Heat-resisting anti-wear lubricating oil and preparation method thereof

A lubricating oil and heat-resistant technology, which is applied in the field of lubricating oil, can solve problems such as insufficient anti-friction, insufficient function of lubricating oil, and inability of lubricating oil to exert its lubricating effect, and achieve good anti-wear performance, good lubricating effect, and good heat resistance The effect of anti-wear properties

Inactive Publication Date: 2017-04-26
苏州圣鑫莱新材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in some special occasions, the application of mineral base oils is limited, at this time it is necessary to use synthetic base oils and bio-oil base oil products
[0004] At present, there are various lubricating oils on the market, but these lubricating oils are not complete in function. Some lubricants with good anti-wear effects cannot adapt to high-temperature environments. For example, when a car is r...

Method used

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  • Heat-resisting anti-wear lubricating oil and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0023] S1: Add 10 parts of allyl isothiocyanate, 6 parts of propylthiamine, 3 parts of 2-nitro-4-chlorophenol and 6 parts of fumaric acid resin to 50 parts of base oil, and raise the temperature to 70 ℃;

[0024] S2: Then add 10 parts of o-acetylsalicylic acid and 8 parts of diethylene glycol ether while stirring, raise the temperature to 100°C after the dropwise addition, and continue the reaction for 40 minutes to obtain the mixed solution A;

[0025] S3: Mix 4 parts of 3-thiophene formaldehyde, 9 parts of polyperfluoroethylene-propylene resin and 10 parts of 2-methyl-2-propanethiol, and ultrasonically vibrate for 5 minutes at a power of 1000W to obtain a mixed solution B;

[0026] S4: Add the mixed solution B in step S3 to the mixed solution A in step S2, adjust the reaction temperature to 90°C, and stir at a rate of 1000r / min for 1h; the heat-resistant and anti-wear lubricating oil can be obtained after the reaction is cooled.

Embodiment 2

[0032] S1: Add 14 parts of allyl isothiocyanate, 10 parts of propylthiouracil, 7 parts of 2-nitro-4-chlorophenol and 12 parts of fumaric acid resin to 70 parts of base oil, and raise the temperature to 80 ℃;

[0033] S2: Then add 20 parts of o-acetylsalicylic acid and 13 parts of diethylene glycol ethyl ether while stirring, raise the temperature to 120°C after the dropwise addition, and continue the reaction for 60 minutes to obtain the mixed solution A;

[0034] S3: Mix 8 parts of 3-thiophene formaldehyde, 13 parts of polyperfluoroethylene-propylene resin and 13 parts of 2-methyl-2-propanethiol, and ultrasonically vibrate at a power of 2000W for 10 minutes to obtain a mixed solution B;

[0035] S4: Add the mixed solution B in step S3 to the mixed solution A in step S2, adjust the reaction temperature to 100° C., and stir at a rate of 1200 r / min for 2 hours; the heat-resistant and anti-wear lubricating oil can be obtained after the reaction is cooled.

Embodiment 3

[0041] S1: Add 11 parts of allyl isothiocyanate, 7 parts of propylthiamine, 4 parts of 2-nitro-4-chlorophenol and 8 parts of fumaric acid resin to 55 parts of base oil, and raise the temperature to 70 ℃;

[0042] S2: Then add 14 parts of o-acetylsalicylic acid and 10 parts of diethylene glycol ethyl ether while stirring, raise the temperature to 100°C after the dropwise addition, and continue the reaction for 40 minutes to obtain the mixed solution A;

[0043] S3: Mix 4 parts of 3-thiophene formaldehyde, 9 parts of polyperfluoroethylene-propylene resin and 10 parts of 2-methyl-2-propanethiol, and ultrasonically vibrate for 5 minutes at a power of 1000W to obtain a mixed solution B;

[0044] S4: Add the mixed solution B in step S3 to the mixed solution A in step S2, adjust the reaction temperature to 90°C, and stir at a rate of 1000r / min for 1h; the heat-resistant and anti-wear lubricating oil can be obtained after the reaction is cooled.

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Abstract

The invention discloses heat-resisting anti-wear lubricating oil. The lubricating oil is prepared from, by weight, 50-70 parts of base oil, 10-14 parts of allyl isothiocyanate, 6-10 parts of C thiamine pyrimidine, 4-8 parts of 3-thiophenecarboxaldehyde, 3-7 parts of 2-nitro-4-chlorophenol, 2-5 parts of 2-amino-6-chlorobenzothiazole, 9-13 parts of a perfluoroethylene propylene copolymer, 6-12 parts of fumaric acid resin, 10-13 parts of 2-methyl-2-propanethio, 10-20 parts of acetylsalicylic acid, 8-13 parts of diethylene glycol ether and 5-9 parts of 5-methyl-3-hexanone. The lubricating oil has both the good heat resistance and friction resistance by adopting various chemical substances for modifying the base oil.

Description

technical field [0001] The invention belongs to the technical field of lubricating oil, in particular to a heat-resistant and anti-wear lubricating oil and a preparation method thereof. Background technique [0002] Wear is the friction between the kinematic pairs, which leads to the gradual loss or migration of the surface material of the part. Friction and wear phenomena are ubiquitous in natural phenomena and can be seen everywhere around us. Lubricating oil is mainly used in various types of automobiles and mechanical equipment. It can reduce friction, play an auxiliary role in cooling, rust prevention, cleaning, sealing and buffering, etc. to protect machinery and processed parts. Its invention can better solve the problem of friction and wear. [0003] Lubricating oil generally consists of two parts: base oil and additives. The main component of lubricating oil is base oil, which determines the most basic properties of lubricating oil; the addition of additives can ...

Claims

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Application Information

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IPC IPC(8): C10M161/00C10N30/08C10N30/06
CPCC10M161/00C10M2205/024C10M2207/046C10M2207/281C10M2209/102C10M2213/062C10M2215/202C10M2219/062C10M2219/082C10M2219/09C10M2219/102C10N2030/06C10N2030/08
Inventor 钱华
Owner 苏州圣鑫莱新材料有限公司
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