CN215483527U - Modularized inner corridor unit - Google Patents

Modularized inner corridor unit Download PDF

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Publication number
CN215483527U
CN215483527U CN202121648709.4U CN202121648709U CN215483527U CN 215483527 U CN215483527 U CN 215483527U CN 202121648709 U CN202121648709 U CN 202121648709U CN 215483527 U CN215483527 U CN 215483527U
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China
Prior art keywords
frame
corridor unit
door
unit according
passageway
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CN202121648709.4U
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Chinese (zh)
Inventor
赵有善
赵乐
郭昊炜
曹明
张清
陈伟
武振
刘美霞
邵笛
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Technology And Industrialization Development Center Of Ministry Of Housing And Urban Rural Development
Yangzhou Tailee Special Equipment Co ltd
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Technology And Industrialization Development Center Of Ministry Of Housing And Urban Rural Development
Yangzhou Tailee Special Equipment Co ltd
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Abstract

The utility model discloses a modularized inner corridor unit which comprises a top frame and a bottom frame, wherein the top frame and the bottom frame are connected through four-corner stand columns, an outer top plate is connected in the top frame, an inner top plate is arranged on the lower side of the outer top plate, a wall plate is vertically connected between the inner top plate and the bottom frame, a U-shaped hydroelectric bridge is connected to the lower side of the top frame, hydroelectric circuit pipe fittings are fixed on the hydroelectric bridge, and connecting joints are arranged at the end parts of the hydroelectric circuit pipe fittings. According to the modularized inner corridor unit, the water and electricity pipeline interlayer is prefabricated at the top, so that the water and electricity pipelines can be quickly connected, the field installation efficiency of the corridor module is greatly improved, the corridor module can be repeatedly disassembled and assembled for use, and the modularized inner corridor unit is green and environment-friendly.

Description

Modularized inner corridor unit
Technical Field
The utility model relates to the field of modular houses, in particular to a modular inner corridor unit.
Background
The traditional house is built by brick-concrete or concrete, the environment is greatly damaged in a construction site, the construction period of the traditional building mode is long, the living requirements of consumers cannot be met in a short time, meanwhile, a large amount of energy is consumed, the economic cost and the time cost are high, at present, the container type or container type modular combined house building is further developed all over the world, and particularly, the container type or container type modular combined house building is applied to the environment where the building industrialization and assembly are vigorously developed in China, and the container type modular combined house building has the advantages of being fast in building, controllable in manufacturing cost and capable of being produced industrially.
Then, the corridor in the modularized house in the prior art adopts a steel structure form, mostly adopts field building, is low in factory integration degree and large in field installation workload, and cannot adapt to the rapid installation requirement of the modularized house.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a modular inner corridor unit which meets the requirement of rapid installation of a modular house.
The purpose of the utility model is realized as follows: the utility model provides a corridor unit in modularization, includes top frame and underframe, and top frame and underframe are connected through the stand in four corners, its characterized in that: the roof frame in-connection has outer roof, and outer roof downside is equipped with interior roof, is connected with the wallboard between interior roof and the underframe perpendicularly, and the roof frame downside is connected with U type water and electricity crane span structure, is fixed with water circuit pipe fitting on the water and electricity crane span structure, and water circuit pipe fitting tip is equipped with attach fitting. According to the modularized inner corridor unit, the water and electricity pipeline interlayer is prefabricated at the top, so that the water and electricity pipelines can be quickly connected, the field installation efficiency of the corridor module is greatly improved, the corridor module can be repeatedly disassembled and assembled for use, and the modularized inner corridor unit is green and environment-friendly.
The improved water-power cable bridge is characterized in that the top frame is defined by top side beams and top end beams, a plurality of top cross beams are connected between the top side beams, the upper end of the water-power cable bridge is fixed on the top cross beams, the bottom frame is defined by bottom side beams and bottom end beams, a plurality of reinforcing columns are vertically connected between the top side beams and the bottom side beams, first horizontal beams are connected to the upper sides of the reinforcing columns, the upper ends of the wall boards are connected with the first horizontal beams through L-shaped connecting pieces, the vertical edges of the L-shaped connecting pieces are fixedly connected with the inner sides of the first horizontal beams, and the horizontal edges of the L-shaped connecting pieces are detachably connected with the upper ends of the wall boards. Whole frame construction intensity is high, connect fast, easy dismouting, and wherein the top crossbeam provides the outrigger for water supply and electricity crane span structure, strengthens the post and has improved the bulk strength in corridor module to make things convenient for the wallboard fixed and the door opening is seted up etc. and it provides convenience also to walk the fixed of wall pipeline for the later stage.
As a further improvement of the utility model, the upper end of the wallboard is provided with the top connecting piece, the top connecting piece is integrally in an inverted U shape and is buckled at the upper end of the wallboard, the lower edge of the inner side of the inverted U shape is provided with a horizontal lap joint edge extending inwards, and the inner top plate is arranged on the horizontal lap joint edge, so that the structure is simple and the connection is convenient.
As a further improvement of the utility model, the modularized inner corridor unit is provided with a corridor door hole corresponding to the house module, a corridor door pocket and a corridor door are arranged in the corridor door hole, the corridor door pocket comprises a first L-shaped door pressing strip, a second L-shaped door pressing strip and a corridor mask, the first L-shaped door pressing strip and the second L-shaped door pressing strip are respectively buckled at two sides of the corridor door hole, a gap is reserved between the first L-shaped door pressing strip and the corridor door hole, the corridor door is provided with a prefabricated plug connector, one end of the corridor mask is plugged into the first L-shaped door pressing strip, the other end of the corridor mask is plugged into a socket of the prefabricated plug connector, the structure is simple, the connection is convenient, the corridor door is detachable and reusable, and the transportation of the single body of the module is convenient.
As a further improvement of the utility model, a second horizontal beam is arranged on the upper side of the aisle door opening and connected to the reinforcing column, so that the structural strength is improved, and the aisle door pocket is convenient to mount.
As a further improvement of the utility model, the bottom cross beam is arranged in the bottom frame and filled with heat-insulating cotton, the cement floor and the anti-skid PVC floor are arranged on the upper surface of the bottom frame, and the metal mask is arranged on the lower surface of the bottom frame, so that the heat-insulating floor has high structural strength, good heat-insulating performance and high use comfort.
As a further improvement of the utility model, the outer top plate adopts a corrugated plate, and the lower surface of the outer top plate is provided with a heat-insulating layer, so that the top wallboard and the heat-insulating performance are improved.
As a further improvement of the utility model, an access hole is preset on the inner top plate, which is convenient for the overhaul of the water and electricity pipelines.
As a further improvement of the utility model, corner fittings are arranged at four corners of the top frame and the bottom frame, and the modularized inner corridor unit is connected with the room module through the corner fitting connectors, so that the on-site quick construction can be realized, and the on-site quick dismantling and the off-site reconstruction are convenient and quick.
As a further improvement of the utility model, the inner top plate and the wall plate are uniformly divided into a plurality of blocks, and the adjacent blocks are spliced by the splicing tongue-and-groove, so that the large hoisting equipment is not needed, the rapid assembly and disassembly can be realized on site manually, and the repeated assembly and disassembly can be realized.
Drawings
Fig. 1 is a schematic view of a modular inner corridor unit and room module arrangement according to the present invention.
Fig. 2 is a perspective view of the modular inner corridor unit shown in fig. 1 (with the reinforcement beam, the first horizontal beam and the second horizontal beam omitted).
Fig. 3 is a schematic diagram of the frame structure of the modular inner corridor unit shown in fig. 1.
Fig. 4 is a schematic top structural view of the modular inner corridor unit shown in fig. 1.
Fig. 5 is a side view of fig. 4.
Fig. 6 is a schematic bottom view of the modular inner corridor unit shown in fig. 1.
Fig. 7 is a schematic view of the modular inner corridor unit and room module connection shown in fig. 1.
Fig. 8 is a schematic view of the aisle door opening connections of the modular inner corridor unit shown in fig. 1.
The building structure comprises a corridor unit 1, a room module 2, a column 3, a top side beam 4, a top end beam 5, a top cross beam 6, an outer top plate 7, a hydroelectric bridge frame 8, a water circuit pipe 9, a bottom side beam 10, a bottom end beam 11, a bottom cross beam 12, a cement floor 13, an anti-skid PVC floor 14, a metal mask 15, a reinforcing column 16, a first horizontal beam 17, a wall plate 18, a 19L-shaped connecting piece 20, a top connecting piece 20, an inner top plate 21, an angle piece 22, an angle piece connector 23, a passage door 24, a first L-shaped door trim 25, a second L-shaped door trim 26, a passage mask 27, a prefabricated connector 28 and a second horizontal beam 29.
Detailed Description
As shown in fig. 1, the modular inner corridor unit 1 of the present embodiment is adapted for connection of room modules 2. Specifically, when the corridor unit 1 and the room module 2 are arranged, the length dimension of the corridor unit is equal to 2 times of the width of the room module 2 plus the splicing box gap, the width of the corridor unit 1 can meet the requirement of personnel evacuation, and the height of the corridor unit 1 is consistent with that of the room module 2.
As shown in fig. 2 to 5, the modular inner corridor unit of the present embodiment includes a top frame and a bottom frame, which are connected by four corner columns 3. The top frame is enclosed by a top side beam 4 and a top end beam 5, and a plurality of top cross beams 6 are connected between the top side beams 4. An outer top plate 7 is connected in the top frame, the outer top plate 7 adopts corrugated rib plates, and a heat preservation layer is arranged on the lower surface of the outer top plate 7. The lower side of the top frame is connected with a U-shaped hydroelectric bridge frame 8. The upper end of the water and electricity bridge frame 8 is fixed on the top cross beam 6, a water and electricity circuit pipe fitting 9 is fixed on the water and electricity bridge frame 8, and a connecting joint is arranged at the end part of the water and electricity circuit pipe fitting 9, so that the water and electricity bridge frame is convenient and quick to connect.
As shown in fig. 3 and 6, the bottom frame is enclosed by a bottom side beam 10 and a bottom end beam 11. A bottom cross beam 12 is connected between the bottom side beams 10 and filled with heat insulation cotton, a cement floor 13 and an anti-skidding PVC floor 14 are arranged on the upper surface of the bottom frame, a metal covering plate 15 is arranged on the lower surface of the bottom frame, and the heat insulation plastic floor is high in structural strength, good in heat insulation performance and high in using comfort.
As shown in fig. 2, 3 and 5, a plurality of reinforcing columns 16 are vertically connected between the top side member 4 and the bottom side member 10, and a first horizontal member 17 is connected to an upper side of each reinforcing column 16. Between the first horizontal beam 17 and the bottom frame is vertically arranged a wall plate 18. The upper end of the wallboard 18 is connected with the first horizontal beam 17 through an L-shaped connecting piece 19, the vertical edge of the L-shaped connecting piece 19 is fixedly connected with the inner side of the first horizontal beam 17, and the horizontal edge of the L-shaped connecting piece 19 is detachably connected with the upper end of the wallboard 18. The wallboard 18 upper end has a top connecting piece 20, and top connecting piece 20 wholly is the type of falling U and detains and establish in wallboard 18 upper end, and the inboard lower edge of the type of falling U has the horizontal overlap joint limit of inside extension, and horizontal overlap joint edge is provided with roof 21. And an access hole is preset on the inner top plate 21, so that the water and electricity pipeline can be conveniently overhauled. The inner top plate 21 and the wall plate 18 are divided into a plurality of blocks, and the adjacent blocks are spliced through splicing tongues and grooves.
As shown in fig. 7, corner fittings 22 are arranged at four corners of the top frame and the bottom frame, and the modular inner corridor unit 1 and the room module 2 are connected through corner fitting connectors 23, so that on-site quick construction can be realized, and quick disassembly and remote reconstruction are convenient.
As shown in fig. 1 and 8, the corridor unit 1 and the room module 2 are provided with corridor door openings corresponding to each other, and corridor door pockets and corridor doors 24 are provided in the corridor door openings. The passageway door pocket includes first L type door layering 25, second L type door layering 26 and passageway mask 27, first L type door layering 25, second L type door layering 26 is detained respectively and is established in passageway door opening both sides, leave the clearance between first L type door layering 25 and the passageway door opening, be equipped with prefabricated plug connector 28 on the passageway door 24, passageway mask 27 one end is inserted in first L type door layering 25, the other end is inserted in the socket of prefabricated plug connector 28, moreover, the steam generator is simple in structure, convenient for connection, and can dismantle used repeatedly, the monomer transportation of the module of being convenient for. As shown in fig. 3 and 5, a second horizontal beam 29 is arranged on the upper side of the aisle door opening, and the second horizontal beam 29 is connected to the reinforcing column 16, so that the structural strength is improved, and the installation of the aisle door pocket is facilitated.
The building process of the modular inner corridor unit of the embodiment is as follows:
the corridor unit and the room module are placed at corresponding positions and are fixedly connected through the corner fitting connector, the corridor unit and the room module are sealed in a joint filling mode through sealing rubber strips, the top of the corridor module is connected with a circuit and a pipeline, then an inner top plate is installed, and the inner top plate is inserted and connected through a tongue-and-groove. And finally, installing the aisle door pocket and the aisle door at the aisle door hole. Because corridor unit realizes the integration of mill's prefabricated equipment and water and electricity pipe fitting in the modularization, connects fixedly through the corner fittings connector of bight during the on-the-spot combination, and water and electricity pipe connection is quick to can used by repeated dismouting, green.
The present invention is not limited to the above-mentioned embodiments, and based on the technical solutions disclosed in the present invention, those skilled in the art can make some substitutions and modifications to some technical features without creative efforts according to the disclosed technical contents, and these substitutions and modifications are all within the protection scope of the present invention.

Claims (10)

1. The utility model provides a corridor unit in modularization, includes top frame and underframe, top frame and underframe are connected through the stand in four corners, its characterized in that: the utility model discloses a water and electricity bridge structure, including roof frame, underframe, roof frame, be fixed with the connection joint, the connection is fixed with the water circuit pipe.
2. The modular inner corridor unit according to claim 1, wherein: the top frame is defined by a top side beam and a top end beam, a plurality of top cross beams are connected between the top side beams, the upper end of the hydroelectric bridge is fixed on the top cross beams, the bottom frame is defined by a bottom side beam and a bottom end beam, a plurality of reinforcing columns are vertically connected between the top side beam and the bottom side beam, the upper sides of the reinforcing columns are connected with first horizontal beams, the upper ends of the wallboards are connected with the first horizontal beams through L-shaped connecting pieces, the vertical edges of the L-shaped connecting pieces are fixedly connected with the inner sides of the first horizontal beams, and the horizontal edges of the L-shaped connecting pieces are detachably connected with the upper ends of the wallboards.
3. The modular inner corridor unit according to claim 1, wherein: wallboard upper end is equipped with a connecting piece, it establishes to push up the connecting piece wholly to be the type of falling U and detain the wallboard upper end, the inboard lower edge of the type of falling U has the horizontal overlap joint limit of inside extension, interior roof setting is in horizontal overlap joint edge.
4. The modular inner corridor unit according to claim 2, wherein: corridor unit corresponds the position with the house module in the modularization and is equipped with passageway door opening, be equipped with passageway door pocket and passageway door in the passageway door opening, the passageway door pocket includes first L type door layering, second L type door layering and passageway mask, first L type door layering, second L type door layering are detained respectively and are established in passageway door opening both sides, leave the clearance between first L type door layering and the passageway door opening, be equipped with prefabricated plug connector on the passageway door, in passageway mask one end was inserted and is inserted first L type door layering, in the other end was inserted and is inserted the socket of inserting prefabricated plug connector.
5. The modular inner corridor unit according to claim 4, wherein: and a second horizontal beam is arranged on the upper side of the passage door opening and connected to the reinforcing column.
6. The modular inner corridor unit according to claim 1, wherein: the heat-insulation PVC floor is characterized in that a bottom cross beam is arranged in the bottom frame and filled with heat-insulation cotton, a cement floor and an anti-skidding PVC floor are arranged on the upper surface of the bottom frame, and a metal mask is arranged on the lower surface of the bottom frame.
7. The modular inner corridor unit according to claim 1, wherein: the outer top plate is a corrugated plate, and the lower surface of the outer top plate is provided with a heat insulation layer.
8. The modular inner corridor unit according to any one of claims 1-7, wherein: and an access hole is preset on the inner top plate.
9. The modular inner corridor unit according to any one of claims 1-7, wherein: the top frame and the four corners of the bottom frame are provided with corner fittings, and the modularized inner corridor units are connected with the room modules through corner fitting connectors.
10. The modular inner corridor unit according to any one of claims 1-7, wherein: the inner top plate and the wall plate are uniformly divided into a plurality of blocks, and adjacent blocks are spliced through inserting tongues and grooves.
CN202121648709.4U 2021-07-20 2021-07-20 Modularized inner corridor unit Active CN215483527U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121648709.4U CN215483527U (en) 2021-07-20 2021-07-20 Modularized inner corridor unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121648709.4U CN215483527U (en) 2021-07-20 2021-07-20 Modularized inner corridor unit

Publications (1)

Publication Number Publication Date
CN215483527U true CN215483527U (en) 2022-01-11

Family

ID=79728279

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121648709.4U Active CN215483527U (en) 2021-07-20 2021-07-20 Modularized inner corridor unit

Country Status (1)

Country Link
CN (1) CN215483527U (en)

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