Drawing lube cooling oil of aluminum-coated red copper metal bar and its production
A lubricating cooling oil and bimetal technology, which is applied in the direction of lubricating compositions, petroleum industry, base materials, etc., can solve the problems of bad influence of heat treatment and annealing quality, oxidation and discoloration of the surface of the drawn workpiece, smoothness, brightness reduction, etc., to achieve Good chemical adsorption and physical adsorption, not easy to deteriorate, and the effect of improving the diameter reduction rate
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Embodiment 1
[0034] a. Get raw material components, each raw material accounts for the percentage of total weight as follows:
[0035] Machine oil (No. 32, No. 10, No. 7) 20-30%, oleic acid 8-9%, tricresyl phosphate 20-30%, benzotriazole 0.8-0.9%, absolute ethanol 1-2% , phosphobutyl zinc base zinc salt (T202) 20-30%, poly-n-butyl vinyl ether (T601) 13.5-14.5%, fungicide (isothiazolinone) 0.2-0.3%, each raw material can be listed Choose arbitrarily within the value range, and the total value should be 100%;
[0036] b. Fully dissolve the benzotriazole with absolute ethanol for later use;
[0037] c. Add mechanical oil into the reaction kettle, heat to 80-90°C, start the agitator at a speed of 550-650 rpm, and add tricresyl phosphate and oleic acid in sequence, stir for 0.5-1.5 hours, then lower the temperature drop to 40-50°C;
[0038] d. Add the ethanol-soluble solution of benzotriazole described in step a and the bactericide to the mixed solution described in step b, continue to stir ...
Embodiment 2
[0042] a. Get raw material components, each raw material accounts for the percentage of total weight as follows:
[0043] Mechanical oil (No. 32, No. 10, No. 7) 25.3%, oleic acid 8%, tricresyl phosphate 20%, benzotriazole 0.9%, absolute ethanol 2%, thiophosphobutyl zinc base zinc salt (T202 ) 30%, poly-n-butyl vinyl ether (T601) 13.5%, fungicide (isothiazolinone) 0.3%;
[0044] b. Fully dissolve the benzotriazole with absolute ethanol for later use;
[0045] c. Add mechanical oil into the reaction kettle, heat to 90°C, start the agitator at a speed of 550 rpm, and add tricresyl phosphate and oleic acid in sequence, and after stirring for 0.5h, lower the temperature to 40°C;
[0046] d. Add the ethanol-soluble solution of benzotriazole described in step a and the bactericide to the mixed solution described in step b, continue to stir for 0.5h, stop stirring and drop to normal temperature;
[0047] e. Then add phosphobutyl zinc base zinc salt and poly-n-butyl vinyl ether in tu...
Embodiment 3
[0050] a. Get raw material components, each raw material accounts for the percentage of total weight as follows:
[0051] Machinery oil (No. 32, No. 10, No. 7) 24.5%, oleic acid 9%, tricresyl phosphate 30%, benzotriazole 0.8%, absolute ethanol 1%, thiophosphobutyl zinc base zinc salt (T202 ) 20%, poly-n-butyl vinyl ether (T601) 14.5%, fungicide (isothiazolinone) 0.2%;
[0052] b. Fully dissolve the benzotriazole with absolute ethanol for later use;
[0053]c. Add mechanical oil into the reaction kettle, heat to 80°C, start the agitator at a speed of 650 rpm, and add tricresyl phosphate and oleic acid in sequence, and after stirring for 1.5 hours, lower the temperature to 50°C;
[0054] d. Add the ethanol-soluble solution of benzotriazole described in step a and the bactericide to the mixed solution described in step b, continue to stir for 1.5h, and cool down to normal temperature naturally;
[0055] e. Then add phosphobutyl zinc base zinc salt and poly-n-butyl vinyl ether i...
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