C10M2207/0225

LUBRICANT COMPOSITION

A lubricating oil composition which contains a base oil and a fluorine compound and may have improved cooling performance. The base oil may contain a mineral oil. The base oil may have a kinematic viscosity in a range of from 1 to 25 mm.sup.2/s at 40° C. The content of the fluorine compound may be in a range of from 3 to 30% by weight based on the total amount of the composition.

MICROEMULSIONS AND THEIR USES
20230235242 · 2023-07-27 ·

The invention relates to a microemulsion comprising water in an amount of 1-30 w %; sodium or potassium oleate, Na/K salts of tall oil fatty acid, and/or Na/K salts of C16-C18 saturated or unsaturated fatty acids in an amount of 10-40 w %; oleic acid, tall oil fatty acid, or C16-C18 saturated or unsaturated fatty acids in an amount of 2-40 w %; ethanol in an amount of 0-40 w %; glycerol in an amount of 5-40 w %; and liquid hydrocarbon(s) in an amount of 5-40 w %, up to a maximum or total of components parts of 100 w %. Moreover, methods of manufacture and uses of the microemulsion are disclosed.

Hydraulic fluids having biodegradable polyalkylene glycol rheology modifiers useful in subsea applications
11505762 · 2022-11-22 · ·

A composition comprising water, a glycol, and a polyalkylene glycol which has a biodegradability of at least 60% as determined using OECD 301F wherein the composition has a kinematic viscosity of at least 25 mm.sup.2/sec at 40° C. is useful as a rheology modifier, particularly in subsea applications. In some instances, the composition comprises 10 to 65 weight % water, 20 to 60 weight % of a glycol selected from ethylene glycol, diethylene glycol, triethylene glycol and tetra ethylene glycol, 10 to 40 weight % of a polyalkylene glycol, and 0 to 10% of additives based on total weight of the composition wherein the polyalkylene glycol has a—molecular weight of no more than 4000 g/mol and is characterized in that it is an oxyethylene/oxypropylene block copolymer having a weight percent of oxyethylene of at least 20% based on total weight of the copolymer.

WATER/GLYCOL-BASED HYDRAULIC FLUID
20230108871 · 2023-04-06 ·

The present invention provides a water/glycol-based hydraulic fluid that includes a total fatty acid and dimer acid of more than 0.4 and no more than 1.2 mass % as a fatty acid lubricant, and also a phosphate ester at between 0.01 and 0.07 mass %. The phosphate ester has the following structure (1) here R1 and R2 each represent a hydrogen atom or a hydrogen group with a carbon number between 1 and 30, and may either be mutually identical or mutually different; R.sub.3 represents a hydrocarbon group with a carbon number between 1 and 20; R.sub.4 represents a hydrogen atom or a hydrocarbon group with a carbon number between 1 and 30; and X.sub.1, X.sub.2, X.sub.3, and X.sub.4 each indicate an oxygen atom or a sulfur atom, where these may either be mutually identical or mutually different.

##STR00001##

WATER GLYCOL-BASED HYDRAULIC FLUID
20230105327 · 2023-04-06 ·

The present invention provides a water-glycol hydraulic fluid comprising 0.3-0.6% by mass in total of fatty acid sodium salt and/or fatty acid, and 0.3-0.6% by mass of dimerized fatty acid. The water-glycol hydraulic fluid also comprises 20-60% by mass water, 20-60% by mass glycol, 0.01-0.06% by mass alkali hydroxide compound selected from potassium hydroxide and/or sodium hydroxide, and 1.0-5.0% by mass alkanolamine.

WATER-GLYCOL HYDRAULIC FLUID COMPOSITION AND SUPPLEMENTARY ADDITIVE THEREFOR
20230144254 · 2023-05-11 ·

The present invention provides a water-glycol hydraulic fluid composition comprising an alkanolamine compound according to the general formula (1), wherein the water-glycol hydraulic fluid composition comprises 20-60% by mass water, 20-60% by mass glycol, 0.6-1.2% by mass fatty acid lubricant, and 0.01-0.06% by mass alkaline hydroxide compound selected from potassium hydroxide and/or sodium hydroxide, and has an alkali reserve of 10-25, wherein R.sub.1 and R.sub.2 are hydrocarbon groups having from 1 to 8 carbon atoms, and R.sub.3 is a hydrocarbon group having 2 or more carbon atoms.

##STR00001##

ENVIRONMENTALLY FRIENDLY BICYCLE CHAIN AND GEAR MAINTENANCE SYSTEM AND METHOD OF USE
20170355922 · 2017-12-14 ·

An environmentally friendly bicycle chain and gear maintenance system includes an ecologically friendly package of highly recyclable material such as one of a metal or glass container with an integral brush applicator; or a paper container with a wax or other oil-resistant, non-permeable interior. The environmentally friendly bicycle chain and gear maintenance system includes a lubricant contained within the package, the lubricant being substantially free of petroleum oil distillates and comprising one of either a lanolin based lubricant which comprises a mixture of lanolin within a carrier, wherein the carrier is a non-drying or semi-non-drying, plant-based oil or a water soluble lubricant comprising a mixture of 25% to 75% of a surfactant which is a soap and 25% to 75% of glycerin.

LUBRICANT AND BINDING AGENT FOR THE PRODUCTION OF FEEDSTUFF AND THE LIKE AND SYSTEM AND METHOD FOR USE OF SAME
20170339982 · 2017-11-30 ·

A lubricant and binding agent for the production of feedstuff and the like and a system and method for use of the same are disclosed. In one embodiment of the method, an organic-based ingredient and a lubricant and binding agent are combined and subjected to a pellet-mill production process. The lubricant and binding agent includes about 15% to about 40% by weight of glycerin, about 0.005% to about 0.017% by weight of guar gum, about 0.009% to about 0.028% by weight of gum arabic, about 0.005% to about 0.017% by weight of aloe vera, and a balance by weight of water. The lubricant and binding agent increases production efficiency and pellet durability.

LUBRICANT COMPOSITION FOR LAPPING CERAMIC MATERIAL, AND RELATED METHODS
20170233677 · 2017-08-17 ·

Disclosed herein are embodiments of a method of making a lubricant composition for lapping a ceramic material. The method includes mixing a base lubricant component and a powdered wax composition component to form the lubricant composition. The powdered wax composition component includes a powdered wax dispersion or a powdered wax emulsion. The amount of powdered wax composition component mixed with the base lubricant component is from 0.01 to 10 percent by weight of the lubricant composition. Also disclosed herein are embodiments of related lubricant compositions and/or methods of using the lubricant to lap a ceramic substrate (e.g., one or more bars of sliders).

LOW POUR POINT DERIVATIVES OF DIMER FATTY ACIDS
20220267694 · 2022-08-25 ·

The present invention relates to specific derivatives of dimer fatty acids, compositions comprising them and a method to reduce pour points.