CN106318521B - A kind of crankcase system lubricant oil composite and preparation method thereof - Google Patents

A kind of crankcase system lubricant oil composite and preparation method thereof Download PDF

Info

Publication number
CN106318521B
CN106318521B CN201510333083.0A CN201510333083A CN106318521B CN 106318521 B CN106318521 B CN 106318521B CN 201510333083 A CN201510333083 A CN 201510333083A CN 106318521 B CN106318521 B CN 106318521B
Authority
CN
China
Prior art keywords
weight
lubricant oil
oil composite
dosage
polyisobutene
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201510333083.0A
Other languages
Chinese (zh)
Other versions
CN106318521A (en
Inventor
谢欣
陈政
张建荣
武志强
孙洪伟
段庆华
王立华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sinopec Research Institute of Petroleum Processing
China Petroleum and Chemical Corp
Original Assignee
Sinopec Research Institute of Petroleum Processing
China Petroleum and Chemical Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sinopec Research Institute of Petroleum Processing, China Petroleum and Chemical Corp filed Critical Sinopec Research Institute of Petroleum Processing
Priority to CN201510333083.0A priority Critical patent/CN106318521B/en
Publication of CN106318521A publication Critical patent/CN106318521A/en
Application granted granted Critical
Publication of CN106318521B publication Critical patent/CN106318521B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Lubricants (AREA)

Abstract

The invention discloses a kind of crankcase system lubricant oil composites, lubricant oil composite contains following components: the lube base oil of 75-95 weight %, the antioxygen multipurpose additive of 0.01-10 weight %, the thiophenols ester type antioxidant of 0.02-10 weight %, the polyisobutene succinimide ashless dispersant of 0.5-10 weight % and the mixture of boronation polyisobutene succinimide dispersing agent, the magnesium salicylate of 0.2-10 weight % and the mixture of calcium naphthenate, in terms of phosphorus≤zinc dialkyl dithiophosphate of 0.15 weight % and the ethylene oxide/propylene oxide copolymer of 0.01-5 weight %, antioxygen multipurpose additive is the compound of structure shown in formula (I).The present invention also provides the preparation methods of lubricant oil composite.Lubricant oil composite of the invention has excellent wear-resistant and antioxygenic property, can inhibit the generation of high temperature deposition object, can be widely applied to engine of boat and ship crankcase system.

Description

A kind of crankcase system lubricant oil composite and preparation method thereof
Technical field
The present invention relates to lubricating oil fields, and in particular, to a kind of engine of boat and ship crankcase containing special additive System lubrication fluid composition and preparation method thereof.
Background technique
Engine of boat and ship crankcase system lubricating oil, also known as ship lubricant oil, need to be recycled for a long time, in high-temperature thermal oxidation The impurity such as organic acid, peroxide and colloid can be generated in environment, its viscosity can be made to increase and corrode non-ferrous metal, be unfavorable for living Plug and engine washing, lubrication, can shorten Working Life of Lubricating Oil, therefore it is required that engine of boat and ship crankcase system lubricating oil has There is good antioxygenic property.Seek more efficiently antioxidant additive and research and development application in the lubrication of engine of boat and ship crankcase Oil is always the target that those skilled in the art make great efforts.
Unsaturated olefin, aromatic hydrocarbons and sulfur-containing compound in bunker fuel oil and base oil form glue under oxygen effect Matter, and carbon distribution deposit is ultimately formed, to antiwear additive used in lubricating oil, more stringent requirements are proposed for this.
Engine of boat and ship crankcase system lubricating oil has excellent anti-oxidant, abrasion resistance and inhibits high temperature deposition object raw At ability be direction that this field researcher is continually striving to all the time.
It mainly includes phenols and aminated compounds that the lube oil additive of antioxidation can be effectively played by, which being currently known,. Phenolic compound contains one or more and is obstructed phenol functional group, and aminated compounds then contains one or more nitrogen-atoms, these are special Different functional group can capture the free radical compounds of oxidation process generation, so that oxidation process be prevented to continue to occur.Due to The operating condition of Current mechanical equipment tends to strongly, often accelerated oxidation rate, shortens the service life of lubricating oil, therefore right More stringent requirements are proposed for the efficiency and economy of antioxidant.
United States Patent (USP) US4824601A reports diphenylamine and diisobutylene in the alkaline-earth metal catalyst of acid activation The lower alkylated amines mixture formed of (earth catalyst) effect, its anti-oxidant energy in lubricating oil and other functional fluids Power is excellent in.
United States Patent (USP) US2005230664A1 reports a kind of antioxidant 9 of following general formula, the synthesis of 10- acridan Method, it is to be condensed preparation under acidic catalyst effect using alkylated diphenylamine and aldehydes or ketones.
Using the tert-butyl phenols that is obstructed, aldehyde, carbon disulfide and dialkylamine condensation preparationization occurs for patent CN1191340C Object is closed, which has the stronger ability for capturing free radical and peroxynitrite decomposition compound, can provide to oil oxidation stability More effectively protection, may also function as wear-resistant effect.
Patent US4225450A report it is a kind of by the tert-butyl phenols that is obstructed with Diethyldithiocarbamate the system of reacting Standby polysulfide phenolic antioxidant has preferable antioxidation and wear-resistant effect.
Summary of the invention
The purpose of the invention is to meet to the anti-oxidant, wear-resistant of engine of boat and ship crankcase system lubricating oil and inhibit The high request for the ability that high temperature deposition object generates provides a kind of crankcase system lubricant oil composite and preparation method thereof.
The present inventor has found that crankcase system lubricant oil composite contains structure shown in formula (I) under study for action Compound:
And the compound and thiophenols ester type antioxidant are combined, and crankcase system lubricant oil composite can be made to have excellent The good performances such as anti-oxidant and wear-resistant, can effectively inhibit the generation of high temperature deposition object.
Therefore, to achieve the goals above, on the one hand, the present invention provides a kind of crankcase system lubricant oil composite, On the basis of the weight of lubricant oil composite, the lubricant oil composite contains following components: the lubrication oil base of 75-95 weight % Plinth oil, the thiophenols ester type antioxidant of the antioxygen multipurpose additive of 0.01-10 weight %, 0.02-10 weight %, 0.5-10 weight Measure the polyisobutene succinimide ashless dispersant of % and mixture, the 0.2- of boronation polyisobutene succinimide dispersing agent The mixture of the magnesium salicylate of 10 weight % and calcium naphthenate, in terms of phosphorus≤zinc dialkyl dithiophosphate of 0.15 weight % and The ethylene oxide/propylene oxide copolymer of 0.01-5 weight %, the antioxygen multipurpose additive are the chemical combination of structure shown in formula (I) Object:
Preferably, on the basis of the weight of lubricant oil composite, the lubricant oil composite contains following components: 80-90 The lube base oil of weight %, the antioxygen multipurpose additive of 0.1-4 weight %, 0.1-5 weight % thiophenols ester type antioxygen Agent, the polyisobutene succinimide ashless dispersant of 2-8 weight % and boronation polyisobutene succinimide dispersing agent it is mixed Close the dialkyl disulfides of object, the mixture of the magnesium salicylate of 0.8-6 weight % and calcium naphthenate, the weight of the 0.01-0.1 in terms of phosphorus % For the ethylene oxide/propylene oxide copolymer of trbasic zinc phosphate and 0.2-3 weight %.
On the other hand, the present invention provides a kind of preparation method of crankcase system lubricant oil composite, the method packets It includes: lube base oil, antioxygen multipurpose additive, thiophenols ester type antioxidant, polyisobutene succinimide ashless will be contained Mixture, the dioxane of the mixture of dispersing agent and boronation polyisobutene succinimide dispersing agent, magnesium salicylate and calcium naphthenate The raw material of base zinc dithiophosphate and ethylene oxide/propylene oxide copolymer is uniformly mixed and obtains lubricant oil composite, wherein with On the basis of the weight of lubricant oil composite, the dosage of lube base oil is the dosage of 75-95 weight %, antioxygen multipurpose additive Dosage for 0.01-10 weight %, thiophenols ester type antioxidant is 0.02-10 weight %, polyisobutene succinimide ashless The dosage of the mixture of dispersing agent and boronation polyisobutene succinimide dispersing agent is 0.5-10 weight %, magnesium salicylate and ring The dosage of the mixture of alkanoic acid calcium is 0.2-10 weight %, the dosage of zinc dialkyl dithiophosphate be in terms of phosphorus≤0.15 weight % is measured, the dosage of ethylene oxide/propylene oxide copolymer is 0.01-5 weight %, and the antioxygen multipurpose additive is formula (I) institute Show the compound of structure:
Preferably, on the basis of the weight of lubricant oil composite, the dosage of lube base oil is 80-90 weight %, resists The dosage of oxygen multipurpose additive is 0.1-4 weight %, the dosage of thiophenols ester type antioxidant is 0.1-5 weight %, polyisobutene The dosage of the mixture of Ashless butyl diimide dispersant and boronation polyisobutene succinimide dispersing agent is 2-8 weight %, The dosage of the mixture of magnesium salicylate and calcium naphthenate is 0.8-6 weight %, and the dosage of zinc dialkyl dithiophosphate is in terms of phosphorus For 0.01-0.1 weight %, the dosage of ethylene oxide/propylene oxide copolymer is 0.2-3 weight %.
Crankcase system lubricant oil composite of the invention has excellent abrasion resistance and antioxygenic property, can inhibit height The generation of warm deposit can be widely applied to engine of boat and ship crankcase system.
Other features and advantages of the present invention will the following detailed description will be given in the detailed implementation section.
Detailed description of the invention
Fig. 1 is the reaction equation of (a) the step of preparing antioxygen multipurpose additive.
Fig. 2 is the reaction equation of (b) the step of preparing antioxygen multipurpose additive.
Fig. 3 is the reaction equation of (c) the step of preparing antioxygen multipurpose additive.
Fig. 4 is the hydrogen spectrum spectrogram of the antioxygen multipurpose additive of preparation example preparation.
Fig. 5 is the carbon spectrum spectrogram of the antioxygen multipurpose additive of preparation example preparation.
Fig. 6 is the mass spectrogram of the antioxygen multipurpose additive of preparation example preparation.
Specific embodiment
Detailed description of the preferred embodiments below.It should be understood that described herein specific Embodiment is merely to illustrate and explain the present invention, and is not intended to restrict the invention.
On the one hand, the present invention provides a kind of crankcase system lubricant oil composites, are with the weight of lubricant oil composite Benchmark, the lubricant oil composite contain following components: the antioxygen of the lube base oil of 75-95 weight %, 0.01-10 weight % Multipurpose additive, the thiophenols ester type antioxidant of 0.02-10 weight %, 0.5-10 weight % polyisobutene succinimide without The magnesium salicylate and aphthenic acids of the mixture of grey dispersing agent and boronation polyisobutene succinimide dispersing agent, 0.2-10 weight % The mixture of calcium, in terms of phosphorus≤zinc dialkyl dithiophosphate of 0.15 weight % and ethylene oxide/ring of 0.01-5 weight % Ethylene Oxide copolymer, the antioxygen multipurpose additive are the compound of structure shown in formula (I):
In the present invention, on the basis of the weight of lubricant oil composite, the content of lube base oil is preferably 80-90 weight Measure %;The content of antioxygen multipurpose additive is preferably 0.02-5 weight %, more preferably 0.1-4 weight %;Thiophenols ester type is anti- The content of oxygen agent is preferably 0.05-8 weight %, more preferably 0.1-5 weight %;Polyisobutene succinimide ashless dispersant Content with the mixture of boronation polyisobutene succinimide dispersing agent is preferably 1.5-9 weight %, more preferably 2-8 weight Measure %;The content of the mixture of magnesium salicylate and calcium naphthenate is preferably 0.5-8 weight %, more preferably 0.8-6 weight %;Two The content of alkyl zinc dithiophosphate is preferably 0.01-0.1 weight % in terms of phosphorus;Ethylene oxide/propylene oxide copolymer contains Amount is preferably 0.1-4 weight %, more preferably 0.2-3 weight %.
The present invention is directed to tie by the compound containing structure shown in formula (I) in lubricant oil composite, and shown in formula (I) The compound of structure and thiophenols ester type antioxidant are combined and realize goal of the invention, though lubricant oil composite have it is excellent wear-resistant With the performances such as anti-oxidant.Therefore, it for the selection of conventional constituents each in lubricant oil composite, does not limit specifically.
In the present invention, lube base oil can be lube base oil commonly used in the art, such as can be mine Object lubricating oil and/or synthetic lubricant fluid.
Mineral lubricating oil in viscosity can from light fraction mineral oil to heavy distillat mineral oil, including saxol and plus That hydrogen refines, the processed alkane of solvent, cycloalkanes and mixing par-affinic-naphthenic types mineral lubricating oil, are generally divided into I, II, Group III Base oil, common trade names include I class 150SN, 600SN, II class 100N, 150N, 350N etc..
Synthetic lubricant fluid may include polymerization hydrocarbon ils, alkyl benzene and its derivative, polymerization hydrocarbon ils specific example include but It is not limited to polybutene, polypropylene, propylene-isobutylene copolymers, the polybutene of chlorination, poly- (1- hexene), poly- (1- octene), gathers (1- decene), common trade names include PAO4, PAO6, PAO8, PAO10 etc., alkyl benzene and its derivative specific example Including but not limited to detergent alkylate, Tetradecylbenzene, dinonyl benzene, two (2- ethylhexyl) benzene, alkyl benzene derivate packet Include alkylated diphenyl ether and alkylated diphenyl sulfide and its derivative, analog and homologue etc..
Another suitable type of synthetic lubricant fluid can be Esters oil, including dicarboxylic acids (such as phthalic acid, succinic acid, alkane Base succinic acid and alkenyl succinic acid, maleic acid, azelaic acid, suberic acid, decanedioic acid, fumaric acid, adipic acid, linoleic acid dimerization Object, malonic acid, alkyl malonic acid, alkenyl malonic) with various alcohol (such as butanol, hexanol, dodecyl alcohol, 2- ethylhexyl alcohol, Ethylene glycol, propylene glycol) ester or complex ester that condensation reaction generates occurs.The specific example of these esters includes but is not limited to adipic acid Dibutyl ester, decanedioic acid two (2- ethylhexyl) ester, the just own ester of fumaric acid acid two, dioctyl sebacate, azelaic acid two are different pungent Ester, two different decayl esters of azelaic acid, dioctyl phthalate, didecyl phthalate, decanedioic acid two (larane base) ester, linoleic acid 2- ethylhexyl diester of dimer etc..
Another suitable type of synthetic lubricant fluid can be for fischer tropsch process synthetic hydrocarbon oil and to this synthetic hydrocarbon oil by adding Hydrogen isomery such as is hydrocracked, dewaxes at the lube base oil that process obtain.
In the present invention, lube base oil preferred viscosities index is greater than 80, saturated hydrocarbon content and is greater than 90 weight %, sulfur content Less than the lube base oil of 0.03 weight %.
In the present invention, thiophenols ester type antioxidant can be thiophenols ester type antioxidant commonly used in the art, such as can be with For thiodipropionic acid bis-dodecanol ester (DLTDP), thio-2 acid double octadecyl esters (DSTDP), 2,5- dimercapto -1,3,4- thiophene two Azoles (DMTD) and 2, at least one of 2'- thiobis [3- (3,5- di-tert-butyl-hydroxy phenyl) ethyl propionate], preferably 2,2'- thiobis [3- (3,5- di-tert-butyl-hydroxy phenyl) ethyl propionate], such as the production of Sichuan Yong Ye Chemical Co., Ltd. Antioxidant 1035, BASF Aktiengesellschaft production IRGANOX L115.
In the present invention, the number-average molecular weight of polyisobutene part is preferably in polyisobutene succinimide ashless dispersant 800-4000, more preferably 900-3000, further preferably 1000-2400.Polyisobutene succinimide ashless dispersant Such as the T161 that Suzhou specialty oil factory can be selected to produce, T161A, T161B of the production of Jinzhou Petrochemical Company additive factory, The LZLl57 of Lu Borun Lan Lian additive Co., Ltd production, LZ6418, LZ6420 of Lubrizol Corp.'s production, Afton Chemical Corp. The Hitec646 etc. of production.
In the present invention, the number-average molecular weight of polyisobutene part is preferably in boronation polyisobutene succinimide dispersing agent 500-4000, more preferably 700-2500, further preferably 1000-2300.Boronation polyisobutene succinimide dispersing agent Such as the MX3316 that Agip Petroli company can be selected to produce, Hitec648, Hitec7714 of Afton Chemical Corp.'s production, And the LZ935 etc. of Lubrizol Corp.'s production.
In the present invention, polyisobutene succinimide ashless dispersant and boronation polyisobutene succinimide dispersing agent Weight ratio is preferably 1-4:1.
In the present invention, the base number of magnesium salicylate is preferably 300-450mgKOH/g, and the base number of calcium naphthenate is preferably 100- The weight ratio of 200mgKOH/g, magnesium salicylate and calcium naphthenate is preferably 0.3-5:1, more preferably 0.5-3:1.Magnesium salicylate and T112, T113, T114 that the mixture of calcium naphthenate can for example select Dushanzi petro-chemical corporation to produce, the production of Run Yinglian company C9006, C9012.
In the present invention, the alkyl in zinc dialkyl dithiophosphate is preferably the alkyl of C2-C12, more preferably C2-C8's Alkyl, further preferably ethyl, n-propyl, isopropyl, normal-butyl, isobutyl group, sec-butyl, n-pentyl, isopentyl, just oneself Base, isohesyl, n-octyl, iso-octyl, 2- ethylhexyl, cyclohexyl or methylcyclopentyl.Zinc dialkyl dithiophosphate can be with T202, the T203 for selecting WUXI SOUTH PETROLEUM ADDITIVE Co., LTD. to produce, the primary of the production of Jinzhou Petrochemical Company additive factory Alkyl T202, primary alkyl T203, brothers alkyl T204, secondary alkyl T205, LZ1371, LZ1375 of Lubrizol Corp.'s production, profit C9417, C9425, C9426 of Ying Lian company production, Hitec7169, Hitec1656 etc. of Afton Chemical Corp.'s production.
In the present invention, ethylene oxide/propylene oxide copolymer can select ethylene oxide/propylene oxide commonly used in the art Copolymer, such as the C-310B of Exxon Mobil Oil Corp can be selected.
Lubricant oil composite of the invention can also contain at least one in viscosity index improver, antirust agent, pour-point depressant and anti-foaming agent Kind.Viscosity index improver can select various viscosity index improvers commonly used in the art.Antirust agent can be selected from imidazoles and/or alkenyl succinic acid ester Class, at least one of preferably 4,5- glyoxalidine, alkenyl imidazoline succinate and alkenyl succinic acid ester, such as can select T746, T703, the T747 produced with Jinzhou Kangtai Lube Additive Co., Ltd..Pour-point depressant can be selected from poly alpha olefin, second Vinyl acetate copolymer and alkyl be in the dialkyl fumarate, poly- alkylmethacrylate, alkylnaphthalene of C8-C18 extremely Few one kind, such as V385, Luo Mankesi of T803, Run Yinglian company of Wuxi south petroleum additive company can be selected VISCOPLEX1-248 etc..Anti-foaming agent can select polysiloxane type anti-foaming agent, such as can be silicone oil and/or poly dimethyl silicon Oxygen alkane.For viscosity index improver, antirust agent, pour-point depressant and anti-foaming agent content without particular/special requirement, can be the content of this field routine, This is known to those skilled in the art, and details are not described herein.
In the present invention, the preparation method of the compound of structure shown in formula (I) is preferably included:
(a) 2,6- DI-tert-butylphenol compounds, formaldehyde and benzene are subjected to condensation reaction, generate intermediate M shown in formula (II),
(b) the intermediate M that step (a) obtains is contacted with bromide reagent and carries out bromo-reaction, generated shown in formula (III) Bromination product,
(c) bromination product for obtaining step (b) is contacted with formula (IV) compound represented carries out coupling reaction, production (I) antioxidant shown in,
In step (a) of the present invention, the condition of condensation reaction is preferably included: under an inert atmosphere, in the first solvent, In the presence of one catalyst, 15- is risen to after 2,6- DI-tert-butylphenol compounds, formaldehyde and benzene are reacted 0.5-1.5h at -20-0 DEG C 30 DEG C, it is then heated to 70-80 DEG C of reaction 1-3h.
In the present invention, inert atmosphere can be the inert atmosphere of this field routine, such as can be by gases such as nitrogen, argon gas It provides.
It will be understood by those skilled in the art that reacting 0.5-1.5h at -20-0 DEG C to carry out stable reaction After rise to 15-30 DEG C, it should be to slowly warm up to 15-30 DEG C, for example, can by -20-0 DEG C react 0.5-1.5h after body System is placed under 15-30 DEG C of environment temperature, and reaction system itself is made to be to slowly warm up to 15-30 DEG C.
In the present invention, the first solvent is preferably selected from least one in methanol, ethyl alcohol, n,N-Dimethylformamide and acetonitrile Kind, more preferably methanol and/or acetonitrile, are still more preferably methanol.
In the present invention, the first catalyst can be inorganic acid or organic acid, be preferably selected from acetic acid, p-methylbenzoic acid and benzene At least one of sulfonic acid, more preferably acetic acid.
In the present invention, the dosage of 2,6- DI-tert-butylphenol compounds, formaldehyde and benzene is substantially equimolar amounts, but formaldehyde and benzene can With appropriate excessive.The molar ratio of 2,6 di t butyl phenol, formaldehyde and benzene is preferably 0.9-1.5:0.9-10:0.9-10.
In step (a) of the present invention, the dosage of the first catalyst can be catalytic amount, with mole of 2,6- DI-tert-butylphenol compounds On the basis of number, the dosage of the first catalyst is preferably 5-100 moles of %, more preferably 10-30 moles of %.
It will be understood by those skilled in the art that purer intermediate M, goes back in order to obtain in step (a) of the present invention It needing to post-process the system after reaction, the mode of post-processing may include that solvent is removed under reduced pressure, then diluted through solvent, Washing, dry, decompression remove solvent again, for example, the system after reaction is removed into solvent at 0.01-0.05MPa, 40-60 DEG C, It is subsequently poured into the ethyl acetate (or methylene chloride) of 1-10 times of volume, uses distilled water and saturated common salt water washing respectively, then The desiccant such as anhydrous calcium chloride or anhydrous sodium sulfate are added at 15-30 DEG C, keep 10-60min.It is filtered to remove desiccant Afterwards, solvent is removed at 0.01-0.05MPa, 40-60 DEG C, to obtain intermediate M.
In step (a) of the present invention, 2,6- DI-tert-butylphenol compounds, formaldehyde and benzene carry out the reaction equation of condensation reaction as schemed Shown in 1, in Fig. 1, the first solvent is using methanol, and the first catalyst is using acetic acid, purpose by way of example only, no The scope of the present invention is construed as limiting.
In step (b) of the present invention, the condition of bromo-reaction is preferably included: under an inert atmosphere, in the second solvent, In the presence of two catalyst, under the conditions of being protected from light, the intermediate M that step (a) obtains is reacted at 15-30 DEG C with bromide reagent Then 1-2h is quenched with quencher.
" inert atmosphere " is as previously mentioned, details are not described herein.
It will be understood by those skilled in the art that more stably being carried out to react, slowly add preferably into intermediate M Enter brominated reagent.
In the present invention, the second solvent is preferably selected from least one of tetrahydrofuran, methylene chloride, chloroform and ether, more Preferably tetrahydrofuran.
In the present invention, the second catalyst is preferably selected from ammonium nitrate, benzoyl peroxide (BPO) and azodiisobutyronitrile At least one of (AIBN).
In the present invention, bromide reagent is preferably N-bromosuccinimide (NBS) and/or Br2, more preferably NBS.
In step (b) of the present invention, it is quenched with quencher, quencher can be quencher commonly used in the art, such as It can be saturated salt solution.
In step (b) of the present invention, the dosage of intermediate M and bromide reagent is substantially equimolar amounts, but bromide reagent one As can be suitably excessive, reach 1.1-3 times of equivalent of reaction substrate.Intermediate M and bromide reagent molar ratio are preferably 0.9- 1.2:0.9-3.0。
In step (b) of the present invention, the dosage of the second catalyst can be catalytic amount, on the basis of the molal quantity of intermediate M, The dosage of second catalyst is preferably 10-100 moles of %, more preferably 40-60 moles of %.
In the method for the present invention step (b), intermediate M contacts the reaction equation for carrying out bromo-reaction with bromide reagent as schemed Shown in 2, in Fig. 2, bromide reagent is using NBS, and purpose by way of example only is not construed as limiting the scope of the present invention.
In step (b) of the present invention, other than generating bromination product shown in formula (III), there are also the bromos at micro ortho position to produce Object generates, and the bromination product of meta position does not generate, but the amount of the bromination product at ortho position very pettiness, to subsequent reactions without substantive shadow It rings, can be ignored.
It will be understood by those skilled in the art that in step (b) of the present invention, purer bromination product in order to obtain, It also needs to post-process the system after being quenched, the mode of post-processing may include washing, drying, solvent, example be removed under reduced pressure Such as, the system after being quenched is washed with distilled water, it is dry that anhydrous calcium chloride or anhydrous sodium sulfate etc. is then added at 15-30 DEG C Drying prescription keeps 10-60min.After being filtered to remove desiccant, solvent is removed at 0.01-0.05MPa, 40-60 DEG C, to obtain bromine For product.
In step (c) of the present invention, the condition of coupling reaction is preferably included: under an inert atmosphere, in third solvent, In the presence of three catalyst, the bromination product that step (b) obtains is reacted at 80-100 DEG C with formula (IV) compound represented 4-8h。
" inert atmosphere " is as previously mentioned, details are not described herein.
In the present invention, in order to carry out stable reaction, it is preferably gradually heated to 80-100 DEG C, it is then anti-at 80-100 DEG C Answer 4-8h.
In the present invention, third solvent is preferably selected from least one of methylene chloride, chloroform, toluene and tetrahydrofuran, more Preferably methylene chloride.
In the present invention, third catalyst preferably includes palladium salt, ligand and alkali.Palladium salt is preferably selected from palladium acetate and/or palladium-two BENZYLIDENE ACETONE complex compound [Pd2(dba)3];Ligand is preferably selected from tri-tert-butylphosphine, dinaphthol (BINAP) and bis- (diphenylphosphines At least one of base) ferrocene (dppf);Alkali is preferably selected from sodium tert-butoxide, potassium tert-butoxide, cesium carbonate and sodium carbonate extremely Few one kind.
In step (c) of the present invention, the dosage of bromination product and formula (IV) compound represented that step (b) obtains is substantially For equimolar amounts, but formula (IV) compound represented can be suitably excessive.Shown in the bromination product and formula (IV) that step (b) obtains The molar ratio of compound be preferably 0.9-1.5:0.9-2.5.
In step (c) of the present invention, the dosage of catalyst can be catalytic amount, on the basis of the molal quantity of bromination product, palladium The dosage of salt is preferably 5-50 moles of %, more preferably 5-20 moles of %, is still more preferably 5-10 moles of %;The use of ligand Amount is preferably 5-50 moles of %, more preferably 10-30 moles of %;The dosage of alkali is preferably 5-50 moles of %, more preferably 10-30 Mole %.
In step (c) of the present invention, the bromination product that step (b) obtains is contacted with formula (IV) compound represented to be coupled The reaction equation of reaction is as shown in figure 3, in Fig. 3, and palladium salt is using palladium acetate, purpose by way of example only, not to this The range of invention is construed as limiting.
It will be understood by those skilled in the art that purer final product, i.e. antioxygen shown in formula (I) in order to obtain Agent, for the method for the present invention it is also preferable to include post-processing to the system after reaction, the mode of post-processing may include filtering, solvent Washing, drying, solvent is removed under reduced pressure in dilution, for example, the filtered filtrate of system after reaction to be poured into the second of 1-10 times of volume It in acetoacetic ester (or methylene chloride), is then washed with distilled water, anhydrous calcium chloride or anhydrous sulphur is then added at 15-30 DEG C The desiccant such as sour sodium keep 10-60min.After being filtered to remove desiccant, solvent is removed at 0.01-0.05MPa, 40-60 DEG C, To obtain antioxidant shown in formula (I).
Each step that the method for the compound of structure shown in formula (I) is prepared in the present invention preferably carries out under stiring, for Mixing speed can be the mixing speed of this field routine, for example, mixing speed can be 100-800rpm without particular/special requirement.
The present invention is prepared in the method for the compound of structure shown in formula (I), molten for the first solvent, the second solvent and third The amount of agent can be the solvent usage of this field routine, this is known to those skilled in the art, herein no longer without particular/special requirement It repeats.
As described above, the present invention is directed to the compound by containing structure shown in formula (I) in lubricant oil composite, and formula (I) compound and thiophenols ester type antioxidant of structure shown in are combined and realize goal of the invention, even if lubricant oil composite has The excellent performances such as wear-resistant and anti-oxidant, inhibit the generation of high temperature deposition object.Therefore, for the preparation method of lubricant oil composite Without particular/special requirement, method commonly used in the art can be used, for example, second aspect, the present invention also provides a kind of crankshafts The preparation method of case system lubrication fluid composition, this method comprises: lube base oil, antioxygen multipurpose additive, sulphur will be contained For the mixed of phenolic ester type antioxidant, polyisobutene succinimide ashless dispersant and boronation polyisobutene succinimide dispersing agent Close object, the mixture of magnesium salicylate and calcium naphthenate, zinc dialkyl dithiophosphate and ethylene oxide/propylene oxide copolymer Raw material is uniformly mixed and obtains lubricant oil composite, wherein on the basis of the weight of lubricant oil composite, the use of lube base oil Amount is 75-95 weight %, the dosage of antioxygen multipurpose additive is 0.01-10 weight %, the dosage of thiophenols ester type antioxidant is 0.02-10 weight %, polyisobutene succinimide ashless dispersant and boronation polyisobutene succinimide dispersing agent it is mixed The dosage of object is closed as 0.5-10 weight %, the dosage of the mixture of magnesium salicylate and calcium naphthenate is 0.2-10 weight %, dioxane The dosage of base zinc dithiophosphate be in terms of phosphorus≤0.15 weight %, the dosage of ethylene oxide/propylene oxide copolymer is 0.01- 5 weight %, antioxygen multipurpose additive are the compound of structure shown in formula (I):
In the method for the present invention, it is preferable that on the basis of the weight of lubricant oil composite, the dosage of lube base oil is 80-90 weight %, antioxygen multipurpose additive dosage be 0.1-4 weight %, the dosage of thiophenols ester type antioxidant be 0.1-5 weight Measure the dosage of the mixture of %, polyisobutene succinimide ashless dispersant and boronation polyisobutene succinimide dispersing agent For 2-8 weight %, the dosage of the mixture of magnesium salicylate and calcium naphthenate is 0.8-6 weight %, zinc dialkyl dithiophosphate Dosage 0.01-0.1 weight % is calculated as with phosphorus, the dosage of ethylene oxide/propylene oxide copolymer is 0.2-3 weight %.
As previously mentioned, raw material can also be containing in viscosity index improver, antirust agent, pour-point depressant and anti-foaming agent in the method for the present invention It is at least one.
In the method for the present invention, for mixed mode without particular/special requirement, such as each original of lube base oil can will be removed Material component is added separately in lube base oil, can also will be mixed and made into concentrate again except each component of lube base oil It is added in lube base oil.
In the method for the present invention, mixed condition is preferably included: temperature is 40-90 DEG C, time 1-6h.
Lube base oil, antioxygen multipurpose additive, thiophenols ester type antioxidant, polyisobutene succinimide ashless point Mixture, the dialkyl group of the mixture of powder and boronation polyisobutene succinimide dispersing agent, magnesium salicylate and calcium naphthenate Zinc dithiophosphate, ethylene oxide/propylene oxide copolymer, viscosity index improver, antirust agent, pour-point depressant and anti-foaming agent as previously mentioned, This is repeated no more.
Embodiment
The present invention is further illustrated for embodiment below, but is not intended to limit the present invention.
In the following Examples and Comparative Examples:
The physico-chemical analysis method of product: constituent content is measured by inductively coupled plasma body ion emission spectroscopy method.
Structure characterization methods: nuclear magnetic resonance method (1H hydrogen spectrum,13C carbon spectrum), high resolution mass spectrum.
Preparation example
It is filled with nitrogen protection in the 500mL flask with electromagnetic agitation sub (mixing speed 200rpm), 150mL is added Methanol and 0.01mol acetic acid, after being fully cooled in ice-water bath, be then respectively adding 2, the 6- di-tert-butyl of 0.1mol Phenol, the formaldehyde of 0.2mol and the benzene of 0.3mol.Reaction moves back ice-water bath in 1 hour, and 75 DEG C are heated to after rising to 25 DEG C and is persistently returned Stream stops reaction after 2 hours, the system after reaction is steamed solvent at 0.03MPa, 50 DEG C, and 250mL acetic acid second is then added Ester, and be transferred in separatory funnel, 100mL distilled water (twice) and 50mL saturated common salt water washing are used respectively, and it is anhydrous that 10g is added Calcium chloride dry 20min, filtered filtrate at 25 DEG C are evaporated off solvent at 40 DEG C, 0.03MPa, obtain midbody product M1。
It is filled with nitrogen protection in the 500mL flask with electromagnetic agitation sub (mixing speed 200rpm), 150mL is added Dry tetrahydrofuran, then dissolve in midbody product M1, and the ammonium nitrate of 0.05mol is added, under the conditions of being protected from light slowly plus Enter 0.1mol brominated reagent NBS.It is stirred to react 1.5h at 25 DEG C, is then quenched with saturated salt solution, is then distilled with 100mL Water (twice) washing, and 10g anhydrous sodium sulfate dry 20min at 25 DEG C is added.Filtered filtrate is in 40 DEG C, 0.03MPa Under solvent is evaporated off, obtain bromination product.
It is filled with nitrogen protection in the 500mL flask with electromagnetic agitation sub (mixing speed 200rpm), 150mL is added Methylene chloride as solvent, be separately added into above-mentioned bromination product and the benzotriazole compound of 0.12mol, then be added The tri-tert-butylphosphine of 0.02mol, the sodium tert-butoxide of 0.02mol and the Pd (OAc) of 0.005mol2.90 DEG C are gradually heated to, is continued Stir 6h.Then 250mL ethyl acetate is added in the filtered filtrate of system after reaction, and be transferred in separatory funnel, used 100mL distilled water (twice) washing, and 10g anhydrous sodium sulfate dry 20min at 25 DEG C is added.Filtered filtrate is 40 DEG C, solvent is evaporated off under 0.03MPa, obtain final product S1.
The physico-chemical analysis data of S1 are as follows: nitrogen content, and 11.2%.
S1 is subjected to structural characterization, respectively obtain hydrogen spectrum, carbon spectrum and high resolution mass spec spectrogram, see respectively Fig. 4, Fig. 5 and Fig. 6.
It can be seen that S1 with knot shown in formula (I) from the physico-chemical analysis data of above-mentioned preparation example, Fig. 4, Fig. 5 and Fig. 6 Structure.
Embodiment 1
The present embodiment is for illustrating lubricant oil composite and preparation method thereof of the invention.
By the S1 of 0.1 parts by weight, 2,2'- thiobis [3- (3,5- di-tert-butyl-hydroxy phenyl) propionic acid of 5 parts by weight Ethyl ester], the polyisobutene succinimide ashless dispersant of 2 parts by weight and boronation polyisobutene succinimide dispersing agent it is mixed Closing object, (polyisobutene succinimide ashless dispersant is purchased from Suzhou specialty oil factory, T161;Boronation polyisobutene succinyl is sub- Amine dispersant is purchased from Agip Petroli company, MX3316;Polyisobutene succinimide ashless dispersant and the poly- isobutyl of boronation The weight ratio of alkene succinimide dispersant (is purchased from only mountain for the mixture of 2:1), the magnesium salicylate of 2 parts by weight and calcium naphthenate Sub- petro-chemical corporation, T112), the normal-butyl iso-octyl zinc dithiophosphate of in terms of phosphorus 0.05 parts by weight, 1.5 parts by weight epoxy second The Luo Mankesi of alkane/epoxy propane copolymer (being purchased from Exxon Mobil Oil Corp, C-310B), 0.1 parts by weight VISCOPLEX1-248 is added to II class 150N base oil (viscosity index (VI) 112) and II class 350N base oil, and (viscosity index (VI) is 106) in mixed lubrication oil base oil (150N is 65 parts by weight, and 350N is 23.8 parts by weight), 3h is stirred at 60 DEG C, is mixed Uniformly obtain lubricant oil composite A1.
Embodiment 2
The present embodiment is for illustrating lubricant oil composite and preparation method thereof of the invention.
By the S1 of 0.7 parts by weight, the 2,2'- thiobis [3- (3,5- di-tert-butyl-hydroxy phenyl) third of 0.7 parts by weight Acetoacetic ester], the polyisobutene succinimide ashless dispersant of 8 parts by weight and boronation polyisobutene succinimide dispersing agent (polyisobutene succinimide ashless dispersant is purchased from Lu Borun Lan Lian additive Co., Ltd, LZLl57 to mixture;Boronation is poly- Isobutene succinimide dispersant is purchased from Afton Chemical Corp., Hitec648;Polyisobutene succinimide ashless dispersant and The weight ratio of boronation polyisobutene succinimide dispersing agent is the mixed of 1:1), the magnesium salicylate of 0.8 parts by weight and calcium naphthenate Close object (be purchased from Run Yinglian company, C9006), the ethyl n-propyl zinc dithiophosphate of in terms of phosphorus 0.1 parts by weight, 3 parts by weight The Run Yinglian company of ethylene oxide/propylene oxide copolymer (being purchased from Exxon Mobil Oil Corp, C-310B), 0.1 parts by weight V385 be added to 86 parts by weight 600SN lube base oil (viscosity index (VI) 87, saturated hydrocarbon content be 92 weight %, sulphur Content is 0.02 weight %) in, 6h is stirred at 40 DEG C, is uniformly mixed and obtains lubricant oil composite A2.
Embodiment 3
The present embodiment is for illustrating lubricant oil composite and preparation method thereof of the invention.
By the S1 of 4 parts by weight, 2,2'- thiobis [3- (3,5- di-tert-butyl-hydroxy phenyl) propionic acid of 0.1 parts by weight Ethyl ester], the polyisobutene succinimide ashless dispersant of 5 parts by weight and boronation polyisobutene succinimide dispersing agent it is mixed Closing object, (polyisobutene succinimide ashless dispersant is purchased from Afton Chemical Corp., Hitec646;Boronation polyisobutene succinyl is sub- Amine dispersant is purchased from Lubrizol Corp., LZ935;Polyisobutene succinimide ashless dispersant and boronation polyisobutene succinyl The weight ratio of imine dispersants is 4:1), the mixture of the magnesium salicylate of 6 parts by weight and calcium naphthenate (be purchased from Run Yinglian company, C9012), the ethyl n-pentyl zinc dithiophosphate of in terms of phosphorus 0.01 parts by weight, 0.2 parts by weight ethylene oxide/propylene oxide Copolymer (be purchased from Exxon Mobil Oil Corp, C-310B), 0.1 parts by weight Wuxi south petroleum additive company T803 It is added in the dibutyl adipate of 84.5 parts by weight, stirs 1h at 90 DEG C, be uniformly mixed and obtain lubricant oil composite A3.
Comparative example 1
Lubricant oil composite is prepared according to the method for embodiment 2, unlike, S1 is replaced with etc. the 2,2'- of parts by weight Thiobis [3- (3,5- di-tert-butyl-hydroxy phenyl) ethyl propionate], obtains lubricant oil composite D1.
Comparative example 2
Lubricant oil composite is prepared according to the method for embodiment 2, unlike, by 2,2'- thiobis [3- (3,5- bis- uncles Butyl -4- hydroxy phenyl) ethyl propionate] S1 that the parts by weight such as replaces with, obtain lubricant oil composite D2.
Comparative example 3
Lubricant oil composite is prepared according to the method for embodiment 2, unlike, by S1 and 2,2'- thiobis [3- (3,5- Di-tert-butyl-hydroxy phenyl) ethyl propionate] zinc dibutyl dithiocarbamate that the parts by weight such as replaces with, it is lubricated Fluid composition D3.
Comparative example 4
Lubricant oil composite is prepared according to the method for embodiment 2, unlike, by S1 and 2,2'- thiobis [3- (3,5- Di-tert-butyl-hydroxy phenyl) ethyl propionate] the trimethylphenyl zinc phosphite that the parts by weight such as replaces with, obtain lubricating oil composition Object D4.
Comparative example 5
Lubricant oil composite is prepared according to the method for embodiment 2, unlike, by S1 and 2,2'- thiobis [3- (3,5- Di-tert-butyl-hydroxy phenyl) ethyl propionate] the fourth octyl diphenylamine that the parts by weight such as replaces with, obtain lubricant oil composite D5.
Test case
Lubricant oil composite A1-A3, D1-D5 are tested as follows respectively:
The measurement of initial oxidation temperature is carried out using TA5000-DSC2910 differential thermal analyzer;
The measurement of oxidation induction period is carried out using high pressure differential scanning amount method (PDSC);
Deposit production quantity is measured using crankcase QZX experiment method: QZX experiment instrument is added in 300mL oil sample, Heating and keeping oil temperature is 130 DEG C, and aluminium sheet temperature is 290 DEG C, to the continuous spilled oil 6h of aluminium sheet, is generated on weighing aluminium sheet after test Jiao Liang, as deposit production quantity.
Wear scar diameter is measured using SH/T 0189.It the results are shown in Table 1.
Table 1
A1 A2 A3 D1 D2 D3 D4 D5
Initial oxidation temperature, DEG C 231 234 258 212 225 211 201 197
Oxidation induction period, min 40.1 49.3 74.6 31.4 41.7 29.6 19.3 18.8
Deposit production quantity, mg 20.5 19.2 13.4 35.9 25.6 37.4 71.8 72.4
Wear scar diameter d60 40, mm 0.55 0.52 0.49 0.71 0.59 0.72 0.63 0.62
It will be understood by those skilled in the art that initial oxidation temperature is higher, the thermal stability of lubricating oil is better;Oxidation Induction period is longer, and the antioxygenic property of lubricating oil is better;Deposit production quantity is higher, and lubricating oil inhibits high temperature deposition object to generate Ability is poorer;Wear scar diameter is smaller, and the wear resistance of lubricating oil is better.
A2 is compared with D1-D5 respectively as can be seen that lubricant oil composite of the invention is with preferably anti-oxidant Property and abrasion resistance, have preferably inhibit deposit generate ability.
Crankcase system lubricant oil composite of the invention has excellent abrasion resistance and antioxygenic property, can inhibit height The generation of warm deposit can be widely applied to engine of boat and ship crankcase system.
It is described the prefered embodiments of the present invention in detail above in conjunction with attached drawing, still, the present invention is not limited to above-mentioned realities The detail in mode is applied, within the scope of the technical concept of the present invention, a variety of letters can be carried out to technical solution of the present invention Monotropic type, these simple variants all belong to the scope of protection of the present invention.
It is further to note that specific technical features described in the above specific embodiments, in not lance In the case where shield, can be combined in any appropriate way, in order to avoid unnecessary repetition, the present invention to it is various can No further explanation will be given for the combination of energy.
In addition, various embodiments of the present invention can be combined randomly, as long as it is without prejudice to originally The thought of invention, it should also be regarded as the disclosure of the present invention.

Claims (21)

1. a kind of crankcase system lubricant oil composite, which is characterized in that on the basis of the weight of lubricant oil composite, the profit Sliding oil composition contains following components: the antioxygen multiple-effect addition of the lube base oil, 0.01-10 weight % of 75-95 weight % Agent, the thiophenols ester type antioxidant of 0.02-10 weight %, 0.5-10 weight % polyisobutene succinimide ashless dispersant With the mixing of the mixture, the magnesium salicylate and calcium naphthenate of 0.2-10 weight % of boronation polyisobutene succinimide dispersing agent Object, in terms of phosphorus≤ethylene oxide/propylene oxide of the zinc dialkyl dithiophosphate of 0.15 weight % and 0.01-5 weight % is total Polymers, the antioxygen multipurpose additive are the compound of structure shown in formula (I):
2. lubricant oil composite according to claim 1, wherein on the basis of the weight of lubricant oil composite, the profit Sliding oil composition contains following components: the lube base oil of 80-90 weight %, 0.1-4 weight % antioxygen multipurpose additive, The thiophenols ester type antioxidant of 0.1-5 weight %, the polyisobutene succinimide ashless dispersant of 2-8 weight % and boronation are poly- The mixture of isobutene succinimide dispersant, the mixture of the magnesium salicylate of 0.8-6 weight % and calcium naphthenate, in terms of phosphorus The zinc dialkyl dithiophosphate of 0.01-0.1 weight % and the ethylene oxide/propylene oxide copolymer of 0.2-3 weight %.
3. lubricant oil composite according to claim 1, wherein the lube base oil be mineral lubricating oil and/or Synthetic lubricant fluid.
4. lubricant oil composite according to claim 1, wherein the thiophenols ester type antioxidant is 2,2'- thiobis [3- (3,5- di-tert-butyl-hydroxy phenyl) ethyl propionate].
5. lubricant oil composite according to claim 1, wherein in the polyisobutene succinimide ashless dispersant The number-average molecular weight of polyisobutene part is 800-4000;Polyisobutene in the boronation polyisobutene succinimide dispersing agent Partial number-average molecular weight is 500-4000;The polyisobutene succinimide ashless dispersant and the boronation polyisobutene The weight ratio of succinimide dispersant is 1-4:1.
6. lubricant oil composite according to claim 5, wherein in the polyisobutene succinimide ashless dispersant The number-average molecular weight of polyisobutene part is 900-3000.
7. lubricant oil composite according to claim 6, wherein in the polyisobutene succinimide ashless dispersant The number-average molecular weight of polyisobutene part is 1000-2400.
8. lubricant oil composite according to claim 5, wherein in the boronation polyisobutene succinimide dispersing agent The number-average molecular weight of polyisobutene part is 700-2500.
9. lubricant oil composite according to claim 8, wherein in the boronation polyisobutene succinimide dispersing agent The number-average molecular weight of polyisobutene part is 1000-2300.
10. lubricant oil composite according to claim 1, wherein the base number of the magnesium salicylate is 300-450mgKOH/ G, the base number of the calcium naphthenate are 100-200mgKOH/g, and the weight ratio of the magnesium salicylate and the calcium naphthenate is 0.3- 5:1。
11. lubricant oil composite according to claim 10, wherein the weight of the magnesium salicylate and the calcium naphthenate Than for 0.5-3:1.
12. lubricant oil composite according to claim 1, wherein the alkyl in the zinc dialkyl dithiophosphate is The alkyl of C2-C12.
13. lubricant oil composite according to claim 12, wherein the alkyl in the zinc dialkyl dithiophosphate is The alkyl of C2-C8.
14. lubricant oil composite according to claim 13, wherein the alkyl in the zinc dialkyl dithiophosphate is Ethyl, n-propyl, isopropyl, normal-butyl, isobutyl group, sec-butyl, n-pentyl, isopentyl, n-hexyl, isohesyl, n-octyl or 2- ethylhexyl.
15. lubricant oil composite according to claim 1, wherein the lubricant oil composite also contains viscosity index improver, antirust At least one of agent, pour-point depressant and anti-foaming agent, the antirust agent are selected from imidazoles and/or alkenyl succinic acid esters;The drop Solidifying agent selected from poly alpha olefin, alkyl be in the dialkyl fumarate, poly- alkylmethacrylate, alkylnaphthalene of C8-C18 extremely Few one kind;The anti-foaming agent is polysiloxane type anti-foaming agent.
16. lubricant oil composite according to claim 15, wherein the antirust agent is selected from 4,5- glyoxalidine, alkenyl At least one of imidazoline succinate and alkenyl succinic acid ester.
17. lubricant oil composite according to claim 15, wherein the anti-foaming agent is silicone oil.
18. lubricant oil composite according to claim 15, wherein the anti-foaming agent is dimethyl silicone polymer.
19. a kind of preparation method of crankcase system lubricant oil composite, which is characterized in that the described method includes: profit will be contained Lubricant base oil, antioxygen multipurpose additive, thiophenols ester type antioxidant, polyisobutene succinimide ashless dispersant and boronation The mixture of polyisobutene succinimide dispersing agent, the mixture of magnesium salicylate and calcium naphthenate, dialkyl dithiophosphoric acid The raw material of zinc and ethylene oxide/propylene oxide copolymer is uniformly mixed and obtains lubricant oil composite, wherein with lubricant oil composite Weight on the basis of, the dosage of lube base oil is 75-95 weight %, the dosage of antioxygen multipurpose additive be 0.01-10 weight Measure %, the dosage of thiophenols ester type antioxidant is 0.02-10 weight %, polyisobutene succinimide ashless dispersant and boronation The dosage of the mixture of polyisobutene succinimide dispersing agent is 0.5-10 weight %, the mixing of magnesium salicylate and calcium naphthenate The dosage of object is 0.2-10 weight %, the dosage of zinc dialkyl dithiophosphate be in terms of phosphorus≤0.15 weight %, ethylene oxide/ The dosage of epoxy propane copolymer is 0.01-5 weight %, and the antioxygen multipurpose additive is the compound of structure shown in formula (I):
20. according to the method for claim 19, wherein on the basis of the weight of lubricant oil composite, lube base oil Dosage be 80-90 weight %, the dosage that the dosage of antioxygen multipurpose additive is 0.1-4 weight %, thiophenols ester type antioxidant For the mixed of 0.1-5 weight %, polyisobutene succinimide ashless dispersant and boronation polyisobutene succinimide dispersing agent The dosage of object is closed as 2-8 weight %, the dosage of the mixture of magnesium salicylate and calcium naphthenate is 0.8-6 weight %, dialkyl group two The dosage of thiophosphoric acid zinc is calculated as 0.01-0.1 weight % with phosphorus, and the dosage of ethylene oxide/propylene oxide copolymer is 0.2-3 weight Measure %.
21. according to the method for claim 19, wherein the mixed condition includes: that temperature is 40-90 DEG C, and the time is 1-6h。
CN201510333083.0A 2015-06-16 2015-06-16 A kind of crankcase system lubricant oil composite and preparation method thereof Active CN106318521B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510333083.0A CN106318521B (en) 2015-06-16 2015-06-16 A kind of crankcase system lubricant oil composite and preparation method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510333083.0A CN106318521B (en) 2015-06-16 2015-06-16 A kind of crankcase system lubricant oil composite and preparation method thereof

Publications (2)

Publication Number Publication Date
CN106318521A CN106318521A (en) 2017-01-11
CN106318521B true CN106318521B (en) 2019-04-16

Family

ID=57733488

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510333083.0A Active CN106318521B (en) 2015-06-16 2015-06-16 A kind of crankcase system lubricant oil composite and preparation method thereof

Country Status (1)

Country Link
CN (1) CN106318521B (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101528668A (en) * 2006-10-17 2009-09-09 雅宝公司 Macromolecular amine-phenolic antioxidant compositions, process technology thereof, and uses thereof
CN102757847A (en) * 2012-07-25 2012-10-31 江苏龙蟠石化有限公司 Anhydrous albany grease and preparation method thereof

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20080090743A1 (en) * 2006-10-17 2008-04-17 Mathur Naresh C Compounds and methods of making the compounds

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101528668A (en) * 2006-10-17 2009-09-09 雅宝公司 Macromolecular amine-phenolic antioxidant compositions, process technology thereof, and uses thereof
CN102757847A (en) * 2012-07-25 2012-10-31 江苏龙蟠石化有限公司 Anhydrous albany grease and preparation method thereof

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
润滑油抗氧剂的研究现状与进展;薛卫国等;《合成润滑材料》;20130620;第40卷(第2期);第7-13页

Also Published As

Publication number Publication date
CN106318521A (en) 2017-01-11

Similar Documents

Publication Publication Date Title
CN107304380B (en) A kind of air compressor oil composition and preparation method thereof
CN106318523B (en) A kind of motorcycle engine lubricant oil composite and preparation method thereof
CN106753701B (en) Diesel engine lubricating oil composite and preparation method thereof, purposes
CN106318519B (en) A kind of gasoline engine oil lubricant oil composite and preparation method thereof
CN106318557B (en) A kind of methanol-fueled engine lubricant oil composite and preparation method thereof
CN106753700B (en) Lubricant composition for gasoline engine and preparation method thereof, purposes
CN106318522B (en) A kind of gas engine lubricant oil composite and preparation method thereof
CN106753699B (en) Lubricant composition for gasoline engine and preparation method thereof, purposes
CN106318554B (en) A kind of gasoline engine oil lubricant oil composite and preparation method thereof
CN106318518B (en) A kind of automatic transmission fluid lubricant oil composite and preparation method thereof
CN107304378B (en) A kind of high-temperature chain oil composition and preparation method thereof
CN106318545B (en) A kind of diesel engine lubricating oil composite and preparation method thereof
CN106318558B (en) A kind of motorcycle engine lubricant oil composite and preparation method thereof
CN106318521B (en) A kind of crankcase system lubricant oil composite and preparation method thereof
CN106281584B (en) Diesel engine lubricating oil composite and preparation method thereof, purposes
CN106318553B (en) A kind of automatic transmission fluid lubricant oil composite and preparation method thereof
CN106318536B (en) A kind of hydrodynamic lubrication fluid composition and preparation method thereof
CN106318546B (en) A kind of diesel engine lubricating oil composite and preparation method thereof
CN106318533B (en) A kind of crankcase system lubricant oil composite and preparation method thereof
CN106318552B (en) A kind of hydrodynamic lubrication fluid composition and preparation method thereof
CN107304382B (en) A kind of air compressor oil composition and preparation method thereof
CN107304377B (en) A kind of high-temperature chain oil composition and preparation method thereof
CN107304379B (en) A kind of combustion gas turbine oil composition and preparation method thereof
CN106318520B (en) A kind of lubricant oil composite and preparation method thereof
CN106318534B (en) A kind of Metalworking lubricating oil composition and preparation method thereof

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant