Integrated floor heating module

文档序号:1139202 发布日期:2020-10-09 浏览:6次 中文

阅读说明:本技术 集成式地暖模块 (Integrated floor heating module ) 是由 王倩 钟毅 马君 于 2020-07-02 设计创作,主要内容包括:本发明公开了一种集成式地暖模块,属于建筑供暖技术领域,用于地暖,其包括由上盖板、下扣板构成的密闭空间,在上盖板的下方内部安装固定有地暖管;在上盖板的两侧开有供地暖管穿过的通孔,地暖管在穿过上盖板的一侧之后形成封闭环路,地暖管在穿过上盖板的另一侧为开放管路;所述上盖板与地暖管之间填充有聚氨酯发泡层,聚氨酯发泡层的下方为承重板,承重板的下表面与下扣板接触。鉴于上述技术方案,本发明能够将地暖模块与找平、保温、采暖管道、地面面层为一体,铺设简单、快捷,连接安全、散热迅速、散热均匀,可广泛应用于普通住宅、商业等建筑物中。(The invention discloses an integrated floor heating module, which belongs to the technical field of building heating and is used for floor heating, and the integrated floor heating module comprises a closed space formed by an upper cover plate and a lower buckle plate, wherein a floor heating pipe is fixedly arranged in the lower part of the upper cover plate; through holes for the ground heating pipes to pass through are formed in the two sides of the upper cover plate, the ground heating pipes form a closed loop after passing through one side of the upper cover plate, and the other side of the ground heating pipes passing through the upper cover plate is an open pipeline; a polyurethane foaming layer is filled between the upper cover plate and the floor heating pipes, a bearing plate is arranged below the polyurethane foaming layer, and the lower surface of the bearing plate is in contact with the lower buckling plate. In view of the technical scheme, the floor heating module, the leveling, heat preservation and heating pipeline and the ground surface layer can be integrated, the laying is simple and quick, the connection is safe, the heat dissipation is rapid, the heat dissipation is uniform, and the floor heating module can be widely applied to buildings such as ordinary houses and businesses.)

1. The utility model provides a module warms up to integrated form which characterized in that: comprises a closed space formed by an upper cover plate (1) and a lower buckle plate (5), wherein a ground heating pipe (2) is fixedly arranged in the lower part of the upper cover plate (1); through holes for the ground heating pipes (2) to pass through are formed in the two sides of the upper cover plate (1), the ground heating pipes (2) form a closed loop after passing through one side of the upper cover plate (1), and the other side of the ground heating pipes (2) passing through the upper cover plate (1) is an open pipeline; the floor heating pipe is characterized in that a polyurethane foam heat-insulating layer (3) is filled between the upper cover plate (1) and the floor heating pipe (2), a bearing plate (4) is arranged below the polyurethane foam heat-insulating layer (3), and the lower surface of the bearing plate (4) is in contact with the lower buckle plate (5).

2. The integrated floor heating module of claim 1, wherein: the upper cover plate (1) is loaded at 1000Kg/m2The above metal plate body.

3. The integrated floor heating module of claim 1, wherein: the bearing plate (4) is positioned on the upper portion of the lower pinch plate (5), and the bearing plate (4) is made of wood sections or stone.

4. The integrated floor heating module of claim 1, wherein: the polyurethane foaming heat-insulating layer (3) is positioned between the ground heating pipe (2) and the bearing plate(s)4) Its density is 60Kg/m3The above.

5. The integrated floor heating module of claim 1, wherein: the position where the floor heating pipe (2) penetrates through the upper cover plate (1) adopts a rubber plug (6).

6. The integrated floor heating module of claim 5, wherein: the hard seal connection is a cold expansion type connection.

7. The integrated floor heating module of claim 5, wherein: the top surface of the upper cover plate (1) covers a floor or ceramic tiles.

8. The integrated floor heating module of claim 5, wherein: and the lower buckle plate (5) is provided with a glue injection hole (7), and the glue injection hole (7) is plugged through a cover.

9. The integrated floor heating module of any one of claims 1-8, wherein: a support seat (12) is laid at the bottom of the ground heating pipe (2), a heat dissipation seat (8) is buckled on the upper surface of the support seat (12), and a plurality of heat dissipation holes (9) distributed along the length direction of the heat dissipation seat (8) are formed in the heat dissipation seat (8); the upper surface of the heat dissipation seat (8) is attached to the lower surface of the upper cover plate (1).

10. The integrated floor heating module of claim 9, wherein: threaded connecting holes (11) are processed at two ends of the heat radiating seat (8), and the heat radiating seat (8) penetrates through the threaded connecting holes (11) through bolts and then is connected with the supporting seat (12); a plurality of positioning bulges (10) are distributed at the central position of the heat radiating seat (8) along the length direction of the heat radiating seat, and the positioning bulges (10) are aligned and connected with grooves or holes at the corresponding positions of the lower surface of the upper cover plate (1).

Technical Field

The invention belongs to the technical field of building heating, and particularly relates to an integrated floor heating module.

Background

The floor heating is short for floor radiation heating, the whole floor is used as a radiator, the whole floor is heated in a radiation mode through a heating medium in a floor radiation layer, and the heating purpose is achieved by utilizing the heat storage and heat upward radiation rule of the floor from bottom to top in a radiation and conduction mode. The existing floor heating is divided into wet floor heating and dry floor heating, the installation of the wet floor heating is time-consuming, the installation is complex, the leveling is difficult, the labor intensity of workers is large, and in addition, the later maintenance is difficult and the cost is large. The dry floor heating module is complex, a leveling layer, a heat preservation layer, a coil pipe and a ground surface layer need to be paved on site respectively, and the process is quite complicated.

Disclosure of Invention

The invention aims to provide an integrated floor heating module which can integrate the floor heating module with leveling, heat preservation, heating pipelines and a ground surface layer, is simple and quick to lay, is safe to connect and fast in heat dissipation, and can be widely applied to buildings such as ordinary houses and businesses.

In order to achieve the purpose, the invention is realized by the following technical scheme:

the integrated floor heating module comprises a closed space formed by an upper cover plate and a lower buckle plate, wherein a floor heating pipe is fixedly arranged inside the lower part of the upper cover plate; through holes for the ground heating pipes to pass through are formed in the two sides of the upper cover plate, the ground heating pipes form a closed loop after passing through one side of the upper cover plate, and the other side of the ground heating pipes passing through the upper cover plate is an open pipeline; the upper cover plate is filled with polyurethane foam heat preservation between the ground heating coil, and the below of polyurethane foam heat preservation is the bearing plate, the lower surface and the lower buckle contact of bearing plate.

Furthermore, the upper cover plate is a metal plate body bearing more than 1000Kg/m 2.

Furthermore, the bearing plate is positioned at the upper part of the lower pinch plate and is made of wood sections or stone.

Furthermore, the polyurethane foaming heat-insulating layer is positioned between the floor heating pipe and the bearing plate, and the density of the polyurethane foaming heat-insulating layer is more than 60Kg/m 3.

Further, the position, where the floor heating pipe penetrates through the upper cover plate, of the floor heating pipe is provided with a rubber plug.

Further, the hard seal connection described in the present invention is a cold-expanding connection.

Further, the top surface of the upper cover plate in the invention covers a floor or ceramic tiles.

Furthermore, the lower buckle plate is provided with a glue injection hole, and the glue injection hole is sealed by a cover.

Furthermore, a support seat is paved at the bottom of the floor heating pipe, a heat dissipation seat is buckled on the upper surface of the support seat, and a plurality of heat dissipation holes distributed along the length direction of the heat dissipation seat are formed in the heat dissipation seat; the upper surface of the heat dissipation seat is attached to the lower surface of the upper cover plate.

Furthermore, threaded connecting holes are processed at two ends of the heat dissipation seat, and the heat dissipation seat penetrates through the threaded connecting holes through bolts and then is connected with the supporting seat; a plurality of positioning bulges are distributed at the central position of the heat radiating seat along the length direction of the heat radiating seat, and the positioning bulges are aligned and connected with the grooves or holes at the corresponding positions of the lower surface of the upper cover plate.

Compared with the prior art, the invention has the beneficial effects that:

1. the floor heating module can be integrated with the leveling, heat preservation and heating pipeline and the ground surface layer, is simple and quick to lay, safe to connect and quick in heat dissipation, and can be widely applied to buildings such as ordinary houses and businesses.

2. The invention has better support and heat dispersion, uniform heat distribution and longer service life.

Drawings

Fig. 1 is a schematic structural view of a floor heating pipe and an upper cover plate in the present invention.

FIG. 2 is a schematic structural view of the upper cover plate filled with the polyurethane foam insulation layer according to the present invention.

Fig. 3 is a schematic view of the connection between the upper cover plate and the bearing plate according to the present invention.

FIG. 4 is a schematic view of the structure of the upper cover plate and the lower buckle plate of the present invention after being connected.

Fig. 5 is a schematic view of the connection between the integrated floor heating modules in the present invention.

FIG. 6 is a schematic view of the structure of the lower gusset plate of the present invention.

FIG. 7 is a schematic structural view of the rubber stopper of the present invention.

Fig. 8 is a first schematic structural view of the support base, the heat sink and the floor heating pipe of the present invention.

Fig. 9 is a second schematic structural view of the support base, the heat sink and the ground heating pipe of the present invention.

In the figure: 1. an upper cover plate; 2. a ground heating pipe; 3. a polyurethane foam heat-insulating layer; 4. a bearing plate; 5. a lower buckle plate; 6. a rubber plug; 7. injecting glue holes; 8. a heat dissipation base; 9. heat dissipation holes; 10. positioning the projection; 11. connecting a threaded hole; 12. and (4) supporting the base.

Detailed Description

The technical solution of the present invention will be further described and illustrated with reference to the following examples. It should be noted that the following paragraphs may refer to terms of orientation, including but not limited to "upper, lower, left, right, front, rear" and the like, which are all based on the visual orientation shown in the drawings corresponding to the specification, and should not be construed as limiting the scope or technical aspects of the present invention, but merely as facilitating better understanding of the technical aspects of the present invention by those skilled in the art.

In the description of the present specification, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; 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 meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.

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