Lubricating oil additive composition
A technology of lubricating oil additives and compositions, applied in the directions of lubricating compositions, additives, petroleum industry, etc., can solve the problems of increasing lubricating oil viscosity, shortening oil change period, wear of piston rings and cam tappets, etc. The effect of oxidation, excellent dispersion properties
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Embodiment 1
[0025] A lubricating oil additive composition of the present invention was prepared, and the additive composition was added to a 10W / 40 thickened base oil at a dose of 11w%. Soot dispersibility of oil was evaluated by countercurrent viscometry. The countercurrent method is: add 3% acetylene carbon black to the test oil, stir for 10 minutes at 68±2°C, 10000±100 rpm, and measure the viscosity of the oil sample at 60°C with a countercurrent viscosity tube; The test oil of carbon black is also stirred under the same conditions to measure its kinematic viscosity at 60°C, and calculate the viscosity growth rate. The smaller the growth rate, the better the dispersibility of the oil sample.
[0026] Example 1
[0027] It can be seen from the data in the above table that the dispersing performance of Example 1 is better than that of Comparative Example 1, and it has better dispersing performance for soot.
Embodiment 2
[0029] A lubricating oil additive composition of the present invention is prepared, and the additive composition is added to a 10W / 40 thickened base oil at a dose of 12w%. Use ASTM D5968 to evaluate the corrosion performance of oil to metal. ASTMD5968 is the performance stipulated in the specifications of oil products of CF-4 and above grades.
[0030] Example 2
[0031] Test data show that the invention has excellent corrosion resistance to metals.
Embodiment 3
[0033] A lubricating oil additive composition of the present invention is prepared, and the additive composition is added to a 10W / 40 thickened base oil at a dose of 10w%. Oxidation induction period (PDSC) was used to evaluate the antioxidant properties of oils. The longer the induction period, the better the oil oxidation performance.
[0034] PDSC conditions: DUPONT2100 differential thermal scanning thermal analyzer, test oil volume: 5μL, O 2 Pressure: 1MPa, heating rate: 10°C / min, until 210°C, O 2 Flow: 150ml / min.
[0035] Example 3
[0036] The test data shows that the examples of the present invention have better oxidation resistance than the comparative examples.
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