Lubricating oil and grease base oil, and preparation method and applications thereof
A base oil and fatty acid technology, applied in lubricating compositions, base materials, petroleum industry, etc., can solve problems such as viscosity, pour point, and flash point that cannot meet the requirements, and achieve high viscosity index, high flash point, and biodegradation high rate effect
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Embodiment 1
[0078] The preparation of embodiment 1 base oil
[0079] The preparation process is as follows:
[0080] 1. Select two dibasic acids with carbon numbers of 5 to 12, and add a mixed alcohol consisting of neopentyl glycol, trimethylolpropane and neopentylthritol in an amount twice the amount of the dibasic acid, and then The amount of substances added is 0.95-1.05% tetraoctyl zirconate of the mixed dibasic acid and 1.9-2.1% p-toluenesulfonic acid as a catalyst, and the reaction is stirred at a temperature of 160-180°C for 140-180 minutes to complete the first step. One-step esterification reaction.
[0081] 2. The amount of the added substance is more than 4 times of the mixed dibasic acid, the monobasic fatty acid with the carbon number of 14 to 20, (the monobasic fatty acid should be in excess, so that the second step of the esterification reaction is complete), at a temperature of 200 ~ 220 ° C Stir the reaction for 100 to 120 minutes to complete the second step of the este...
Embodiment 2
[0093] The preparation of embodiment 2 antioxidant
[0094] Antioxidant was prepared according to the formula in parts by weight in Table 3.
[0095] Preparation method: Mix the raw materials evenly according to the proportion.
[0096] table 3
[0097]
[0098] The structural formula of thiocarbamate in table 3 is (C 4 h 9 ) 2 NCS 2 CS 2 CN(C 4 h 9 ) 2 .
Embodiment 3
[0099] The performance of embodiment 3 antioxidants
[0100] The 4# formulation base oil in Example 1 was used to mix with various antioxidants in the following table, wherein the base oil accounted for 98wt%, and the total amount of antioxidants accounted for 2wt%. Mix the raw materials according to the ratio and stir evenly.
[0101] Table 4
[0102]
[0103] Note: the total amount of antioxidants is 2.0%, wherein, the structural formula of thiocarbamate is (C 4 h 9 ) 2 NCS 2 CS 2 CN(C 4 h 9 ) 2 .
[0104] As can be seen from the data in Table 4, the present invention selects the antioxidant compound compounded by diisooctyl diphenylamine, phenyl-α-naphthylamine, 2,6 di-tert-butylphenol and thiocarbamate. It achieves the complementary performance advantages of various antioxidants and greatly improves the long-term high-temperature anti-oxidation stability of oil products.
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