Friction modifier and lubricating oil composition
US-2015376538-A1 · Dec 31, 2015 · US
US10072230B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10072230-B2 |
| Application number | US-201615150691-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 10, 2016 |
| Priority date | May 23, 2012 |
| Publication date | Sep 11, 2018 |
| Grant date | Sep 11, 2018 |
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Lubricant compositions comprising an improved ashless organic friction modifier additive have been found to be capable of reducing both friction and wear. It has been found that mixtures of fatty-alkanolamides containing secondary hydroxyls on the amino alkyl substituent, such as amide mixtures prepared from bis(2-hydroxypropyl)amine and mixtures of at least two different C8-24 fatty acids, provide better oil solubility and friction reduction than alkanolamides with primary, hydroxyl functionality, such as amide mixtures prepared from di-ethanol)amine.
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What is claimed: 1. A method for reducing wear during the operation of a truck or automobile engine, comprising adding to a lubricating oil comprising one or more naturally occurring base stocks or synthetic base stocks, a 1:1 by weight mixture of: i) one or more zinc dialkyldithiophosphates and ii) a friction reducing/antiwear additive composition comprising a mixture of two or more fatty acid sec-hydroxylalkyl amides of formula II wherein R is methyl and R′ is selected from the group consisting of C 7-19 alkyl and C 7-19 alkenyl, wherein the mixture of fatty acid sec-hydroxylalkyl amides comprises about 20 to about 35% by weight of the sec-hydroxyalkylamides are compounds where R′ is C 15 alkyl or alkenyl, wherein about 75% or more of said C 15 alkyl or alkenyl are alkyl, about 50 to about 75% by weight of the sec-hydroxyalkylamides are compounds where R′ is C 17 alkyl or alkenyl, wherein about 40% to about 95% of said C 17 alkyl or alkenyl are alkenyl, wherein the mixture of two or more fatty acid sec-hydroxylalkyl amides is prepared by reacting a secondary hydroxyalkyl amine with a mixture of fatty acids or fatty acid esters obtained from beef tallow, to prepare a lubricant composition comprising about 1 wt %, based on the total weight of the lubricant composition, of the 1:1 by weight mixture of i) and ii), which lubricant composition is added to an engine or crankcase of a truck or automobile. 2. The method according to claim 1 , wherein the lubricant composition also comprises one or more additional lubricant additives selected from the group consisting of dispersants, detergents, corrosion/rust inhibitors, antioxidants, other anti-wear agents, anti-foamants, other friction modifiers, seal swell agents, demulsifiers, V.I. improvers and pour point depressants. 3. A lubricant composition comprising: a) a major portion of a lubricating oil comprising one or more naturally occurring and/or synthetic base stocks, and b) about 1.0 wt %, based on the total weight of the lubricant composition, of a 1:1 by weight mixture of: i) one or more zinc dialkyldithiophosphates, and ii) a friction reducing/antiwear additive composition comprising a mixture of two or more fatty acid sec-hydroxylalkyl amides of formula II wherein R is methyl and R′ is selected from the group consisting of C 7-19 alkyl and C 7-19 alkenyl, wherein the mixture of fatty acid sec-hydroxylalkyl amides comprises about 20 to about 35% by weight of the sec-hydroxyalkylamides are compounds where R′ is C 15 alkyl or alkenyl, wherein about 75% or more of said C 15 alkyl or alkenyl are alkyl, about 50 to about 75% by weight of the sec-hydroxyalkylamides are compounds where R′ is C 17 alkyl or alkenyl, wherein about 40% to about 95% of said C 17 alkyl or alkenyl are alkenyl, wherein the mixture of two or more fatty acid sec-hydroxylalkyl amides is prepared by reacting a secondary hydroxyalkyl amine with a mixture of fatty acids or fatty acid esters obtained from beef tallow. 4. The composition according to claim 3 , wherein the lubricant composition also comprises one or more additional lubricant additives selected from the group consisting of dispersants, detergents, corrosion/rust inhibitors, antioxidants, other anti-wear agents, anti-foamants, other friction modifiers, seal swell agents, demulsifiers, V.I. improvers and pour point depressants.
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