Preparation method and use method of ground cleaning agent for power distribution room
A floor cleaner for power distribution rooms is made by mixing raw materials in a specific ratio. This solves the problems of unsatisfactory anti-slip effect and insufficient insulation of existing anti-slip agents on power facilities, and achieves better anti-slip and insulation effects that can be maintained for a long time.
Patent Information
- Application Number
- CN202511483840.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2026-01-09
AI Technical Summary
Existing anti-slip agents are not ideal for anti-slip performance on power facilities and lack insulation and durability, failing to meet the high requirements of power facilities.
A floor cleaner for electrical distribution rooms is made by mixing raw materials such as octadecyl alcohol polyoxyethylene ether, stearic acid, ammonium fluorosilicate, sodium chloride, methylcellulose, fruit acid, polytetrafluoroethylene micro powder, nano silica, chromium trioxide, and acrylate in a specific ratio. The anti-slip and insulation effects are improved by mixing and using specific ratios.
The floor cleaner for power distribution rooms has better anti-slip and insulation properties, and the anti-slip effect can be maintained for a long time, significantly improving the safety of power facilities.
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Abstract
Description
Technical Field
[0001] This invention relates to the field of anti-slip products technology, and more specifically to a method for manufacturing and using a floor cleaner for electrical distribution rooms. Background Technology
[0002] With the development of the power industry, the requirements for power engineering are also increasing. Many power facilities require not only good insulation but also superior anti-slip properties. For example, the ground surfaces of power facilities require excellent anti-slip properties. Patent document CN108707451A, entitled "An Anti-slip Agent for Brick Surfaces," discloses an anti-slip agent for brick surfaces comprising the following materials: antifreeze, brightener, surfactant, additives, defoamer, modified freeze-thaw agent, and composite base material. This anti-slip agent has a certain anti-slip effect, but it is not ideal. Furthermore, for application in power facilities, the anti-slip agent must also possess better insulation and durability. Existing protective agents cannot meet these requirements, necessitating technological breakthroughs. Summary of the Invention
[0003] The purpose of this invention is to address the above-mentioned shortcomings by providing a method for manufacturing and using a floor cleaner for electrical distribution rooms that offers better anti-slip properties, better insulation, and longer anti-slip effect with a single application.
[0004] The technical solution for the preparation method of the power distribution room floor cleaner of the present invention is as follows: The preparation method of the power distribution room floor cleaner includes mixing the following raw materials in parts by weight to obtain the power distribution room floor cleaner: Octadecyl alcohol polyoxyethylene ether 20-25 parts, stearic acid 10-15 parts, ammonium fluorosilicate 15-25 parts, sodium chloride 4-8 parts, methylcellulose 4-6 parts, fruit acid 4-6 parts, polytetrafluoroethylene micro powder 5-7 parts, nano silica 10-12 parts, chromium trioxide 2-4 parts, acrylate 4-8 parts.
[0005] The preferred composition is: 23 parts octadecyl alcohol polyoxyethylene ether, 13 parts stearic acid, 20 parts ammonium fluorosilicate, 6 parts sodium chloride, 5 parts methylcellulose, 5 parts fruit acid, 6 parts polytetrafluoroethylene micro powder, 11 parts nano silica, 3 parts chromium trioxide, and 6 parts acrylate.
[0006] Preferably, the raw material also contains 3-5 parts of trimethoxysilane, 2-4 parts of diaminodiphenyl sulfone, and 6-8 parts of decanyltrimethoxysilane.
[0007] Furthermore, 10-15 parts of octadecyl alcohol polyoxyethylene ether, stearic acid, ammonium fluorosilicate, and sodium chloride are mixed to prepare the first group of detergents; the remaining octadecyl alcohol polyoxyethylene ether, methylcellulose, fruit acid, polytetrafluoroethylene micro powder, nano silica, chromium trioxide, and acrylate are mixed to prepare the second group of detergents.
[0008] Furthermore, the first group of detergents contains trimethoxysilane and diaminodiphenyl sulfone; the second group of detergents contains decanyltrimethoxysilane.
[0009] The technical solution for the application method of the power distribution room floor cleaner of the present invention is achieved as follows: including the following steps: S1: Mixing, the above-mentioned power distribution room floor cleaner and water are mixed to prepare a mixture. The mass ratio of cleaner to water is 1:10-14 parts. S2: Mop, use the above mixture to wipe the floor of the power distribution room or mop it; S3: Moisturize, keep the mixed solution on the floor of the power distribution room for 20-30 minutes; S4: Wipe dry; then wipe the mixture clean. Such a power distribution room floor has good anti-slip properties, good insulation and anti-flashover properties, and can maintain this state for a long time.
[0010] To elaborate further, before use, the first and second groups of detergent are mixed in a mass ratio of 1:0.9-1.1 to form a cleaning agent, and the electrical room is mopped and wiped clean within 2 hours after the cleaning agent is mixed.
[0011] Furthermore, when mopping, the temperature of the mixture is 15-20°C higher than the floor of the electrical room.
[0012] The beneficial effects of this invention are: the method of making such a power room floor cleaner can produce a cleaner with better anti-slip effect, better insulation effect, and longer anti-slip effect after one use; the method of use can make the power distribution room floor have better anti-slip effect and anti-flashover effect. Detailed Implementation
[0013] The present invention will be further described below with reference to the embodiments.
[0014] Example 1 (including Example 1-1, Example 1-2, and Example 1-3) The raw materials used in this invention are common chemical raw materials, and there are no special requirements.
[0015] The table below shows the composition of each group of raw materials: (unit: kilograms) The above materials are mixed together using a one-pot method to obtain the first anti-slip agent, the second anti-slip agent, and the third anti-slip agent; this is the first group of cleaning agents. Use the above cleaning agent as follows: including the following steps: S1: Mixing, the above-mentioned power distribution room floor cleaner and water are mixed to prepare a mixture. The mass ratio of cleaner to water is 1:10-14 parts. S2: Mop, use the above mixture to wipe the floor of the power distribution room or mop it; S3: Moisturize, keep the mixed solution on the floor of the power distribution room for 20-30 minutes; S4: Wipe dry; then wipe the mixture clean. The floor of the power distribution room that has undergone the above treatment is the floor of the first power distribution room; Such a power distribution room floor has a good anti-slip effect. Compared with the floor of a normally cleaned power distribution room, the floor of the first power distribution room also has a good insulation effect and a flashover prevention effect, and it can maintain this state for a long time.
[0016] In terms of anti-slip effect, compared with the floor of a normally cleaned distribution room, the friction coefficient of the first distribution room floor increases by 0.1-0.2, which can better achieve the effect of preventing flashover, increase the insulation withstand voltage by 7-10%, and maintain this state for 5-7 days.
[0017] Example 2 Based on Example 1 above, the raw materials also contain 3-5 parts of trimethoxysilane, 2-4 parts of diaminodiphenyl sulfone, and 6-8 parts of decanyltrimethoxysilane.
[0018] The second group of cleaning agents was prepared separately.
[0019] The floor of the power distribution room was cleaned using the second group of cleaning agents as described above, resulting in a second power distribution room floor. Compared to the first power distribution room floor, the second power distribution room floor has the advantages of better anti-slip effect and better anti-flashover effect.
[0020] Example 3 Based on the raw materials in Example 1, 10-15 parts of octadecyl alcohol polyoxyethylene ether, stearic acid, ammonium fluorosilicate, and sodium chloride were mixed to prepare the first group of detergents; the remaining octadecyl alcohol polyoxyethylene ether, methylcellulose, fruit acid, polytetrafluoroethylene micro powder, nano silica, chromium trioxide, and acrylate were mixed to prepare the second group of detergents.
[0021] Before use, mix the first and second groups of detergent in a mass ratio of 1:0.9-1.1 to form a cleaning agent. This cleaning agent is the third group of cleaning agent. Within 2 hours of mixing the cleaning agent, mop and wipe the electrical room clean.
[0022] Before use, mix the first and second groups of detergent in a mass ratio of 1:0.9-1.1 to form a cleaning agent. Within 2 hours of mixing the cleaning agent, mop and wipe the power distribution room clean. The resulting power distribution room floor is the floor of the third power distribution room.
[0023] The floor of the third power distribution room has the advantages of better anti-slip effect and better anti-flashover effect compared with the floor of the second power distribution room.
[0024] Example 4 Based on the above embodiments; when mopping, the temperature of the mixture is 15-20°C higher than the floor of the power distribution room; the resulting power distribution room floor is the floor of the 4th power distribution room.
[0025] Compared to other electrical room floors, the floor of the 4th distribution room has a longer-lasting effect in maintaining anti-slip and anti-flashover properties, generally extending by 4-5 days, thus offering a more durable advantage.
[0026] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present invention. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the scope of the present invention.
Claims
1. A method for preparing a floor cleaner for electrical distribution rooms, comprising mixing the following raw materials in parts by weight to obtain the floor cleaner for electrical distribution rooms: Octadecyl alcohol polyoxyethylene ether 20-25 parts, stearic acid 10-15 parts, ammonium fluorosilicate 15-25 parts, sodium chloride 4-8 parts, methylcellulose 4-6 parts, fruit acid 4-6 parts, polytetrafluoroethylene micro powder 5-7 parts, nano silica 10-12 parts, chromium trioxide 2-4 parts, acrylate 4-8 parts.
2. The method for preparing the power distribution room floor cleaner according to claim 1, characterized in that: 23 parts of octadecyl alcohol polyoxyethylene ether, 13 parts of stearic acid, 20 parts of ammonium fluorosilicate, 6 parts of sodium chloride, 5 parts of methylcellulose, 5 parts of fruit acid, 6 parts of polytetrafluoroethylene micro powder, 11 parts of nano silica, 3 parts of chromium trioxide, and 6 parts of acrylate.
3. The method for preparing the power distribution room floor cleaner according to claim 1, characterized in that: The raw materials also contain 3-5 parts of trimethoxysilane, 2-4 parts of diaminodiphenyl sulfone, and 6-8 parts of decanyltrimethoxysilane.
4. The method for preparing the power distribution room floor cleaner according to claim 1, characterized in that: The first group of detergents is prepared by mixing 10-15 parts of octadecyl alcohol polyoxyethylene ether, stearic acid, ammonium fluorosilicate, and sodium chloride; the second group of detergents is prepared by mixing the remaining octadecyl alcohol polyoxyethylene ether, methylcellulose, fruit acid, polytetrafluoroethylene micro powder, nano silica, chromium trioxide, and acrylate.
5. The method for preparing the power distribution room floor cleaner according to claim 3, characterized in that: The first group of detergent is prepared by mixing 10-15 parts of octadecyl alcohol polyoxyethylene ether, stearic acid, ammonium fluorosilicate, and sodium chloride; the second group of detergent is prepared by mixing the remaining octadecyl alcohol polyoxyethylene ether, methylcellulose, fruit acid, polytetrafluoroethylene micro powder, nano silica, chromium trioxide, and acrylate; the first group of detergent also contains trimethoxysilane and diaminodiphenyl sulfone; the second group of detergent also contains decanyltrimethoxysilane.
6. The method of using the cleaning agent prepared by any one of claims 1-3; comprising the following steps: S1: Mixing, the above-mentioned power distribution room floor cleaner and water are mixed to prepare a mixture. The mass ratio of cleaner to water is 1:10-14 parts. S2: Mop, use the above mixture to wipe the floor of the power distribution room or mop it; S3: Moisturize, keep the mixed solution on the floor of the power distribution room for 20-30 minutes; S4: Wipe dry; then wipe the mixture clean.
7. The method of using the cleaning agent prepared by any one of the methods in claims 4-5; comprising the following steps: Before use, mix the first and second groups of detergent in a mass ratio of 1:0.9-1.1 to form a cleaning agent, and clean the electrical distribution room by mopping and wiping within 2 hours after mixing the cleaning agent.
8. The method of use as claimed in claim 7: When mopping, the temperature of the mixture is 15-20°C higher than the floor of the electrical room.
Citation Information
Patent Citations
Brick surface antiskid agent
CN108707451A