CN111926950B - Ultrahigh-bay combined decorative glass partition structure and construction method thereof - Google Patents

Ultrahigh-bay combined decorative glass partition structure and construction method thereof Download PDF

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Publication number
CN111926950B
CN111926950B CN202010790803.7A CN202010790803A CN111926950B CN 111926950 B CN111926950 B CN 111926950B CN 202010790803 A CN202010790803 A CN 202010790803A CN 111926950 B CN111926950 B CN 111926950B
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China
Prior art keywords
plate
groove
clamp
steel plate
fixedly connected
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CN202010790803.7A
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Chinese (zh)
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CN111926950A (en
Inventor
冯雪英
韩小宇
戴培轩
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Beijing Yenova Decoration Engineering Co ltd
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Beijing Yenova Decoration Engineering Co ltd
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/7407Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts
    • E04B2/7453Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts with panels and support posts, extending from floor to ceiling
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/38Connections for building structures in general
    • E04B1/41Connecting devices specially adapted for embedding in concrete or masonry
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/7407Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts
    • E04B2/7453Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts with panels and support posts, extending from floor to ceiling
    • E04B2/7455Glazing details
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/76Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/76Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal
    • E04B2/78Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal characterised by special cross-section of the frame members as far as important for securing wall panels to a framework with or without the help of cover-strips
    • E04B2/7809Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal characterised by special cross-section of the frame members as far as important for securing wall panels to a framework with or without the help of cover-strips of single or multiple tubular form
    • E04B2/7818Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal characterised by special cross-section of the frame members as far as important for securing wall panels to a framework with or without the help of cover-strips of single or multiple tubular form of substantially rectangular form
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/82Removable non-load-bearing partitions; Partitions with a free upper edge characterised by the manner in which edges are connected to the building; Means therefor; Special details of easily-removable partitions as far as related to the connection with other parts of the building
    • E04B2/821Connections between two opposed surfaces (i.e. floor and ceiling) by means of a device offering a restraining force acting in the plane of the partition

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)

Abstract

An ultrahigh cross-layer combined decorative glass partition structure comprises a building floor slab, a pre-buried structure, at least one group of connecting structures, at least one group of hanging structures, a vertical glass plate, at least one group of clamping groove structures and a wide framework supporting structure. According to the invention, the embedded structure is embedded in the building floor slab to provide a rooting environment for the glass partition, the top of the glass partition is adjustably connected through the hanging structure and reliably stressed, the bottom of the glass partition is installed and connected through the clamping groove structure and is kept stable, the framework supporting structure is innovatively arranged on one side of the glass partition and can be connected with the building structures on the upper side and the lower side, the framework supporting structure and the glass form a combined structure to solve the problem of plate rigidity and horizontal load bearing, and the stability and rigidity of the glass hanging structure are ensured. The installation of the glass plate with ultrahigh span is realized, so that the glass partition in large space is beautiful, safer and more reliable.

Description

Ultrahigh-bay combined decorative glass partition structure and construction method thereof
Technical Field
The invention belongs to the field of construction of constructional engineering, and particularly relates to an ultrahigh-bay combined decorative glass partition structure and a construction method thereof.
Background
Most of the glass partitions which are common at present are arranged between floors, such as: office glass partitions, conference room glass partitions, walkway glass partitions, screen glass partitions and the like, the height of the office glass partitions is generally below 3000mm, and finished independent glass partitions are mostly adopted. For super-high and cross-storey construction locations, such as: the cross-layer position of the lobby atrium has the advantages that the general finished glass partition can not meet the construction and safety requirements far away, and the construction and safety risks of ultrahigh plates, such as 1150mm multiplied by 8000mm and 1150mm multiplied by 5000mm, are very large.
Disclosure of Invention
The invention aims to provide an ultrahigh cross-layer combined decorative glass partition structure and a construction method thereof, which aim to solve the technical and safety problems of a conventional finished glass partition when the conventional finished glass partition is in an ultrahigh size and is cross-layer, ensure the life and property safety of users and realize the effect of attractive decoration.
In order to achieve the purpose, the invention adopts the following technical scheme:
a super-high span combined decorative glass partition structure comprises at least one group of unit installation structures, wherein each unit installation structure comprises a building floor slab, a pre-buried structure, at least one group of connecting structures, at least one group of hanging structures, a vertical glass plate, at least one group of clamping groove structures and a wide framework supporting structure,
the embedded structure is coated on the building floor slab, the connecting structure is fixedly connected between the hanging structure and the embedded structure, the hanging structure is a length-adjustable component, the top of the connecting structure takes root on the embedded structure, the bottom of the hanging structure is clamped at the top of the vertical glass plate, the bottom of the vertical glass plate is inserted into the clamping groove structure, the clamping groove structure is fixedly connected with the ground,
and a framework supporting structure is fixedly connected between the building floor slab and the ground and positioned on one side of the vertical glass plate.
The embedded structure includes along the upside steel sheet and the downside steel sheet that vertical glass plate leads to wide setting, still includes steel sheet between them and to the stay bolt, the upper and lower side surface of building floor is hugged closely and is pressed from both sides and establish between upper steel sheet and downside steel sheet, the steel sheet runs through upside steel sheet, building floor and downside steel sheet in proper order and with upside steel sheet and downside steel sheet to drawing the anchor to the stay bolt, the steel sheet is located the four corners position department of upper and lower side steel sheet to the stay bolt.
The connecting structure sequentially comprises a connecting suspender and a connecting groove from top to bottom, the hanging structure comprises an adjustable suspender and a clamp,
the connecting hanger rod is a square steel pipe, the top of the connecting hanger rod is fixedly connected with the lower side of the lower steel plate,
the connecting groove is a channel steel, the opening of the connecting groove is upward, the bottom of the connecting suspender is fixedly connected with the connecting groove, the connecting groove is provided with an adjustable connecting hole,
the top of the adjustable suspender passes through the adjustable connecting hole and is fastened by an upper nut on the upper side of the abutting connecting groove and a lower nut on the lower side of the abutting connecting groove, a spring gasket is also padded between the upper nut and the connecting groove,
the anchor clamps include the splint of roof and both sides, and it has the anchor clamps connecting hole to open on the roof, the bottom of adjustable jib passes the anchor clamps connecting hole and fixes, it has the anchor clamps bolt hole that supplies anchor clamps to split bolt to run through to open on the splint, the anchor clamps bolt hole is run through respectively to the both ends of anchor clamps split bolt to clamp through the splint nut that fastens to the splint outside.
The connecting groove comprises a groove bottom plate and a groove flange plate, the adjustable connecting hole is positioned on the groove bottom plate,
when the connecting suspender is a single path, the connecting suspender is fixedly connected on the groove bottom plate, the adjustable connecting hole is positioned at one side of the connecting suspender, and the top of the framework supporting structure is also fixedly connected to the lower side of the embedded structure;
when the connecting suspension rods are arranged twice along the transverse direction of the vertical glass plate, the two connecting suspension rods are respectively and fixedly connected to the outer sides of the two groove flange plates, and the adjustable connecting hole is positioned in the center of the groove bottom plate.
The vertical glass plate is double-layer laminated glass, a rubber pad is arranged between the top of the vertical glass plate and the clamp, and a rubber pad is also arranged between the bottom of the vertical glass plate and the clamping groove structure and is bonded with the rubber pad through glass cement.
The clamping groove structure comprises a base rod, a supporting groove and an internal corner connecting piece,
the base rod is arranged along the width of the glass plate, the front side and the rear side of the base rod are fixedly connected with the ground through internal corner connecting pieces respectively, the bearing groove is arranged in the middle and is fixedly connected to the base rod in a through-length mode, and the notch of the bearing groove supports the bottom of the glass plate upwards.
The framework supporting structure comprises a galvanized square steel frame body, a covering plate and a reentrant corner connecting piece,
the galvanized square steel frame body comprises ground beams, stand columns and cross beams, the ground beams are arranged at intervals along the width direction of the glass plate, the stand columns are fixedly connected to the upper sides of the ground beams at intervals along the length direction of the ground beams, the cross beams are fixedly connected between the adjacent stand columns in an up-down layered mode, and two sides of the ground beams are fixedly connected to the ground through internal corner connecting pieces;
the sheathing board is a double-layer flame-retardant plywood.
The base rod is a square steel pipe, the internal corner connecting piece is connecting angle steel and comprises a vertical limb and a horizontal limb, the vertical limb is fixedly connected to the square steel pipe, and the horizontal limb is fixedly connected to the ground through an expansion bolt.
Other structures are also arranged on the other side of the framework supporting structure, and the other structures are another vertical glass plate or a decoration structure.
A construction method of an ultrahigh cross-layer combined decorative glass partition structure comprises the following construction steps:
firstly, an upper side steel plate and a lower side steel plate of a pre-buried structure are respectively placed on the upper side and the lower side of a building floor slab, after the building floor slab is punched according to the reserved hole positions of steel plate split bolts, the steel plate split bolts penetrate through the upper side steel plate and the lower side steel plate and are installed and fastened through nuts and spring washers;
welding and fixing the top of the connecting hanger rod and the lower steel plate, welding the bottom of the connecting hanger rod and a connecting groove, and reserving an adjustable connecting hole on the connecting groove, wherein the adjustable connecting hole is a circular hole with the diameter of 12 mm;
welding a base rod of the clamping groove structure with a vertical limb of the internal corner connecting piece, fixing a horizontal limb with the ground through an expansion bolt, arranging the internal corner connecting piece at intervals in the width direction, wherein the interval is 600mm, connecting the base rod with the bearing groove through steel nails arranged at intervals, and arranging the interval of the steel nails at 300 mm;
welding a ground beam in the framework supporting structure with vertical limbs of the internal corner connecting pieces, fixing horizontal limbs with the ground through expansion bolts, arranging the internal corner connecting pieces at intervals in the width direction, wherein the interval is 600mm, welding and fixing the top of each upright column with a lower steel plate, welding and fixing the bottom of each upright column with the upper side of the ground beam, lengthening the middle of each upright column by welding, arranging the cross beams at intervals of 1200-2400 mm, and welding and fixing the two ends of each cross beam with the upright columns;
fifthly, after the first layer of the clad plate is fixed with the frame body once through the screws, the second layer of the clad plate and the first layer of the clad plate are installed in a staggered mode, and the fixing modes are the same;
checking whether the positions of the connecting structure and the clamping groove structure are accurate or not before installing the hanging structure, and properly adjusting;
after the adjustable suspender passes through the adjustable connecting hole, a spring gasket, an upper nut and a lower nut are installed and are fastened and installed;
the adjustable hanger rod and the clamp keep vertical positions, the direction of the hanging structure is adjusted according to the installation direction of the vertical glass plate, and the adjustable hanger rod and the clamp are firmly fixed after adjustment is completed;
placing rubber pads on two sides of the clamp and in the bearing grooves before installation, and hoisting the vertical glass plate to an installation position through a pulley system according to the installation direction; the top of the vertical glass plate is placed in a clamp, the bottom of the vertical glass plate is placed in a metal bearing groove, and after the position of the vertical glass plate is adjusted, the clamp fastens and installs the pull bolt through the clamp; after the installation is finished, filling rubber pads on two sides of the glass in the bearing groove and then gluing and fixing;
step eight, when the installation is multi-product combination, the multi-product combination method is the same as the above, and the installation is carried out in sequence.
Compared with the prior art, the invention has the following characteristics and beneficial effects:
the invention comprises a building floor slab, a pre-buried structure, at least one group of connecting structures, at least one group of hanging structures, a vertical glass plate, at least one group of clamping groove structures and a wide framework supporting structure, wherein the pre-buried structure is buried on the building floor slab to provide a rooting environment for the glass partition, the top of the glass partition is adjustably connected through the hanging structures and reliably stressed, the bottom of the glass partition is installed and connected through the clamping groove structures and keeps stable, the framework supporting structure is innovatively arranged on one side of the glass partition, the framework supporting structure can be connected with the building structures on the upper side and the lower side, the framework supporting structure and the glass form a combined structure to solve the rigidity of the plate and bear horizontal load, and the stability and the rigidity of the glass hanging structure are ensured. The installation of the glass plate with ultrahigh span is realized, so that the glass partition in large space is beautiful, safer and more reliable.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings.
FIG. 1 is a schematic elevation view of a combination of the present invention.
Fig. 2 is a schematic structural diagram of the present invention.
Fig. 3 is a schematic diagram of an embodiment of a pre-buried structure and a connection structure.
Fig. 4 is a schematic view of a pre-buried structure and a connection structure according to a second embodiment.
FIG. 5 is a schematic view of the hanging structure connected to a glass plate.
Fig. 6 is a schematic diagram of a card slot configuration.
Fig. 7 is a schematic view of a skeletal support structure.
FIG. 8 is an upper mounting schematic view of the skeletal support structure.
FIG. 9 is an upper mounting schematic view of the skeletal support structure.
Fig. 10 is a schematic view of the installation of the multi-product combination.
Reference numerals: 1-embedded structure, 11-upper side steel plate, 12-lower side steel plate, 13-steel plate split bolt, 21-connecting hanger rod, 22-connecting groove, 221-groove bottom plate, 222-groove flange plate, 31-adjustable hanger rod, 32-clamp, 321-top plate, 322-clamping plate, 323-clamp connecting hole, 324-clamp split bolt, 325-clamp bolt hole, 326-clamping plate nut, 33-upper nut, 34-lower nut, 35-spring gasket, 4-vertical glass plate, 5-clamping groove structure, 51-base rod, 52-bearing bracket, 6-framework supporting structure, 61-ground beam, 62-upright column, 63-cross beam, 64-cladding plate, 7-rubber pad, 8-internal corner connecting piece, 81-vertical limb, 82-horizontal limb, 9-ground, 10-building floor, 14-expansion bolt and 15-steel nail.
Detailed Description
Referring to fig. 1-2 and 5-9, the ultrahigh cross-layer combined decorative glass partition structure comprises a group of unit installation structures, wherein each unit installation structure comprises a building floor 10, a pre-embedded structure 1, a group of connecting structures 2, a group of hanging structures 3, a vertical glass plate 4, a group of clamping groove structures 5 and a wide framework supporting structure 6.
Referring to fig. 2, the pre-buried structure is coated on a building floor slab 10, the connecting structure 2 is fixedly connected between the hanging structure 3 and the pre-buried structure 1, the hanging structure 3 is a length-adjustable component, the top of the connecting structure 2 is rooted on the pre-buried structure 1, the bottom of the hanging structure 3 is clamped at the top of a vertical glass plate 4, the bottom of the vertical glass plate 4 is inserted into a clamping groove structure 5, and the clamping groove structure 5 is fixedly connected with the ground 9.
And a framework supporting structure 6 is fixedly connected between the building floor slab 10 and the ground 9 and positioned on one side of the vertical glass plate 4.
Pre-buried structure 1 includes along the upside steel sheet 11 and the downside steel sheet 12 that vertical glass plate leads to wide setting, still includes steel sheet split bolt 13 between them, building floor 10's upper and lower side surface is hugged closely and is pressed from both sides and establish between upside steel sheet 11 and downside steel sheet 12, steel sheet split bolt 13 runs through upside steel sheet 11, building floor 10 and downside steel sheet 12 in proper order and with upside steel sheet 11 and downside steel sheet 12 split anchor, steel sheet split bolt 13 is located the four corners position department of upper and lower downside steel sheet.
The connecting structure 2 comprises a connecting suspender 21 and a connecting groove 22 from top to bottom in sequence, and the hanging structure 3 comprises an adjustable suspender 31 and a clamp 32.
The connecting hanger rod 21 is a square steel pipe, and the top of the connecting hanger rod is fixedly connected to the lower side of the lower steel plate 12.
The connecting groove 22 is a channel steel, the opening of the channel steel faces upwards, the bottom of the connecting suspender 21 is fixedly connected onto the connecting groove 22, and an adjustable connecting hole is formed in the connecting groove 22.
The top of the adjustable suspender 31 passes through the adjustable connecting hole and is fastened by an upper nut 33 tightly propping the upper side of the connecting groove and a lower nut 34 tightly propping the lower side of the connecting groove, and a spring gasket 35 is also padded between the upper nut 33 and the connecting groove.
The clamp 32 comprises a top plate 321 and clamp plates 322 on two sides, a clamp connecting hole 323 is formed in the top plate 321, the bottom of the adjustable suspension rod 31 penetrates through the clamp connecting hole 323 and is fixed, a clamp bolt hole 325 for the clamp split bolt 324 to penetrate through is formed in the clamp plate 322, two ends of the clamp split bolt 324 penetrate through the clamp bolt hole 325 respectively, and clamping is achieved through clamp plate nuts 326 fastened to the outer side of the clamp plate. Through last nut fine setting height and flatness, prevent through the spring shim after the fastening that vibrations slide. The clamping plate and the vertical glass plate are clamped through the clamp split bolts, and hard connection is prevented through the rubber pads.
The connecting slot 22 comprises a slot bottom plate 221 and a slot flange plate 222, and the adjustable connecting hole is positioned on the slot bottom plate 221.
Referring to fig. 2-3, when the connecting hanger bar 21 is a single piece, the connecting hanger bar 21 is fixedly connected to the slot bottom 221 and the adjustable connecting hole is located at one side of the connecting hanger bar 21, and the top of the skeletal support structure 6 is also fixedly connected to the lower side of the embedded structure 1.
Referring to fig. 4, when the connecting hanger rods 21 are arranged in two ways along the transverse direction of the vertical glass plate 4, the two connecting hanger rods 21 are respectively fixedly connected to the outer sides of the two trough flange plates 222, and the adjustable connecting hole is located at the center of the trough bottom plate 221.
The vertical glass plate 4 is double-layer laminated glass which is a finished product of 10mm +1.75mm +10mm, a rubber pad 7 is arranged between the top of the vertical glass plate and the clamp, and the bottom of the vertical glass plate is also provided with the rubber pad 7 which is bonded with the rubber pad 7 through glass cement.
The clamping groove structure 5 comprises a base rod 51, a bearing groove 52 and an internal corner connecting piece 8, the base rod 51 is arranged along the width of the glass plate, the front side and the rear side of the base rod 51 are fixedly connected with the ground 9 through the internal corner connecting piece 8 respectively, the bearing groove 52 is arranged in the middle and is fixedly connected to the base rod 51 in a long mode, and the 52 notch of the bearing groove upwards bears the bottom of the vertical glass plate 4.
The framework supporting structure 6 comprises a galvanized square steel frame body, a covering plate 64 and an internal corner connecting piece 8, wherein the galvanized square steel frame body comprises a ground beam 61, upright posts 62 and a cross beam 63, the ground beam 61 is arranged at intervals along the width direction of a vertical glass plate, the upright posts 62 are fixedly connected to the upper side of the ground beam 61 at intervals along the length direction of the ground beam 61, the cross beam 63 is fixedly connected between the adjacent upright posts 62 in an up-and-down layered manner, and two sides of the ground beam 61 are fixedly connected to the ground 9 through the internal corner connecting piece 8; the sheathing panel 64 is a double-layered flame-retardant plywood panel. The cross-sectional dimensions of the galvanized square steel frame body are generally 40mm x 4 mm.
The base rod 51 is a square steel pipe, the internal corner connecting piece 8 is a connecting angle steel and comprises a vertical limb 81 and a horizontal limb 82, the vertical limb 81 is fixedly connected to the square steel pipe, and the horizontal limb 82 is fixedly connected to the ground 9 through an expansion bolt 14.
Other structures are also arranged on the other side of the framework supporting structure, and the other structures are another vertical glass plate or a decoration structure.
The construction method of the ultrahigh cross-layer combined decorative glass partition structure comprises the following construction steps:
step one, an upper side steel plate 11 and a lower side steel plate 12 of a pre-buried structure are respectively placed on the upper side and the lower side of a building floor 10, after the building floor is punched according to the reserved hole positions of the steel plate split bolts 13, the steel plate split bolts 13 penetrate through the upper side steel plate 11 and the lower side steel plate 12 and are installed and fastened through nuts and spring washers.
And step two, welding and fixing the top of the connecting hanger rod 21 and the lower steel plate 12, welding the bottom of the connecting hanger rod 21 and a connecting groove 22, and reserving an adjustable connecting hole on the connecting groove 22, wherein the adjustable connecting hole is a circular hole with the diameter of 12 mm.
Thirdly, welding the base rod 51 of the clamping groove structure 5 with the vertical limb 81 of the internal corner connecting piece 8, fixing the horizontal limb 82 with the ground 9 through the expansion bolt 14, arranging the internal corner connecting piece 8 at intervals in the width direction, wherein the interval is 600mm, connecting the base rod 51 with the bearing groove 52 through steel nails 15 arranged at intervals, and arranging the interval of the steel nails 15 to be 300 mm; the supporting grooves can be arranged in full length and can also be arranged at intervals of 40 mm.
Welding a ground beam 61 in the framework supporting structure with a vertical limb 81 of an internal corner connecting piece 8, fixing a horizontal limb 82 with the ground 9 through an expansion bolt 14, arranging the internal corner connecting piece 8 at intervals in the width direction, wherein the interval is 600mm, welding and fixing the top of an upright column 62 with a lower side steel plate 12, welding and fixing the bottom of the upright column 62 with the upper side of the ground beam 61, arranging the interval of the upright column 62 at 1200mm, lengthening the middle part by welding, arranging the interval of a cross beam 63 at 1200 mm-2400 mm, and welding and fixing the two ends of the cross beam 63 with the upright column 62.
And fifthly, after the first layer of the clad plate is fixed with the frame body once through the screws, the second layer of the clad plate and the first layer of the clad plate are installed in a staggered mode, and the fixing mode is the same.
And step six, checking whether the positions of the connecting structure and the clamping groove structure are accurate before installing the hanging structure, and carrying out proper adjustment.
After the adjustable suspender 21 passes through the adjustable connecting hole, a spring gasket 35, an upper nut 33 and a lower nut 34 are installed and fastened;
the adjustable hanger rod 21 and the clamp 32 keep vertical positions, the direction of the hanging structure is adjusted according to the installation direction of the vertical glass plate 4, and the adjustable hanger rod is fixed firmly after adjustment is completed.
Placing rubber pads 7 on two sides of the clamp 32 and in the bearing groove 52 before installation, and hoisting the vertical glass plate 4 to an installation position through a pulley system according to the installation direction; the top of the vertical glass plate 4 is placed in the clamp 32, the bottom is placed in the metal bearing groove 52, and after the position is adjusted, the clamp 32 is used for fastening and installing the pull bolt 324 through the clamp; after the installation is finished, the two sides of the glass in the bearing groove 52 are filled with rubber pads 7 and then are glued and fixed.
Step eight, referring to fig. 10, when the installation is multi-product combination, the multi-product combination method is the same as the above, and the installation is performed in sequence.
In other embodiments, skirting boards or metal edging strips can be installed on the lower portion of the vertical glass panels. The two sides of the framework supporting structure are provided with vertical glass plates, and the vertical glass plate on one side can be provided with other decoration methods on the other side. The two ends of the combined glass partition can be directly connected with other structures, and metal frame edge folding can also be adopted.

Claims (7)

1. The utility model provides a super high stride layer combination decoration glass partition structure, includes at least a set of unit mounting structure, its characterized in that: the unit mounting structure comprises a building floor slab (10), a pre-buried structure (1), at least one group of connecting structures (2), at least one group of hanging structures (3), a vertical glass plate (4), at least one group of clamping groove structures (5) and a wide framework supporting structure (6),
the embedded structure is coated on the building floor slab (10), the connecting structure (2) is fixedly connected between the hanging structure (3) and the embedded structure (1), the hanging structure (3) is a length-adjustable component, the top of the connecting structure (2) takes root on the embedded structure (1), the bottom of the hanging structure (3) is clamped at the top of the vertical glass plate (4), the bottom of the vertical glass plate (4) is inserted into the clamping groove structure (5), the clamping groove structure (5) is fixedly connected with the ground (9),
a framework supporting structure (6) is fixedly connected between the building floor slab (10) and the ground (9) and positioned at one side of the vertical glass plate (4),
the embedded structure (1) comprises an upper side steel plate (11) and a lower side steel plate (12) which are arranged along the width of a vertical glass plate, and further comprises steel plate split bolts (13) of the upper side steel plate and the lower side steel plate, the upper side surface and the lower side surface of the building floor slab (10) are tightly attached to and clamped between the upper side steel plate (11) and the lower side steel plate (12), the steel plate split bolts (13) sequentially penetrate through the upper side steel plate (11), the building floor slab (10) and the lower side steel plate (12) and split and anchor the upper side steel plate (11) and the lower side steel plate (12), the steel plate split bolts (13) are positioned at the four corners of the upper side steel plate and the lower side steel plate,
the connecting structure (2) sequentially comprises a connecting suspender (21) and a connecting groove (22) from top to bottom, the hanging structure (3) comprises an adjustable suspender (31) and a clamp (32),
the connecting hanger rod (21) is a square steel pipe, the top of the connecting hanger rod is fixedly connected with the lower side of the lower steel plate (12),
the connecting groove (22) is a channel steel, the opening of the connecting groove faces upwards, the bottom of the connecting suspender (21) is fixedly connected to the connecting groove (22), the connecting groove (22) is provided with an adjustable connecting hole,
the top of the adjustable suspender (31) passes through the adjustable connecting hole and is fastened by an upper nut (33) which is tightly propped against the upper side of the connecting groove and a lower nut (34) which is tightly propped against the lower side of the connecting groove, a spring gasket (35) is also padded between the upper nut (33) and the connecting groove,
the clamp (32) comprises a top plate (321) and clamp plates (322) on two sides, a clamp connecting hole (323) is formed in the top plate (321), the bottom of the adjustable suspension rod (31) penetrates through the clamp connecting hole (323) and is fixed, a clamp bolt hole (325) for a clamp split bolt (324) to penetrate through is formed in the clamp plate (322), two ends of the clamp split bolt (324) penetrate through the clamp bolt holes (325) respectively, and clamping is achieved through clamp plate nuts (326) fastened to the outer side of the clamp plate,
the framework supporting structure (6) comprises a galvanized square steel frame body, a covering plate (64) and an internal corner connecting piece (8),
the galvanized square steel frame body comprises ground beams (61), upright posts (62) and cross beams (63), the ground beams (61) are arranged at intervals along the width direction of a vertical glass plate, the upright posts (62) are fixedly connected to the upper sides of the ground beams (61) at intervals along the length direction of the ground beams (61), the cross beams (63) are fixedly connected between the adjacent upright posts (62) in an up-and-down layered mode, and two sides of each ground beam (61) are fixedly connected to the ground (9) through internal corner connecting pieces (8);
the sheathing board (64) is a double-layer flame-retardant plywood.
2. The ultra-high span combined decorative glazing partition construction of claim 1, wherein:
the connecting groove (22) comprises a groove bottom plate (221) and a groove flange plate (222), the adjustable connecting hole is positioned on the groove bottom plate (221),
when the connecting suspension rod (21) is one, the connecting suspension rod (21) is fixedly connected to the groove bottom plate (221), the adjustable connecting hole is positioned on one side of the connecting suspension rod (21), and the top of the framework supporting structure (6) is also fixedly connected to the lower side of the embedded structure (1);
when the connecting suspension rods (21) are arranged twice along the transverse direction of the vertical glass plate (4), the two connecting suspension rods (21) are respectively and fixedly connected to the outer sides of the two groove flange plates (222), and the adjustable connecting hole is positioned in the center of the groove bottom plate (221).
3. The ultra-high span combined decorative glass partition structure of claim 2, wherein: the vertical glass plate block (4) is double-layer laminated glass, a rubber pad (7) is arranged between the top of the vertical glass plate block and the clamp, and a rubber pad (7) is also arranged between the bottom of the vertical glass plate block and the clamping groove structure and is bonded with the rubber pad (7) through glass cement.
4. The ultra-high span combined decorative glass partition structure of claim 3, wherein: the clamping groove structure (5) comprises a base rod (51), a bearing groove (52) and an internal corner connecting piece (8),
the glass plate support is characterized in that the base rod (51) is arranged along the width of the glass plate, the front side and the rear side of the base rod (51) are fixedly connected with the ground (9) through internal corner connecting pieces (8), the support groove (52) is arranged in the middle and is fixedly connected to the base rod (51) in a through mode, and a notch of the support groove (52) supports the bottom of the vertical glass plate (4) upwards.
5. The ultra-high span combined decorative glass partition structure of claim 4, wherein: base pole (51) are square steel pipe, reentrant corner connecting piece (8) are angle steel, including erecting limb (81) and horizontal limb (82), erect limb (81) fixed connection on square steel pipe, horizontal limb (82) are through expansion bolts (14) fixed connection on ground (9).
6. The ultra-high span combined decorative glazing partition construction of any one of claims 1-5, wherein: other structures are also arranged on the other side of the framework supporting structure, and the other structures are another vertical glass plate or a decoration structure.
7. The construction method of the ultrahigh bay combined decorative glass partition structure as claimed in claim 5, wherein the construction steps are as follows:
firstly, an upper steel plate (11) and a lower steel plate (12) of a pre-buried structure are respectively placed on the upper side and the lower side of a building floor slab (10), after the building floor slab is punched according to the reserved hole positions of steel plate split bolts (13), the steel plate split bolts (13) penetrate through the upper steel plate (11) and the lower steel plate (12) and are installed and fastened through nuts and spring washers;
welding and fixing the top of the connecting hanger rod (21) and the lower steel plate (12), welding the bottom of the connecting hanger rod (21) and a connecting groove (22), and reserving an adjustable connecting hole on the connecting groove (22), wherein the adjustable connecting hole is a circular hole with the diameter of 12 mm;
welding a base rod (51) of the clamping groove structure (5) with a vertical limb (81) of the internal corner connecting piece (8), fixing a horizontal limb (82) with the ground (9) through an expansion bolt (14), arranging the internal corner connecting piece (8) at intervals in the width direction, wherein the interval is 600mm, connecting the base rod (51) with a bearing groove (52) through steel nails (15) arranged at intervals, and arranging the steel nails (15) at intervals of 300 mm;
welding a ground beam (61) in the framework supporting structure with a vertical limb (81) of an internal corner connecting piece (8), fixing a horizontal limb (82) with the ground (9) through an expansion bolt (14), arranging the internal corner connecting piece (8) at intervals in the width direction, wherein the interval is 600mm, welding and fixing the top of an upright post (62) with a lower steel plate (12), welding and fixing the bottom of the upright post (62) with the upper side of the ground beam (61), lengthening the middle part by welding, arranging the interval of a cross beam (63) at 1200-2400 mm, and welding and fixing the two ends of the cross beam (63) with the upright post (62);
fifthly, after the first layer of the clad plate is fixed with the frame body once through the screws, the second layer of the clad plate and the first layer of the clad plate are installed in a staggered mode, and the fixing modes are the same;
checking whether the positions of the connecting structure and the clamping groove structure are accurate or not before installing the hanging structure, and properly adjusting;
after the adjustable suspender (21) passes through the adjustable connecting hole, a spring gasket (35), an upper nut (33) and a lower nut (34) are installed and fastened;
the adjustable hanger rod (21) and the clamp (32) keep vertical positions, the direction of the hanging structure is adjusted according to the installation direction of the vertical glass plate (4), and the hanging structure is firmly fixed after adjustment is completed;
placing rubber pads (7) on two sides of the clamp (32) and in the support groove (52) before installation, and then hoisting the vertical glass plate (4) to an installation position through a pulley system according to the installation direction; the top of the vertical glass plate (4) is placed in the clamp (32), the bottom of the vertical glass plate is placed in the metal supporting groove (52), and after the position is adjusted, the clamp (32) is used for fastening and installing the pull bolt (324) through the clamp; after the installation is finished, rubber pads (7) are filled on two sides of glass in the supporting groove (52) and then are glued and fixed;
step eight, when the installation is multi-product combination, the multi-product combination method is the same as the above, and the installation is carried out in sequence.
CN202010790803.7A 2020-08-07 2020-08-07 Ultrahigh-bay combined decorative glass partition structure and construction method thereof Active CN111926950B (en)

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CN116464190A (en) * 2023-03-31 2023-07-21 浙江亚厦装饰股份有限公司 A hanger for super-large glass partition and its construction method

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