CN104032315A - Stainless steel seamless extruded tube cleaning additive solution and preparation method thereof - Google Patents
Stainless steel seamless extruded tube cleaning additive solution and preparation method thereof Download PDFInfo
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- CN104032315A CN104032315A CN201410268206.2A CN201410268206A CN104032315A CN 104032315 A CN104032315 A CN 104032315A CN 201410268206 A CN201410268206 A CN 201410268206A CN 104032315 A CN104032315 A CN 104032315A
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Abstract
The invention discloses a cleaning additive solution suitable for a stainless steel seamless extruded tube and a preparation method thereof. The stainless steel seamless extruded tube cleaning additive solution is prepared by mixing the following raw materials by weight percent at normal temperature: 45-52% of water, 1-3% of alkylphenol ethoxylates, 2-6% of citric acid, 4-10% of sodium molybdate, 10-15% of triethanolamine, 15-20% of fatty alcohol polyoxyethylene ether, 3-6% of tartaric acid, 0.5-2% of trisodium phosphate, 1-3% of ethanol, 0.3-0.6% of nitric acid, 0.3-0.6% of hydrofluoric acid and the balance of hexamethylenetetramine. The preparation method is simple to operate, dispenses with heating, is good in cleaning effect, simultaneously avoids corroding the surface of stainless steel and maintains the glossiness of stainless steel. The stainless steel seamless extruded tube cleaning additive solution can be reused, causes no damage to skin when coming into contact with the skin, is low-carbon and environment-friendly and saves the cost.
Description
Technical field
The present invention relates to chemical cleaning technique field, especially a kind of stainless steel jointless extruded tube that is applicable to cleans annex solution and preparation method thereof.
Background technology
At present, stainless steel jointless extruded tube cleans to be difficult to control and processes, in order to remove pipe inside and outside sinter and dirt, traditional cleaning agent formula is to heat to 65 ℃ after the 5:4:3:8 mixing by mass percentage of nitric acid, hydrofluoric acid, hydrochloric acid and water, stainless steel jointless trombone slide to be cleaned need to soak and just can clean up for 1.5 hours, along with the reduction of detergent concentration, scavenging period can elongate.Because nitric acid, hydrofluoric acid and hydrochloric acid are through heating generation acid mist, human body is had to great harm, and severe contamination air, the discharge of waste acid water is severe contamination water resources also.
Summary of the invention
The technical problem to be solved in the present invention is: overcome the deficiencies in the prior art, provide a kind of without heating, stainless steel jointless extruded tube can be cleaned up, shorten scavenging period, and stainless steel jointless extruded tube harmless and free from environmental pollution cleans annex solution and preparation method thereof.
The technical solution adopted for the present invention to solve the technical problems is: a kind of stainless steel jointless extruded tube cleans annex solution, by the mixed raw material of following weight percent, is become:
The weight concentration of wherein said nitric acid is 34%, and the weight concentration of hydrofluoric acid is 21%.
Further, described stainless steel jointless extruded tube cleaning annex solution is become by the mixed raw material of following weight percent:
The weight concentration of wherein said nitric acid is 34%, and the weight concentration of hydrofluoric acid is 21%.
Stainless steel jointless extruded tube cleans a preparation method for annex solution, has following steps:
(1), under normal temperature, in stirrer, adding weight percent is the water of 45%-52%;
(2), throw in while stirring the alkylphenol polyoxyethylene that weight percent is 1%-3%;
(3), throw in while stirring the citric acid that weight percent is 2%-6%;
(4), throw in while stirring the Sodium orthomolybdate that weight percent is 4%-10%;
(5), throw in while stirring the trolamine that weight percent is 10%-15%;
(6), throw in while stirring the fatty alcohol-polyoxyethylene ether that weight percent is 15%-20%;
(7), throw in while stirring the tartrate that weight percent is 3%-6%;
(8), throw in while stirring the tertiary sodium phosphate that weight percent is 0.5%-2%;
(9), throw in while stirring the ethanol that weight percent is 1%-3%;
(10), throw in while stirring the nitric acid that weight percent is 0.3%-1%;
(11), throw in while stirring the hydrofluoric acid that weight percent is 0.3%-1%;
(12), throw in while stirring the vulkacit H that weight percent is surplus;
(13), after whole feeding in raw material, stir again and within 20-30 minute, be finished product;
The weight concentration of wherein said nitric acid is 34%, and the weight concentration of hydrofluoric acid is 21%.
The invention has the beneficial effects as follows: the present invention is simple to operate, without heating, cleaning performance is good, does not corrode stainless surface simultaneously, keeps stainless glossiness; And stainless steel jointless extruded tube cleans annex solution and can reuse, to skin contact without injury, low-carbon environment-friendly, cost-saving.
Embodiment
The present invention is further illustrated now.In embodiment, fatty alcohol-polyoxyethylene ether is JFC permeate agent, and alkylphenol polyoxyethylene is emulsifier op-10, and vulkacit H is urotropine.
Stainless steel jointless extruded tube cleans a preparation method for annex solution, has following steps: under (1), normal temperature, add the water of 502 kilograms in stirrer; (2), throwing in while stirring the content of 20 kilograms is 99% emulsifier op-10; (3), throwing in while stirring content is 40 kilograms of 99.5% citric acids; (4), throwing in while stirring content is 50 kilograms of 99% Sodium orthomolybdates; (5), throwing in while stirring content is 85% trolamine 120 kg; (6), throw in while stirring 180 kilograms of JFC permeate agents; (7), throwing in while stirring content is 40 kilograms, 99% tartrate; (8), throw in while stirring 10 kilograms of tertiary sodium phosphates; (9), throw in while stirring 20 kilograms of ethanol; (10), throwing in while stirring content is 6 kilograms, 34% nitric acid; (11), throwing in while stirring content is 6 kilograms, 21% hydrofluoric acid; (12), throwing in while stirring content is 6 kilograms of 99% urotropines; (13), after whole feeding in raw material, stir again and within 20-30 minute, be finished product.
The above-mentioned foundation desirable embodiment of the present invention of take is enlightenment, and by above-mentioned description, relevant staff can, within not departing from the scope of this invention technological thought, carry out various change and modification completely.The technical scope of this invention is not limited to the content on specification sheets, must determine its technical scope according to claim scope.
Claims (3)
1. stainless steel jointless extruded tube cleans an annex solution, it is characterized in that: described stainless steel jointless extruded tube cleaning annex solution is become by the mixed raw material of following weight percent:
The weight concentration of wherein said nitric acid is 34%, and the weight concentration of hydrofluoric acid is 21%.
2. stainless steel jointless extruded tube according to claim 1 cleans annex solution, it is characterized in that: described stainless steel jointless extruded tube cleaning annex solution is become by the mixed raw material of following weight percent:
The weight concentration of wherein said nitric acid is 34%, and the weight concentration of hydrofluoric acid is 21%.
3. stainless steel jointless extruded tube cleans a preparation method for annex solution, it is characterized in that: have following steps:
(1), under normal temperature, in stirrer, adding weight percent is the water of 45%-52%;
(2), throw in while stirring the alkylphenol polyoxyethylene that weight percent is 1%-3%;
(3), throw in while stirring the citric acid that weight percent is 2%-6%;
(4), throw in while stirring the Sodium orthomolybdate that weight percent is 4%-10%;
(5), throw in while stirring the trolamine that weight percent is 10%-15%;
(6), throw in while stirring the fatty alcohol-polyoxyethylene ether that weight percent is 15%-20%;
(7), throw in while stirring the tartrate that weight percent is 3%-6%;
(8), throw in while stirring the tertiary sodium phosphate that weight percent is 0.5%-2%;
(9), throw in while stirring the ethanol that weight percent is 1%-3%;
(10), throw in while stirring the nitric acid that weight percent is 0.3%-1%;
(11), throw in while stirring the hydrofluoric acid that weight percent is 0.3%-1%;
(12), throw in while stirring the vulkacit H that weight percent is surplus;
(13), after whole feeding in raw material, stir again and within 20-30 minute, be finished product;
The weight concentration of wherein said nitric acid is 34%, and the weight concentration of hydrofluoric acid is 21%.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201410268206.2A CN104032315A (en) | 2014-06-16 | 2014-06-16 | Stainless steel seamless extruded tube cleaning additive solution and preparation method thereof |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201410268206.2A CN104032315A (en) | 2014-06-16 | 2014-06-16 | Stainless steel seamless extruded tube cleaning additive solution and preparation method thereof |
Publications (1)
Publication Number | Publication Date |
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CN104032315A true CN104032315A (en) | 2014-09-10 |
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Family Applications (1)
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CN201410268206.2A Pending CN104032315A (en) | 2014-06-16 | 2014-06-16 | Stainless steel seamless extruded tube cleaning additive solution and preparation method thereof |
Country Status (1)
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CN (1) | CN104032315A (en) |
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2014
- 2014-06-16 CN CN201410268206.2A patent/CN104032315A/en active Pending
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Legal Events
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PB01 | Publication | ||
WD01 | Invention patent application deemed withdrawn after publication |
Application publication date: 20140910 |
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WD01 | Invention patent application deemed withdrawn after publication |