CN214785052U - Green assembled building composite wall panel - Google Patents

Green assembled building composite wall panel Download PDF

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Publication number
CN214785052U
CN214785052U CN202120676836.9U CN202120676836U CN214785052U CN 214785052 U CN214785052 U CN 214785052U CN 202120676836 U CN202120676836 U CN 202120676836U CN 214785052 U CN214785052 U CN 214785052U
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Prior art keywords
wallboard
air outlet
building composite
pipe
assembled
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CN202120676836.9U
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Chinese (zh)
Inventor
胡华建
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Shenzhen Yingcan Construction Co ltd
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Shenzhen Yingcan Construction Co ltd
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Priority to CN202120676836.9U priority Critical patent/CN214785052U/en
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Abstract

The utility model relates to a technical field of assembly type structure discloses a green assembly type structure composite wall panel, solves the problem that the deformation of making damp appears easily in relevant assembly type wallboard, and it includes the assembly type wallboard, install drying device on the assembly type wallboard, drying device includes the play tuber pipe of through connection with blast apparatus and sets up in the tuber pipe lateral wall and just to the air outlet of assembly type wallboard, reduces the condition that the deformation of making damp appears in the assembly type wallboard from this, improves the environment that people live and live in.

Description

Green assembled building composite wall panel
Technical Field
The application relates to the field of assembly type buildings, in particular to a green assembly type building composite wallboard.
Background
In the indoor decoration process, the indoor space is usually separated by the prefabricated building wallboard, and the assembled wall body of the prefabricated building composite wallboard has good heat insulation performance.
At present, a related prefabricated building composite wall panel, such as chinese patent No. CN212376014U, "a green prefabricated building wall insulation structure", discloses a green prefabricated building wall insulation structure, which includes an installation beam disposed in an indoor space and located at the top of the indoor space, an installation rail located at the bottom of the indoor space and opposite to the installation beam, and a prefabricated wall panel detachably installed between the installation beam and the installation rail, wherein the prefabricated wall panel is installed between the installation beam and the installation rail through a fixing member.
The following disadvantages exist for the related art among the above: in a humid environment, the assembled wallboard is easy to be affected with damp and deformed, even mildewed, and affects living environment where people live.
SUMMERY OF THE UTILITY MODEL
In order to reduce the condition that assembled wallboard wet the deformation, this application provides a green assembled building composite wall panel.
The application provides a green assembled building composite wall panel adopts following technical scheme:
the utility model provides a green assembled building composite wall panel, includes the assembled wallboard, install drying device on the assembled wallboard, drying device includes the play tuber pipe of through connection with air-blast equipment and sets up in the tuber pipe lateral wall and just to the air outlet of assembled wallboard.
Through adopting above-mentioned technical scheme, install drying device on the assembled wallboard, dry through drying device to blowing to the assembled wallboard, reduce the condition that the assembled wallboard appears and wets the deformation, improve the environment that people live in life.
Optionally, the number of air outlets is a plurality of, just the air outlet evenly distributed along the length direction interval of air-out pipe.
Through adopting above-mentioned technical scheme, set up a plurality of air outlets and carry out the drying of blowing to the wall of assembled wallboard on the tuber pipe, make its effect of dry going on the assembled wallboard better.
Optionally, a sliding assembly for sliding the drying device up and down along the assembly wallboard is connected between the drying device and the assembly wallboard.
Through adopting above-mentioned technical scheme, drying device can reciprocate along the assembled wallboard to improve drying device and to the drying effect of assembled wallboard, reduce the deformation of weing of assembled wallboard.
Optionally, the sliding assembly comprises a gear and a rack, the gear is connected with the air outlet pipe through a connecting rod, a sliding rail is arranged on the assembly type wallboard, the rack is fixed in the sliding rail, the gear and the rack are meshed with each other, and the gear is connected in the sliding rail in a sliding mode.
Through adopting above-mentioned technical scheme, through the intermeshing of gear and rack, and slide in the spout, make the air-out pipe reciprocate along the assembled wallboard and blow, further carry out the drying to the different positions of assembled wallboard, reduce the assembled wallboard and wet the deformation.
Optionally, the connecting rod is rotatably connected with a supporting rod capable of rotating in the vertical direction, the supporting rod is arranged below the connecting rod, and the end part of the supporting rod is in splicing engagement with the rack.
Through adopting above-mentioned technical scheme, the bracing piece is used for supporting sliding assembly, when the adjustment goes out the tuber pipe to suitable position height, makes the tip of bracing piece and the mutual butt in surface of rack to make the bracing piece play the effect of supporting out the tuber pipe, need not artifical manual support tuber pipe, can let out the tuber pipe and accomplish drying work.
Optionally, an accommodating chamber for accommodating the air outlet pipe is fixed on the assembly type wall plate.
Through adopting above-mentioned technical scheme, after the air-out pipe accomplishes the dry work of blowing, can place the holding indoor with the air-out pipe, need not to dismantle the air-out pipe from the assembled wallboard and get off, it is more convenient when drying to blow to the assembled wallboard once more.
Optionally, the accommodating chamber is hinged with a dust cover.
Through adopting above-mentioned technical scheme, when the tuber pipe is placed in the accommodation chamber, the shield covers the accommodation chamber completely, reduces the condition that dust falls into the accommodation chamber, guarantees that the tuber pipe in the accommodation chamber can not cause the condition that the air outlet blockked up because of falling into dust.
Optionally, the air outlet pipe is in through connection with the air blowing device through a connecting pipe, and an accommodating port for penetrating through the connecting pipe is formed in the side wall of the accommodating chamber.
Through adopting above-mentioned technical scheme, when the tuber pipe was placed in the accommodation chamber, the accommodation chamber was stretched out to connecting pipe accessible holding mouth to guarantee that the normal lid of shield closes, reduce the condition that the connecting pipe appears damaging when the shield lid closes.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the drying device is arranged on the assembled wallboard, and the drying device is used for drying the assembled wallboard in a blowing way, so that the damp deformation of the assembled wallboard is reduced, and the living environment of people is improved;
2. the air outlet pipe is provided with a plurality of air outlets for drying the wall surface of the assembled wallboard by blowing, so that the drying effect of the assembled wallboard is better;
3. drying device can reciprocate along the assembled wallboard to improve drying device and to the drying effect of assembled wallboard, reduce the deformation of weing of assembled wallboard.
Drawings
Fig. 1 is a schematic view of the construction of an assembled wallboard and drying apparatus.
Fig. 2 is an exploded view of the assembled wallboard with mounting beams and mounting rails.
Fig. 3 is a cross-sectional view of an assembled wallboard.
Fig. 4 is a schematic structural view of the accommodating chamber.
Fig. 5 is a schematic structural view of the slide module.
Fig. 6 is a partial enlarged view of the slide rail at a in fig. 5.
Fig. 7 is a schematic structural view of the air outlet pipe and the sliding assembly.
Description of reference numerals: 1. an assembled wallboard; 11. a clamping block; 12. a cavity; 13. a composite insulation board; 14. an accommodating chamber; 141. a dust cover; 142. an accommodating port; 15. a slide rail; 151. a vertical plate; 1511. a limiting groove; 2. mounting a beam; 21. a card slot; 22. a fixing plate; 221. horizontally clamping the strips; 23. a horizontal clamping groove; 3. mounting a rail; 4. a drying device; 41. an air outlet pipe; 411. an air outlet; 42. a connecting pipe; 43. a sliding assembly; 431. a gear; 4311. a horizontal axis; 4312. a connecting rod; 432. a rack; 433. a support rod.
Detailed Description
The present application is described in further detail below with reference to figures 1-6.
The embodiment of the application discloses green assembled building composite wall panel.
Referring to fig. 1, the green fabricated building composite wall panel comprises a fabricated wall panel 1, wherein the fabricated wall panel 1 is vertically installed at an indoor partition, mounting beams 2 and mounting rails 3 are symmetrically arranged at the upper end and the lower end of the fabricated wall panel 1 respectively, the mounting beams 2 are fixed above the partition, the mounting rails 3 are fixed below the partition, and drying devices 4 are arranged on two side surfaces of the fabricated wall panel 1 respectively.
Referring to fig. 2, two clamping grooves 21 are formed in the mounting beam 2, the two clamping grooves 21 are symmetrically distributed on the mounting beam 2, the two clamping grooves 21 are also symmetrically distributed on the mounting rail 3, the clamping grooves 21 located on the mounting beam 2 and the mounting rail 3 are symmetrically distributed, the clamping grooves 21 are in T-shaped grooves, and one side wall of each clamping groove 21 is communicated with the side walls of the mounting beam 2 and the mounting rail 3.
The upper end and the lower end of the assembled wall body are respectively fixed with a clamping block 11, the clamping block 11 is a T-shaped block, the clamping block 11 and the clamping groove 21 are the same in shape and size, and the clamping block 11 and the clamping groove 21 are mutually embedded, so that the assembled wall plate 1 can be vertically embedded between the mounting beam 2 and the mounting rail 3.
Referring to fig. 2 and 3, the mounting beam 2 and the mounting rail 3 are hinged with the fixing plate 22, the fixing plate 22 is located on the side walls of the clamping groove 21 and the mounting beam 2, the side walls of the mounting rail 3 are communicated with each other, the fixing plate 22 is fixed with the horizontal clamping strip 221, the horizontal clamping strip 221 extends out towards the side walls of the mounting beam 2 and the mounting rail 3, the mounting beam 2 and the side walls of the mounting rail 3 are provided with the horizontal clamping groove 2321, when the fixing plate 22 is attached to the mounting beam 2 and the side walls of the mounting rail 3, the horizontal clamping strip 221 is embedded into the horizontal clamping groove 2321, the fixing plate 22 is further fixed to the mounting beam 2 and the mounting rail 3 through bolts, and the mounting work of the assembly type wallboard 1 is completed.
The interior of the assembled wallboard 1 is provided with a cavity 12, a composite insulation board 13 is vertically arranged in the cavity 12, and a blank interlayer is left between the inner wall of the cavity 12 and the composite insulation board 13, so that the heat insulation performance of the assembled partition board is further enhanced.
Referring to fig. 1, the drying device 4 includes an air outlet duct 41 and a connection pipe 42, the air outlet duct 41 is horizontally disposed along a length direction of the assembly type wall panel 1, and one end of the air outlet duct 41 is connected to a blower device through the connection pipe 42.
Referring to fig. 4, the accommodating chambers 14 are respectively fixed on two walls of the assembly wall board 1, the length of the accommodating chamber 14 is greater than the air outlet pipe 41 and less than the length of the assembly wall board 1, the air outlet pipe 41 can be placed in the accommodating chamber 14, the upper opening and the opening of the accommodating chamber 14 are hinged with the dust-proof cover 141, one end of the dust-proof cover 141 is hinged with the upper end side wall of the accommodating chamber 14 far away from the assembly wall board 1, and the dust-proof cover 141 covers the upper opening of the accommodating chamber 14.
The side wall of the accommodating chamber 14 is provided with an accommodating opening 142, the accommodating opening 142 is communicated with the side wall of the accommodating chamber 14, when the dustproof cover 141 is covered with the accommodating chamber 14, the connecting pipe 42 extends out of the accommodating opening 142, the normal covering of the dustproof cover 141 is not influenced, and the damage of the connecting pipe 42 is reduced.
Referring to fig. 1 and 5, a sliding assembly 43 is connected between the air outlet pipe 41 and the prefabricated wall panel 1, the sliding assembly 43 includes a gear 431, a horizontal shaft 4311 horizontally penetrates through the axis of the gear 431, two ends of the horizontal shaft 4311 penetrate through the gear 431, two ends of the horizontal shaft 4311 are respectively connected with a connecting rod 4312, and the other end of the connecting rod 4312 is fixedly connected with the end of the air outlet pipe 41.
Referring to fig. 5 and 6, two sets of sliding rails 15 are disposed on the assembly-type wall panel 1, the two sets of sliding rails 15 are respectively perpendicular to the end of the air outlet pipe 41, each set of sliding rails 15 includes two vertical plates 151, and the two vertical plates 151 are parallel to each other and perpendicular to the wall surface of the assembly-type wall panel 1.
Spacing groove 1511 has all been seted up to two riser 151 one side in opposite directions, and spacing groove 1511 is vertical along riser 151's length direction and is seted up, and spacing groove 1511 is inserted respectively at the both ends of cross axle 4311, makes gear 431 vertical slip in spacing groove 1511.
The sliding assembly 43 further comprises a rack 432, the rack 432 is vertically disposed in the sliding rail 15, the rack 432 and the sliding rail 15 have the same length, and the rack 432 and the gear 431 are engaged with each other.
Referring to fig. 5 and 7, a plurality of air outlets 411 are formed in the air outlet pipe 41, an opening direction of the air outlets 411 faces a wall surface of the assembled wall panel 1, and the air outlets 411 are uniformly arranged along a length direction of the air outlet pipe 41 at intervals.
The air outlet pipe 41 is further connected with a support rod 433, the support rod 433 is located at two ends of the air outlet pipe 41, the support rod 433 is located below the connecting rod 4312, the support rod 433 extends out towards one side where the rack 432 is arranged, one end of the support rod 433 is rotatably connected with the air outlet pipe 41, the support rod 433 is perpendicular to the axis of the air outlet pipe 41, the support rod 433 can rotate in the vertical direction, and the other end of the support rod 433 is meshed with the rack 432 in an inserting mode.
When the air outlet pipe 41 moves to a designated position in the vertical direction, the position of the air outlet pipe 41 is fixed by abutting the support rod 433 and the rack 432 against each other, and when the drying operation of the assembly type wallboard 1 is completed, the support rod 433 is away from the rack 432, so that the gear 431 can move up and down in the slide rail 15 again.
The implementation principle of the composite wall board of the green fabricated building in the embodiment of the application is as follows:
under humid environment, carry out the drying to assembled wallboard 1 through drying device 4, reduce the condition that the deformation of wetting appears in assembled wallboard 1, further prolonged assembled wallboard 1's life, reduce the frequency of changing assembled wallboard 1, more green.
Offer a plurality of air outlets 411 on the play tuber pipe 41, air outlet 411 evenly sets up towards assembled wallboard 1, and is better to assembled wallboard 1's drying effect, and play tuber pipe 41 can be vertical slip on assembled wallboard 1 through slip subassembly 43 simultaneously, and the homoenergetic is dry to assembled wallboard 1's different positions, improves assembled wallboard 1's drying effect.
After the air-out pipe 41 finishes the drying work of the assembled wall panel 1, the air-out pipe 41 can be put back into the accommodating chamber 14, the dustproof cover 141 completely covers the upper opening of the accommodating chamber 14, the dust is reduced from falling into the accommodating chamber 14, the air outlet 411 is blocked by the dust, when the air-out pipe 41 is put into the accommodating chamber 14, the connecting pipe 42 extends out of the accommodating chamber 14 through the accommodating port 142, and the normal covering of the dustproof cover 141 is ensured and the connecting pipe 42 is not easy to be damaged.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a green fabricated building composite wall panel, includes assembled wallboard (1), its characterized in that: install drying device (4) on assembled wallboard (1), drying device (4) include with air-blowing equipment through connection go out tuber pipe (41) and set up in tuber pipe (41) lateral wall and just to air outlet (411) of assembled wallboard (1).
2. The green fabricated building composite wallboard of claim 1, wherein: the quantity of air outlet (411) is a plurality of, just air outlet (411) are along the length direction interval evenly distributed of air-out pipe (41).
3. The green fabricated building composite wallboard of claim 1, wherein: and a sliding assembly (43) which enables the drying device (4) to slide up and down along the assembled wallboard (1) is connected between the drying device (4) and the assembled wallboard (1).
4. The green fabricated building composite wallboard of claim 3, wherein: the sliding assembly (43) comprises a gear (431) and a rack (432), the gear (431) is connected with the air outlet pipe (41) through a connecting rod (4312), a sliding rail (15) is arranged on the assembled wallboard (1), the rack (432) is fixed in the sliding rail (15), the gear (431) is meshed with the rack (432), and the gear (431) is connected in the sliding rail (15) in a sliding mode.
5. The green fabricated building composite wallboard of claim 4, wherein: the connecting rod (4312) is rotatably connected with a supporting rod (433) capable of rotating in the vertical direction, the supporting rod (433) is arranged below the connecting rod (4312), and the end part of the supporting rod (433) is in inserted engagement with the rack (432).
6. The green fabricated building composite wallboard of claim 1, wherein: and an accommodating chamber (14) for accommodating the air outlet pipe (41) is fixed on the assembly type wallboard (1).
7. The green fabricated building composite wallboard of claim 6, wherein: the accommodating chamber (14) is hinged with a dustproof cover (141).
8. The green fabricated building composite wallboard of claim 6, wherein: the air outlet pipe (41) is in through connection with the air blowing device through a connecting pipe (42), and an accommodating opening (142) used for penetrating through the connecting pipe (42) is formed in the side wall of the accommodating chamber (14).
CN202120676836.9U 2021-04-02 2021-04-02 Green assembled building composite wall panel Active CN214785052U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120676836.9U CN214785052U (en) 2021-04-02 2021-04-02 Green assembled building composite wall panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120676836.9U CN214785052U (en) 2021-04-02 2021-04-02 Green assembled building composite wall panel

Publications (1)

Publication Number Publication Date
CN214785052U true CN214785052U (en) 2021-11-19

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ID=78668633

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120676836.9U Active CN214785052U (en) 2021-04-02 2021-04-02 Green assembled building composite wall panel

Country Status (1)

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CN (1) CN214785052U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114961036A (en) * 2022-07-11 2022-08-30 邱福英 Green energy-saving assembly type building

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114961036A (en) * 2022-07-11 2022-08-30 邱福英 Green energy-saving assembly type building

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