CN102108321A - Metal deoiling agent and deoiling method thereof - Google Patents

Metal deoiling agent and deoiling method thereof Download PDF

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Publication number
CN102108321A
CN102108321A CN2009101894443A CN200910189444A CN102108321A CN 102108321 A CN102108321 A CN 102108321A CN 2009101894443 A CN2009101894443 A CN 2009101894443A CN 200910189444 A CN200910189444 A CN 200910189444A CN 102108321 A CN102108321 A CN 102108321A
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acid
degreaser
degreasing agent
metal degreasing
metal
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CN2009101894443A
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CN102108321B (en
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程云
赵惠玲
管新强
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CHANGSHA TOPWELLWEAR METAL MATERIAL SCIENCE Co Ltd
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BYD Co Ltd
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Abstract

The invention provides a metal deoiling agent. The deoiling agent contains anionic surfactant, nonionic surfactants, solubilizer and corrosion inhibitor, wherein corrosion inhibitor contains monocarboxylic acid and dicarboxylic acid and the weight ratio of monocarboxylic acid to dicarboxylic acid is 10-1:1. The invention also provides a deoiling method. The deoiling method is as follows: soaking a metal material in the deoiling agent to perform ultrasonic deoiling for 1-3min, wherein the temperature of the deoiling agent is 50-80 DEG C and the metal deoiling agent is the metal deoiling agent in the claim 1. The deoiling agent of the invention can be used to effectively remove greasy dirts on the surface of metal in a short time can not corrode metal; and the deoiling agent has simple formula, low cost and stable performance.

Description

A kind of metal degreasing agent and deoiling method
Technical field
The present invention relates to metal degreasing agent and deoiling method.
Background technology
In the process of Metal Production and processing, often to use and clean the oil removing operation.The various metal degreasing agent of often using mainly contain strong acid, highly basic and tensio-active agent etc. at present.They generally all are to handle at the lighter greasy dirt of metal surface, and are low to heavier greasy dirt cleaning efficiency, show that scavenging period is long, and effect is also very poor; Foam is a lot, cleans after influencing the effect of oil removing and oil removing; Contain various hazardous and noxious substances such as Sodium Nitrite etc., contaminate environment damages operator's health; Easily more active metal such as aluminium etc. are caused corrosion, influence following process.
Summary of the invention
The technical problem to be solved in the present invention is the low defective of existing degreaser oil removal efficiency, thereby high degreaser of a kind of oil removal efficiency and deoiling method are provided.
The invention provides a kind of metal degreasing agent, this degreaser comprises anion surfactant, nonionogenic tenside, solubilizing agent and inhibiter, and wherein said inhibiter comprises that weight ratio is 10-1: 1 monocarboxylic acid and di-carboxylic acid.
The present invention also provides a kind of deoiling method, metallic substance is immersed in carries out ultrasonic oil removing in the degreaser, and the time is 1-3min, and wherein, described degreaser is a degreaser of the present invention.
Degreaser of the present invention can effectively be removed the greasy dirt of metallic surface in the extremely short time, metal is not had corrodibility, and the prescription of degreaser is simple simultaneously, and cost is low, stable performance.
Embodiment
The invention provides a kind of metal degreasing agent, change degreaser and comprise anion surfactant, nonionogenic tenside, solubilizing agent and inhibiter, wherein said inhibiter comprises that weight ratio is 10-1: 1 monocarboxylic acid and di-carboxylic acid.
Carboxylate radical can adsorb on metallic matrix, and monocarboxylic absorption is tightr, and molecule one end is adsorbed in metallic matrix, and the other end freely stretches to the solution direction, to form hydrophobic layer more closely, stops the metallic matrix hot spot further to destroy; And the adsorption site of di-carboxylic acid has 2, adsorbs more firmly, can play corrosion inhibition preferably equally.But " bridge-type " structure of 2 adsorption site formation can cause certain obstruction to the absorption and the motion of other molecules, and medium plays barrier effect to external world in bigger planar range, has weakened the corrosion resistance of aluminium to a certain extent again.So there is certain complementary effect in the two effect, its proportioning is very big to the influence of corrosion mitigating effect.The present inventor through a large amount of experiment find when the weight ratio of monocarboxylic acid and di-carboxylic acid at 10-1: in 1 this scope good deoiling effect is arranged.For better deoiling effect is arranged, preferably, the weight ratio of described monocarboxylic acid and di-carboxylic acid is 5-2: 1.
According to metal degreasing agent provided by the present invention, preferably, described inhibiter also comprises at least a in urotropine, Sodium orthomolybdate, phytic acid and the benzotriazole.Wherein, urotropine can be adsorbed on the metallic surface, changes the character of metallic surface, thereby prevents corrosion.Benzotriazole can form etch-proof precipitation membrane with relevant ionic reaction in the medium and in the metallic surface.Molybdate is as the good inhibiter of a kind of resisting corrosion of chlorine ion performance.The inhibition mechanism of molybdate mainly is that molybdenum acid ion can not only be adsorbed on the metallic surface of active dissolution, can be adsorbed on the fault location of passive film again or enters oxide film and acting in conjunction with it.Phytic acid can form the unit molecule protective membrane of firm compact at metal surface, suppresses the oxidation corrosion of metal.
According to metal degreasing agent provided by the present invention, preferably, be benchmark with the weight of metal degreasing agent, the content of described anion surfactant is 20-75wt%, more preferably 30-50wt%; The content of described nonionogenic tenside is 8-40wt%, more preferably 15-35wt%; The content of described inhibiter is 0.1-15wt%, 2.5-7wt% more preferably, and the content of described solubilizing agent is 5-20wt%, more preferably 10-15wt%.
According to metal degreasing agent provided by the present invention, preferably, described anion surfactant is at least a in triethanolamine oleate, Sodium dodecylbenzene sulfonate, sodium lauryl sulphate, sodium stearate, polyoxyethylene lauryl alcohol sodium sulfate, aliphatic alcohol polyethenoxy ether carboxylate, the laurin phosphate ester salt.Described nonionogenic tenside is at least a in alkylphenol polyoxyethylene, cocoanut fatty acid diethanolamide, the fatty alcohol-polyoxyethylene ether.
According to metal degreasing agent provided by the present invention, preferably, described unary carboxylation is at least a in lauric acid, capric acid, tetradecanoic acid, butanic acid, the caproic acid.Described dicarboxylate is at least a in sebacic acid, hexanodioic acid, Succinic Acid, the nonane diacid.
According to metal degreasing agent provided by the present invention, the effect of solubilizing agent is to promote dissolving each other of organism and water solution system, helps forming the homogeneous system.Preferably, described solubilizing agent can be various materials with compatibilization known in those skilled in the art, and more preferably, described solubilizing agent is at least a in ethanol, Virahol, butanols, the alcohol ether.
According to metal degreasing agent provided by the present invention, preferably, also comprise washing assistant, be benchmark with the weight of metal degreasing agent, the content of described washing assistant is 1-10wt%, is preferably 2-5wt%.The main effect of washing assistant is softening water hardness, alkaline buffer environment is provided, and wetting, emulsification, suspension, dispersion spot dirt, prevents that the precipitation once more of dirt from adhering to.Described washing assistant can be all substances that can achieve the above object known in those skilled in the art, and more preferably, described washing assistant is at least a in potassium pyrophosphate, trisodium phosphate, Sodium Nitrite, Sodium Benzoate, the sodium sulfate.
According to metal degreasing agent provided by the present invention, preferably, also comprise defoamer, be benchmark with the weight of metal degreasing agent, the content of described defoamer is 0.001-0.01wt%, is preferably 0.002-0.005wt%.Described defoamer can control foam generation, reduce sewage discharge.Described defoamer can be the various defoamers that those skilled in the art used always, and more preferably, described defoamer is at least a in dimethyl silicone oil, polyether-modified silicon, higher alcohols, the polyoxyethylene polyoxy propyl alcohol amidogen ether.
The invention provides the preparation method of metal degreasing agent, this method is: raw material is placed container according to required dosage respectively, and soluble in water respectively, the amount of getting of water is advisable can melt raw material, and each raw material and water-soluble optimum temps are:
(1) anion surfactant and nonionogenic tenside are used 60-90 ℃ hot water dissolving, stir, and obtain mixing solutions 1;
(2) 25-50 ℃ warm water dissolving of other materials stirs, and obtains mixing solutions 2;
Mixing solutions 1 and mixing solutions 2 are mixed, and water is adjusted to required concentration and gets final product.
The present invention also provides a kind of deoiling method, metallic substance is immersed in carries out ultrasonic oil removing in the degreaser, and the time is 1-3min, and wherein, described degreaser is a degreaser of the present invention.
The invention will be further described below in conjunction with embodiment.
Embodiment 1
1, the preparation method of degreaser
(1) with triethanolamine oleate 400g, cocoanut fatty acid diethanolamide (6502) 120g, fatty alcohol-polyoxyethylene ether (AEO) 80g stir with 80 ℃ the hot water dissolving of 150g, obtain mixing solutions 1;
(2) sebacic acid 50g, lauric acid 50g, propyl carbinol 50g are dissolved with 40 ℃ the warm water of 70g, stir, obtain mixing solutions 2;
Mixing solutions 1 and mixing solutions 2 are mixed, add 30g water and be adjusted to 1000g, obtain degreaser A1.
2, oil removing
Get an amount of degreaser A1, degreaser is diluted, aluminium alloy is immersed in the degreaser after 70 ℃ the dilution and carries out ultrasonic oil removing 3min to 15 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt, no corrosion phenomenon after operations such as washing oven dry.
Embodiment 2
1, the preparation of metal degreasing agent
(1) polyoxyethylene lauryl alcohol sodium sulfate 500g, cocoanut fatty acid diethanolamide (6501) 100g, fatty alcohol-polyoxyethylene ether (peregal) 50g are used 70g80 ℃ hot water dissolving, stir, obtain mixing solutions 1;
(2) Sodium Benzoate 30g, phytic acid 60g, lauric acid 2g, hexanodioic acid 1g, ethanol 100g are dissolved with 30g30 ℃ warm water, stir, obtain mixing solutions 2;
Mixing solutions 1 and mixing solutions 2 are mixed, add 57g water and be adjusted to 1000g, obtain degreaser A2.
2, oil removing
Get an amount of degreaser A2, degreaser is diluted, stainless steel is immersed in the degreaser after 70 ℃ the dilution and carries out ultrasonic oil removing 3min to 18 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt, no corrosion phenomenon after operations such as washing oven dry.
Embodiment 3
(1) with aliphatic alcohol polyethenoxy ether carboxylate 400g, Sodium dodecylbenzene sulfonate 200g, sodium lauryl sulphate 20g, cocoanut fatty acid diethanolamide (6502) 20g, fatty alcohol-polyoxyethylene ether (AEO) 80g 80 ℃ hot water dissolving with 10g, stir, obtain mixing solutions 1;
(2) sodium sulfate 50g, urotropine 50g, phytic acid 30g, Succinic Acid 20g, capric acid 50g, Virahol 60g, dimethyl silicone oil 0.1g are dissolved with 40 ℃ the warm water of 10g, stir, obtain mixing solutions 2;
Mixing solutions 1 and mixing solutions 2 are mixed, obtain 1000g degreaser A3.
2, oil removing
Get an amount of degreaser A3, degreaser is diluted, aluminium alloy is immersed in the degreaser after 65 ℃ the dilution and carries out ultrasonic oil removing 3min to 20 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt, no corrosion phenomenon after operations such as washing oven dry.
Embodiment 4
(1) with triethanolamine oleate 100g, Sodium dodecylbenzene sulfonate 40g, sodium lauryl sulphate 60g, cocoanut fatty acid diethanolamide (6501) 150g, cocoanut fatty acid diethanolamide (6502) 100g, fatty alcohol-polyoxyethylene ether (peregal) 150g 80 ℃ hot water dissolving with 40g, stir, obtain mixing solutions 1;
(2) with potassium pyrophosphate 80g, Sodium Benzoate 20g, urotropine 10g, nonane diacid 10g, tetradecanoic acid 50g, ethanol 150g and polyether-modified silicon 0.05g 40 ℃ warm water dissolving, stir, obtain mixing solutions 2 with 40g;
Mixing solutions 1 mixing solutions 2 is mixed, obtain 1000g degreaser A4.
2, oil removing
Get an amount of degreaser A4, degreaser is diluted, aluminium alloy is immersed in the degreaser after 65 ℃ the dilution and carries out ultrasonic oil removing 3min to 20 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt, no corrosion phenomenon after operations such as washing oven dry.
Embodiment 5
(1) with triethanolamine oleate 400g, Sodium dodecylbenzene sulfonate 150g, sodium lauryl sulphate 200g, cocoanut fatty acid diethanolamide (6501) 50g, fatty alcohol-polyoxyethylene ether (peregal) 30g 80 ℃ hot water dissolving with 25g, stir, obtain mixing solutions 1;
(2) with Sodium Nitrite 20g, urotropine 10g, sebacic acid 5g, butanic acid 50g, ethanol 50g and polyether-modified silicon 0.02g 40 ℃ warm water dissolving, stir, obtain mixing solutions 2 with 10g;
Mixing solutions 1 mixing solutions 2 is mixed, obtain 1000g degreaser A5.
2, oil removing
Get an amount of degreaser A5, degreaser is diluted, aluminium alloy is immersed in the degreaser after 70 ℃ the dilution and carries out ultrasonic oil removing 3min to 20 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt, no corrosion phenomenon after operations such as washing oven dry.
Embodiment 6
(1) with triethanolamine oleate 100g, Sodium dodecylbenzene sulfonate 100g, sodium lauryl sulphate 100g, cocoanut fatty acid diethanolamide (6501) 150g, fatty alcohol-polyoxyethylene ether (peregal) 200g 80 ℃ hot water dissolving with 70g, stir, obtain mixing solutions 1;
(2) with potassium pyrophosphate 80g, Sodium Benzoate 20g, urotropine 10g, sebacic acid 5g, caproic acid 10g, ethanol 100g and polyether-modified silicon 0.01g 40 ℃ warm water dissolving, stir, obtain mixing solutions 2 with 30g;
Mixing solutions 1 mixing solutions 2 is mixed, be adjusted to 1000g, obtain degreaser A6 with 25g water.
2, oil removing
Get an amount of degreaser A6, degreaser is diluted, aluminium alloy is immersed in the degreaser after 70 ℃ the dilution and carries out ultrasonic oil removing 3min to 20 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt, no corrosion phenomenon after operations such as washing oven dry.
Comparative Examples 1
(1) with triethanolamine oleate 100g, Sodium dodecylbenzene sulfonate 150g, sodium lauryl sulphate 200g, cocoanut fatty acid diethanolamide (6501) 150g, fatty alcohol-polyoxyethylene ether (peregal) 100g 80 ℃ hot water dissolving with 20g, stir, obtain mixing solutions 1;
(2) with potassium pyrophosphate 80g, Sodium Benzoate 20g, urotropine 10g, sebacic acid 50g, lauric acid 10g, ethanol 100g and polyether-modified silicon 0.01g 40 ℃ warm water dissolving, stir, obtain mixing solutions 2 with 10g;
Mixing solutions 1 mixing solutions 2 is mixed, obtain degreaser B1.
2, oil removing
Get an amount of degreaser B1, degreaser is diluted, aluminium alloy is immersed in the degreaser after 70 ℃ the dilution and carries out ultrasonic oil removing 3min to 20 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt after operations such as washing oven dry, and product surface has slight blushing.
Comparative Examples 2
(1) with triethanolamine oleate 100g, Sodium dodecylbenzene sulfonate 150g, sodium lauryl sulphate 200g, cocoanut fatty acid diethanolamide (6501) 150g, fatty alcohol-polyoxyethylene ether (peregal) 100g 80 ℃ hot water dissolving with 50g, stir, obtain mixing solutions 1;
(2) with potassium pyrophosphate 80g, Sodium Benzoate 20g, urotropine 10g, ethanol 100g and polyether-modified silicon 0.01g 40 ℃ warm water dissolving, stir, obtain mixing solutions 2 with 40g;
Mixing solutions 1 mixing solutions 2 is mixed, obtain 1000g degreaser B2.
2, oil removing
Get an amount of degreaser B2, degreaser is diluted, aluminium alloy is immersed in the degreaser after 700 ℃ the dilution and carries out ultrasonic oil removing 3min to 20 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt after operations such as washing oven dry, and product surface has serious yellowing phenomenon.
Comparative Examples 3
(1) with triethanolamine oleate 100g, Sodium dodecylbenzene sulfonate 150g, sodium lauryl sulphate 200g, cocoanut fatty acid diethanolamide (6501) 150g, fatty alcohol-polyoxyethylene ether (peregal) 100g 80 ℃ hot water dissolving with 35g, stir, obtain mixing solutions 1;
(2) with potassium pyrophosphate 80g, Sodium Benzoate 20g, urotropine 10g, lauric acid 20g, ethanol 100g and polyether-modified silicon 0.01g 40 ℃ warm water dissolving, stir, obtain mixing solutions 2 with 35g;
Mixing solutions 1 mixing solutions 2 is mixed, obtain 1000g degreaser B3.
2, oil removing
Get an amount of degreaser B3, degreaser is diluted, aluminium alloy is immersed in the degreaser after 70 ℃ the dilution and carries out ultrasonic oil removing 3min to 20 times the water that wherein adds degreaser weight.
Product surface does not have greasy dirt after operations such as washing oven dry, and product surface has whole blushing.
From embodiment 1-6 as can be seen, degreaser of the present invention is used for handling the greasy dirt of various metallic surfaces, and cleaning the rear surface does not have greasy dirt to exist, not corrosion of surface simultaneously; As can be seen, the degreaser that obtains with Comparative Examples carries out oil removal treatment to metal base from Comparative Examples 1-3, and the surface has exists greasy dirt, and the corrosion phenomenon that has that has exists.Can remove the greasy dirt of metallic surface better from the above degreaser of the present invention, simultaneously to not corrosion of metallic surface.

Claims (13)

1. metal degreasing agent is characterized in that: comprise anion surfactant, nonionogenic tenside, solubilizing agent and inhibiter, wherein said inhibiter comprises that weight ratio is 10-1: 1 monocarboxylic acid and di-carboxylic acid.
2. metal degreasing agent as claimed in claim 1 is characterized in that: described inhibiter also comprises at least a in urotropine, Sodium orthomolybdate, phytic acid and the benzotriazole.
3. metal degreasing agent as claimed in claim 1 or 2, it is characterized in that: the weight with the metal degreasing agent is benchmark, the content of described anion surfactant is 20-75wt%, the content of described nonionogenic tenside is 8-40wt%, the content of described inhibiter is 0.1-15wt%, and the content of described solubilizing agent is 5-20wt%.
4. metal degreasing agent as claimed in claim 3 is characterized in that: described anion surfactant is at least a in triethanolamine oleate, Sodium dodecylbenzene sulfonate, sodium lauryl sulphate, sodium stearate, polyoxyethylene lauryl alcohol sodium sulfate, aliphatic alcohol polyethenoxy ether carboxylate, the laurin phosphate ester salt; Described nonionogenic tenside is at least a in alkylphenol polyoxyethylene, cocoanut fatty acid diethanolamide, the fatty alcohol-polyoxyethylene ether.
5. metal degreasing agent as claimed in claim 4 is characterized in that: described monocarboxylic acid is at least a in lauric acid, capric acid, tetradecanoic acid, butanic acid, the caproic acid; Described dicarboxylate is at least a in sebacic acid, hexanodioic acid, Succinic Acid, the nonane diacid.
6. metal degreasing agent as claimed in claim 5 is characterized in that: described solubilizing agent is at least a in ethanol, Virahol, butanols, the alcohol ether.
7. metal degreasing agent as claimed in claim 3 is characterized in that: also comprising washing assistant, is benchmark with the weight of metal degreasing agent, and the content of described washing assistant is 1-10wt%.
8. metal degreasing agent as claimed in claim 7 is characterized in that: described washing assistant is at least a in potassium pyrophosphate, trisodium phosphate, Sodium Nitrite, Sodium Benzoate, the sodium sulfate.
9. metal degreasing agent as claimed in claim 3 is characterized in that: also comprising defoamer, is benchmark with the weight of metal degreasing agent, and the content of described defoamer is 0.001-0.01wt%.
10. metal degreasing agent as claimed in claim 9 is characterized in that: described defoamer is at least a in dimethyl silicone oil, polyether-modified silicon, higher alcohols, the polyoxyethylene polyoxy propyl alcohol amidogen ether.
11. a deoiling method is immersed in metallic substance and carries out ultrasonic oil removing in the degreaser, the time is 1-3min, and the degreaser temperature is 50-80 ℃, it is characterized in that, described degreaser is the described degreaser of claim 1.
12. deoiling method as claimed in claim 11 is characterized in that: before oil removing, degreaser is diluted with water to 15-20 doubly.
13. deoiling method as claimed in claim 11 is characterized in that: described metallic substance is a kind of in stainless steel, aluminium alloy, magnesium alloy, zinc alloy, copper alloy, the iron alloy.
CN 200910189444 2009-12-25 2009-12-25 Metal deoiling agent and deoiling method thereof Expired - Fee Related CN102108321B (en)

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