CN209780297U - Assembled floor hard protection shed structure capable of being transported reversely - Google Patents

Assembled floor hard protection shed structure capable of being transported reversely Download PDF

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Publication number
CN209780297U
CN209780297U CN201920102187.4U CN201920102187U CN209780297U CN 209780297 U CN209780297 U CN 209780297U CN 201920102187 U CN201920102187 U CN 201920102187U CN 209780297 U CN209780297 U CN 209780297U
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CN
China
Prior art keywords
shaped
plate
floor
steel
positioning
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Expired - Fee Related
Application number
CN201920102187.4U
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Chinese (zh)
Inventor
万瑞
魏春春
白世隆
张保卫
曹一品
曾翔
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Civil Aviation Airport Construction Engineering Co Ltd
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Civil Aviation Airport Construction Engineering Co Ltd
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Priority to CN201920102187.4U priority Critical patent/CN209780297U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

the utility model discloses a floor hard protection shed structure capable of being transported reversely, which comprises a first I-beam, a first protection mechanism and a second protection mechanism, wherein the first I-beam is fixed on a first floor plate through a plurality of first positioning components; the first protection mechanism comprises a second I-beam, a first cross beam and a first protection plate, the front end of the second I-beam is connected with the first I-beam through a first connecting steel plate through a bolt, and the front part of the second I-beam is fixedly connected with the first floor plate through a second positioning assembly; a plurality of first cross beams which are parallel to each other are transversely arranged at the upper end of the rear part of the second I-shaped beam, and a first protection plate is arranged between every two adjacent first cross beams; the second protection mechanism comprises a first support and a first steel wire mesh, the first support is connected to the first cross beam, and two ends of the first steel wire mesh are connected with the first support through hooks. This protection shed structure firmly can realize quick assembly disassembly, has reduced high altitude construction to holistic barrier propterty is good, simple structure is novel, and the practicality is high.

Description

assembled floor hard protection shed structure capable of being transported reversely
Technical Field
The utility model relates to a building engineering field, concretely relates to assembled floor hard protection shed structure can have bad luck.
Background
Hard protection is mainly to higher floor, prevents that the object that falls from the high altitude from dropping, plays the guard action to constructor or pedestrian below. Along with the development of urban construction, super high-rise buildings are more and more, and in super high-rise building construction, in order to ensure that construction is safely and effectively carried out, a floor hard protection technology is widely applied. The hard protection factor of safety accords with required requirement in current floor construction, but required material is more, and the fortune is difficult, but reuse, and the limit dismouting is faced in the high altitude, and is time-consuming low efficiency, and the operation potential safety hazard is more.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a can transport assembled floor and protect canopy structure firmly, this protect canopy structure firmly can realize quick assembly disassembly, has reduced high altitude construction to protective properties on the whole is good.
The utility model discloses a realize above-mentioned purpose, the technical solution who adopts is:
A floor hard protection shed structure capable of being transported reversely comprises a first I-beam, a first protection mechanism and a second protection mechanism, wherein the first I-beam is fixed on a first floor plate through a plurality of first positioning assemblies; the first protection mechanism comprises a second I-beam, a first cross beam and a first protection plate, the front end of the second I-beam is connected with the first I-beam through a first connecting steel plate through a bolt, and the front part of the second I-beam is fixedly connected with the first floor plate through a second positioning assembly;
A plurality of first cross beams which are parallel to each other are transversely arranged at the upper end of the rear part of the second I-shaped beam, and a first protection plate is arranged between every two adjacent first cross beams;
The second I-beam is connected with a second floor plate positioned at the upper end of the first floor plate through a first steel cable, and the second I-beam is connected with a third floor plate positioned at the lower end of the first floor plate through a second steel cable;
The second protection mechanism comprises a first support and a first steel wire mesh, the first support is connected to the first cross beam, and two ends of the first steel wire mesh are connected with the first support through hooks.
Preferably, the first I-beam and the second I-beam are multiple, and the multiple first I-beams are arranged on the first floor plate in parallel;
the plurality of second I-beams are arranged at the rear ends of the plurality of first I-beams, and the rear end of each first I-beam is connected with one second I-beam.
Preferably, the first connecting steel plate is in a square plate shape, and the rear end face of the first I-shaped beam is connected with the front end face of the second I-shaped beam;
the front part of the first connecting steel plate is fixedly connected with a web plate in the first I-shaped beam through a bolt, and the rear part of the first connecting steel plate is fixedly connected with a web plate of the second I-shaped beam through a bolt.
preferably, the first positioning assembly comprises a first positioning steel plate, a first wedge-shaped wood block and a first U-shaped steel bar, and the first positioning steel plate is welded at the upper end of the first I-shaped beam;
the lower part of the first U-shaped steel bar is embedded in the first floor plate, and two ends of the first U-shaped steel bar are connected with the first positioning steel plate;
The two first wedge-shaped wood blocks are respectively positioned on two sides of the first I-shaped beam, and the first wedge-shaped wood blocks are clamped between the first I-shaped steel beam and the first U-shaped steel bar;
the first positioning assemblies are multiple, and three first positioning assemblies are connected to each first I-shaped beam.
preferably, the second positioning assembly comprises a second positioning steel plate, a second wedge-shaped wood block and a second U-shaped steel bar, and the second positioning steel plate is welded at the upper end of the second I-shaped beam;
The lower part of the second U-shaped steel bar is embedded in the first floor plate, and two ends of the second U-shaped steel bar are connected with the second positioning steel plate;
The two second wedge-shaped wood blocks are respectively positioned on two sides of the second I-shaped beam and clamped between the second I-shaped beam and the second U-shaped reinforcing steel bar;
the second positioning assemblies are multiple, and each second I-shaped beam is connected with one second positioning assembly.
Preferably, the lower end of the second I-beam is connected with a first limiting ring, the front end of the second I-beam is provided with a second limiting ring, the second floor plate is provided with a first pull ring, and the third floor plate is provided with a second pull ring.
preferably, the lower part of the first steel cable is sleeved on the second I-beam and is positioned by the first limiting ring, and the upper part of the first steel cable is sleeved on the first pull ring;
The upper portion of second steel cable overlaps on the second I-beam and passes through the second spacing ring location, and the lower part cover of second steel cable is on the second pull ring.
Preferably, first support includes preceding strut seat, back strut seat and rail, and preceding strut seat and back strut seat are all fixed on first crossbeam, set up two rails between preceding strut seat and the back strut seat, and first wire net is located between preceding strut seat and the back strut seat.
Preferably, the first beam is a channel steel plate and is fixedly connected with the second I-shaped beam through screws.
preferably, the first protection plate consists of a profiled steel sheet, a second steel wire mesh and a wood plywood.
The utility model has the advantages that:
above-mentioned can transport assembled floor hard protection shed structure, simple to operate can conveniently dismantle the use, avoids disposable waste, reduces construction cost. Adopt the utility model discloses a protection shed structure firmly can adjust according to site architecture, and first guard plate becomes independent unit, can wholly transport and carry out reuse, has guaranteed the efficiency of construction and has improved the rate of utilization of article, has practiced thrift the cost.
In the installation process, the number of side operations of constructors is reduced, and the safety risk during construction operation is reduced. First protection machanism and second protection machanism have been set up for can transport assembled floor hard protection shed structure overall stability height, high altitude protection factor of safety height. The utility model provides a protection shed structure firmly, it is special to high-rise building and design improvement, and the biggest characteristics are standardization and modularization to can realize quick assembly disassembly, it is convenient wholly to operate, has reduced high altitude construction, simple structure is novel, and the practicality is high.
drawings
Fig. 1 is a schematic side view of a transportable assembled floor rigid protective shed structure and a first floor connecting structure.
fig. 2 is a schematic top view of the overall structure of the assembled floor hard protection shed structure capable of being transported reversely.
Fig. 3 is a schematic top view of the connection structure of the first i-beam and the first guard mechanism.
FIG. 4 is a cross-sectional view of the first positioning assembly and the first I-beam connection.
Figure 5 is a schematic view of the connection structure of the first steel cable, the second steel cable and the second I-beam.
Detailed Description
the present invention will be described in detail with reference to the accompanying drawings:
With reference to fig. 1 to 5, a transportable assembled floor hard protection shed structure includes a first i-beam 1, a first protection mechanism 2, and a second protection mechanism 3. The first i-beam 1 is fixed to a first floor plate 5 by a plurality of first positioning assemblies 4. The cross section of the first I-shaped beam 1 is I-shaped.
The first protection mechanism 2 includes a second i-beam 21, a first cross beam 22, and a first protection plate 23. The front end of the second I-beam 21 is connected with the first I-beam 1 through a first connecting steel plate 24 by a bolt, and the front part of the second I-beam 21 is fixedly connected with the first floor plate 5 through a second positioning assembly 6.
the upper end of the rear part of the second I-beam 21 is transversely provided with a plurality of first cross beams 22 which are parallel to each other, and the first cross beams 22 and the second I-beam 21 are arranged in a cross shape. A first protection plate 23 is arranged between every two adjacent first cross beams 22. The second i-beam 21 is connected to a second floor panel 51 at the upper end of the first floor panel 5 by a first wire rope 11, and the second i-beam 21 is connected to a third floor panel 52 at the lower end of the first floor panel 5 by a second wire rope 12.
second protection machanism 3 includes first support 31 and first wire net 32, and first support 31 is connected on first crossbeam 22, and the both ends of first wire net 32 are passed through the couple and are linked to each other with first support 31.
The first I-shaped beams 1 and the second I-shaped beams 21 are multiple, and the first I-shaped beams 1 are arranged on the first floor plate 5 in parallel. The plurality of second I-beams 21 are arranged at the rear ends of the plurality of first I-beams 1, and the rear end of each first I-beam 1 is connected with one second I-beam 21.
The first connecting steel plate 24 is in a square plate shape, and the rear end face of the first I-shaped beam 1 is connected with the front end face of the second I-shaped beam 21. The front part of the first connecting steel plate 24 is fixedly connected with a web plate in the first I-shaped beam 1 through a bolt, and the rear part of the first connecting steel plate 24 is fixedly connected with a web plate of the second I-shaped beam 21 through a bolt.
The first positioning component 4 comprises a first positioning steel plate 41, a first wedge-shaped wood block 42 and a first U-shaped steel bar 43, and the first positioning steel plate 41 is welded at the upper end of the first I-shaped beam 1. During construction, the lower part of the first U-shaped steel bar 43 is embedded in the first floor plate 5. When the first positioning assembly is installed, both ends of the first U-shaped reinforcing bar 43 are connected to the first positioning steel plate 41. The two first wedge-shaped wood blocks 42 are respectively positioned on two sides of the first I-shaped beam 1, and the first wedge-shaped wood blocks 42 are clamped between the first I-shaped steel beam 1 and the first U-shaped reinforcing steel bars 42. The utility model provides a first locating component 4 has a plurality ofly, is connected with three first locating component 4 on every I-beam 1.
The second positioning assembly 6 comprises a second positioning steel plate, a second wedge-shaped wood block and a second U-shaped steel bar, and the second positioning steel plate is welded at the upper end of the second I-shaped beam 21. The lower part of the second U-shaped reinforcing steel bar is embedded in the first floor plate 5, and two ends of the second U-shaped reinforcing steel bar are connected with the second positioning steel plate. The two second wedge-shaped wood blocks are respectively positioned on two sides of the second I-shaped beam 21 and clamped between the second I-shaped beam 21 and the second U-shaped reinforcing steel bar. The number of the second positioning assemblies 6 is multiple, and one second positioning assembly 6 is connected to each second i-beam 21.
the lower end of the second I-beam 21 is connected with a first limiting ring 13, the front end of the second I-beam 21 is provided with a second limiting ring 14, the second floor plate 51 is provided with a first pull ring 15, and the third floor plate 52 is provided with a second pull ring 16.
The lower part of the first steel cable 11 is connected through a buckle to form an annular sleeve, the lower part of the first steel cable 11 is sleeved on the second I-shaped beam 21 and is positioned through the first limiting ring 13, and the upper part of the first steel cable 11 is sleeved on the first pull ring 15.
the lower part of the second steel cable 12 is connected by a buckle to form an annular sleeve shape, the upper part of the second steel cable 12 is sleeved on the second I-shaped beam 21 and is positioned by the second limiting ring 14, and the lower part of the second steel cable 12 is sleeved on the second pull ring 16.
first support 31 includes a front strut mount, a rear strut mount and a fence 311, the front strut mount and the rear strut mount are both fixed on first beam 22, and two fences 311 are provided between the front strut mount and the rear strut mount. A first wire mesh 32 is located between the front and rear strut mounts. The first cross beam 22 is a channel steel plate, and the first cross beam 22 is fixedly connected with the second i-shaped beam 21 through screws. The first guard plate 23 is composed of a profiled steel sheet, a second steel wire mesh, and a wood plywood.
Embodiment 1, when the assembled floor hard protection shed structure capable of being transported reversely is installed. Firstly, a plurality of first I-shaped beams 1 are arranged on a first floor plate 5, and the first I-shaped beams 1 are fixed through a first positioning assembly 4. The respective mounting of the first 2 and second 3 protection means can be done on the ground, the first 11 and second 12 cables being connected to the first protection means 2. After the first protection mechanism 2 is connected, the first protection mechanism 2 is hoisted through a tower crane, and the first protection mechanism 2 is hoisted to the first floor plate 5.
The front part of the second I-beam 21 is connected with the first I-beam 1 through a first connecting steel plate 24, the second I-beam 21 is fixed on the first floor plate 5 through a second positioning assembly 6, and at the moment, the first protection mechanism 2 completes positioning. Then, the second protection mechanism 3 is lifted to the first protection mechanism 2 by using a tower crane, and then the first support 31 is manually and fixedly connected to the first cross beam 22. The connection of the first cable 11 to the second floor panel 51 and the connection of the second cable 12 to the third floor panel 52 are then completed.
Embodiment 2, when the assembled floor hard protection shed structure capable of being transported reversely is disassembled. First use the tower crane to hang first protection machanism 2 and second protection machanism 3, with first locating component 4 and second locating component 6, because first connecting steel plate 24 is bolted connection, can conveniently dismantle first connecting steel plate 24. The first cable 11 and the second cable 12 are then released.
At the moment, the tower crane lifts the first protection mechanism 22 and the second protection mechanism 3, and the first I-shaped beam 1 is detached. In the construction of a super high-rise building, the floors on which the hard shelter structures are installed are typically 16, 28, 40 and 52 floors. When 16 layers are installation layers, after the next assembled floor hard protection shed structure capable of being transported backwards is disassembled, the whole hard protection shed structure can be conveniently installed by only installing the first I-beam 1 on the 28 th layer and then hoisting the first protection mechanism 22 and the second protection mechanism 3 to the 28 th layer by using a tower crane.
Of course, the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and the changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present invention should also belong to the protection scope of the present invention.

Claims (10)

1. A floor hard protection shed structure capable of being transported reversely is characterized by comprising a first I-beam, a first protection mechanism and a second protection mechanism, wherein the first I-beam is fixed on a first floor plate through a plurality of first positioning assemblies; the first protection mechanism comprises a second I-beam, a first cross beam and a first protection plate, the front end of the second I-beam is connected with the first I-beam through a first connecting steel plate through a bolt, and the front part of the second I-beam is fixedly connected with the first floor plate through a second positioning assembly;
A plurality of first cross beams which are parallel to each other are transversely arranged at the upper end of the rear part of the second I-shaped beam, and a first protection plate is arranged between every two adjacent first cross beams;
The second I-beam is connected with a second floor plate positioned at the upper end of the first floor plate through a first steel cable, and the second I-beam is connected with a third floor plate positioned at the lower end of the first floor plate through a second steel cable;
The second protection mechanism comprises a first support and a first steel wire mesh, the first support is connected to the first cross beam, and two ends of the first steel wire mesh are connected with the first support through hooks.
2. The transportable assembled floor hard shelter structure of claim 1, wherein the first i-beam and the second i-beam are provided in plurality, and the first i-beams are arranged in parallel on the first floor slab;
The plurality of second I-beams are arranged at the rear ends of the plurality of first I-beams, and the rear end of each first I-beam is connected with one second I-beam.
3. The structure of the assembled floor hard protection shed capable of being transported reversely of claim 1, wherein the first connecting steel plate is in a square plate shape, and the rear end face of the first I-shaped beam is connected with the front end face of the second I-shaped beam;
The front part of the first connecting steel plate is fixedly connected with a web plate in the first I-shaped beam through a bolt, and the rear part of the first connecting steel plate is fixedly connected with a web plate of the second I-shaped beam through a bolt.
4. the transportable assembled floor hard shelter structure of claim 1, wherein the first positioning assembly comprises a first positioning steel plate, a first wedge-shaped wood block and a first U-shaped steel bar, the first positioning steel plate is welded to the upper end of the first i-beam;
the lower part of the first U-shaped steel bar is embedded in the first floor plate, and two ends of the first U-shaped steel bar are connected with the first positioning steel plate;
the two first wedge-shaped wood blocks are respectively positioned on two sides of the first I-shaped beam, and the first wedge-shaped wood blocks are clamped between the first I-shaped steel beam and the first U-shaped steel bar;
The first positioning assemblies are multiple, and three first positioning assemblies are connected to each first I-shaped beam.
5. the transportable assembled floor hard shelter structure of claim 1, wherein the second positioning assembly comprises a second positioning steel plate, a second wedge-shaped wood block and a second U-shaped steel bar, and the second positioning steel plate is welded at the upper end of the second I-shaped beam;
The lower part of the second U-shaped steel bar is embedded in the first floor plate, and two ends of the second U-shaped steel bar are connected with the second positioning steel plate;
The two second wedge-shaped wood blocks are respectively positioned on two sides of the second I-shaped beam and clamped between the second I-shaped beam and the second U-shaped reinforcing steel bar;
The second positioning assemblies are multiple, and each second I-shaped beam is connected with one second positioning assembly.
6. The assembled floor hard protection shed structure capable of being transported reversely of claim 1, wherein the lower end of the second I-beam is connected with a first limiting ring, the front end of the second I-beam is provided with a second limiting ring, the second floor plate is provided with a first pull ring, and the third floor plate is provided with a second pull ring.
7. The transportable assembled floor hard shelter structure of claim 6, wherein a lower portion of the first cable is sleeved on the second i-beam and positioned by the first stop collar, and an upper portion of the first cable is sleeved on the first pull ring;
The upper portion of second steel cable overlaps on the second I-beam and passes through the second spacing ring location, and the lower part cover of second steel cable is on the second pull ring.
8. The assembled floor hard shelter structure of claim 1, wherein the first support comprises a front support, a rear support and fences, the front support and the rear support are both fixed on the first beam, two fences are arranged between the front support and the rear support, and the first steel wire mesh is positioned between the front support and the rear support.
9. The assembly type floor hard protection shed structure capable of being transported reversely of claim 1, wherein the first cross beam is a channel steel plate, and the first cross beam is fixedly connected with the second I-shaped beam through screws.
10. The hard protection shed structure for assembled floor capable of being transported reversely of claim 1, wherein the first protection plate is composed of a profiled steel sheet, a second steel wire mesh and a wood plywood.
CN201920102187.4U 2019-01-22 2019-01-22 Assembled floor hard protection shed structure capable of being transported reversely Expired - Fee Related CN209780297U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920102187.4U CN209780297U (en) 2019-01-22 2019-01-22 Assembled floor hard protection shed structure capable of being transported reversely

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920102187.4U CN209780297U (en) 2019-01-22 2019-01-22 Assembled floor hard protection shed structure capable of being transported reversely

Publications (1)

Publication Number Publication Date
CN209780297U true CN209780297U (en) 2019-12-13

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920102187.4U Expired - Fee Related CN209780297U (en) 2019-01-22 2019-01-22 Assembled floor hard protection shed structure capable of being transported reversely

Country Status (1)

Country Link
CN (1) CN209780297U (en)

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Granted publication date: 20191213