Abstract:
Disclosed is a process for preparing a molybdated succinimide complex, the process comprising: (a) reacting an alkyl or alkenyl mono- or bis-succinimide of a polyamine of formula I or formula II or mixtures thereof: Formula (I), Formula (II) with an a,ß-unsaturated mono-carboxylic acid or carboxylic acid ester, and wherein the reaction temperature is in the range of from greater than 80°C to no greater than about 150°C; and (b) reacting the succinimide product of step (a) with an acidic molybdenum compound to provide the molybdated succinimide complex, wherein the molybdated succinimide complex is a liquid at room temperature.
Abstract:
The object of the invention is a traction sheave elevator and a rope (3) that contains metal as a load-bearing material, such as the suspension rope of an elevator, which rope comprises at least one or more strands (7) laid from metal wires (9) and which rope (3) is lubricated with a lubricant (8). Another object is the use of the aforementioned lubricant for lubricating the rope (3). The lubricant (8) comprises at least oil and thickener, which thickener in the lubricant (8) comprises at least 10% or more of the mass of the lubricant (8).
Abstract:
A lubricating composition comprising: (i) from 50% to 99% by weight of base oil; (ii) from 0.01% to 5% by weight of ionic liquid; and (iii) from 0.01% to 10% by weight of additive; wherein the lubricating composition has a pour point of at most -54°C, a flashpoint of at least 246°C and a kinematic viscosity at 100°C in the range of from 4.9 to 5.4 mm 2 /s. The lubricating compositions according to the present invention are suitable for use in turbine engine oils and are useful for reducing the build up of sludge and for reducing coking in the lubricating composition.
Abstract:
The resistance to oxidation of a lubricating oil is enhanced by the addition to the lubricating oil of an additive amount of an ionic liquid.
Abstract:
The resistance to deposit formation in formulated lubricating oils is enhanced by the addition to the lubricating oil of an additive amount of ionic liquids.
Abstract:
Die vorliegende Erfindung betrifft eine Schmiermittelzusammensetzung, umfassend a) Graphit; b) eine oder mehrere Metallverbindungen, die ausgewählt sind unter Calciumfluorid, Lithiumfluorid, Natriumaluminiumfluorid (Kryolith), Kaliumaluminiumfluorid, Kaliumtetrafluoroborat (KBF 4 ), Calciumsulfat, Strontiumsulfat, Bariumsulfat, Magnesiumcarbonat, Calciumcarbonat, Magnesium-Calciumcarbonat (Dolomit), Lithiumcarbonat, Lithiumhydroxid, Magnesiumhydroxid, Calciumhydroxid, Aluminiumhydroxid, Aluminiumoxid, Siliziumdioxid, Titandioxid und Eisen-(ll)-Eisen-(lll)-Oxid (Magnetit) und c) eine oder mehrere organische Molybdänverbindungen. Die Schmiermittelzusammensetzung besitzt ausgezeichnete Schmierwirkung.
Abstract:
Disclosed are methods for preparing lubricant additives and lubricants by reacting together organophosphate compounds and fluorine compounds, the fluorine compound participating in the reaction as a reactant. The supernatants and precipitates formed during the reaction then may be used as lubricant additives.
Abstract:
Disclosed is a low-phosphorous lubricant produced by a process comprising forming a lubricant additive by reacting metal halide and organophosphate together to form a reaction mixture, the metal halide participating as a reactant, and adding at least a portion of the reaction mixture to a lubricant base comprising from about 0.01 weight percent phosphorous to about 0.1 weight percent phosphorous.
Abstract:
A lubricant additive produced by the process comprising mixing a metal halide with an organophosphate, the metal halide participating as a reactant and reacting the metal halide and the organophosphate to produce a reaction mixture comprising the lubricant additive. Also disclosed is a lubricant produced by the process comprising forming a lubricant additive by reacting metal halide and organophosphate together to form a reaction mixture, the metal halide participating as a reactant, and adding at least a portion of the reaction mixture to a lubricant base.
Abstract:
A method for disinfecting microorganisms in metalworking fluids without leaving behind unacceptable amount of chemicals in the treated fluids. The method comprises passing the fluid in a recirculating cooling system through a filter (1), which contains a demand disinfectant, preferably an iodinated resin. The iodinated resin inhibits the growth of microorganism in the fluid, which is then cycled back into the system. The present invention also relates to a filter (1) and system for disinfecting microorganisms in metalworking fluids.