Modular electric heating film floor heating composite board and paving method thereof
阅读说明:本技术 一种模块化电热膜地暖复合板及其铺装方法 (Modular electric heating film floor heating composite board and paving method thereof ) 是由 黄治鸿 于 2019-11-07 设计创作,主要内容包括:本发明涉及地热膜技术领域,尤其是一种模块化电热膜地暖复合板及其铺装方法,包括地板模块,所述地板模块铺设在楼体基层上方,所述楼体基层与地板模块之间铺设有砂浆找平层,所述地板模块包括发热基体,所述发热基体的上端面开设有卡槽,所述卡槽中喷涂敷电热膜,所述电热膜上连接有导线,所述发热基体的上端面铺设有第二绝缘层,所述第二绝缘层的上端面粘接饰面层,所述发热基体的底部粘接有第一绝缘层,所述第一绝缘层的底端面粘接有反射隔热层,所述反射隔热层的底端面粘接有保温层,该模块化电热膜地暖复合板及其铺装方法铺装后的电地暖具有安装方式简单,制暖效果好的优点。(The invention relates to the technical field of geothermal membranes, in particular to a modular electric heating membrane floor heating composite board and a paving method thereof, which comprises a floor module, wherein the floor module is paved above a floor base layer, a mortar leveling layer is paved between the floor base layer and the floor module, the floor module comprises a heating base body, the upper end surface of the heating base body is provided with a clamping groove, an electric heating membrane is sprayed in the clamping groove, the electric heating membrane is connected with a lead, the upper end surface of the heating base body is paved with a second insulating layer, the upper end surface of the second insulating layer is adhered with a finish coat, the bottom of the heating base body is adhered with a first insulating layer, the bottom end surface of the first insulating layer is adhered with a reflection heat insulation layer, the bottom end surface of the reflection heat insulation layer is adhered with a heat preservation layer, and the electric heating modular electric heating membrane floor heating composite board, good heating effect.)
1. The utility model provides a modularization electric heat membrane ground heating composite board, includes floor module (1), floor module (1) is laid in building basic unit (16) top, mortar screed-coat (15) have been laid between building basic unit (16) and floor module (1), its characterized in that, floor module (1) is including generating heat base member (7), draw-in groove (13) have been seted up to the up end of generating heat base member (7), the spraying coats electric heat membrane (10) in draw-in groove (13), be connected with wire (11) on electric heat membrane (10), second insulating layer (4) have been laid to the up end of generating heat base member (7), finish coat (6) is bonded to the up end of second insulating layer (4), the bottom of generating heat base member (7) bonds and has first insulating layer (3), the bottom face bonding of first insulating layer (3) has reflection insulating layer (2), the bottom face of reflection insulating layer (2) bonds and has heat preservation (8), a plurality of draw-in grooves (13) have been seted up all around to the bottom of heat preservation (8), the inner chamber fixed mounting of draw-in groove (13) has conducting strip (12), wire (11) extend to the inner chamber of heat preservation (8) and are connected with conducting strip (12).
2. The modular electric heating film floor heating composite board as claimed in claim 1, wherein the heat insulating layer (8) is a polyurethane foam film, and the reflective heat insulating layer (2) is an aluminum foil.
3. The modular electric heating film floor heating composite board as claimed in claim 1, wherein the radiation shielding layer (5) is a magnetic conductive metal mesh, and the surface of the magnetic conductive metal mesh is coated with polyethylene resin.
4. The modular floor heating composite board with the electric heating film as claimed in claim 1, wherein the heating substrate (7) is a ceramic board.
5. The paving method of the modular electric heating film floor heating composite board is characterized by comprising the following steps:
s1, preparing for paving, cleaning a place to be paved, marking a building body base layer (16) according to the specification of the paved composite plate, and then driving a fixing support (14) into the marked position and fixing;
s2, paving the composite board, pouring cement mortar into the upper end face of the building base layer (16) and leveling, aligning the clamping grooves (13) on the periphery of the floor module (1) with the fixing support (14), placing the floor module (1) above the fixing support (14) and pressing tightly, so that the bottom of the floor module (1) is in contact with the cement mortar, and meanwhile, the fixing support (14) is tightly attached to the conducting strip (12) to finish paving the composite board;
s3, filling gaps, and after the composite board is laid and stands for one day, injecting a proper amount of gap filler into the gaps among the floor modules (1) to ensure that the gaps among the floor modules (1) are completely blocked by the gap filler;
s4, wiring, connecting and leading out a lead on the fixed support (14), connecting the lead with an external electric heating intelligent control box, electrifying and detecting, and finishing the paving work of the whole electric heating film composite board after the detection is finished.
6. The modular floor heating composite board with the electric heating film as claimed in claim 1, wherein the fixing support (14) is a metal support, and a copper sheet is welded at a position where the upper end surface of the fixing support is contacted with the conducting sheet (12).
Technical Field
The invention relates to the technical field of geothermal membranes, in particular to a modular electric heating membrane floor heating composite board and a paving method thereof.
Background
The electrothermal film has wide application prospect in life. At present, the electrothermal film is divided into a high-temperature electrothermal film, a medium-temperature electrothermal film and a low-temperature electrothermal film, the traditional electrothermal film is of a two-dimensional plane structure, and the heat dissipation of the traditional electrothermal film is mainly carried out through a self heat conduction layer. The widely used heat conduction layer is conductive paste (colored film or metal film for short) composed of metal powder material, bonding material, additive and solvent, and the main material of the heat conduction layer is nickel-chromium alloy and the like, and the thickness of the heat conduction layer is 0.02-0.03 mm (millimeter). However, the existing electric heating film is usually laid indoors and then a floor is laid above the electric heating film when being installed, and the defects of long installation period and inconvenience exist.
Disclosure of Invention
The invention aims to solve the defects of long installation period and inconvenience of an electrothermal film in the prior art, and provides a modular electrothermal film floor heating composite board and a paving method thereof.
In order to achieve the purpose, the invention adopts the following technical scheme:
a modular electric heating film floor heating composite board is designed, which comprises a floor module, wherein the floor module is laid above a base layer of a building body, a mortar leveling layer is laid between the building body base layer and the floor module, the floor module comprises a heating base body, the upper end surface of the heating base body is provided with a clamping groove, an electric heating film is sprayed and coated in the clamping groove, the electric heating film is connected with a lead, a second insulating layer is laid on the upper end surface of the heating base body, a finishing coat is adhered on the upper end surface of the second insulating layer, a first insulating layer is bonded at the bottom of the heating base body, a reflective heat-insulating layer is bonded at the bottom end surface of the first insulating layer, the bottom end surface of the reflecting heat-insulating layer is bonded with a heat-insulating layer, the periphery of the bottom of the heat-insulating layer is provided with a plurality of clamping grooves, the inner cavity of the clamping groove is fixedly provided with a conducting strip, and the conducting strip extends to the inner cavity of the heat preservation layer and is connected with the conducting strip.
Preferably, the heat insulation layer is a polyurethane foam film, and the reflective heat insulation layer is an aluminum foil.
Preferably, the radiation shielding layer is a magnetic conductive metal mesh, and the surface of the magnetic conductive metal mesh is coated with polyethylene resin.
Preferably, the heating base body is a ceramic plate.
The paving method of the modular electric heating film floor heating composite board is characterized by comprising the following steps:
s1, preparing for paving, cleaning a place to be paved, marking a line on a building base layer according to the specification of the paved composite plate, and then driving a fixing support into the marked line and fixing;
s2, paving the composite board, pouring cement mortar into the upper end face of the building base layer and leveling, aligning the clamping grooves on the periphery of the floor module with the fixed support, placing the floor module above the fixed support, treading tightly, enabling the bottom of the floor module to be in contact with the cement mortar, and enabling the fixed support to be attached to the conducting strip to finish paving the composite board;
s3, filling gaps, and after the composite board is laid and stands for one day, injecting a proper amount of gap filler into the gaps among the floor modules to ensure that the gaps among the floor modules are completely blocked by the gap filler;
and S4, wiring, connecting and leading out a lead on the fixed support, connecting the lead with an external electric heating intelligent control box, electrifying and detecting, and finishing the paving work of the whole electric heating film composite board after the detection is finished.
Preferably, the fixed support is a metal support, and a copper sheet is welded at a position where the upper end face of the fixed support is contacted with the conducting strip.
The modular electric heating film floor heating composite board and the paving method thereof have the advantages that: the structure that traditional electricity ground warmed up has been changed, adopt the structure of modular electricity ground warming up, make the staff only need lay polylith floor module when laying the electricity ground warm up subaerial and fixed through the fixed bolster can, compare the current electricity of laying multilayer structure ground warm up, very big reduction lay the cycle, reduced the degree of difficulty of mating formation, whole floor module adopts the compound structure of multilayer simultaneously, including the reflection insulating layer, the first insulation layer, the second insulating layer, the radiation shielding layer, the finish coat, the base member that generates heat, and the heat preservation makes floor module have the good warm effect of making of traditional electricity ground warm up.
Drawings
Fig. 1 is a schematic structural diagram of a modular electric heating film floor heating composite board provided by the invention;
fig. 2 is a schematic view of a mounting structure of a modular electric heating film floor heating composite board provided by the invention;
fig. 3 is a sectional view of the modular electric heating film floor heating composite board provided by the invention.
In the figure: the building comprises a
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-3, a modularization electric heat membrane floor heating composite board, including
The
The paving method of the modular electric heating film floor heating composite board is characterized by comprising the following steps:
s1, preparing for paving, cleaning a place to be paved, marking the place at the
s2, paving the composite board, pouring cement mortar into the upper end face of the
s3, filling gaps, and after the composite board is laid and stands for one day, injecting a proper amount of gap filler into the gaps among the
s4, wiring, connecting and leading out a lead on the
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.
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