CN213418210U - Arc cavity module - Google Patents

Arc cavity module Download PDF

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Publication number
CN213418210U
CN213418210U CN202022017021.8U CN202022017021U CN213418210U CN 213418210 U CN213418210 U CN 213418210U CN 202022017021 U CN202022017021 U CN 202022017021U CN 213418210 U CN213418210 U CN 213418210U
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arc
side plate
shaped
outer side
extending
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CN202022017021.8U
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Chinese (zh)
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孙超
杨阳
刘涛
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Xi'an Sinoma Sunshine Building Materials Co ltd
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Xi'an Sinoma Sunshine Building Materials Co ltd
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Abstract

The utility model relates to the field of building equipment, and discloses an arc cavity module, which comprises a connecting bridge arranged between an arc outer side plate and an arc inner side plate; the inner surface of the arc-shaped outer side plate and the outer surface of the arc-shaped inner side plate are correspondingly provided with connecting grooves; connecting pieces matched with the connecting grooves are arranged at two ends of the connecting bridge; the connecting bridge is connected between the arc-shaped outer side plate and the arc-shaped inner side plate by inserting the connecting piece into the connecting groove. The utility model sets the outer side plate and the inner side plate of the cavity module into the arc shape corresponding to the radian of the arc wall surface, which is convenient to be applied to the arc wall surface building to achieve the heat preservation effect; in addition, the thickness of arc outer panel and arc inboard plate sets up a plurality of specifications, can satisfy the heat preservation demand according to the condition adjustment of the regional temperature in building place.

Description

Arc cavity module
Technical Field
The utility model relates to a building equipment field especially relates to an arc cavity module.
Background
Along with the development of the building industry, the construction cost of the brick-concrete structure is increased, the EPS cavity module is more and more widely applied to building construction, and the market prospect is good.
The EPS cavity module is formed by arranging polystyrene connecting bridges between polystyrene module panels in a staggered mode. With the development and improvement of the cavity module, the polystyrene connecting bridge and the polystyrene module panel are respectively and independently processed, so that the split cavity module is formed.
The existing split cavity module is assembled into a straight line shape, a T shape, an L shape, a buttress column shape and the like, and the cavity modules with various structures meet the construction requirements of building conventional structures.
However, in some buildings with special structures, the requirement of the buildings cannot be met by tightly adopting the conventional cavity modules; for example, a cylindrical building similar to a Mongolian yurt cannot use a conventional straight-edge cavity module to meet the requirement of heat preservation.
SUMMERY OF THE UTILITY MODEL
The utility model provides an arc cavity module solves and can't satisfy the problem that the wall requires for the construction of arc building at straight board-like cavity module.
The utility model discloses a realize through following scheme:
an arc cavity module comprises a connecting bridge arranged between an arc outer side plate and an arc inner side plate;
the inner surface of the arc-shaped outer side plate and the outer surface of the arc-shaped inner side plate are correspondingly provided with connecting grooves; connecting pieces matched with the connecting grooves are arranged at two ends of the connecting bridge; the connecting bridge is connected between the arc-shaped outer side plate and the arc-shaped inner side plate by inserting the connecting piece into the connecting groove.
Furthermore, the connecting grooves are respectively provided with T-shaped grooves along the middle surfaces of the arc-shaped outer side plate and the arc-shaped inner side plate; the connecting piece is provided with a T-shaped piece matched with the connecting groove from two ends to the middle of the connecting bridge; the connecting bridge is connected between the arc-shaped outer side plate and the arc-shaped inner side plate by inserting the T-shaped connecting piece into the T-shaped connecting groove.
Further, the heights of the arc-shaped outer side plate and the arc-shaped inner side plate are the same; the height of the connecting groove is 3/4 of the height of the arc-shaped outer side plate and the arc-shaped inner side plate, and the connecting groove is respectively arranged downwards along the tops of the outer side plate and the inner side plate; the height of the connecting piece is 1/2 of the height of the outer side plate, and the connecting piece is inserted downwards along the top of the connecting groove.
Furthermore, the thickness range of the arc-shaped outer side plate and the arc-shaped inner side plate is 30-90mm, and the thickness range of the connecting bridge is 30-60 mm; the length range of the connecting bridge is 100-500 mm.
Furthermore, extending convex edges are arranged in the middles of the upper surfaces of the arc-shaped outer side plate and the arc-shaped inner side plate, limiting lugs with the same height as the extending convex edges are arranged on two sides of each extending convex edge, extending grooves matched with the extending convex edges are arranged in the middles of the lower surfaces of the extending convex edges, and limiting notches matched with the limiting lugs are arranged on two sides of each extending groove;
when extending in the height direction, the extending groove and the limiting notch at the bottom of the upper layer arc cavity module are respectively sleeved with the extending convex edge and the limiting convex block at the top of the upper layer arc cavity module.
Furthermore, the first ends of the arc-shaped outer side plate and the arc-shaped inner side plate are respectively provided with an extension column and an extension groove, and the second ends of the arc-shaped outer side plate and the arc-shaped inner side plate are respectively provided with an extension groove and an extension column;
when the hollow cavity module extends in the plane direction, the extending columns and the extending grooves at the first ends of the arc-shaped outer side plate and the arc-shaped inner side plate are respectively connected with the extending grooves and the extending columns at the end parts of the cavity module which are close to the extending columns and the extending grooves; the extending grooves and the extending columns at the second ends of the arc-shaped outer side plate and the arc-shaped inner side plate are respectively connected with the extending columns and the extending grooves at the end parts of the cavity modules which are close to the extending columns and the extending grooves.
Furthermore, the surfaces of the arc-shaped outer side plate and the arc-shaped inner side plate are provided with vertical grooves for pouring mortar or concrete and combining with the arc-shaped cavity module.
Furthermore, a cement board, a gypsum board or a heat-insulating decorative board is arranged on the inner surface of the arc-shaped inner side plate.
The utility model has the advantages of it is following:
1) the outer side plate and the inner side plate of the cavity module are both designed to be arc-shaped, so that the cavity module is conveniently applied to arc-shaped building wall surfaces to achieve the heat preservation effect;
2) the thicknesses of the arc-shaped outer side plate and the arc-shaped inner side plate are provided with a plurality of specifications, and the specifications can be adjusted according to the temperature condition of the area where the building is located, so that the heat preservation requirement is met;
3) the upper surface of the arc-shaped cavity module is provided with an extending convex edge and a limiting convex block, the lower surface of the arc-shaped cavity module is provided with an extending groove and a limiting notch, and the multilayer cavity module can be ensured to extend in the height direction and the end surfaces of the multilayer cavity module are flush by the insertion of the extending convex edge, the extending groove and the limiting convex block and the limiting notch; the end parts of the arc-shaped cavity modules are respectively provided with an extension column and an extension groove, and the extension columns and the extension grooves are spliced with extension grooves and extension columns of other cavity modules to realize the extension of the cavity modules in the horizontal direction;
4) vertical grooves are formed in the surfaces of the inner side plate and the outer side plate of the arc-shaped cavity module, so that the binding force between mortar or concrete and the arc-shaped cavity module can be improved;
5) and the inner surface of the inner side plate of the arc-shaped cavity module is provided with a cement plate, a gypsum plate or a heat-insulating decorative plate, so that the construction procedures in the later stage can be reduced, and the construction progress is accelerated.
Drawings
FIG. 1 is a perspective view of an arcuate cavity module;
FIG. 2 is a schematic view of an arcuate outer panel;
FIG. 3 is a schematic view of a connecting bridge;
in the figure: 1-arc outer side plate, 2-arc inner side plate, 3-connecting bridge, 4-connecting groove, 5-connecting piece and 6-vertical groove.
Detailed Description
The present invention will be described in detail with reference to the following embodiments.
Example 1
An arc-shaped cavity module, as shown in fig. 1, comprises a connecting bridge 3 arranged between an arc-shaped outer side plate 1 and an arc-shaped inner side plate 2; the heights of the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2 are the same;
as shown in fig. 2, the inner surface of the arc-shaped outer plate 1 is provided with T-shaped connecting grooves 4, the outer surface of the arc-shaped inner plate 2 is provided with corresponding T-shaped connecting grooves 4, the height of the connecting grooves 4 is 3/4 of the height of the arc-shaped outer plate 1 and the height of the arc-shaped inner plate 2, and the connecting grooves are respectively formed downwards along the tops of the outer plate 1 and the inner plate 2; as shown in fig. 3, T-shaped connecting pieces 5 matched with the connecting grooves 4 are arranged at two ends of the connecting bridge 3, and the height of the connecting pieces 5 is 1/2 of the height of the outer side plate 1; the connecting bridge 3 is connected between the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2 by inserting the T-shaped connecting piece 5 into the connecting groove 4 downward along the top of the connecting groove 4.
According to the size of the building arc-shaped wall, the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2 are processed into an arc shape matched with the arc shape of the wall.
When in use, the arc-shaped outer side plate 1 is placed on the outer surface of the arc-shaped wall to be constructed, so that the arc-shaped outer side plate is attached to the arc surface of the outer surface of the wall to be constructed; placing the arc inner side plate 2 on the inner surface of the arc wall to be constructed to be attached to the arc surface of the inner surface of the wall to be constructed; inserting the connecting piece 5 at the end part of the connecting bridge 3 into the connecting groove 4 from top to bottom, and ensuring the bottom of the connecting piece 5 to be attached to the end face of the bottom of the connecting groove 4; the arc-shaped wall is built, so that the arc-shaped cavity module and the wall are built into a whole, and the heat preservation effect is achieved through the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2.
The beneficial effect of this embodiment is: the outer side plate and the inner side plate of the cavity module are both arranged to be arc-shaped matched with the arc-shaped wall surface, and the cavity module is convenient to apply to the arc-shaped building wall surface to achieve the heat preservation effect.
Example 2
On the basis of the embodiment 1, the thickness ranges of the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2 are 30-90mm, and the thickness range of the connecting bridge 3 is 30-60 mm; the length of the connecting bridge 3 ranges from 100 mm to 500 mm.
In the area with proper temperature throughout the year, the thicknesses of the outer side plate 1 and the inner side plate 2 are both 30mm, so that the heat preservation requirement of the building can be met; in a region with lower temperature, the thickness of the outer side plate 1 is 60 mm; in extremely cold areas, the thickness of the outer side plate 1 and the inner side plate 2 is selected to be 90mm, so that a good heat preservation effect is achieved.
The beneficial effect of this embodiment is: the thickness of arc outer panel and arc inboard plate sets up a plurality of specifications, can satisfy the heat preservation demand according to the condition adjustment of the regional temperature in building place.
Example 3
On the basis of embodiment 2, the middle of the upper surfaces of the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2 are both provided with extending convex edges, the two sides of each extending convex edge are provided with limiting lugs with the same height as the extending convex edges, the middle of the lower surface is provided with extending grooves matched with the extending convex edges, and the two sides of each extending groove are provided with limiting notches matched with the limiting lugs;
when extending in the height direction, the extending groove and the limiting notch at the bottom of the upper layer arc cavity module are respectively sleeved with the extending convex edge and the limiting convex block at the top of the upper layer arc cavity module.
The first ends of the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2 are respectively provided with an extension column and an extension groove, and the second ends are respectively provided with an extension groove and an extension column;
when the hollow cavity module extends in the plane direction, the extending columns and the extending grooves at the first ends of the arc-shaped outer side plates 1 and the arc-shaped inner side plates 2 are respectively connected with the extending grooves and the extending columns at the end parts of the cavity modules which are close to the extending columns and the extending grooves; the extending grooves and the extending columns at the second ends of the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2 are respectively connected with the extending columns and the extending grooves at the end parts of the cavity modules close to the extending columns and the extending grooves.
The beneficial effect of this embodiment is: the upper surface of the arc-shaped cavity module is provided with an extending convex edge and a limiting convex block, the lower surface of the arc-shaped cavity module is provided with an extending groove and a limiting concave opening, and the multilayer cavity module can be ensured to extend in the height direction and the end surfaces of the multilayer cavity module are flush by the insertion of the extending convex edge, the extending groove and the limiting convex block and the limiting concave opening; the end parts of the arc-shaped cavity modules are respectively provided with an extension column and an extension groove, and the extension columns and the extension grooves of the other cavity modules are spliced with the extension columns and the extension columns to realize the extension of the cavity modules in the horizontal direction.
Example 4
On the basis of embodiment 3, vertical grooves 6 for pouring mortar or concrete and combining with the arc-shaped cavity module are formed in the surfaces of the arc-shaped outer side plate 1 and the arc-shaped inner side plate 2.
The beneficial effect of this embodiment is: the vertical groove can improve the binding force between mortar or concrete and the special-shaped buttress cavity module.
Example 5
On the basis of embodiment 4, the inner surface of the arc-shaped inner side plate 2 is provided with a cement plate, a gypsum plate or a heat-insulating decorative plate.
The beneficial effect of this embodiment is: the inner surface of the inner side plate of the arc-shaped cavity module is compounded with a cement plate, a gypsum plate or a heat-insulating decorative plate, so that the construction procedures in the later period can be reduced, and the construction progress is accelerated.
The content of the present invention is not limited to the examples, and any equivalent transformation adopted by the technical solution of the present invention is covered by the claims of the present invention by those skilled in the art through reading the present invention.

Claims (8)

1. An arc-shaped cavity module is characterized by comprising a connecting bridge (3) arranged between an arc-shaped outer side plate (1) and an arc-shaped inner side plate (2);
the inner surface of the arc-shaped outer side plate (1) and the outer surface of the arc-shaped inner side plate (2) are correspondingly provided with connecting grooves (4); two ends of the connecting bridge (3) are provided with connecting pieces (5) matched with the connecting grooves (4); the connecting bridge (3) is connected between the arc-shaped outer side plate (1) and the arc-shaped inner side plate (2) by inserting the connecting piece (5) into the connecting groove (4).
2. The arc-shaped cavity module as claimed in claim 1, wherein the connecting slots (4) are respectively provided with T-shaped slots along the middle-to-surface of the arc-shaped outer side plate (1) and the arc-shaped inner side plate (2); the connecting piece (5) is provided with a T-shaped piece matched with the connecting groove (4) from two ends to the middle of the connecting bridge (3); the connecting bridge (3) is connected between the arc-shaped outer side plate (1) and the arc-shaped inner side plate (2) by inserting the T-shaped connecting piece (5) into the T-shaped connecting groove (4).
3. The curved cavity module according to claim 2, wherein the curved outer side plate (1) and the curved inner side plate (2) are of the same height; the height of the connecting groove (4) is 3/4 of the height of the arc-shaped outer side plate (1) and the arc-shaped inner side plate (2), and the connecting groove is respectively arranged downwards along the tops of the outer side plate (1) and the inner side plate (2); the height of the connecting piece (5) is 1/2 of the height of the outer side plate (1), and the connecting piece is downwards inserted along the top of the connecting groove (4).
4. The curved cavity module according to claim 1, wherein the curved outer side plate (1) and the curved inner side plate (2) have a thickness in the range of 30-90mm and the connecting bridge (3) has a thickness in the range of 30-60 mm; the length range of the connecting bridge (3) is 100-500 mm.
5. The arc-shaped cavity module as claimed in claim 1, wherein the arc-shaped outer plate (1) and the arc-shaped inner plate (2) are provided with extending convex ribs in the middle of the upper surface, limiting protrusions with the same height as the extending convex ribs are arranged on both sides of the extending convex ribs, extending grooves matched with the extending convex ribs are arranged in the middle of the lower surface, and limiting notches matched with the limiting protrusions are arranged on both sides of the extending grooves;
when extending in the height direction, the extending groove and the limiting notch at the bottom of the upper layer arc cavity module are respectively sleeved with the extending convex edge and the limiting convex block at the top of the upper layer arc cavity module.
6. The arc-shaped cavity module according to claim 5, wherein the first ends of the arc-shaped outer side plate (1) and the arc-shaped inner side plate (2) are respectively provided with an extension column and an extension groove, and the second ends are respectively provided with an extension groove and an extension column;
when the hollow cavity module extends in the plane direction, the extending columns and the extending grooves at the first ends of the arc-shaped outer side plate (1) and the arc-shaped inner side plate (2) are respectively connected with the extending grooves and the extending columns at the end parts of the cavity modules which are close to the extending columns and the extending grooves; the extension grooves and the extension columns at the second ends of the arc-shaped outer side plate (1) and the arc-shaped inner side plate (2) are respectively connected with the extension columns and the extension grooves at the end parts of the cavity modules which are close to the extension columns and the extension columns.
7. The arc-shaped cavity module according to claim 1, wherein the surfaces of the arc-shaped outer side plate (1) and the arc-shaped inner side plate (2) are provided with vertical grooves (6) for pouring mortar or concrete to be combined with the arc-shaped cavity module.
8. The arc-shaped cavity module according to claim 1, wherein the inner surface of the arc-shaped inner side plate (2) is provided with a cement plate, a gypsum plate or a heat-insulating decorative plate.
CN202022017021.8U 2020-09-15 2020-09-15 Arc cavity module Active CN213418210U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022017021.8U CN213418210U (en) 2020-09-15 2020-09-15 Arc cavity module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022017021.8U CN213418210U (en) 2020-09-15 2020-09-15 Arc cavity module

Publications (1)

Publication Number Publication Date
CN213418210U true CN213418210U (en) 2021-06-11

Family

ID=76261844

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022017021.8U Active CN213418210U (en) 2020-09-15 2020-09-15 Arc cavity module

Country Status (1)

Country Link
CN (1) CN213418210U (en)

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