with a screw hole in the center of the internal thread tube is arranged on the square tube hanging piece; the beam wall support is installed on the wall body through expansion bolts, and the head of the channel steel beam is placed on the beam wall support.
2. The fabricated ultra-high ceiling conversion layer of claim 1, wherein: the square tube hanging column is characterized by further comprising an I-shaped steel wire tube frame, a plurality of I-shaped clamping holes which are evenly spaced are formed in the square tube hanging column, and the I-shaped steel wire tube frame is clamped into the clamping holes.
3. The fabricated ultra-high ceiling conversion layer of claim 1, wherein: the wedge-shaped plate is inserted into a gap between the channel steel beam and the bottom end of the square tube lifting column or the U-shaped lifting piece.
4. The fabricated ultra-high ceiling conversion layer of claim 1, wherein: the crossbeam wall holds in the palm includes rectangle mounting panel, two triangle-shaped backup pads, rectangle layer board, the perpendicular welding of rectangle layer board is in one side of rectangle mounting panel, the welding of triangle-shaped backup pad is between rectangle layer board and rectangle mounting panel, the both sides of rectangle mounting panel are equipped with the mounting hole that supplies expansion bolts to pass respectively, the top of rectangle mounting panel is equipped with the screw, the spiro union has stop screw in the screw.
5. The fabricated ultra-high ceiling conversion layer of claim 1, wherein: and a right-angled triangular rib plate is welded between the square tube hanging post and the circular mounting plate.
6. The fabricated ultra-high ceiling conversion layer of claim 1, wherein: the steel channel beam is characterized by further comprising a square tube longitudinal beam, the square tube longitudinal beam is placed at the top end of the steel channel beam, the square tube longitudinal beam is perpendicular to the steel channel beam, and self-tapping screws are respectively installed on two sides, located on the steel channel beam, of the bottom end of the square tube longitudinal beam.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121394570.5U CN214941532U (en) | 2021-06-22 | 2021-06-22 | Assembled superelevation suspended ceiling conversion layer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121394570.5U CN214941532U (en) | 2021-06-22 | 2021-06-22 | Assembled superelevation suspended ceiling conversion layer |
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Publication Number | Publication Date |
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CN214941532U true CN214941532U (en) | 2021-11-30 |
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CN202121394570.5U Active CN214941532U (en) | 2021-06-22 | 2021-06-22 | Assembled superelevation suspended ceiling conversion layer |
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CN (1) | CN214941532U (en) |
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2021
- 2021-06-22 CN CN202121394570.5U patent/CN214941532U/en active Active
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