CN211974138U - Ceramic sheet heat-insulation composite board - Google Patents

Ceramic sheet heat-insulation composite board Download PDF

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Publication number
CN211974138U
CN211974138U CN202020377508.4U CN202020377508U CN211974138U CN 211974138 U CN211974138 U CN 211974138U CN 202020377508 U CN202020377508 U CN 202020377508U CN 211974138 U CN211974138 U CN 211974138U
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China
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plate
alignment
ceramic
heat
bonding
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CN202020377508.4U
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Chinese (zh)
Inventor
蒙政强
杨仟厦
邓魏
林池冲
潘绍祥
李嘉恩
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Guangdong Green Building Technology Engineering Co ltd
Monalisa Group Co Ltd
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Guangdong Green Building Technology Engineering Co ltd
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Abstract

A ceramic thin plate heat-insulation composite plate comprises a ceramic thin plate, a heat-insulation layer, a back lining layer and a hanging piece; the right side surface of the ceramic thin plate is adhered to the left side surface of the heat-insulating layer, and the right side surface of the heat-insulating layer is adhered to the left side surface of the back lining layer; the hanging piece comprises an adhesive part and an L-shaped plate; the bonding part comprises a bonding plate arranged vertically, an alignment plate arranged horizontally and a binding plate arranged horizontally, the alignment plate is arranged at one end of the bonding plate, and the binding plate is arranged at the other end of the bonding plate; a C-shaped groove is formed in the left side of the bonding plate; the L-shaped plate is arranged on the right side surface of the bonding plate; the alignment plate includes an alignment right angle; the hanging piece is arranged on the heat preservation layer, the alignment right angle is attached to the edge of the ceramic thin plate, and the alignment plate is attached to the right side face of the ceramic thin plate; and a dry-hanging glue layer is filled between the C-shaped groove and the right side surface of the ceramic sheet. The utility model provides a ceramic sheet metal thermal protection composite board according to above-mentioned content, its surface strength is high, and the water absorption rate is low, and it is effectual to keep warm, and single-point anchor power is strong.

Description

Ceramic sheet heat-insulation composite board
Technical Field
The utility model relates to an outer wall insulation decorative board technical field especially relates to a ceramic sheet metal thermal protection composite panel.
Background
The common external wall heat-insulation decorative plate comprises the following components, but has different defects; 1. the traditional metal surface heat-insulation integrated composite board has poor weather resistance and is not resistant to scratching, and pollutants such as electrostatic adsorption dust and the like are difficult to clean; 2. the natural stone is used as a natural mineral resource, has large self weight, is easy to weather and absorb dirt on the surface, has certain water permeability and is easy to damage so as to influence the durability of the heat-insulating material; 3. the plastering surface heat insulation board has poor waterproofness, the surface is easy to scratch or damage to influence the durability of the heat insulation material, and the plastering surface heat insulation board is easy to fade, discolor and has high water absorption.
Above external wall insulation decorative board commonly used all is not enough from the aspect of decorative effect, safe in utilization, later maintenance etc. the problem exists to the equidimension, and the single-point anchor power of current insulation decorative board in the in-process of in-service use is relatively weak moreover, takes place the condition emergence that drops very easily, consequently, the market urgently needs a high-quality insulation decorative board that can solve above-mentioned drawback.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a ceramic sheet metal thermal protection composite board, its surface strength is high, and the water absorption rate is low, and it is effectual to keep warm, and single-point anchor power is strong.
To achieve the purpose, the utility model adopts the following technical proposal:
a ceramic thin plate heat-insulation composite plate comprises a ceramic thin plate, a heat-insulation layer, a back lining layer and a hanging piece;
the right side surface of the ceramic thin plate is adhered to the left side surface of the heat-insulating layer, and the right side surface of the heat-insulating layer is adhered to the left side surface of the back lining layer;
the hanger comprises an adhesive part and an L-shaped plate;
the bonding part comprises a bonding plate which is vertically arranged, an alignment plate which is transversely arranged and a binding plate which is transversely arranged, wherein the alignment plate is arranged at one end of the bonding plate, and the binding plate is arranged at the other end of the bonding plate;
a C-shaped groove is formed in the left side of the bonding plate;
the L-shaped plate is arranged on the right side surface of the bonding plate;
the alignment plate includes an alignment right angle;
the hanging piece is arranged on the heat preservation layer, the alignment right angle is attached to the edge of the ceramic thin plate, and the alignment plate is attached to the right side face of the ceramic thin plate;
and a dry-hanging glue layer is filled between the C-shaped groove and the right side surface of the ceramic thin plate.
Further, the thickness X of the ceramic thin plate is 3-8 mm.
Further, the heat preservation layer is one of reinforcing vertical filament rock wool composite board, glaze-free face foamed ceramic insulation board, foam glass insulation board, XPS insulation board, EPS insulation board and PU insulation board.
Further, the backing layer is one of a cement fiber board, cement fiber cloth or a glass magnesium board.
Further, the number of the hanging pieces is four.
Further, the pendant is made of aluminum alloy.
The T-shaped plug-in unit comprises a vertical plate and a transverse plate;
a socket is enclosed between the L-shaped plate and the right side surface of the adhesive plate;
the riser is inserted into the socket.
Further, the transverse plate is provided with mounting holes penetrating through the top and the bottom of the transverse plate.
The utility model provides a ceramic sheet metal thermal protection composite board according to above-mentioned content, its surface strength is high, and the water absorption rate is low, and it is effectual to keep warm, and single-point anchor power is strong.
The ceramic thin plate, the heat-insulating layer and the back lining layer are bonded by epoxy resin; the ceramic sheet has high surface strength, excellent physical and chemical properties (wear resistance, scratch resistance, acid and alkali resistance, freeze-thaw resistance) and low water absorption, and can effectively prevent water and moisture; the heat-insulating layer has a heat-insulating effect, so that the whole composite board also has a heat-insulating effect; in the actual use process, the right side surface of the backing layer of the composite board is bonded with the base wall through the bonding mortar, so that the problem of compatibility of the base wall, the bonding mortar and the composite board is solved by arranging the backing layer.
The pendant is arranged in the composite board, so that the single-point anchoring capability of the composite board is stronger.
Specifically, the C-shaped groove with it has the dry-hanging glue film to fill between the right flank of ceramic sheet metal for the pendant is direct to be bonded with the right flank of ceramic sheet metal, has satisfied the requirement of single-point anchoring power, avoids the composite sheet because of the not enough droing that causes ceramic sheet metal of anchoring strength.
The pendant is leaned on the rubberizing laminating of doing with ceramic sheet, and what direct influence of gluing the volume reaches single-point anchor power, and pendant gluey position has the cavity, and the upper and lower parallel and level is the dry rubberizing volume in order to guarantee to paste the daubing.
The alignment right angle is attached to the plate edge of the ceramic thin plate, so that the displacement of the pendant is avoided under the condition that the dry hanging glue layer is completely cured, and the accuracy of the anchoring position of the pendant is guaranteed.
Drawings
FIG. 1 is a schematic cross-sectional view of one embodiment of the present invention;
FIG. 2 is a schematic structural diagram of one embodiment of the present invention;
fig. 3 is a schematic structural diagram of a pendant according to an embodiment of the present invention;
fig. 4 is a schematic structural diagram of a T-shaped insert 5 according to an embodiment of the present invention;
fig. 5 is a schematic partial structure diagram of two composite boards according to one embodiment of the present invention in an actual use process.
Wherein: the heat-insulating layer comprises a ceramic thin plate 1, a dry-hanging adhesive layer 101, a heat-insulating layer 2, a backing layer 3, a hanging piece 4, an adhesive part 41, an adhesive plate 411, a C-shaped groove 4111, an alignment plate 412, an alignment right angle 4121, an attaching plate 413, an L-shaped plate 42, a T-shaped plug-in 5, a vertical plate 51, a transverse plate 52, a mounting hole 521, a socket 53 and a thickness X.
Detailed Description
The technical solution of the present invention is further explained by the following embodiments with reference to the accompanying drawings.
As shown in fig. 1-5, a ceramic thin plate thermal insulation composite plate comprises a ceramic thin plate 1, a thermal insulation layer 2, a backing layer 3 and a hanging piece 4;
the right side surface of the ceramic thin plate 1 is adhered to the left side surface of the heat-insulating layer 2, and the right side surface of the heat-insulating layer 2 is adhered to the left side surface of the backing layer 3;
the hanger 4 comprises an adhesive part 41 and an L-shaped plate 42;
the bonding part 41 comprises a vertically arranged bonding plate 411, a transversely arranged alignment plate 412 and a transversely arranged laminating plate 413, wherein the alignment plate 412 is arranged at one end of the bonding plate 411, and the laminating plate 413 is arranged at the other end of the bonding plate 411;
a C-shaped groove 4111 is formed in the left side of the adhesive plate 411;
the L-shaped plate 42 is disposed on the right side surface of the adhesive plate 411;
the alignment plate 412 includes an alignment right angle 4121;
the hanging piece 4 is arranged on the heat insulation layer 2, the alignment right angle 4121 is attached to the plate edge of the ceramic thin plate 1, and the alignment plate 412 is attached to the right side face of the ceramic thin plate 1;
and a dry-hang glue layer 101 is filled between the C-shaped groove 4111 and the right side surface of the ceramic sheet 1.
In the embodiment, the ceramic thin plate 1, the heat-insulating layer 2 and the backing layer 3 are bonded by epoxy resin; the ceramic sheet 1 has high surface strength, excellent physical and chemical properties (wear resistance, scratch resistance, acid and alkali resistance, freeze-thaw resistance) and low water absorption, and can effectively prevent water and moisture; the heat-insulating layer 2 has a heat-insulating effect, so that the whole composite board also has a heat-insulating effect; in the actual use process, the right side surface of the backing layer 3 of the composite board 3 is bonded with the base wall through bonding mortar, so the problem of compatibility of the base wall, the bonding mortar and the composite board is solved by arranging the backing layer 3.
The hanging pieces 4 are arranged in the composite board, so that the single-point anchoring capability of the composite board is stronger.
Specifically, C type groove 4111 with it has dry-hanging glue layer 101 to fill between the right flank of ceramic sheet 1 for pendant 4 directly bonds with the right flank of ceramic sheet 1, has satisfied the requirement of single-point anchoring power, avoids the composite sheet because of the not enough droing that causes ceramic sheet 1 of anchoring strength.
Pendant 4 and ceramic sheet 1 lean on the rubberizing laminating of doing, what direct influence of volume of gluing the single-point anchoring power, 4 gluey positions of pendant have the cavity, and the upper and lower parallel and level is the dry rubberizing volume in order to guarantee to paste the daubing.
The alignment right angle 4121 is attached to the edge of the ceramic thin plate 1, so that the displacement of the hanging part 4 is avoided and the anchoring position of the hanging part 4 is accurate under the condition that the dry hanging glue layer 101 is completely cured.
Further, the thickness X of the ceramic thin plate 1 is 3-8 mm.
The ceramic sheet 1 cannot be made too thick, which is too costly to make, and the fittings need to be customized, and too thin, which weakens the structural strength and impact resistance, and tests have shown that a ceramic sheet made according to the above size range is most suitable for use.
Further, the heat preservation layer 2 is one of a reinforced vertical-filament rock wool composite board, a glaze-free foamed ceramic heat preservation board, a foam glass heat preservation board, an XPS heat preservation board, an EPS heat preservation board and a PU heat preservation board.
The heat preservation layer 2 can select the heat preservation plate according to the actual condition, wherein the XPS heat preservation plate refers to the extruded polystyrene heat insulation plate, the EPS heat preservation plate refers to the fireproof honeycomb isolation heat preservation plate, and the PU heat preservation plate refers to the polyurethane energy-saving heat preservation plate.
Further, the backing layer 3 is one of a cement fiberboard, a cement fiber cloth or a glass magnesium board.
The back lining layer 3 is made of one of a cement fiberboard, cement fiber cloth or a glass magnesium board, so that the problem of compatibility of the base wall, the bonding mortar and the composite board can be effectively solved.
Further, as shown in fig. 2, the number of the hangers 4 is four, and the dashed line box in fig. 2 represents the hanger 4.
The number of the hanging pieces 4 of each composite board is four, so that the anchoring force of each composite board is improved.
Further, the hanger 4 is made of aluminum alloy.
The structure of the hanging piece 4 is light and durable, and the anti-corrosion and anti-rust performance is good.
Further, the T-shaped insert 5 is further included, and the T-shaped insert 5 comprises a vertical plate 51 and a transverse plate 52;
a socket 53 is defined between the L-shaped plate 42 and the right side face of the adhesive plate 411;
the riser 51 is inserted into the socket 53.
In the actual use process, the composite board is required to be attached to the outside of a wall, and particularly, the composite board is attached to a base layer wall through bonding mortar; therefore, in order to improve the supporting effect between the adjacent composite boards, because the adjacent composite boards all have pendant 4, the adjacent composite boards all have socket 53 promptly, through with riser 51 inserts to the adjacent composite boards in the socket 53, can improve the supporting effect between the adjacent composite boards, stop the composite board effectively and drop from the high altitude potential safety hazard such as to guarantee its safe handling.
Further, the horizontal plate 52 is provided with mounting holes 521 penetrating the top and bottom thereof.
In use, the cross plate 52 may be coupled to the anchor assembly through the mounting hole 521.
The technical principle of the present invention is described above with reference to specific embodiments. The description is made for the purpose of illustrating the principles of the invention and should not be construed in any way as limiting the scope of the invention. Based on the explanations herein, those skilled in the art will be able to conceive of other embodiments of the present invention without any inventive effort, which would fall within the scope of the present invention.

Claims (8)

1. The utility model provides a ceramic sheet metal thermal protection composite board which characterized in that: comprises a ceramic thin plate, a heat-insulating layer, a back lining layer and a hanging piece;
the right side surface of the ceramic thin plate is adhered to the left side surface of the heat-insulating layer, and the right side surface of the heat-insulating layer is adhered to the left side surface of the back lining layer;
the hanger comprises an adhesive part and an L-shaped plate;
the bonding part comprises a bonding plate which is vertically arranged, an alignment plate which is transversely arranged and a binding plate which is transversely arranged, wherein the alignment plate is arranged at one end of the bonding plate, and the binding plate is arranged at the other end of the bonding plate;
a C-shaped groove is formed in the left side of the bonding plate;
the L-shaped plate is arranged on the right side surface of the bonding plate;
the alignment plate includes an alignment right angle;
the hanging piece is arranged on the heat preservation layer, the alignment right angle is attached to the edge of the ceramic thin plate, and the alignment plate is attached to the right side face of the ceramic thin plate;
and a dry-hanging glue layer is filled between the C-shaped groove and the right side surface of the ceramic thin plate.
2. The ceramic sheet thermal composite panel according to claim 1, wherein: the thickness X of the ceramic thin plate is 3-8 mm.
3. The ceramic sheet thermal composite panel according to claim 1, wherein: the heat preservation layer is one of reinforcing vertical filament rock wool composite sheet, glaze-free face foamed ceramic heated board, foam glass heated board, XPS heated board, EPS heated board and PU heated board.
4. The ceramic sheet thermal composite panel according to claim 1, wherein: the back lining layer is one of a cement fiber board, cement fiber cloth or a glass magnesium board.
5. The ceramic sheet thermal composite panel according to claim 1, wherein: the number of the hanging pieces is four.
6. The ceramic sheet thermal composite panel according to claim 1, wherein: the pendant is made of aluminum alloy.
7. The ceramic sheet thermal composite panel according to claim 1, wherein: the T-shaped plug-in comprises a vertical plate and a transverse plate;
a socket is enclosed between the L-shaped plate and the right side surface of the adhesive plate;
the riser is inserted into the socket.
8. The ceramic sheet thermal composite panel according to claim 7, wherein: the transverse plate is provided with mounting holes penetrating through the top and the bottom of the transverse plate.
CN202020377508.4U 2020-03-23 2020-03-23 Ceramic sheet heat-insulation composite board Active CN211974138U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020377508.4U CN211974138U (en) 2020-03-23 2020-03-23 Ceramic sheet heat-insulation composite board

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020377508.4U CN211974138U (en) 2020-03-23 2020-03-23 Ceramic sheet heat-insulation composite board

Publications (1)

Publication Number Publication Date
CN211974138U true CN211974138U (en) 2020-11-20

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ID=73381492

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020377508.4U Active CN211974138U (en) 2020-03-23 2020-03-23 Ceramic sheet heat-insulation composite board

Country Status (1)

Country Link
CN (1) CN211974138U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115262892A (en) * 2022-07-12 2022-11-01 中国五冶集团有限公司 Construction method of building outer wall aluminum plate heat-insulation integrated plate mounting structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115262892A (en) * 2022-07-12 2022-11-01 中国五冶集团有限公司 Construction method of building outer wall aluminum plate heat-insulation integrated plate mounting structure
CN115262892B (en) * 2022-07-12 2023-08-25 中国五冶集团有限公司 Construction method of building exterior wall aluminum plate heat preservation integrated plate mounting structure

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20221214

Address after: 528211 Xiqiao Textile City Industrial Park, Nanhai District, Foshan City, Guangdong Province

Patentee after: Monalisa Group Co.,Ltd.

Patentee after: GUANGDONG GREEN BUILDING TECHNOLOGY ENGINEERING Co.,Ltd.

Address before: 528000 No.6, 3rd floor, Taiping Industrial Zone (office complex), Xiqiao Town, Nanhai District, Foshan City, Guangdong Province

Patentee before: GUANGDONG GREEN BUILDING TECHNOLOGY ENGINEERING Co.,Ltd.