Inorganic water-based energy-storage luminescent paint for tunnels and preparation method

An energy storage luminescent, inorganic technology, applied in luminescent coatings, fire-resistant coatings, alkali metal silicate coatings, etc., can solve the problems of poor fire resistance, poor environmental performance, poor weather resistance, etc., and achieve simple construction, convenient operation, and easy operation. well-mixed effect

Active Publication Date: 2018-05-29
HEBEI PROVINCIAL COMM PLANNING & DESIGN INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In view of the above analysis, the present invention aims to provide an inorganic water-based energy-storage luminous coating for tunnels and a preparation method to solve the problem of poor fireproof performance, poor weather resistance, poor environmental protection performance and the need for anti-mold treatment in the prior art. , the problem of higher prices

Method used

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  • Inorganic water-based energy-storage luminescent paint for tunnels and preparation method
  • Inorganic water-based energy-storage luminescent paint for tunnels and preparation method
  • Inorganic water-based energy-storage luminescent paint for tunnels and preparation method

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Effect test

Embodiment 1

[0045] The raw materials used in the inorganic water-based energy-storage luminous coating for tunnels of the present invention and their weight ratios are:

[0046]

[0047] The preparation method of the inorganic water-based energy-storage luminous coating for tunnels of the present invention is:

[0048] Step 1, obtaining various raw materials according to the weight ratio;

[0049] Step 2, inject alkaline silica sol, silicate solution and water into the container, stir at low speed, the stirring speed is 100 rpm; the stirring time is 20 minutes.

[0050] Step 3. Add the anti-sedimentation aid and dispersant to the container successively under the condition of stirring, mix and stir for 30 minutes, the stirring speed is 100 rpm,

[0051] Step 4, adding the energy storage luminescent composite material, mixing and stirring at a low speed of 80 rpm for 60 minutes;

[0052] Step 5, the preparation of the inorganic water-based energy-storage luminous coating is completed.

Embodiment 2

[0054] The raw materials used in the inorganic water-based energy-storage luminous coating for tunnels of the present invention and their weight ratios are:

[0055]

[0056] The preparation method of the inorganic water-based energy-storage luminous coating for tunnels of the present invention is:

[0057] Step 1, obtaining various raw materials according to the weight ratio;

[0058] Step 2, inject alkaline silica sol, silicate solution and water into the container, stir at low speed, the stirring speed is 100 rpm; the stirring time is 20 minutes.

[0059] Step 3. Add the anti-sedimentation aid and dispersant into the container successively under the condition of stirring, mix and stir for 20 minutes, the stirring speed is 100 rpm,

[0060] Step 4, adding the energy storage luminescent composite material, mixing and stirring at a low speed of 80 rpm for 60 minutes;

[0061] Step 5, the preparation of the inorganic water-based energy-storage luminous coating is completed...

Embodiment 3

[0063] The raw materials used in the inorganic water-based energy-storage luminous coating for tunnels of the present invention and their weight ratios are:

[0064]

[0065] The preparation method of the inorganic water-based energy-storage luminous coating for tunnels of the present invention is:

[0066] Step 1, obtaining various raw materials according to the weight ratio;

[0067] Step 2, inject alkaline silica sol, silicate solution and water into the container, stir at low speed, the stirring speed is 80 rpm; the stirring time is 20 minutes.

[0068] Step 3. Add the anti-sedimentation aid and dispersant to the container successively under the condition of stirring, mix and stir for 30 minutes, the stirring speed is 80 rpm,

[0069] Step 4, adding the energy storage luminescent composite material, mixing and stirring at a low speed of 80 rpm for 50 minutes;

[0070] Step 5, the preparation of the inorganic water-based energy-storage luminous coating is completed.

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Abstract

The invention relates to the technical field of energy-storage luminescent paint, in particular to inorganic water-based energy-storage luminescent paint for tunnels. The inorganic water-based energy-storage luminescent paint is prepared from components in parts by weight as follows: 40-100 parts of water, 50-100 parts of alkaline silica sol with concentration being 20%, 100-200 parts of a silicate solution with concentration being 40%, 10-50 parts of an anti-settling aid, 30-150 parts of an energy-storage luminescent composite material and 10-25 parts of a dispersing agent. Meanwhile, the invention provides a preparation method of the inorganic water-based energy-storage luminescent paint for the tunnels. The inorganic water-based energy-storage luminescent paint for tunnels and the method have the beneficial effects as follows: the prepared inorganic water-based energy-storage luminescent paint is non-toxic, non-radioactive and free of VOC consumption and belongs to an environment-friendly product; the paint contains no volatile organic compounds or products, thereby being environmentally friendly; the preparation method is simple, heating and pressurizing are not required, therefore, the cost is lower, and the practical value is quite high.

Description

technical field [0001] The invention relates to the technical field of energy-storage luminous paint, in particular to an inorganic water-based energy-storage luminous paint for tunnels and a preparation method thereof. Background technique [0002] In ancient times, natural luminous jade was discovered, and it was regarded as a rare treasure after being ground into a luminous pearl. In modern times, light storage substances such as metal sulfides are artificially synthesized to make various decorations to decorate and improve the living environment. However, this material has defects such as low brightness, short afterglow time, poor stability, and easy decomposition and failure. In the 1970s and 1980s, radioactive isotopes were used to improve metal sulfide luminous pigments, thereby improving the brightness, but they were eliminated due to their radioactivity and greater damage to the human body. Until the advent of new alkaline earth metal aluminate energy-storage lumin...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D1/04C09D1/02C09D1/00C09D5/22C09D5/18C09D7/45
CPCC09D1/00C09D1/02C09D1/04C09D5/18C09D5/22
Inventor 何勇海闫涛王联芳薛善光焦彦利李浩天张艳梅杜杰王海艳贾胜勇
Owner HEBEI PROVINCIAL COMM PLANNING & DESIGN INST
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