CN217205020U - Mounting structure of imitative stone material heated board - Google Patents
Mounting structure of imitative stone material heated board Download PDFInfo
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- CN217205020U CN217205020U CN202123349943.XU CN202123349943U CN217205020U CN 217205020 U CN217205020 U CN 217205020U CN 202123349943 U CN202123349943 U CN 202123349943U CN 217205020 U CN217205020 U CN 217205020U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A30/00—Adapting or protecting infrastructure or their operation
- Y02A30/24—Structural elements or technologies for improving thermal insulation
- Y02A30/244—Structural elements or technologies for improving thermal insulation using natural or recycled building materials, e.g. straw, wool, clay or used tires
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Abstract
The technical scheme provides an installation structure of a stone-like insulation board, which comprises the stone-like insulation board and a base wall, wherein the stone-like insulation board comprises an insulation layer, a panel and a real stone paint coating, the insulation layer is provided with the panel, one side of the panel, which is far away from the insulation layer, is coated with the real stone paint coating, the installation structure also comprises a bottom plate, the bottom plate is arranged on one side of the insulation layer, which is far away from the panel, and the bottom plate, the insulation layer and the panel are bonded through an adhesive; the anti-crack waterproof layer is arranged on the base wall body, the anchoring assembly penetrates through the anti-crack waterproof layer and extends into the base wall body, the panel is arranged on the anchoring assembly, the real stone paint coating is located on one side, away from the base wall body, of the panel, and the bonding layer is arranged between the anti-crack waterproof layer and the bottom plate. The stone-like insulation board is compounded by the bottom plate, the heat preservation layer, the panel and the stone paint coating through the adhesive, so that the situation that the stone-like insulation board is broken in the installation process to influence the heat preservation effect is avoided, and the protection performance of the insulation board is improved.
Description
Technical Field
The utility model relates to a building external wall insulation field especially relates to an imitative stone material heated board's mounting structure.
Background
In the super high-rise residential building adopting the outer wall high-efficiency energy-saving technology, the common method of outer wall heat insulation is that a metal keel for fixing a stone decorative surface is paved on the outer wall of the building firstly, then a heat insulation board is pasted on the wall surface and stone is hung on the wall surface, the staggered paving and anchoring process is complex, the field installation efficiency is low, and the cost is high.
Chinese patent publication is CN 208105730U's an STP keeps warm and decorates intergral template based on real mineral varnish is decorated, it adopts compound adhesive to carry out fixed connection to heat preservation and panel to at the panel keep away from the one side coating of heat preservation real mineral varnish coating, it possesses basic building outer wall and decorates and the heat preservation function, but this insulation construction causes the heat preservation barrier propterty poor easily and the fracture leads to the condition such as thermal insulation performance poor to take place in the installation, so propose a imitative stone material heated board and mounting structure and solve above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides an prevent mounting structure of cracked imitative stone material heated board.
The technical scheme of the utility model is realized like this: the utility model provides an imitative stone material heated board, it includes heat preservation, panel and real stone paint coating, and is provided with the panel on the heat preservation, and the panel has real stone paint coating in the one side coating of keeping away from the heat preservation, still includes the bottom plate, and the bottom plate sets up in one side that the panel was kept away from to the heat preservation, and bottom plate, heat preservation and panel pass through the adhesive and bond.
This technical scheme still provides an installation structure of imitative stone material heated board, and it includes foretell imitative stone material heated board and basic unit's wall body, still includes anti waterproof layer, anchor subassembly and adhesive linkage of splitting, and the waterproof layer that splits sets up on basic unit's wall body, and in the anchor subassembly runs through anti waterproof layer that splits and extends to basic unit's wall body, the panel set up on the anchor subassembly, and real mineral varnish coating is located the one side that basic unit's wall body was kept away from to the panel, and the adhesive linkage sets up between anti waterproof layer and bottom plate of splitting.
On the basis of the technical scheme, preferably, the bonding layer is laid on one side of the bottom plate close to the base layer wall in a circular lattice manner.
On the basis of the technical scheme, preferably, the adhering coverage area of the adhesive layer and the bottom plate is larger than 75% of the area of the side surface, close to the base layer wall, of the bottom plate.
On the basis of the technical scheme, preferably, the anchoring assembly comprises an expansion pipe, a screw and a support, the expansion pipe penetrates through the anti-cracking waterproof layer and extends into the base wall body, the screw is arranged in the expansion pipe, and the support is arranged on the screw and abuts against the anti-cracking waterproof layer.
Further preferably, the bracket includes a first connecting member and a second connecting member, the first connecting member is disposed on the screw, the second connecting member is disposed on the first connecting member, and the panel is disposed on the second connecting member.
Further preferably, the first connecting piece comprises a vertical plate and a transverse plate, the vertical plate is arranged on the screw and abuts against the anti-cracking waterproof layer, the transverse plate is vertically arranged relative to the vertical plate and is connected with the tail end of the vertical plate, an arc-shaped chamfer is arranged at the connecting portion of the transverse plate and the vertical plate, the second connecting piece is arranged on the transverse plate, the length of the vertical plate is smaller than that of the transverse plate, and the panel is arranged on the second connecting piece.
Further preferably, the second connecting piece includes a first positioning portion, a second positioning portion and a third positioning portion, the second positioning portion and the third positioning portion are parallel to each other and arranged at intervals, the second positioning portion and the third positioning portion are both abutted against the panel, the first positioning portion is arranged on the transverse plate and penetrates through the second positioning portion and is connected with the third positioning portion, and a first mounting groove and a second mounting groove corresponding to the second positioning portion and the third positioning portion are respectively formed in the outer walls of the panel and the heat preservation layer.
Still further preferably, the first positioning portion is connected with the transverse plate through a bolt, the length of the second positioning portion is greater than that of the third positioning portion, and one end, far away from the third positioning portion, of the first positioning portion abuts against one side, close to the heat preservation layer, of the bottom plate.
The utility model discloses a have following beneficial effect for prior art:
(1) the bottom plate, the heat-insulating layer, the panel and the stone-like paint coating are compounded into the stone-like heat-insulating plate through the adhesive, so that the situation that the heat-insulating effect is influenced due to fracture of the stone-like heat-insulating plate in the installation process is avoided, and the protective performance of the heat-insulating plate is improved;
(2) the stone-like insulation board is fixed and bonded with the base wall body through the anchoring component and the bonding layer, so that the condition that safety accidents are caused by poor installation stability of the stone-like insulation board is avoided;
(3) the bonding layer is laid by adopting a circular lattice, so that stress points between the bottom plate and the base layer wall are increased, and the bonding coverage area of the bonding layer on the bottom plate is not less than 75%, so that the connection strength of the insulation board is further improved, and the bottom plate and the anti-cracking waterproof layer have good ventilation performance;
(4) the support is driven to be fixed with the wall body through the action of the screw and the expansion pipe, meanwhile, the bonding layer fills the gap between the expansion pipe and the screw as well as the gap between the bonding layer and the base layer wall body, and the mounting stability of the anchoring assembly is further improved after the bonding layer is cured;
(5) through the stability of being connected of first connecting piece increase second connecting piece and screw, rethread second connecting piece is fixed a position imitative stone material heated board, avoids leading to crooked and cause the condition emergence of installation poor stability in this imitative stone material heated board installation.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a partial left sectional view of the stone-like insulation structure of the present invention;
fig. 2 is a front view of the stone-like thermal insulation structure of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work all belong to the protection scope of the present invention.
As shown in fig. 1, combine fig. 2, the utility model discloses an imitative stone material heated board, it includes heat preservation 11, panel 12 and real mineral varnish coating 13, fixed mounting has panel 12 on the heat preservation 11, heat preservation 11 is the rock wool board, panel 12 is calcium silicate board or no asbestos fiber cement board, the thickness of panel 12 is 8mm, real mineral varnish coating 13 coats in the one side that panel 12 kept away from heat preservation 11, still include bottom plate 2, bottom plate 2 fixed mounting is in the one side that panel 12 was kept away from to heat preservation 11, bottom plate 2 is calcium silicate board or no asbestos fiber cement board, the thickness of bottom plate 2 is 4mm, bottom plate 2, heat preservation 11 and panel 12 bond through the adhesive; set up panel 12 and bottom plate 2 respectively through the opposite side of heat preservation 11 to the anti folding performance of reinforcing heated board, rethread adhesive bonds bottom plate 2, heat preservation 11 and panel 12, avoids this heated board to lead to the condition emergence of rupture in the installation.
The technical scheme also provides an installation structure of the stone-like heat-insulating plate, which comprises the stone-like heat-insulating plate and a base wall 3, wherein the base wall 3 is a reinforced concrete wall, and further comprises an anti-cracking waterproof layer 4, an anchoring component 5 and an adhesive layer 6, the anti-cracking waterproof layer 5 is laid on the outer wall of the base wall 3, the anti-cracking waterproof layer 5 is anti-cracking waterproof mortar, the anchoring component 5 penetrates through the anti-cracking waterproof layer 5 and extends into the base wall 3, a panel 12 is fixedly installed on the anchoring component 5, a heat-insulating layer 11 is fixedly installed on one side, close to the base wall 3, of the panel 12, a bottom plate 2 is fixedly installed on one side, far away from the panel 12, the adhesive layer 6 is laid between the bottom plate 2 and the base wall 3, and the adhesive layer 6 is a mixture of an adhesive and water; protect basic unit's wall body 3's outer wall through anti waterproof layer 5 that splits, avoid basic unit's wall body 3 to lead to basic unit's wall body 3 to ftracture and influence the condition emergence of this imitative stone material heated board's installation stability at the in-process drilling of installation anchor subassembly 5, anti waterproof layer 5 that splits simultaneously makes level and avoids adhesive linkage 6 and basic unit's wall body 3 direct bonding and influence the condition emergence of adhesion stability to take place, and support fixedly and bond to bottom plate 2 respectively through anchor subassembly 5 and adhesive linkage 6, realize multiple fixed, avoid this imitative stone material heated board installation stability poor and cause the condition emergence of incident.
In order to further improve the installation stability of the installation structure; specifically, the bonding layer 6 adopts a dot matrix laying mode and is arranged between the bottom plate 2 and the anti-cracking waterproof layer 5; the adhesive layer 6 is laid by adopting a dot matrix, so that stress points between the bottom plate 2 and the anti-cracking waterproof layer 5 are increased, good ventilation performance between the bottom plate 2 and the anti-cracking waterproof layer 5 is ensured, and the installation stability of the installation structure is improved.
In order to further improve the mounting stability of the mounting structure; specifically, the adhering coverage area of the adhesive layer 6 on the bottom plate 2 is greater than 75% of the area of one side of the bottom plate 2 close to the anti-crack waterproof layer 5, so that the area of the stress point is increased while the ventilation performance is provided between the bottom plate 2 and the anti-crack waterproof layer 5, and the situation that the single adhesive layer 6 is degummed to influence the installation stability of the installation structure is avoided.
In order to further improve the mounting stability of the mounting structure; specifically, the anchoring component 5 comprises an expansion pipe 51, a screw 52 and a bracket 53, wherein the expansion pipe 51 penetrates through the anti-cracking waterproof layer 5 and extends to the base layer wall 3, the depth of the expansion pipe 51 extending to the base layer wall 3 is not less than 30mm, the screw 52 is connected to the internal thread of the expansion pipe 51, the bracket 53 which is abutted against the anti-cracking waterproof layer 5 is fixedly installed on the outer wall of the screw 52, and the panel 12 is fixedly installed on the outer wall of the bracket 53; the support 53 is driven to be fixed with the base wall 3 through the action of the screw 52 and the expansion pipe 51, meanwhile, the adhesive on the adhesive layer 6 fills the gap between the screw 52 and the expansion pipe 51 as well as the gap between the adhesive and the base wall 3, and the installation stability of the installation structure is further improved after the adhesive is cured.
In order to further improve the mounting stability of the mounting structure; specifically, the bracket 53 comprises a first connecting piece a and a second connecting piece b, the first connecting piece a is fixedly arranged on the screw 52, a mounting hole matched with the screw 52 is formed in the first connecting piece a, the second connecting piece b is fixedly connected with the first connecting piece a through a bolt, and the panel 12 is fixedly arranged in the second connecting piece b; the panel 12 is positioned and fixed through the second connecting piece b, and the screw 52 and the second connecting piece b are supported and fixed through the first connecting piece a, so that the mounting structure is convenient to mount quickly and accurately.
In order to further improve the mounting stability of the mounting structure; specifically, the first connecting piece a comprises a vertical plate 1a and a horizontal plate 1b, the vertical plate 1a is fixedly arranged on the screw 52 and is abutted against the anti-cracking waterproof layer 4, the horizontal plate 1b is fixedly connected with the tail end of the vertical plate 1b, the extending direction of the horizontal plate 1b is perpendicular to the extending direction of the vertical plate 1b, the connecting part of the horizontal plate 1b and the vertical plate 1b is fixedly connected through an arc chamfer, the length of the horizontal plate 1b is greater than that of the vertical plate 1b, the second connecting piece b is fixedly arranged on the horizontal plate 1b, and the panel 12 is fixedly arranged on the second connecting piece b; through the perpendicular setting of diaphragm 1b and vertical plate 1b, and through arc chamfer fixed connection between diaphragm 1b and the vertical plate 1b to increase the lifting surface area and the bearing strength between first connecting piece an and the anti waterproof layer 4 of splitting, and then improved this mounting structure's installation stability.
In order to further improve the mounting stability of the mounting structure; specifically, the second connecting member b includes a first positioning portion 2a, a second positioning portion 2b and a third positioning portion 2c, the first positioning portion 2a is disposed on the transverse plate 1b, the second positioning portion 2b and the third positioning portion 2c are disposed on the first positioning portion 2a in parallel and at intervals, the second positioning portion 2b and the third positioning portion 2c are perpendicular to each other with respect to the first positioning portion 2a, the panel 12 is fixedly mounted between the second positioning portion 2b and the third positioning portion 2c, a first mounting groove adapted to the third positioning portion 2c is formed in an outer wall of the panel 12, and a second mounting groove adapted to the second positioning portion 2b is formed in an outer wall of the heat insulating layer 11; carry out the centre gripping through second location portion 2b and third location portion 2c to panel 12 is carried out accurate location to cooperation first location portion 2a, avoids panel 12 to take place to warp in the installation and influence the installation stability's of this mounting structure the condition emergence.
In order to further improve the installation stability of the installation structure, specifically, the first positioning portion 2a is fixedly connected with the transverse plate 1b through a bolt, the length of the second positioning portion 2b is greater than that of the third positioning portion 2c, and a section of the first positioning portion 2a away from the third positioning portion 2c abuts against one side of the bottom plate 2 close to the heat insulation layer 11; carry on spacingly to bottom plate 2 and panel 12 respectively through first location portion 2a cooperation second location portion 2b and third location portion 2c, simultaneously because bottom plate 2, heat preservation 11 and panel 12 pass through the adhesive bonding for bottom plate 2 and panel 12 installation accuracy are higher and stability is better on second connecting piece b, and then have improved this mounting structure's installation stability.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (8)
1. The utility model provides a mounting structure of imitative stone material heated board, includes imitative stone material heated board and basic unit's wall body (3), imitative stone material heated board includes heat preservation (11), panel (12), real mineral varnish coating (13), and is provided with panel (12) on heat preservation (11), and one side coating that heat preservation (11) were kept away from in panel (12) has real mineral varnish coating (13), still includes bottom plate (2), and bottom plate (2) set up in one side that panel (12) were kept away from in heat preservation (11), and bottom plate (2), heat preservation (11) and panel (12) bond through the adhesive, the mounting structure of imitative stone material heated board, its characterized in that: still include anti waterproof layer (4), anchor subassembly (5) and adhesive linkage (6), anti waterproof layer (4) of splitting set up on basic unit's wall body (3), anchor subassembly (5) run through anti waterproof layer (4) of splitting and extend to in basic unit's wall body (3), panel (12) set up on anchor subassembly (5), and real mineral varnish coating (13) are located one side that basic unit's wall body (3) were kept away from in panel (12), adhesive linkage (6) set up between anti waterproof layer (4) of splitting and bottom plate (2).
2. The mounting structure of the stone-like insulation board according to claim 1, characterized in that: the bonding layer (6) is laid on one side of the bottom plate (2) close to the base layer wall body (3) in a circular lattice manner.
3. The mounting structure of the stone-like insulation board according to claim 1, characterized in that: the sticking coverage area of the bonding layer (6) and the bottom plate (2) is larger than 75% of the area of the side surface of the bottom plate (2) close to the base layer wall body (3).
4. The mounting structure of the stone-like insulation board according to claim 1, characterized in that: the anchoring assembly (5) comprises an expansion pipe (51), a screw (52) and a support (53), the expansion pipe (51) penetrates through the anti-cracking waterproof layer (4) and extends into the base layer wall body (3), the screw (52) is arranged in the expansion pipe (51), and the support (53) is arranged on the screw (52).
5. The mounting structure of the stone-like insulation board according to claim 4, characterized in that: the bracket (53) comprises a first connecting piece (a) and a second connecting piece (b), the first connecting piece (a) is arranged on the screw (52) and is propped against the anti-cracking waterproof layer (4), the second connecting piece (b) is arranged on the first connecting piece (a), and the panel (12) is arranged on the second connecting piece (b).
6. The mounting structure of the stone-like insulation board according to claim 5, characterized in that: first connecting piece (a) includes riser (1a) and diaphragm (1b), riser (1a) set up on screw (52) and with anti waterproof layer (4) counterbalance, diaphragm (1b) set up perpendicularly for riser (1a) and link to each other with riser (1a) end, diaphragm (1b) is provided with the arc chamfer with the connecting portion of riser (1a), second connecting piece (b) sets up on diaphragm (1b), the length of riser (1a) is less than the length of diaphragm (1b), panel (12) set up on second connecting piece (b).
7. The mounting structure of the stone-like insulation board according to claim 6, characterized in that: the second connecting piece (b) comprises a first positioning part (2a), a second positioning part (2b) and a third positioning part (2c), the second positioning part (2b) and the third positioning part (2c) are parallel to each other and arranged at intervals, the second positioning part (2b) and the third positioning part (2c) are mutually abutted with the panel (12), the first positioning part (2a) is arranged on the transverse plate (1b) and penetrates through the second positioning part (2b) and is connected with the third positioning part (2c), and a first mounting groove and a second mounting groove which correspond to the second positioning part (2b) and the third positioning part (2c) are respectively formed in the outer walls of the panel (12) and the heat preservation layer (11).
8. The mounting structure of the stone-like insulation board according to claim 7, characterized in that: the first positioning part (2a) is connected with the transverse plate (1b) through a bolt, the length of the second positioning part (2b) is larger than that of the third positioning part (2c), and one end, far away from the third positioning part (2c), of the first positioning part (2a) is abutted to one side, close to the heat preservation layer (11), of the bottom plate (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123349943.XU CN217205020U (en) | 2021-12-28 | 2021-12-28 | Mounting structure of imitative stone material heated board |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123349943.XU CN217205020U (en) | 2021-12-28 | 2021-12-28 | Mounting structure of imitative stone material heated board |
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CN217205020U true CN217205020U (en) | 2022-08-16 |
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CN202123349943.XU Active CN217205020U (en) | 2021-12-28 | 2021-12-28 | Mounting structure of imitative stone material heated board |
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CN (1) | CN217205020U (en) |
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- 2021-12-28 CN CN202123349943.XU patent/CN217205020U/en active Active
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