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Cleaning agent and cleaning method for air conditioner

A cleaning agent and air conditioner technology, which is applied in the field of air conditioner cleaning agent and cleaning, can solve the problems of mechanical equipment rust, peeling, ultrasonic cleaning tank corrosion, etc., and achieve the effect of low cost

Inactive Publication Date: 2009-07-08
DALIAN SANDAAOKE CHEM
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] ① Strong alkaline cleaning agent has a pungent smell when sprayed, which pollutes the environment of the operation site; ② Strong alkaline cleaning agent is extremely corrosive to human skin and easily burns the operator's skin; ③ Strong alkaline cleaning agent has a strong impact on paint The coating is highly corrosive, which often causes discoloration, peeling, and peeling of the paint; ④ It is impossible to evenly reach all parts of the aluminum fins when sprayed with a strong alkaline cleaning agent, so the cleaning is uneven and the appearance appears black and white Poor; ⑤ With the thickness of the aluminum fins, it is difficult to thoroughly clean the inside of the fine aluminum fins by spraying cleaning agents; ⑥ The corrosion of the aluminum fins by strong alkaline cleaning agents is obvious, and most of the aluminum fins are cleaned after four times All will become thinner and brittle and need to be updated; ⑦The shell and other parts of the air conditioner need to be cleaned with an acidic cleaning agent, which increases the complexity of the operation and is time-consuming and laborious
[0005] 2. The pickling method generally uses ultrasonic cleaning. Due to the different acidic additives used in the cleaning agent, the cleaning effect is also different.
Some cleaning agents have a pungent smell, affecting the on-site operating environment; some produce acid mist, causing corrosion of workshop machinery and equipment; slot corrosion

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] Take the citric acid of 1~40% of total weight, the weak inorganic acid of 0.1~15% of total weight, the strong inorganic acid of 0.1~5% of total weight, the nonionic surfactant of 0.5~20% of total weight, 0.5~10% of total weight Anionic surfactant, 0.5-15% oxygen-containing solvent in total weight, 0.1-10% acid corrosion inhibitor in total weight, just add the above raw materials into water and stir to dissolve into a colorless transparent liquid, and each raw material can be within the weight range To make a selection, add water so that the weight sums to 100%. The weak inorganic acid can be phosphoric acid or boric acid; the strong inorganic acid can be sulfuric acid or nitric acid; the anionic surfactant is sodium dodecylbenzenesulfonate, sodium lauryl sulfate or lauryl alcohol polyoxyethylene ether (3) sulfuric acid Sodium, the nonionic surfactant is one of octylphenol ethoxylate (9), nonylphenol ethoxylate (9), lauryl alcohol ethoxylate (9) and nonylphenol ethoxylat...

Embodiment 2

[0026] Take the citric acid of 1~40% of total weight, the weak inorganic acid of 0.1~15% of total weight, the strong inorganic acid of 0.1~5% of total weight, the nonionic surfactant of 0.5~20% of total weight, 0.5~15% of total weight Oxygen-containing solvent, acid corrosion inhibitor with a total weight of 0.1-10%, add water and stir until it dissolves into a colorless transparent liquid. Each raw material can be selected within the weight range, and water is added to make the weight sum 100%.

[0027] The specific names and cleaning methods of the raw materials used are the same as in Example 1.

Embodiment 3

[0029] Take the citric acid of 1~40% of total weight, the weak inorganic acid of 0.1~15% of total weight, the nonionic surfactant of 0.5~20% of total weight, 0.5~15% of total weight of oxygen-containing solvent, 0.1~10% of total weight The acid corrosion inhibitor can be added into water and stirred until it dissolves into a colorless transparent liquid. Each raw material can be selected within the weight range, and water is added so that the weight sum is 100%.

[0030] The specific names and cleaning methods of the raw materials used are the same as in Example 1.

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PUM

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Abstract

The invention discloses a detergent and a cleaning method for a complete air-conditioner, which not only can uniformly and completely remove dirt but also cannot strongly corrupt components and parts such as aluminum, copper and stainless steel, are time-saving and labor saving, safe and reliable, and pollution-free, and have low cost. Raw materials of the detergent are at least two compositions of citric acid, inorganic weak acid and inorganic strong acid; a non-ionic surfactant or a non-ionic surfactant is mixed with an anionic surfactant; and the detergent comprises an oxygen solvent, an acid corrosion inhibitor, and the balance being water. The cleaning method comprises: disassembling a motor and a fan, and taking off the motor and the fan for independent cleaning; preparing the detergent into an aqueous solution according to the proportion of between 10 and 15 percent, hanging the complete air-conditioner after disassembly of the motor and the fan into a cleaning tank, soaking the complete air-conditioner for 30 minutes at normal temperature, and starting ultrasonic waves to clean for 10 to 30 minutes; placing the complete air-conditioner into a washing tank, and using a high-pressure water gun to spray the surface and the inside of the air-conditioner; and using hot blast to dry the air-conditioner at a temperature of 80 DEG C.

Description

Technical field: [0001] The invention relates to a cleaning agent and a cleaning method for cleaning an air conditioner, especially a cleaning agent that can remove dirt evenly and completely without causing strong corrosion to parts such as aluminum, copper, and stainless steel; it saves time and effort, and is low in cost. Safe, reliable, pollution-free air conditioner cleaning agent and cleaning method. Background technique: [0002] Air conditioners are usually overhauled after they have been in operation for a period of time. For example, after a train runs 20,000 to 30,000 kilometers, it is necessary to overhaul the air conditioner. During the overhaul, it is necessary to thoroughly clean the dirt on the surface of the aluminum fins in the air conditioner to improve the heat exchange capacity of the aluminum fins, thereby improving the heating and cooling efficiency of the air conditioner. , to prolong the service life of the compressor, but also to clean the shell an...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C11D1/66C11D1/83C23G1/06F28G9/00
Inventor 吕栓锁张红梅
Owner DALIAN SANDAAOKE CHEM
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