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Solar water heater

A technology of solar water heater and hot water, applied in the field of F24J and solar energy, which can solve the problems of inability to eliminate thermal bridges and reduce thermal conductivity, and achieve the effects of saving space and materials, facilitating construction, and rapid construction

Active Publication Date: 2014-12-03
ANHUI KERUIKE INSULATION MATERIAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The thermal insulation block in the existing published patent reduces the thermal conductivity by increasing the void ratio and the thickness of the thermal insulation core material, and fails to solve the thermal bridge effect at its own joints well, and the pouring of the mortar joints cannot eliminate the thermal bridge

Method used

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Embodiment 1

[0048] For the embodiment 1 of concrete matrix as follows:

[0049] 20 parts of coarse aggregate, 20 parts of light aggregate, 10 parts of fly ash, 0.1 part of polypropylene fiber, 0.15 part of water reducer, 0.2 part of calcium formate, and the rest is rapid hardening cement.

Embodiment 2

[0051] 30 parts of rapid hardening cement, 20 parts of coarse aggregate, 20 parts of light aggregate, 0.2 part of polypropylene fiber, 0.15 part of superplasticizer, 0.2 part of calcium formate, and the rest is fly ash.

Embodiment 3

[0053] 50 parts of rapid hardening cement, 10 parts of coarse aggregate, 10 parts of light aggregate, 0.1 part of polypropylene fiber, 0.2 part of water reducing agent, 0.3 part of calcium formate, and the rest is fly ash.

[0054] As a preferred embodiment, the polypropylene fibers can be replaced by the following fibers, the fibers are glass fiber chopped strands, ultra-fine glass wool, flame wool, aluminum silicate wool, ceramic fiber cotton, brucite fiber, foam A mixture of one or more of cotton, rayon, and artificial cotton in any proportion, the length of which is 3-12 mm, and the fiber diameter is 0.2-13 μm.

[0055] Preferably, the fiber may be composed of glass fiber chopped strands, ultra-fine glass wool, flame wool, aluminum silicate wool, and ceramic fiber wool, wherein the ratio of the five components is 1:2:1.5:1:3.

[0056] For the embodiment 1 that vacuum heat insulation composite insulation block is prepared as follows:

[0057] 1) The raw materials of the co...

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Abstract

The invention discloses a solar water heater, which comprises a water tank for storing heated hot water, wherein the water tank is of a cubic structure, and a heat-preservation layer is arranged on the outside of the cubic structure; the heat-preservation layer is a heat-preservation building block; the heat-preservation building block is formed by combining a concrete substrate (1) and a vacuum insulation panel (2); the vacuum insulation panel (2) is positioned in an open groove of the concrete substrate (1); self-defined grooves are formed in the left and right sides of the heat-preservation building block, and polystyrene boards or inorganic heat-preservation mortar can be filled in the self-defined grooves to partition a thermal bridge. The solar water heater is provided with the heat-preservation building block, so that the loss of heat is effectively prevented, and energy resources are saved.

Description

technical field [0001] The invention belongs to the field of solar energy, in particular to a solar water heater with a thermal insulation structure, which belongs to the field of F24J. Background technique [0002] Solar energy is an inexhaustible clean energy with a huge amount of resources. All countries in the world have taken the use of solar energy as an important item in the development of new energy. The Chinese government has also clearly stated in the "Government Work Report" To actively develop new energy. [0003] Vacuum insulation panels (Chinese patent CN102720922B) are based on the principle of vacuum insulation, and reduce convection and radiation heat transfer by maximizing the vacuum inside the panels and filling them with core insulation materials. The thermal conductivity can reach 0.003W / (m·K)~0.008W / (m·K), and its performance is far superior to that of ordinary thermal insulation materials, which can greatly reduce the thickness of the thermal insulati...

Claims

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Application Information

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IPC IPC(8): F24J2/04F24J2/46F24J2/51E04C1/39E04C1/41E04B1/78
CPCF24S60/30F24S80/60Y02B10/20Y02E10/40
Inventor 侯钦鹏
Owner ANHUI KERUIKE INSULATION MATERIAL
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