Microemulsion cutting fluid
A cutting fluid and micro-emulsification technology, applied in the petroleum industry, additives, lubricating compositions, etc., can solve the problems of harmfulness to human body and environment, uneven products, poor water quality adaptability, etc., to achieve convenient on-site operation, long service life, Cost-effective effect
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Embodiment 1
[0025] Base oil 150SN 44.8%;
[0026] Triethanolamine 9%;
[0027] 2-Amino-2methyl-1-propanol 4%
[0028] Vegetable Oleic Acid 4.5%;
[0029] Tween 20 4%;
[0030] Fatty alcohol polyoxyethylene (5) ether 3%
[0031] Tall amide 2.5%
[0032] Nonanoic Acid 1%
[0033] Lauryl Alcohol 1.5%;
[0034] Trimethylolpropane 5%;
[0035] Chlorinated paraffin 4%;
[0036] Boric acid 4.5%;
[0037] Benzotriazole 0.1%;
[0038] Phosphate 1%;
[0039] MBM 2%;
[0040] IPBC 0.5%
[0041] MS525 0.1%;
[0042] Water 8.5%.
Embodiment example 1
[0043] Implementation case 1 is suitable for heavy-duty processing such as turning, drilling, milling, cutting and even tapping of ferrous metals such as cast iron and carbon steel, and aluminum alloy.
Embodiment example 2
[0045] Base oil T22 28%;
[0046] Diethanolamine 14.5%;
[0047] Ricinoleic Acid 2%;
[0048] Tall Oil 3%
[0049] Sodium Petroleum Sulfonate 5%
[0050] Fatty alcohol polyoxyethylene (4) ether 5%
[0051] Cetyl Alcohol 2%;
[0052] Polyricinoleate 2%;
[0053] Chlorinated paraffin 3.5%;
[0054] Boric acid 5%;
[0055] Benzotriazole 0.1%;
[0056] Phosphate 1.0%
[0057] Ethylene glycol dimethyl ether 2.5%;
[0058] GPE type polyether defoamer 0.1%;
[0059] Water 26.3%.
[0060] Implementation example 2 is suitable for light or medium load processing of cast iron, carbon steel, aluminum alloy and other metals.
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