A kind of organic type anti-corrosion coolant and preparation method thereof
A coolant and corrosion-inhibiting technology, applied in the field of organic-type corrosion-inhibited coolant and its preparation, can solve problems such as easy blockage of engine pipes, engine overheating faults, gel precipitation, etc., achieve less environmental pollution and increase service life , long service life effect
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Embodiment 1
[0024] Example 1 provides an organic type corrosion-inhibiting cooling liquid, including the following components in weight percentage: 0.15% of tolyl benzotriazole or benzotriazole; compound component A: 0.8% of octanoic acid, 2-Ethylhexanoic acid 2.45%; compound component B: azelaic acid 1.35%, terephthalic acid 1.8%, neodecanoic acid 2.5%, sebacic acid 0.8%; sodium benzoate 1.2%; polyhexamethylene Base guanidine 0.7%; Fluorescein sodium 5ppm; Silicone defoamer 25ppm; The balance is water and ethylene glycol. The technical index of the organic type corrosion-inhibiting cooling liquid that embodiment 1 makes sees the following table 1:
[0025] The control experiment provides a kind of inorganic cooling liquid, including the following components in mass percentage: 0.15% benzotriazole, 0.35% triethanolamine, 0.21% sebacic acid, 0.15% sodium hydroxide, 0.14% sodium nitrate, Sodium nitrite 0.3%, sodium silicate 1.0%, water and ethylene glycol are added according to the freezin...
Embodiment 8
[0048] The difference between Example 8 and Example 1 is that the neodecanoic acid in the compound component B is replaced by 1,2,3-3 methylpentanoic acid; the difference between Example 9 and Example 1 is that the compound The amount of neodecanoic acid in component B is reduced, and another 1,2,3-3 methylpentanoic acid is added; the difference between Example 10 and Example 1 is that the compound component B lacks neodecanoic acid The difference between Example 11 and Example 1 is that azelaic acid will be lacking in the compounding component B; the mass percentage of the compounding component B in the total amount remains unchanged. From the experimental results of Examples 8-11 in Table 5, it can be known that some of the tested data of the cooling liquids in Examples 8-11 seriously exceed the requirements of the national standard. The anti-corrosion performance decreased significantly. This is because the combination of azelaic acid, terephthalic acid, neodecanoic acid an...
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