CN209941927U - Composite external template cast-in-place concrete heat preservation system - Google Patents

Composite external template cast-in-place concrete heat preservation system Download PDF

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Publication number
CN209941927U
CN209941927U CN201822145785.8U CN201822145785U CN209941927U CN 209941927 U CN209941927 U CN 209941927U CN 201822145785 U CN201822145785 U CN 201822145785U CN 209941927 U CN209941927 U CN 209941927U
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plate
heat
holes
hole
heat insulation
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CN201822145785.8U
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Chinese (zh)
Inventor
贾葛飞
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Jia Gefei
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Shandong Dry Star Energy Saving Building Material Co Ltd
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Abstract

Composite exterior sheathing cast in situ concrete heat preservation system, including two first heated board and the second heated board that set up side by side, seted up two first through-holes on the first heated board, seted up two second through-holes on the second heated board, first through-hole and the crisscross setting of second through-hole set up the first recess of two parallels in the both sides of two first through-holes, and the second recess of two parallels is seted up to the both sides of second through-hole, corresponds to the position of first recess, installs two first fixed plates on the second heated board, is equipped with first connecting plate on the first fixed plate, and the one end fixed mounting of first connecting plate is on first fixed plate, and the other end of first connecting plate cooperatees with first recess. The utility model has the advantages of: the heat insulation effect of the whole heat insulation system and the heat insulation wall is improved.

Description

Composite external template cast-in-place concrete heat preservation system
Technical Field
The utility model belongs to the technical field of the thermal insulation wall technique and specifically relates to a compound exterior sheathing cast in situ concrete heat preservation system.
Background
At present, most of heat preservation walls are filled with heat preservation materials after a base wall is selected, then an outer side template is built, and then concrete is poured on site, the whole process is complicated, a large amount of manpower and material resources are used, reliable positioning measures need to be taken for the template to enhance the strength of the wall, and after the concrete pouring is finished, the template needs to be disassembled, so that great troubles are brought to the construction of the whole heat preservation wall.
Disclosure of Invention
In order to solve the problems, an object of the utility model is to provide a compound exterior sheathing cast in situ concrete heat preservation system, including the heated board that sets up side by side and the concrete of intussuseption, heat preservation system prefabricates in advance and accomplishes, can regard as insulation material, partial wall body and outside template to use at the construction in-process of heat preservation wall, has saved the process of additionally setting up the template and dismantling, has simplified the construction process of whole heat preservation wall.
The utility model provides a technical scheme that its technical problem adopted is: the composite external template cast-in-place concrete heat insulation system comprises two first heat insulation plates and two second heat insulation plates which are arranged side by side, wherein two first through holes are formed in the first heat insulation plates, two second through holes are formed in the second heat insulation plates, the first through holes and the second through holes are arranged in a staggered mode, two parallel first grooves are formed in two sides of the two first through holes, two parallel second grooves are formed in two sides of the second through holes, the positions of the two second grooves correspond to the positions of the first grooves, two first fixing plates are installed on the second heat insulation plates, first connecting plates are arranged on the first fixing plates, one ends of the first connecting plates are fixedly installed on the first fixing plates, and the other ends of the first connecting plates are matched with the first grooves; and two second fixing plates are arranged on the first heat-insulating plate corresponding to the positions of the second grooves, second connecting plates are arranged on the second fixing plates, one ends of the second connecting plates are fixedly arranged on the second fixing plates, the other ends of the second connecting plates are matched with the second grooves, and concrete is filled between the first heat-insulating plates and the second heat-insulating plates and in the first through holes and the second through holes. Further, first fixed plate and second fixed plate all install on the heated board through self-tapping screw, and the inside circumference of first through-hole and second through-hole distributes and has four at least self-tapping screws, all be equipped with two strengthening ribs that are the V type setting on self-tapping screw's the nut. Furthermore, the minimum distance between the first groove and the side edge of the first heat-insulation plate and the minimum distance between the second groove and the side edge of the second heat-insulation plate are both more than or equal to 10cm, the distance between the two first through holes and the distance between the two second through holes are both 4-6cm, and the minimum distance between any one first through hole and the side edge of the first heat-insulation plate and the minimum distance between any one second through hole and the side edge of the second heat-insulation plate are both more than or equal to 10 cm.
The utility model has the advantages of: the composite outer formwork cast-in-place concrete heat insulation system comprises two heat insulation plates which are arranged side by side, the heat insulation system is convenient to prefabricate in advance, the whole heat insulation system can serve as heat insulation materials, partial wall bodies and outer side formworks, and the process of erecting and disassembling the formworks is omitted. The through hole has been seted up on the heated board, can be conveniently at the heat preservation wall construction in-process, thermal insulation system and basic unit's wall body, the location installation between thermal insulation system and the outer decoration, the strengthening rib on the fixed plate and on the self-tapping screw of through-hole inside can further guarantee the joint strength between heated board and the inside concrete layer to improve the heat preservation effect of whole thermal insulation system and heat preservation wall.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a partially enlarged view of a cross-sectional view taken along line a-a in fig. 1.
In the figure, 1, a first heat preservation plate 2, a second groove 3, a second through hole 4, a second fixing plate 5, a second connecting plate 6, a concrete 7, a self-tapping screw 8, a reinforcing rib 9, a second heat preservation plate 10, a first through hole 11, a first groove 12 and a first connecting plate 13 are arranged on the first heat preservation plate.
Detailed Description
A compound exterior sheathing cast in situ concrete heat preservation system, as shown in fig. 1, including two first heated board 1 and the second heated board 9 that set up side by side, seted up two first through-holes 10 on the first heated board 1, seted up two second through-holes 3 on the second heated board 9, first through-hole 10 and the crisscross setting of second through-hole 3. Two parallel first grooves 11 are formed in two sides of the two first through holes 10, two parallel second grooves 2 are formed in two sides of the second through hole 3, two first fixing plates 13 are installed on the second heat insulation plate 9 corresponding to the positions of the first grooves 11, a first connecting plate 12 is arranged on each first fixing plate 13, one end of each first connecting plate 12 is fixedly installed on each first fixing plate 13, and the other end of each first connecting plate 12 is matched with each first groove 11; corresponding to the position of second recess 2, install two second fixed plates 4 on first heated board 1, be equipped with second connecting plate 5 on the second fixed plate 4, the one end fixed mounting of second connecting plate 5 is on second fixed plate 4, and the other end of second connecting plate 5 cooperatees with second recess 2 to can be fixed on the position first heated board 1 and second heated board 9. Concrete 6 is filled between the first heat-insulating plate 1 and the second heat-insulating plate 9 and in the first through hole 10 and the second through hole 3, so that the connection strength of the first heat-insulating plate 1 and the second heat-insulating plate 9 and the concrete 6 can be ensured.
In order to facilitate the advance prefabrication of the heat insulation system, the first heat insulation plate 1 and the second heat insulation plate 9 can be the same type of heat insulation plate, in the construction process of the composite external template cast-in-place concrete heat insulation system, two heat insulation boards of the same type can be placed side by side, the side with the groove is opposite, the heat preservation board on one side is arranged upright, the heat preservation board on the other side is arranged upside down, the connecting board on each heat preservation board can be matched with the groove on the opposite heat preservation board, thereby get off the rigidity of two heated boards, the simple and convenient easy operation of the process of whole insulation system's location assembly, assemble the completion after alright install the template additional in the both sides of heated board and carry out concrete 6 watering between to two heated boards, the joint strength between concrete 6 and the heated board can be guaranteed in the setting of the connecting plate on the heated board and through-hole to guarantee whole insulation system's heat preservation effect. And after the poured concrete 6 is solidified, the template can be removed, and the construction of the heat preservation system is completed. The whole composite external template cast-in-place concrete heat insulation system can be prefabricated in batches before the heat insulation wall is constructed, so that the overall construction time of the heat insulation wall is greatly reduced.
When the composite external template cast-in-place concrete heat insulation system is installed in a heat insulation wall, the existing heat insulation wall installation process can be adopted for construction, and the method can also be implemented according to the following scheme: the prefabricated composite external template cast-in-place concrete thermal insulation system is positioned and installed by hanging the through hole on the connecting piece on the base layer wall, leveling mortar is smeared on the thermal insulation board on the other side of the thermal insulation system, and then the thermal insulation board is installed or directly coated on the decorative wallboard. Before the leveling mortar is smeared, the surface of the heat preservation plate is ensured to be clean, free of oil stain, free of floating and sinking and the like, then an interface agent is brushed on the surface of the heat preservation plate, vertical and horizontal through lines are drawn, and openings are formed in the vertical and horizontal through lines. If the interface agent on the heat insulation plate is defective, the interface agent should be brushed on the surface uniformly without exposing the bottom. The plastering layer and the heat insulation board are firmly bonded without delaminating and hollowing, the surface of the plastering layer is smooth and clean, the joints are smooth, and the line corners are vertical and clear. And the leveling mortar should be plastered in layers, the thickness of each layer of plastering is not more than 10mm, the total thickness is not more than 30mm, and the leveling mortar needs to be watered and maintained after being plastered.
The core material in the composite external template cast-in-place concrete heat insulation system can be PU, and the heat conductivity coefficient of the heat insulation system is 0.020w, the model specification can adopt the following three schemes: 600mm x2900mm x thickness, 600mm x3000mm x thickness, 600mm x2400mm x thickness, the thickness can be customized according to customer's needs.
Preferably, in order to further increase the joint strength between the first heat-insulating plate 1 and the second heat-insulating plate 9 and the concrete 6, as shown in fig. 2, the first fixing plate 13 and the second fixing plate 4 are both installed on the heat-insulating plate through the tapping screws 7, at least four tapping screws 7 are distributed on the inner circumferences of the first through hole 10 and the second through hole 3, and two reinforcing ribs 8 arranged in a V shape are arranged on the nuts of the tapping screws 7. The reinforcing ribs 8 can ensure that the connection strength of the first heat-insulation plate 1 and the second heat-insulation plate 9 with the concrete 6 is improved in the pouring process of the concrete 6, and further ensure the heat-insulation effect of the whole heat-insulation system.
Preferably, in order to further facilitate the processing, transportation and installation of the composite external template cast-in-place concrete heat insulation system, the minimum distance between the first groove 11 and the side edge of the first heat insulation plate 1 and the minimum distance between the second groove 2 and the side edge of the second heat insulation plate 9 are both more than or equal to 10cm, the distance between the two first through holes 10 and the distance between the two second through holes 3 are both 4-6cm, and the minimum distance between any one first through hole 10 and the side edge of the first heat insulation plate 1 and the minimum distance between any one second through hole 3 and the side edge of the second heat insulation plate 9 are more than or equal to 10 cm.
Technical scheme of the utility model not be restricted to the utility model the within range of embodiment. The technical contents not described in detail in the present invention are all known techniques.

Claims (3)

1. The utility model provides a compound exterior sheathing cast in situ concrete heat preservation system which characterized in that: the heat insulation board comprises a first heat insulation board (1) and a second heat insulation board (9) which are arranged side by side, wherein two first through holes (10) are formed in the first heat insulation board (1), two second through holes (3) are formed in the second heat insulation board (9), the first through holes (10) and the second through holes (3) are arranged in a staggered mode, two parallel first grooves (11) are formed in two sides of the two first through holes (10), two parallel second grooves (2) are formed in two sides of the second through holes (3), two first fixing plates (13) are installed on the second heat insulation board (9) corresponding to the positions of the first grooves (11), a first connecting plate (12) is arranged on each first fixing plate (13), one end of the first connecting plate (12) is fixedly installed on each first fixing plate (13), and the other end of the first connecting plate (12) is matched with the first grooves (11); corresponding to the position of second recess (2), install two second fixed plates (4) on first heated board (1), be equipped with second connecting plate (5) on second fixed plate (4), the one end fixed mounting of second connecting plate (5) is on second fixed plate (4), and the other end and second recess (2) of second connecting plate (5) cooperate between first heated board (1) and second heated board (9) and all fill concrete (6) in first through-hole (10) and second through-hole (3).
2. The composite external template cast-in-place concrete thermal insulation system according to claim 1, characterized in that: first fixed plate (13) and second fixed plate (4) are all installed on the heated board through self-tapping screw (7), and the inside circumference distribution of first through-hole (10) and second through-hole (3) has four at least self-tapping screws (7), all be equipped with two strengthening ribs (8) that are the V type setting on the nut of self-tapping screw (7).
3. The composite external template cast-in-place concrete thermal insulation system according to claim 1, characterized in that: the minimum distance between the first groove (11) and the side edge of the first heat-insulation plate (1) and the minimum distance between the second groove (2) and the side edge of the second heat-insulation plate (9) are both more than or equal to 10cm, the distance between the two first through holes (10) and the distance between the two second through holes (3) are both 4-6cm, and the minimum distance between any first through hole (10) and the side edge of the first heat-insulation plate (1) and the minimum distance between any second through hole (3) and the side edge of the second heat-insulation plate (9) are more than or equal to 10 cm.
CN201822145785.8U 2018-12-20 2018-12-20 Composite external template cast-in-place concrete heat preservation system Active CN209941927U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822145785.8U CN209941927U (en) 2018-12-20 2018-12-20 Composite external template cast-in-place concrete heat preservation system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822145785.8U CN209941927U (en) 2018-12-20 2018-12-20 Composite external template cast-in-place concrete heat preservation system

Publications (1)

Publication Number Publication Date
CN209941927U true CN209941927U (en) 2020-01-14

Family

ID=69119078

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822145785.8U Active CN209941927U (en) 2018-12-20 2018-12-20 Composite external template cast-in-place concrete heat preservation system

Country Status (1)

Country Link
CN (1) CN209941927U (en)

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Effective date of registration: 20240109

Address after: No. 77, Qingnian Road, Mount Taishan District, Tai'an, Shandong 271002

Patentee after: Jia Gefei

Address before: 271603 No. 052 Jiyan Road, Anlinzhan Town, Feicheng City, Tai'an City, Shandong Province

Patentee before: SHANDONG QIANXING ENERGY SAVING BUILDING MATERIAL CO.,LTD.