Method for determining thermal oxidation stability of lubricating oils of same label by chromatic change values
A lubricating oil and changing value technology, applied in the field of lubricating oil, can solve the problems of rapid identification of unfavorable lubricating oil quality, cumbersome testing process, expensive price, etc., and achieve the effect of accelerating the development and utilization process
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Embodiment 1
[0020] Thermal oxidation stability identification of L-AN46# total loss system oil produced by different manufacturers
[0021] L-AN46# total loss system oil is a base oil for the production of special lubricating oils. Choose base oils from three different manufacturers and mark them as 1#, 2# and 3#. Weigh 150g of each and pass the chromaticity test of petroleum products. The tester measures the original chromaticity value of 1#, 2# and 3# base oil respectively, pours 1#, 2# and 3# base oil into three 250ml beakers, and puts the three beakers in adjustable voltage Heat on a closed electric furnace, raise the temperature of 1#, 2# and 3# base oil to 150°C under constant stirring by the stirrer, heat for 40 minutes and cool to room temperature, and then use the petroleum product colorimeter to measure the corresponding The high temperature chromaticity value, the specific parameters are shown in the table below:
[0022] base oil 1# 2# 3# original chroma v...
Embodiment 2
[0029] Thermal Oxidation Stability Appraisal of Oil Used in L-AN100# Total Loss System from Different Manufacturers
[0030] The L-AN100# total loss system oil is a base oil for the production of special lubricating oils. Choose base oils from three different manufacturers and mark them as 4#, 5# and 6#. Weigh 150g of each and pass the chromaticity test of petroleum products. The tester measures the original chromaticity value of 4#, 5# and 6# base oil respectively, pours 4#, 5# and 6# base oil into three 250ml beakers, and puts the three beakers on adjustable voltage Heat on a closed electric furnace, raise the temperature of 4#, 5# and 6# base oils to 145°C under constant stirring by the stirrer, heat for 40 minutes and then cool down to room temperature, and then use a petroleum product colorimeter to measure the corresponding The high temperature chromaticity value, the specific parameters are shown in the table below:
[0031] base oil 4# 5# 6# origin...
Embodiment 3
[0038] Formulation Screening for the Development of Specialty Lubricants
[0039] H2010 is a self-developed high-temperature lubricating oil, using different antioxidants for formula screening to produce four oil samples A, B, C, and D. Weigh 150g of each of the four oil samples and measure the original chromaticity values of the four oil samples A, B, C, and D through a petroleum product colorimeter, and pour the four oil samples A, B, C, and D into In four 250ml beakers, heat the four beakers on a closed electric furnace with adjustable voltage, and raise the temperature of the four oil samples A, B, C, and D to 155°C while stirring continuously with the stirrer, and heat for 40 minutes After cooling to room temperature, the corresponding high-temperature chromaticity values are measured with a petroleum product chromaticity meter, and the specific parameters are shown in the table below:
[0040] H2010 high temperature lubricating oil A B C D origi...
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