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Aluminum-wood water heating system and paving method thereof

A plumbing system and aluminum-wood technology, applied in the field of floor heating, can solve the problems of reducing the heat dissipation performance of circulating water pipes, poor thermal conductivity of solid wood layers, trivial and complicated installation process, etc., achieving safety, reliability, durability, convenient paving and installation, The effect of raising the room temperature

Pending Publication Date: 2018-05-15
金华意萨曼新材料科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The traditional geothermal heating device is a water heating device. A 2 cm thick insulation board layer is laid on the ground, and then the circulating water pipe line is shaped and positioned on the ground with steel wires, and a 4-5 cm thick concrete layer is covered on the circulating water pipe. Cover the concrete with a 1.5-1.8 cm thick solid wood or solid wood floor layer. Since the circulating water pipe is separated from the floor layer by a thicker concrete layer and solid wood layer, the heat conduction path is longer, and the thicker solid wood layer has poor thermal conductivity. As a result, the heat dissipation performance of the circulating water pipe is reduced, and the indoor temperature rises slowly; the traditional water heating floor system takes 2-3 hours to heat the surface, and 5-6 hours to heat the room, which brings great inconvenience to the users.
[0003] At the same time, when laying the circulating water pipes of traditional geothermal heating devices, not only the installation process is trivial and complicated, but also the amount of engineering is large, which consumes manpower and material resources

Method used

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  • Aluminum-wood water heating system and paving method thereof
  • Aluminum-wood water heating system and paving method thereof
  • Aluminum-wood water heating system and paving method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0046] Please refer to the attached Figure 1-4 , the invention discloses an aluminum-wood plumbing system, comprising: a thermal insulation board 1, a reflective film 2, a circulating heating water pipe 6 and an aluminum-wood composite floor 4; wherein the reflective film 2 is laid on the thermal insulation board 1, and the thermal insulation board 1 is provided There are insulation board grooves 31 with linear or arc-shaped tracks, and reflective film grooves 32 with linear or arc-shaped tracks are arranged on the reflective film 2, and the thermal insulation board grooves 31 match the reflective film grooves 32; The circulating heating water pipe 6 is located in the reflective film groove 32; the aluminum-wood composite floor 4 is laid on the top of the reflective film 2;

[0047] The aluminum-wood composite floor 4 includes an aluminum alloy substrate 41, a PUR adhesive layer 42 and a solid wood board 43. The PUR adhesive layer 42 and the solid wood board 43 are sequential...

Embodiment 2

[0061] Please refer to the attached Figure 1-3 , the invention discloses an aluminum-wood plumbing system, comprising: a thermal insulation board 1, a reflective film 2, a waterproof film 5, a circulating heating water pipe 6, and an aluminum-wood composite floor 4; wherein, the reflective film 2 is laid on the thermal The plate 1 is provided with a linear or arc-shaped track of the thermal insulation board groove 31, the reflective film 2 is provided with a linear or circular arc-shaped track of the reflective film groove 32, and the thermal insulation plate groove 31 and the reflective film groove 32 matches and coincides; the circulating heating water pipe 6 is located in the reflective film groove 32; the waterproof film 5 is laid on the top of the reflective film 2, and the setting of the waterproof film 5 not only prevents the moisture in the ground from causing harm to the floor, but also can keep enough water in the ground. moisture to ensure the heat conduction effec...

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Abstract

The invention discloses an aluminum-wood water heating system and a paving method thereof. The aluminum-wood water heating system comprises a heat preservation plate, a reflecting film, a cyclic heating water pipe and an aluminum-wood composite floor. The reflecting film is laid on the heat preservation plate. Linear or arc-shaped heat preservation plate grooves are formed in the heat preservationplate. Linear or arc-shaped reflecting grooves are formed in the reflecting film and matched with the heat preservation plate grooves. The cyclic heating water pipe is located in the reflecting filmgrooves. The aluminum-wood composite floor is laid on the top of the reflecting film. The aluminum-wood composite floor comprises an aluminum alloy base plate, a first PUR glue layer and a solid woodplate. The first PUR glue layer and the solid wood layer are sequentially laid on the top of the aluminum alloy base plate. The solid wood plate is bonded and connected to the aluminum alloy base plate through the first PUR glue layer. The aluminum-wood water heating system is fast in heat conduction, the room temperature can be raised rapidly during a short time, the laid floor is free of cracking or deformation, the stability is good, the safety and reliability are high, and the aluminum-wood water heating system has the characteristic of being convenient to disassemble and assemble.

Description

technical field [0001] The invention relates to a floor heating floor, more specifically to an aluminum wood water heating system and a paving method thereof, and belongs to the technical field of floor heating. Background technique [0002] With the continuous improvement of people's living standards, geothermal heating devices are installed in important meeting places such as families, large office spaces, and office buildings. The traditional geothermal heating device is a water heating device. A 2 cm thick insulation board layer is laid on the ground, and then the circulating water pipe line is shaped and positioned on the ground with steel wires, and a 4-5 cm thick concrete layer is covered on the circulating water pipe. Cover the concrete with a 1.5-1.8 cm thick solid wood or solid wood floor layer. Since the circulating water pipe is separated from the floor layer by a thicker concrete layer and solid wood layer, the heat conduction path is longer, and the thicker sol...

Claims

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Application Information

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IPC IPC(8): F24D3/14E04F15/02
CPCF24D3/146E04F15/02E04F2290/023Y02B30/00
Inventor 胡铁军王晓辉
Owner 金华意萨曼新材料科技有限公司
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