CN209891610U - Structure of MCM facing material for air conditioner board - Google Patents

Structure of MCM facing material for air conditioner board Download PDF

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Publication number
CN209891610U
CN209891610U CN201920553329.9U CN201920553329U CN209891610U CN 209891610 U CN209891610 U CN 209891610U CN 201920553329 U CN201920553329 U CN 201920553329U CN 209891610 U CN209891610 U CN 209891610U
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inorganic powder
modified inorganic
mcm
powder composite
concrete slab
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CN201920553329.9U
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杨筱平
石磊
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Guangdong Fumei material science and Technology Co., Ltd
XI'AN ARCHITECTURAL DESIGN AND RESEARCH INSTITUTE Co.,Ltd.
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Xi'an Architectural Design Research Institute Co Ltd
Guangdong Fumei Soft Porcelain Co Ltd
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Abstract

The utility model provides a MCM finish material is used for structure of air conditioner board department, include: the building decorative sheet comprises a concrete plate, a bonding layer and a modified inorganic powder composite building decorative sheet, wherein the concrete plate is attached to an outer wall and extends outwards; the bonding layer positioned on the upper surface of the concrete slab is provided with a downward inclined slope from inside to outside; and the modified inorganic powder composite building facing sheet positioned on the lower surface of the concrete slab is provided with a water dripping groove. Because the compound building decorative surface sheet of modified inorganic powder is flexible good, can buckle at will, consequently the utility model discloses a need not to cut into the same shape with the concrete exposed surface when the compound building decorative surface sheet of modified inorganic powder is pasted, can the reduction of erection time, practice thrift the cost.

Description

Structure of MCM facing material for air conditioner board
Technical Field
The utility model relates to a building exterior finish field especially relates to a MCM finish material is used for structure of air conditioner board department.
Background
Traditional outer machine of air conditioner is laid and often adopts the outside of fixing wall body with metal frame or metal frame, places the outer machine of air conditioner in metal frame or on the metal frame again, at the in-process wasting time and wasting power of settling, the time is after metal rust and corrosion easily for a long time, has the danger of falling.
In order to facilitate the placement and installation of the air conditioner outdoor unit and reduce the falling risk of the air conditioner outdoor unit, air conditioner plates are basically prefabricated in residential houses of cities during construction, so that the air conditioner outdoor unit can be conveniently placed during decoration.
The air conditioning plate is a concrete plate which is attached to an outer wall surface and extends outwards, and generally, the air conditioning plate also needs heat preservation, heat insulation and decoration. Because the air conditioning plate has a plurality of corners, a plurality of crossed exposed surfaces need to be covered and pasted by using decorative materials, and the sizes and the areas of the exposed surfaces are different. The conventional method for decorating the air conditioner board comprises the following steps: firstly, cutting the decorative material on site according to the shape and the size of each exposed surface on the air conditioner board, and then splicing and sticking the cut decorative material on the air conditioner board. The construction method has the problems of time and labor waste and low construction efficiency.
In view of the above, there is a need to provide a new decoration solution for air conditioning panels to solve the above problems.
Disclosure of Invention
The utility model provides a MCM finish material is used for structure of air conditioner board department, earlier with the adhesive coating on concrete slab's each exposed surface, make it form the tie coat, then at the surface pasting composite construction facing sheet of modified inorganic powder of tie coat, accomplish the decoration to the air conditioner board. Because the modified inorganic powder composite building facing sheet has good flexibility and can be bent at will, the modified inorganic powder composite building facing sheet does not need to be cut into the shape same as the exposed surface of concrete when being pasted, the construction period can be shortened, and the cost can be saved.
Realize the utility model discloses the technical scheme of purpose as follows:
a construction of MCM facing material for use at an air conditioning panel, comprising: the building decorative sheet comprises a concrete plate, a bonding layer and a modified inorganic powder composite building decorative sheet, wherein the concrete plate is attached to an outer wall and extends outwards;
the bonding layer positioned on the upper surface of the concrete slab is provided with a downward inclined slope from inside to outside;
and the modified inorganic powder composite building facing sheet positioned on the lower surface of the concrete slab is provided with a water dripping groove.
Because the compound building decorative surface sheet of modified inorganic powder is flexible good, can buckle at will, consequently the utility model discloses a need not to cut into the same shape with the concrete exposed surface when the compound building decorative surface sheet of modified inorganic powder is pasted, can the reduction of erection time, practice thrift the cost.
The utility model sets the slope of downward inclination, so that rainwater firstly drops on the top surface of the MCM air conditioner plate along the outer wall and then slides along the slope in order to supply water to slide down; the utility model discloses set up the drip is in order to prevent that the rainwater from flowing to the outer wall the inside along the modified inorganic powder composite construction facing sheet of concrete slab lower surface, and the rainwater will fall outside the drip.
As a further improvement of the utility model, the slope is 2% ~ 5%. the utility model discloses a 2% ~ 5% is set to the slope, and the rainwater that falls on MCM air conditioner board can in time be drained away, is greater than 5% when the slope, though the rainwater can not gather on MCM air conditioner board, nevertheless great slope can lead to the inorganic powder composite construction facing sheet of modification to be difficult for pasting or paste the unevenness, is less than 2% when the slope, though be convenient for paste the inorganic powder composite construction facing sheet of modification, nevertheless rainwater on the MCM air conditioner board can gather when the rainwater is too big, has increased the burden to the waterproof structure of building.
As a further improvement of the present invention, the drip is distributed along the width direction of the MCM air conditioning panel, and the drip is disposed adjacent to the free end of the MCM air conditioning panel in the length direction.
As a further improvement of the utility model, the tie coat of concrete slab upper surface is equipped with the cavity that is used for pasting modified inorganic powder composite architectural facing sheet, and this cavity is located the corner of concrete slab upper surface and concrete slab side on length direction, and modified inorganic powder composite architectural facing sheet in the cavity forms 2% ~ 5% slope with other tie coats of concrete top surface except that the cavity jointly.
As a further improvement of the utility model, the same modified inorganic powder composite building facing sheet is pasted on the side of the cavity and the concrete slab in the length direction.
As a further improvement, the modified inorganic powder composite building decorative layer is also arranged on the outer wall, and the modified inorganic powder composite building decorative layer pasted on the bonding surface and the modified inorganic powder composite building decorative layer on the outer wall can be filled through caulking strips.
As a further improvement of the utility model, be equipped with the heat preservation between tie coat and the concrete slab, the heat preservation of concrete slab upper surface is the plane.
As a further improvement, the heat-insulating layer is rock wool.
As a further improvement, a protective mortar layer is arranged between the heat preservation layer and the bonding layer, and the protective mortar layer on the upper surface of the concrete slab is a plane.
Compared with the prior art, the beneficial effects of the utility model are that:
the modified inorganic powder composite building facing sheet material used as the air conditioner board decorative material has the characteristics of light weight, good flexibility, good weather resistance and the like, and can shorten the construction period and save the cost compared with the traditional facing material.
Drawings
FIG. 1 is a first schematic view of a configuration where an MCM finish material is used at an air conditioning panel;
FIG. 2 is a second schematic view of a configuration where the MCM finish material is used at an air conditioning panel;
fig. 3 is a schematic layer structure diagram of a modified inorganic powder composite architectural facing sheet.
In the figure, 1, an outer wall; 2. a heat-insulating layer; 3. a bonding layer; 4. compounding modified inorganic powder with building facing sheet; 41. mesh cloth; 42. a flexible sheet material; 5. caulking strips; 6. a concrete slab; 7. a water dripping groove.
Detailed Description
The present invention is described in detail with reference to the embodiments shown in the drawings, but it should be understood that these embodiments are not intended to limit the present invention, and those skilled in the art should understand that the functions, methods, or structural equivalents or substitutions made by these embodiments are within the scope of the present invention.
In the description of the present embodiments, it is to be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of describing the present invention and simplifying the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention.
Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicit to a number of indicated technical features. Thus, a feature defined as "first," "second," etc. may explicitly or implicitly include one or more of that feature. In the description of the invention, the meaning of "a plurality" is two or more unless otherwise specified.
The terms "mounted," "connected," and "coupled" are to be construed broadly and may, for example, be fixedly coupled, detachably coupled, or integrally coupled; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the creation of the present invention can be understood by those of ordinary skill in the art through specific situations.
Example 1:
the modified inorganic powder composite building facing sheet material is abbreviated as MCM (modified inorganic powder composite building finishing material). The modified inorganic powder is used as a main raw material, high molecular polymers are added, and the modified inorganic powder is prepared by molding, crosslinking, heating and compounding. Patent publication No. CN107311505A discloses a method for modifying an inorganic powder composite architectural surface sheet. This method is a known method.
The present embodiment discloses a configuration in which an MCM facing material as shown in fig. 1 is used at an air conditioner panel, including: a concrete plate 6 attached to the outer wall 1 and extending outwards, a bonding layer 3 coated on the exposed surface of the concrete plate 6, and a modified inorganic powder composite architectural surface sheet 4 adhered on the bonding layer 3; the bonding layer 3 positioned on the upper surface of the concrete slab 6 has a downward inclined slope from inside to outside; the modified inorganic powder composite building facing sheet 4 positioned on the lower surface of the concrete slab 6 is provided with a water dripping groove 7.
Note that the exposed surface of the concrete plate 6 in the present embodiment includes: the building comprises a concrete slab 6, a top surface of the concrete slab 6, a bottom surface of the concrete slab 6 and side surfaces of the concrete slab 6, wherein the top surface of the concrete slab 6 is provided with a top surface adhesive layer, and a first modified inorganic powder composite building facing sheet is adhered to the top surface adhesive layer; the bottom surface of the concrete plate 6 is provided with a bottom surface adhesive layer, and a second modified inorganic powder composite building facing sheet 4 is adhered on the bottom surface adhesive layer; the side surface of the concrete plate 6 is provided with a side adhesive layer, and a third modified inorganic powder composite building facing sheet is stuck on the side adhesive layer. The top surface adhesive layer has the slope of downward sloping from inside to outside, and the rainwater drops on the top surface of MCM air conditioner board along outer wall 1 earlier, then along the slope landing. The second modified inorganic powder composite building facing sheet is provided with a water dripping groove 7, and the water dripping groove 7 is arranged close to the free end of the concrete slab 6.
The first modified inorganic powder composite building facing sheet, the second modified inorganic powder composite building facing sheet and the third modified inorganic powder composite building facing sheet of the embodiment can be formed by seamlessly splicing a plurality of modified inorganic powder composite building facing sheets and using a wallpaper pasting mode to form a whole modified inorganic powder composite building facing sheet.
Because the modified inorganic powder composite architectural surface sheet 4 has good flexibility and can be bent at will, the modified inorganic powder composite architectural surface sheet 4 of the embodiment does not need to be cut into the same shape as the exposed surface of concrete when being pasted, thereby shortening the construction period and saving the cost.
As shown in fig. 1 and 2, in the present embodiment, the slope of the bonding layer 3 is set to 2% ~ 5%, rainwater falling on the MCM air conditioning panel can be drained in time, when the slope is greater than 5%, although rainwater does not collect on the MCM air conditioning panel, a larger slope may cause the modified inorganic powder composite architectural surface covering sheet 4 to be difficult to stick or uneven, when the slope is less than 2%, although it is convenient to stick the modified inorganic powder composite architectural surface covering sheet 4, rainwater on the MCM air conditioning panel may collect when rainwater is too large, increasing the burden on the waterproof structure of the building.
It is preferable that the water drops 7 are distributed along the width direction of the MCM air conditioner board, and the water drops 7 are provided adjacent to the free end of the MCM air conditioner board in the length direction. The drip 7 is provided in this embodiment to prevent rainwater from flowing into the exterior wall 1 along the modified inorganic powder composite architectural surface sheet 4 on the lower surface of the concrete slab 6, and the rainwater will fall off the drip 7. The slope and the drip 7 of this embodiment can stop the rainwater refluence and pollute outer wall 1 and cause indoor humidity and go mouldy.
The MCM material is a novel energy-saving low-carbon decorative material, is used as a wall surface decorative material, and has the characteristics of light weight, good flexibility, various appearance models, good weather resistance and the like; it is used as a ground decoration material and has the characteristics of wear resistance, skid resistance, comfortable foot feel and the like; the construction is simple and quick, the construction period is shortened compared with the traditional material, the space and the cost are saved, and the falling is not easy.
In this embodiment, the adhesive is coated on each exposed surface of the concrete slab 6 to form the adhesive layer 3, and then the modified inorganic powder composite architectural surface sheet 4 is adhered on the surface of the adhesive layer 3 to finish the decoration of the air conditioning slab.
Example 2:
on the basis of the disclosure of example 1, this example discloses a configuration in which an MCM facing material as shown in fig. 2 is used at an air conditioning panel.
The MCM facing material shown in fig. 2 is used for construction at an air conditioner panel, including: a concrete plate 6 attached to the outer wall 1 and extending outwards, a bonding layer 3 coated on the exposed surface of the concrete plate 6, and a modified inorganic powder composite architectural surface sheet 4 adhered on the bonding layer 3; the bonding layer 3 positioned on the upper surface of the concrete slab 6 has a downward inclined slope from inside to outside; the modified inorganic powder composite building facing sheet 4 positioned on the lower surface of the concrete slab 6 is provided with a water dripping groove 7.
Preferably, the outer wall is also provided with a modified inorganic powder composite building decorative layer, and the modified inorganic powder composite building decorative layer adhered on the bonding surface and the modified inorganic powder composite building decorative layer on the outer wall are filled through caulking strips 5. The modified inorganic powder composite architectural surface sheet 4 of the embodiment is composed of a mesh cloth 41 and a flexible sheet 42, wherein the flexible sheet 42 is adhered to the mesh cloth 41, and the mesh cloth 41 is fixed on the adhesive layer 3.
Note that the exposed surface of the concrete plate 6 in the present embodiment includes: the building comprises a concrete slab 6, a top surface of the concrete slab 6, a bottom surface of the concrete slab 6 and side surfaces of the concrete slab 6, wherein the top surface of the concrete slab 6 is provided with a top surface adhesive layer, and a first modified inorganic powder composite building facing sheet is adhered to the top surface adhesive layer; the bottom surface of the concrete plate 6 is provided with a bottom surface adhesive layer, and a second modified inorganic powder composite building facing sheet is adhered on the bottom surface adhesive layer; the side surface of the concrete plate 6 is provided with a side adhesive layer, and a third modified inorganic powder composite building facing sheet is stuck on the side adhesive layer. The top surface adhesive layer has the slope of downward sloping from inside to outside, and the rainwater drops on the top surface of MCM air conditioner board along outer wall 1 earlier, then along the slope landing. The second modified inorganic powder composite building facing sheet is provided with a water dripping groove 7, and the water dripping groove 7 is arranged close to the free end of the concrete slab 6.
As shown in fig. 2, the top adhesive layer is provided with a cavity for attaching the modified inorganic powder composite architectural surface sheet 4, the cavity is arranged close to the free end of the concrete plate 6 (the free end of the embodiment refers to the end part of the concrete plate 6 in the length direction), the modified inorganic powder composite architectural surface sheet 4 is attached in the cavity, and the modified inorganic powder composite architectural surface sheet 4 in the cavity and the upper surface of the top adhesive layer form a slope of 2% ~ 5%.
In order to facilitate the adhesion of the modified inorganic powder composite building facing sheet 4 in the cavity, the cavity and the side surface of the concrete plate 6 in the length direction are preferably adhered with the same modified inorganic powder composite building facing sheet.
Example 3:
on the basis of the solutions disclosed in embodiments 1 and 2, the present embodiment discloses an exterior wall 1 construction.
As shown in fig. 1 and 2, the exterior wall 1 of the present embodiment includes a wall body, and a modified inorganic powder composite architectural decoration layer disposed on an outer surface of the wall body. The modified inorganic powder composite building decoration layer is adhered to a wall body by adopting an adhesive.
The modified inorganic powder composite building decoration layer of the embodiment is a modified inorganic powder composite building decoration integrated board. Modified inorganic powder composite architectural decoration intergral template installs on the wall body, and modified inorganic powder composite architectural decoration intergral template includes: the rock wool heat preservation board that presses close to the wall body setting, be located the rock wool heat preservation board outside the inorganic powder of modification compound building veneer sheet 4, rock wool heat preservation board and the inorganic powder of modification compound building veneer sheet 4 fixed connection. Two adjacent rock wool heated boards are in vertical butt joint or horizontal butt joint at the lateral wall of wall body to form horizontal seam or vertical seam. The plurality of modified inorganic powder composite architectural facing sheets 4 of the present embodiment are seamlessly butted together. The rock wool heated board of this embodiment passes through the adhesive linkage with the wall body fixedly, has the seam between two adjacent rock wool heated boards. A transverse gap or a vertical gap is formed between two adjacent spliced modified inorganic powder composite building facing sheets 4, and a sealing rubber section is arranged in each transverse gap and each vertical gap. The rock wool heat preservation board comprises rock wool board, cement mortar layer, and the back of rock wool board is equipped with the cement mortar layer. The rock wool board is mainly prepared by taking basalt and other natural ores as main raw materials through high-temperature melting, and has good heat preservation, heat insulation, fire prevention and sound insulation performances. Increase cement mortar at the back of rock wool board and plaster the face, consolidated rock wool board's hardness, the process of plastering of last wall when directly having saved the construction for the great reduction of time limit for a project of rock wool heated board in the installation.
A leveling layer and an adhesive layer are arranged between the modified inorganic powder composite architectural decoration integrated plate and the wall body, wherein the leveling layer is leveled by using polymer cement waterproof mortar, the adhesive layer fixedly connects the modified inorganic powder composite architectural decoration integrated plate with the wall body, and the preferred modified inorganic powder composite architectural decoration integrated plate is fixed with the leveling layer in a point bonding mode.
The above list of details is only for the practical implementation of the present invention, and they are not intended to limit the scope of the present invention, and all equivalent implementations or modifications that do not depart from the technical spirit of the present invention should be included in the scope of the present invention.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (9)

1. An MCM facing material construction for use at an air conditioning panel, comprising: the building decorative sheet comprises a concrete plate (6) which is attached to the outer wall (1) and extends outwards, a bonding layer (3) coated on the exposed surface of the concrete plate (6), and a modified inorganic powder composite building decorative sheet (4) adhered on the bonding layer (3);
the bonding layer (3) positioned on the upper surface of the concrete slab (6) has a downward-inclined slope from inside to outside;
the modified inorganic powder composite building facing sheet (4) positioned on the lower surface of the concrete slab (6) is provided with a water dripping groove (7).
2. The MCM facing material of claim 1 for construction at an air conditioner panel, wherein the slope is 2% ~ 5%.
3. The MCM finishing material for construction at an air conditioner board according to claim 1, characterized in that the drip grooves (7) are distributed in a width direction of the MCM air conditioner board, and the drip grooves (7) are provided adjacent to free ends of the MCM air conditioner board in a length direction.
4. The MCM finishing material for air conditioning panel construction as claimed in claim 1, wherein said bonding layer (3) on the upper surface of concrete slab (6) is provided with a cavity for attaching modified inorganic powder composite building finishing sheet (4) at the corner of the upper surface of concrete slab (6) and the side of concrete slab (6) in the length direction, the modified inorganic powder composite building finishing sheet (4) in the cavity forms a slope of 2% ~ 5% together with other bonding layer (3) on the top surface of concrete except the cavity.
5. The MCM finishing material for construction at air conditioning panel according to claim 4, characterized in that the cavity, the concrete slab (6) and the same modified inorganic powder composite architectural finishing sheet (4) are stuck on the sides in the length direction.
6. The MCM finishing material for the construction at the air conditioning plate as claimed in any claim 1-3, characterized in that the modified inorganic powder composite building decoration layer is arranged on the outer wall (1), the modified inorganic powder composite building finishing sheet (4) pasted on the bonding surface and the modified inorganic powder composite building decoration layer on the outer wall (1) can be filled through caulking strips (5).
7. Construction of MCM finishing material at air conditioning panel according to any of claims 1-3, characterized in that between the adhesive layer (3) and the concrete slab (6) is arranged an insulating layer (2), the insulating layer (2) of the upper surface of the concrete slab (6) being plane.
8. Construction of MCM finishing material at air conditioning panels according to claim 7, characterized in that the insulation layer (2) is rock wool.
9. The MCM finishing material for construction at air conditioning panel according to claim 7, characterized in that a protective mortar layer is provided between the insulating layer (2) and the adhesive layer (3), the protective mortar layer on the upper surface of the concrete slab (6) being planar.
CN201920553329.9U 2019-04-23 2019-04-23 Structure of MCM facing material for air conditioner board Active CN209891610U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920553329.9U CN209891610U (en) 2019-04-23 2019-04-23 Structure of MCM facing material for air conditioner board

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920553329.9U CN209891610U (en) 2019-04-23 2019-04-23 Structure of MCM facing material for air conditioner board

Publications (1)

Publication Number Publication Date
CN209891610U true CN209891610U (en) 2020-01-03

Family

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Application Number Title Priority Date Filing Date
CN201920553329.9U Active CN209891610U (en) 2019-04-23 2019-04-23 Structure of MCM facing material for air conditioner board

Country Status (1)

Country Link
CN (1) CN209891610U (en)

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Address after: Room 1501, building A2, No. 23, Zhongmian Road, Science City, Huangpu District, Guangzhou City, Guangdong Province

Patentee after: Guangdong Fumei material science and Technology Co., Ltd

Patentee after: XI'AN ARCHITECTURAL DESIGN AND RESEARCH INSTITUTE Co.,Ltd.

Address before: 510700 Room 521, 91 Kefeng Road, Huangpu District, Guangzhou City, Guangdong Province

Patentee before: PHOMI MCM Co.,Ltd.

Patentee before: XI'AN ARCHITECTURAL DESIGN AND RESEARCH INSTITUTE Co.,Ltd.

CP03 Change of name, title or address