CN218861855U - Energy-saving building curtain wall assembly - Google Patents

Energy-saving building curtain wall assembly Download PDF

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Publication number
CN218861855U
CN218861855U CN202223290037.1U CN202223290037U CN218861855U CN 218861855 U CN218861855 U CN 218861855U CN 202223290037 U CN202223290037 U CN 202223290037U CN 218861855 U CN218861855 U CN 218861855U
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wall
trachea
ventilation
hole
plate
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CN202223290037.1U
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Chinese (zh)
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祁会民
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China Textile Plastics Dalian Co ltd
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China Textile Plastics Dalian Co ltd
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Abstract

The utility model belongs to the technical field of the building curtain technique and specifically relates to an energy-saving building curtain subassembly, including side fascia and interior wallboard, the ventilation subassembly is installed to the inboard of side fascia and interior wallboard, the bolt is all installed in the upper end center four corners of interior wallboard. Through the cylinder, the crossbeam, unpowered hood, the clamp plate, cooperation between through-hole and the trachea, when needing control ventilation structure to open and shut, the output shaft accessible crossbeam that makes the cylinder drives the trachea rebound, the trachea can drive unpowered hood and clamp plate rebound, the clamp plate has broken away from with the sealed of through-hole slope inclined plane, unpowered hood stretches out the inside of through-hole afterwards and makes its surface that breaks away from the side fascia, make the ventilation of the inboard space of interior wallboard of the unpowered hood of accessible production air current realization when natural wind flows, because equipment adopts cylinder synchro control multiunit ventilation structure, the effectual user need be constantly manual when having avoided ventilation structure to open and shut that the multiunit structure is too time-consuming and energy-consuming problem.

Description

Energy-saving building curtain wall assembly
Technical Field
The utility model relates to a building curtain technical field specifically is an energy-saving building curtain subassembly.
Background
The curtain wall is an outer wall enclosure of a building, does not bear load, is hung like a curtain, is also called as a curtain wall, is a light wall with a decorative effect commonly used by modern large and high-rise buildings, mainly comprises a panel and a supporting structure system, but the closed structure of the curtain wall part of the existing integral structure easily causes unsmooth ventilation in the building, ventilation equipment needs to be added outside the building to ensure the ventilation effect in the building, and a curtain wall component with a ventilation function needs to be designed to solve the effect.
For example, patent No. 202222054010.6's an energy-saving building curtain wall subassembly, including curtain wall frame, curtain wall body, the fixed inside that has connect the curtain wall frame that has cup jointed of curtain wall body, T type hole has all been seted up to the inboard of curtain wall frame top and the inboard of bottom, though, can realize the ventilation regulation, maintains the fresh air in the room when reducing ventilation equipment rate of utilization, maintains the function of whole part leakproofness, but. In traditional art or the comparison document, its ventilation structure control process that utilizes natural wind need carry out manual control to it, just can realize opening and shutting to this kind of curtain needs multiunit collocation to use usually, and this user need constantly manually open and shut multiunit structure when leading to the ventilation structure to open and shut and too wastes time and energy the problem.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problem that the user needs to continuously manually open and close the multiunit structure too time and energy consuming when having ventilation structure to open and close among the prior art, and the energy-saving building curtain wall assembly who provides.
In order to achieve the purpose, the utility model provides an energy-saving building curtain wall assembly, including side fascia and interior wallboard, the ventilation assembly is installed to the inboard of side fascia and interior wallboard, the bolt is all installed in the upper end center four corners of interior wallboard.
Preferably, the ventilation assembly comprises a pressure plate, an unpowered hood, a through hole, an ear plate, a cross beam, an air cylinder, an air pipe and a corrugated pipe;
it is a plurality of the through-hole equidistance processing is at the inner wall of outer wallboard respectively, the inside of through-hole all is provided with unpowered hood, the lower extreme and the fixed intercommunication of trachea of unpowered hood, tracheal inner wall is erected the roof beam and is fixed continuous with the clamp plate, tracheal lower extreme outer wall passes through otic placode and bolt and interior wallboard and links to each other, tracheal outer wall stationary phase even has the crossbeam, the lower extreme both sides of crossbeam all link to each other with interior wallboard activity through the cylinder, tracheal outer wall below processing has the bellows.
Preferably, the upper edge of the through hole and the lower edge of the pressing plate are both provided with an inclined plane.
Preferably, the vertical beam on the inner wall of the air pipe penetrates through and is rotatably connected with the unpowered hood.
Preferably, four corners of the inner ends of the outer wallboard and the inner wallboard are fixedly connected through support rods.
The utility model provides an energy-saving building curtain subassembly, beneficial effect lies in providing following technical scheme:
through the cylinder, the crossbeam, unpowered hood, the clamp plate, cooperation between through-hole and the trachea, when needing control ventilation structure to open and shut, the user can start the cylinder, the output shaft accessible crossbeam that makes the cylinder drives the trachea rebound, and then the trachea can drive unpowered hood and clamp plate rebound, the clamp plate has broken away from with the sealed of through-hole inclined plane, unpowered hood stretches out the inside of through-hole afterwards and makes its surface that breaks away from the side fascia, make the ventilation of the inboard space of interior wallboard of unpowered hood production air current realization of accessible when natural wind flows, because equipment adopts cylinder synchro control multiunit ventilation structure, the effectual user need constantly manual multiunit structure that opens and shuts when having avoided ventilation structure to open and shut too waste time and energy problem.
Drawings
Fig. 1 is a schematic view of the appearance structure of the present invention;
fig. 2 is a schematic view of the structure of the present invention;
fig. 3 is a schematic structural diagram at I in fig. 2.
In the figure: 1. external wall panel, 2, interior wallboard, 3, ventilation assembly, 3a1, clamp plate, 3a2, unpowered hood, 3a3, through-hole, 3a4, otic placode, 3a5, crossbeam, 3a6, cylinder, 3a7, trachea, 3a8, bellows, 4, branch, 5, bolt.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings:
referring to figures 1-3: in this embodiment, an energy-saving building curtain subassembly, including side fascia 1 and interior wallboard 2, ventilation assembly 3 is installed to side fascia 1 and the inboard of interior wallboard 2, and bolt 5 is all installed in the central four corners in upper end of interior wallboard 2, and the inner four corners of side fascia 1 and interior wallboard 2 all links to each other through branch 4 is fixed.
Referring to figures 1-3: in this embodiment, the ventilation assembly 3 includes a pressure plate 3a1, an unpowered hood 3a2, a through hole 3a3, an ear plate 3a4, a cross beam 3a5, a cylinder 3a6, an air pipe 3a7 and a corrugated pipe 3a8;
the plurality of through holes 3a3 are respectively processed on the inner wall of the outer wall plate 1 at equal intervals, unpowered hoods 3a2 are arranged inside the through holes 3a3, the lower ends of the unpowered hoods 3a2 are fixedly communicated with the air pipes 3a7, inner wall vertical beams of the air pipes 3a7 are fixedly connected with the pressing plate 3a1, sealing can be formed between the pressing plate 3a1 and the through holes 3a2, the outer wall of the lower end of the air pipe 3a7 is fixedly connected with the inner wall plate 2 through lugs 3a4 and bolts, the outer wall of the air pipe 3a7 is fixedly connected with a cross beam 3a5, two sides of the lower end of the cross beam 3a5 are movably connected with the inner wall plate 2 through air cylinders 3a6, the types of the air cylinders 3a6 can be determined according to specific use conditions, corrugated pipes 3a8 are processed below the outer wall of the air pipes 3a7, inclined planes are processed on the upper edges of the through holes 3a3 and the lower edges of the pressing plate 3a1, and the inner wall vertical beams of the air pipes 3a7 penetrate through and are rotatably connected with the hoods 3a2;
through the cooperation between the cylinder 3a6, the crossbeam 3a5, the unpowered hood 3a2, the clamp plate 3a1, the through-hole 3a3 and the trachea 3a7, when the ventilation structure is required to be controlled to open and close, the user can start the cylinder 3a6, so that the output shaft of the cylinder 3a6 can drive the trachea 3a7 to move upwards through the crossbeam 3a5, and then the trachea 3a7 can drive the unpowered hood 3a2 and the clamp plate 3a1 to move upwards, the clamp plate 3a1 is separated from the sealing of the inclined plane of the through-hole 3a3, and then the unpowered hood 3a2 stretches out of the through-hole 3a3 to separate from the outer surface of the unpowered external wall panel 1, so that the ventilation of the inner space of the internal wall panel 2 can be realized through the airflow generated by the hood 3a2 during the natural wind flow, and the problem that the user is too laborious when the ventilation structure is opened and closed manually because the equipment adopts the cylinder 3a6 to synchronously control a plurality of ventilation structures is effectively avoided.
The working principle is as follows:
when the energy-saving building curtain wall assembly is needed to be used, firstly, a user can assemble the overall structure according to the figure, after the assembly is completed, the user can paste the lower end of the inner wall plate 2 on the wall surface through cement ash and other substances and fix the lower end through the bolt 5, so as to realize the position limitation of the overall structure, however, in order to meet the requirement of energy-saving design, a ventilation assembly of natural wind is usually needed to be designed for the curtain wall to achieve the purpose of energy saving, however, in the traditional technology or a comparison document, the ventilation structure control process of natural wind is utilized, the ventilation structure control process needs to be manually controlled to realize the opening and closing, and the curtain walls usually need to be matched with a plurality of groups for use, so that the problem that when the ventilation structure is opened and closed, the user needs to manually open and close the plurality of groups of structures, which is time-consuming and labor-consuming is caused, the present case has designed ventilation subassembly 3, when needing control ventilation structure to open and shut, the user can start cylinder 3a6, make cylinder 3a 6's output shaft accessible crossbeam 3a5 drive trachea 3a7 rebound, and then trachea 3a7 can drive unpowered hood 3a2 and clamp plate 3a1 rebound, clamp plate 3a1 has broken away from with the sealed of through-hole 3a3 inclined plane, unpowered hood 3a2 stretches out the inside of through-hole 3a3 and makes it break away from the surface of side fascia 1 afterwards, make the ventilation of 2 inboard spaces of interior wallboard is realized to the unpowered hood 3a2 production air current of accessible when natural wind flows, because equipment adopts cylinder 3a6 synchro control multiunit ventilation structure, the effectual user need not be constantly manual when having avoided ventilation structure to open and shut that multiunit structure is too time-consuming and energy-wasting problem, it can to control cylinder 3a6 after the completion to ventilate to reset.
While the invention has been shown and described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and detail may be made therein without departing from the scope of the appended claims.

Claims (4)

1. The utility model provides an energy-saving building curtain wall assembly, includes side fascia (1) and interior wallboard (2), its characterized in that: the ventilation components (3) are arranged on the inner sides of the external wall plate (1) and the inner wall plate (2), and bolts (5) are arranged at four corners of the center of the upper end of the inner wall plate (2);
the ventilation assembly (3) comprises a pressure plate (3 a 1), an unpowered hood (3 a 2), a through hole (3 a 3), an ear plate (3 a 4), a cross beam (3 a 5), a cylinder (3 a 6), an air pipe (3 a 7) and a corrugated pipe (3 a 8);
a plurality of through-hole (3 a 3) equidistance processing is at the inner wall of exterior wall board (1) respectively, the inside of through-hole (3 a 3) all is provided with unpowered hood (3 a 2), the lower extreme and the fixed intercommunication of trachea (3 a 7) of unpowered hood (3 a 2), the inner wall of trachea (3 a 7) is erected the roof beam and is fixed continuous with clamp plate (3 a 1), the lower extreme outer wall of trachea (3 a 7) passes through otic placode (3 a 4) and bolt and interior wallboard (2) is fixed continuous, the outer wall of trachea (3 a 7) is fixed and is linked together crossbeam (3 a 5), the lower extreme both sides of crossbeam (3 a 5) all link to each other with interior wallboard (2) activity through cylinder (3 a 6), bellows (3 a 8) have been processed to the outer wall below of trachea (3 a 7).
2. The energy saving building curtain wall assembly as claimed in claim 1, wherein: inclined planes are machined on the upper edge of the through hole (3 a 3) and the lower edge of the pressing plate (3 a 1).
3. The energy saving building curtain wall assembly of claim 1, wherein: the inner wall vertical beam of the air pipe (3 a 7) penetrates through and is rotatably connected with an unpowered hood (3 a 2).
4. The energy saving building curtain wall assembly as claimed in claim 1, wherein: the four corners of the inner ends of the external wall plate (1) and the internal wall plate (2) are fixedly connected through supporting rods (4).
CN202223290037.1U 2022-12-08 2022-12-08 Energy-saving building curtain wall assembly Active CN218861855U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223290037.1U CN218861855U (en) 2022-12-08 2022-12-08 Energy-saving building curtain wall assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223290037.1U CN218861855U (en) 2022-12-08 2022-12-08 Energy-saving building curtain wall assembly

Publications (1)

Publication Number Publication Date
CN218861855U true CN218861855U (en) 2023-04-14

Family

ID=87349975

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223290037.1U Active CN218861855U (en) 2022-12-08 2022-12-08 Energy-saving building curtain wall assembly

Country Status (1)

Country Link
CN (1) CN218861855U (en)

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