CN219952355U - Inorganic composite insulation board sandwich dismantling-free template - Google Patents

Inorganic composite insulation board sandwich dismantling-free template Download PDF

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Publication number
CN219952355U
CN219952355U CN202320918735.7U CN202320918735U CN219952355U CN 219952355 U CN219952355 U CN 219952355U CN 202320918735 U CN202320918735 U CN 202320918735U CN 219952355 U CN219952355 U CN 219952355U
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China
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insulation board
composite insulation
reinforcing
inorganic composite
free template
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CN202320918735.7U
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Chinese (zh)
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吴子启
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Qingdao Fuqiyuan New Building Materials Co ltd
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Qingdao Fuqiyuan New Building Materials Co ltd
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Abstract

The utility model discloses an inorganic composite heat-insulating plate sandwich dismantling-free template, which is sequentially connected with an inner substrate, an inner fireproof layer, a composite heat-insulating plate, an outer fireproof layer and an outer substrate from inside to outside, wherein reinforcing ribs and reinforcing nets are arranged between the inner fireproof layer and the composite heat-insulating plate, a filling layer is arranged between the reinforcing nets and the composite heat-insulating plate, alkali-resistant mesh fabrics are paved on two adjacent bonding surfaces of the inner substrate, the inner fireproof layer, the composite heat-insulating plate, the outer fireproof layer and the outer substrate, the inner substrate and the reinforcing nets are bonded through heat-insulating mortar, the inner substrate and the outer fireproof layer are offset towards one end, a groove is formed at one end of the dismantling-free template, and a bump matched with the groove is formed at the other end of the inner substrate and the outer fireproof layer. The utility model enhances the structural strength of the heat-insulating board dismantling-free template, improves the air permeability of the material, and enhances the heat-insulating performance of the board.

Description

Inorganic composite insulation board sandwich dismantling-free template
Technical Field
The utility model relates to a disassembly-free template device, in particular to a sandwich disassembly-free template composed of inorganic composite boards.
Background
The construction cast-in-place concrete structure external heat preservation integrated disassembly-free template commonly used at present is divided into from inside to outside: an inner reinforcing layer, a heat preservation layer, an inorganic material fireproof transition layer and an outer protective layer. Most of the heat-insulating layers of the structural system core materials are molded polystyrene foam plastics (EPS), general pure extruded sheets (XPS), spraying or hard Polyurethane (PUR) and the like, and the materials are large in water vapor resistance, so that when the indoor temperature of a human living is increased, saturated water vapor cannot migrate outwards, so that indoor air is retained for a long time, the long oxygen content of the air age is reduced, the indoor heat comfort level in northern winter is poor, the air conditioning energy consumption in southern summer is high, the necessary health indexes of humidity, temperature and oxygen content of the human living are not met, and in addition, the structural strength of the pure heat-insulating sheets or composite boards is insufficient, so that the structural rigidity of the integral template device is insufficient.
Disclosure of Invention
According to the background technology, the utility model provides the inorganic composite heat-insulating plate sandwich disassembly-free template, the structural strength of the heat-insulating plate disassembly-free template is enhanced by adopting the combined structure of the inorganic composite heat-insulating plate and the reinforcing net, the disassembly-free template is installed and used in a module combination mode, and the matched grooves and the matched convex blocks between the modules are formed through the dislocation of the inner base plate and the outer fireproof layer of the disassembly-free template, so that the use flexibility of the disassembly-free template is improved, the heat-insulating performance of the disassembly-free template is not influenced, and an additional structure and a process for manufacturing the structure matched with the modules are not needed.
The technical scheme adopted for solving the technical problems is as follows:
as shown in the drawings, the inorganic composite heat-insulating plate sandwich disassembly-free template comprises an inner substrate, an inner fireproof layer, a composite heat-insulating plate, an outer fireproof layer and an outer substrate, wherein the inner substrate, the inner fireproof layer, the composite heat-insulating plate, the outer fireproof layer and the outer substrate are sequentially connected from inside to outside, a reinforcing rib and a reinforcing net are arranged between the inner fireproof layer and the composite heat-insulating plate, the reinforcing net is provided with the reinforcing rib on one side facing the composite heat-insulating plate, a filling layer is arranged between the reinforcing net and the composite heat-insulating plate, alkali-resistant mesh fabrics are paved in two adjacent bonding surfaces of the inner substrate, the inner fireproof layer, the composite heat-insulating plate, the outer fireproof layer and the outer substrate, the composite heat-insulating plate and the reinforcing net are bonded through heat-insulating mortar, the inner substrate and the outer fireproof layer are offset towards one end, a groove is formed at one end of the disassembly-free template, and a bump matched with the groove is formed at the other end.
The inorganic composite heat-insulating plate sandwich dismantling-free template is characterized in that the reinforcing net is of a net structure, the reinforcing ribs are integrally arranged on one side of the connecting point of the reinforcing net, the reinforcing ribs on two sides of the reinforcing net are arranged on the connecting point of the reinforcing net in a staggered mode, the reinforcing net is of a whole net structure, and the net structure is formed by arranging a plurality of rows and a plurality of columns or one or more single rows in a strip mode.
The inorganic composite heat-insulating plate sandwich dismantling-free template is characterized in that the reinforcing net is formed by uniformly distributing a plurality of frames in a cross-shaped strip-shaped structure, and the reinforcing ribs are arranged on one side of the cross-shaped frames.
The inorganic composite heat-insulating plate sandwich dismantling-free template is characterized in that the reinforcing net is formed by uniformly distributing a plurality of frames in an L-shaped strip structure, and the reinforcing ribs are arranged on one side of the L-shaped frame.
According to the sandwich dismantling-free template for the inorganic composite heat-insulating plate, the filling layer is made of sponge materials, and gaps between the reinforcing net and the composite heat-insulating plate due to embedding are supplemented.
The sandwich dismantling-free template for the inorganic composite heat-insulating plate is characterized in that the inorganic composite heat-insulating plate is an inorganic composite plate.
According to the sandwich dismantling-free template of the inorganic composite heat-insulating plate, the inner fireproof layer and the outer fireproof layer are made of a rock mud material, and the flame retardant is added inside the inner fireproof layer and the outer fireproof layer.
According to the sandwich dismantling-free template for the inorganic composite heat-insulating plate, the inner substrate and the outer substrate are both cold-rolled substrates or substrates made of polymer mortar.
The sandwich disassembly-free template for the inorganic composite heat-insulating plate has the advantages that the structural strength of the disassembly-free template for the heat-insulating plate is enhanced by adopting the combined structure of the inorganic composite heat-insulating plate and the reinforcing net, the disassembly-free template is installed and used in a module combination mode, and the misplacement of the inner base plate and the outer fireproof layer forms the matched grooves and the matched projections between the modules, so that the use flexibility of the disassembly-free template is improved, the heat-insulating performance of the disassembly-free template is not influenced, the additional structure and the process for manufacturing the matched structure of the modules are not needed, the manufacturing cost and the process are saved, and in addition, the heat-insulating magma bonding and the sponge filling are adopted, so that the air permeability of the material is improved, the heat-insulating performance of the plate is enhanced, and the sandwich disassembly-free template is reasonable in structural design and wide in application range.
Drawings
The utility model will be further described with reference to the drawings and examples.
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of the structure of the reinforcing mesh and the reinforcing ribs of the present utility model;
FIG. 3 is a schematic structural diagram of a reinforcing mesh and a reinforcing rib according to embodiment 2 of the present utility model;
fig. 4 is a schematic structural diagram of a reinforcing mesh and a reinforcing rib according to embodiment 3 of the present utility model.
1. The heat-insulating plate comprises an inner base plate, an inner fireproof layer, an outer base plate, a composite heat-insulating plate, reinforcing ribs, a filling layer and a reinforcing net.
Detailed Description
The present utility model will be described in detail below with reference to the drawings and detailed description to enable those skilled in the art to better understand the technical scheme of the present utility model.
[ example 1 ]
As shown in fig. 1-2, the inorganic composite insulation board sandwich disassembly-free template provided by the utility model comprises an inner substrate 1, an inner fireproof layer 2, a composite insulation board 5, an outer fireproof layer 3 and an outer substrate 4, wherein the disassembly-free template is sequentially connected with the inner substrate 1, the inner fireproof layer 2, the composite insulation board 5, the outer fireproof layer 3 and the outer substrate 4 from inside to outside, a reinforcing rib 6 and a reinforcing net 8 are arranged between the inner fireproof layer 2 and the composite insulation board 5, the reinforcing net 8 is provided with the reinforcing rib 6 on one side facing the composite insulation board 5, a filling layer 7 is arranged between the reinforcing net 8 and the composite insulation board 5, alkali-resistant grid cloth is paved in two adjacent bonding surfaces of the inner substrate 1, the inner fireproof layer 2, the composite insulation board 5, the outer fireproof layer 3 and the outer substrate 4, the composite insulation board 5 and the reinforcing net 8 are bonded through insulation mortar, the inner substrate 1 and the outer fireproof layer 3 are offset towards one end, a groove is formed at one end of the disassembly-free template, and a bump matched with the groove is formed at the other end.
Further, the reinforcing net 8 is a net structure, the reinforcing ribs 6 are integrally arranged on one side of the connecting point of the reinforcing net 8, the reinforcing ribs 6 on two sides of the reinforcing net 8 are arranged on the connecting point of the reinforcing net 8 in a staggered manner, the reinforcing net 8 is of a whole net structure, and the net structure is of a plurality of rows and columns.
Furthermore, the filling layer 7 is made of sponge material, and is used for supplementing gaps generated by embedding between the reinforcing mesh 8 and the composite insulation board 5.
Further, the composite insulation board 5 is an inorganic composite board.
Furthermore, the inner fireproof layer 2 and the outer fireproof layer 3 are made of a rock mud material, and a flame retardant is added into the inner fireproof layer.
Further, the inner substrate 1 and the outer substrate 4 are both cement boards.
In the production process of the embodiment, the inner base plate 1 is connected with the inner fireproof layer 2, the composite heat insulation board 5 is connected with the outer fireproof layer 3, and the outer fireproof layer 3 is connected with the outer base plate 4 through adhesive bonding, and the connection process between the inner fireproof layer 2 and the composite heat insulation board 5 is as follows: an alkali-resistant gridding cloth is paved on a composite heat-insulating plate 5, a layer of sponge is inserted into a reinforcing net 8 through a reinforcing rib 6, so that the sponge coats the gridding strips of the reinforcing net 8, then the reinforcing net 8 is fixed on one side of the heat-insulating plate in a mode of embedding and inserting the reinforcing rib 66 on the side of the extruded sheet, then a layer of heat-insulating mortar is poured on one layer of the reinforcing net 8, and then the inner fireproof layer 2 is bonded through the heat-insulating mortar.
[ example 2 ]
As shown in fig. 3, unlike in embodiment 1, in this embodiment, further, the reinforcing mesh 8 is formed by uniformly arranging a plurality of frames in a cross-shaped strip structure, and the reinforcing ribs 6 are disposed on one side of the cross-shaped frame.
[ example 3 ]
As shown in fig. 4, unlike in embodiment 1 and embodiment 2, in this embodiment, further, the reinforcing mesh 8 is formed by uniformly arranging a plurality of frames in an L-shaped strip structure, and the reinforcing ribs 6 are disposed on one side of the L-shaped frame.
In the production process of the embodiment 2 and the embodiment 3, the inner substrate 1 and the inner fireproof layer 2, the composite heat insulation board 5 and the outer fireproof layer 3 and the outer substrate 4 are all bonded and connected through the adhesive, and the connection process between the inner fireproof layer 2 and the composite heat insulation board 5 is as follows: an alkali-resistant gridding cloth is paved on a composite heat-insulating plate 5, a layer of sponge is inserted on a reinforcing net 8 through a reinforcing rib 6, the sponge is used for coating the net strips of the reinforcing net 8, then all reinforcing nets 8 are fixed on one side of the extruded sheet in a mode of embedding and inserting the reinforcing rib 6, all reinforcing nets 8 are uniformly distributed in the same plane according to a certain rule, then a layer of heat-insulating mortar is poured on one layer of the reinforcing net 8, and then the inner fireproof layer 2 is bonded through the heat-insulating mortar.
When the utility model is used, the inner base plate 1 and the outer fireproof layer 3 form a groove and a convex block which are matched and spliced to form the disassembly-free template with a required structure.
The above embodiments are only exemplary embodiments of the present utility model and are not intended to limit the present utility model, the scope of which is defined by the claims. Various modifications and equivalent arrangements of this utility model will occur to those skilled in the art, and are intended to be within the spirit and scope of the utility model.

Claims (7)

1. The utility model provides an inorganic composite insulation board sandwich is exempted from to unpick template, includes interior base plate (1), interior flame retardant coating (2), composite insulation board (5), outer flame retardant coating (3) and outer base plate (4), its characterized in that exempts from to unpick template from interior base plate (1), interior flame retardant coating (2), composite insulation board (5), outer flame retardant coating (3) and outer base plate (4) that connect gradually from interior to exterior, be provided with strengthening rib (6) and reinforcing net (8) between interior flame retardant coating (2) and composite insulation board (5), reinforcing net (8) set up strengthening rib (6) in one side towards composite insulation board (5), be provided with filling layer (7) between reinforcing net (8) and composite insulation board (5), alkali-resisting net has all been laid in the two double-phase adjacent bonding surfaces of interior base plate (1), interior flame retardant coating (2), outer flame retardant coating (3) and outer base plate (4), through bonding mortar between composite insulation board (5) and the reinforcing net (8), interior base plate (1) and outer base plate (3) offset one end and form the recess that matches to form mutually.
2. The inorganic composite insulation board sandwich disassembly-free template according to claim 1, wherein the reinforcing net (8) is of a net structure, the reinforcing ribs (6) are integrally arranged on one side of the connecting point of the reinforcing net (8), and the reinforcing ribs (6) on two sides of the reinforcing net (8) are arranged on the connecting point of the reinforcing net (8) in a staggered mode.
3. The inorganic composite insulation board sandwich dismantling-free template according to claim 1, wherein the reinforcing net (8) is formed by uniformly distributing a plurality of frames with cross-shaped strip structures, and the reinforcing ribs (6) are arranged on one side of the cross-shaped frames.
4. The sandwich dismantling-free template of the inorganic composite heat preservation plate according to claim 1, wherein the reinforcing net (8) is formed by uniformly distributing a plurality of frames of an L-shaped strip-shaped structure, and the reinforcing ribs (6) are arranged on one side of the L-shaped frame.
5. The inorganic composite insulation board sandwich dismantling-free template according to claim 1, wherein the filling layer (7) is made of sponge materials.
6. The inorganic composite insulation board sandwich dismantling-free template according to claim 1, wherein the composite insulation board (5) is an inorganic composite board.
7. The inorganic composite insulation board sandwich disassembly-free template according to claim 1, wherein the inner substrate (1) and the outer substrate (4) are both cold-rolled substrates or substrates made of polymer mortar.
CN202320918735.7U 2023-04-23 2023-04-23 Inorganic composite insulation board sandwich dismantling-free template Active CN219952355U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320918735.7U CN219952355U (en) 2023-04-23 2023-04-23 Inorganic composite insulation board sandwich dismantling-free template

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320918735.7U CN219952355U (en) 2023-04-23 2023-04-23 Inorganic composite insulation board sandwich dismantling-free template

Publications (1)

Publication Number Publication Date
CN219952355U true CN219952355U (en) 2023-11-03

Family

ID=88550364

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320918735.7U Active CN219952355U (en) 2023-04-23 2023-04-23 Inorganic composite insulation board sandwich dismantling-free template

Country Status (1)

Country Link
CN (1) CN219952355U (en)

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