Abstract:
A waterborne lubricant for the cold plastic working of metals that contains alkali metal salts of dimer(s) and/or trimer(s) of unsaturated fatty acids with from 10 to 24 carbon atoms per molecule has a lubrication performance at least as good as that of prior lubricants, even at generally lower lubricating film weights, has a long bath life, and generates little dust during cold plastic working operations. Even as little as 5 % of these salts of dimer(s) and/or trimer(s) of unsaturated fatty acids, when mixed with conventional alkali metal salts of saturated fatty acids with from 10-24 carbon atoms per molecule, can provide these benefits.
Abstract:
The invention includes lubricant concentrate and use solution compositions having an amine compound of the formula R1 - O - R2 - NH2, R1 - O - R2 - NH - R3 - H2, and mixtures thereof wherein R1 may be a linear saturated or unsaturated C6-C18 alkyl, R2 is a linear or branched C1-C8 alkyl. The concentrate also comprises an acidulant, optionally a stabilizing hydrotrope, and a surfactant. The lubricant use solution resulting from dilution of the concentrate has an amine compound in a concentration ranging from about 10 ppm to 10000 ppm. Also disclosed is a method of lubricating a conveyor system which includes providing a use solution of the lubricant concentrate composition.
Abstract:
A disc drive data storage system (10) according to the present invention includes a housing (12), a central axis (80), a stationary member (34) which is fixed with respect to the housing (12) and coaxial with the central axis (80), and a rotatable member (36) which is rotatable about the central axis (80) with respect to the stationary member (34). A stator (38) is fixed with respect to the housing (12). A rotor (70) is supported by the rotatable member (36) and is magnetically coupled to the stator (38). At least one data storage disc (16) is attached to and is coaxial with the rotatable member (36). A hydro bearing (37) interconnects the stationary member (34) and the rotatable member (36) and includes a lubrication fluid (84) comprising a blend of a base fluid and a shear resistant, polymer viscosity index improver.
Abstract:
A combination of sulfur-free azoles, preferably benzotriazole and tolyltriazole, with sulfur-containing azoles, preferably 2-mercaptobenzothiazole or mercaptobenzimidazole, prevents discoloration, staining, or corrosion of metal surfaces being coated with an organic protective coating from aqueous dispersion or solution.
Abstract:
A diesel lubricant able to minimize undesirable viscosity increases, comprising a major amount of an oil of lubricating viscosity and a minor amount of a composition comprising: A) the product of reaction of a succinic acylating agent (polyalkene substituent: Mn at least 1200; Mw/Mn at least 1.5; at least 1.3 succinic groups per equivalent weight of substituent group) and a compound containing at least one -NH-; and B) one basic alkali or alkaline earth metal salt of one acidic organic compound (metal ratio at least 2). Composition TBN in the range 6-15 (A contribution 0.5-1.5; B the rest; Mg contributing less than 30 %).
Abstract:
An electrorheological material comprising a carrier fluid and an atomically polarizable particle component. The atomically polarizable particle component has a crystalline lattice structure which allows atoms to shift position with respect to each other in response to the application of an electric field. The electrorheological materials are subjected to an alternating current electric field at a frequency of at least 500 Hz. The materials exhibit substantial electrorheological activity over a broad temperature range.
Abstract:
A surface-coated rubber or plastic sliding member having a coating with excellent durability and high slipperiness,wherein the coating comprises a solid lubricant such as molybdenum disulfide, a resin matrix and a reinforcement, said resin matrix comprising a fluoroolefin vinyl ether polymer resin and/or a fluoroolefin vinyl ether/vinyl ester copolymer resin.
Abstract:
Contact of acid or alkaline cleaned aluminum surfaces, particularly cans, with a water based composition containing a combination of (i) alkoxylated phosphate esters, (ii) ions of aluminum, zirconium, iron, tin, and/or cerium, (iii) a metal etching component, and (iv) a combination of alkoxylated alcohol and alkoxylated alkyl phenol emulsifiers, gives the surface after drying lowered surface friction without loss of high quality printability and lacquer adhesion and removes any brown spotting on the cans that may have developed during the cleaning or post-cleaning rinses. The cans after treatment are substantially free from any water breaks when rinsed with water. The foaming resistance and storage stability of the water based composition as described above, and of other similar surface friction reducing treatments for aluminum containers, may be advantageously increased by adding a biocidal agent, preferably hydrogen peroxide, and a combination of liquid paraffin, solid wax, and a high molecular weight fatty acid derivative(s) as antifoam agent.
Abstract:
Contact of acid or alkaline cleaned aluminum surfaces, particularly cans, with a water based composition containing a combination of (i) alkoxylated phosphate esters, (ii) ions of aluminum, zirconium, iron, tin, and/or cerium, (iii) a metal etching component, and (iv) a combination of alkoxylated alcohol and alkoxylated alkyl phenol emulsifiers, gives the surface after drying lowered surface friction without loss of high quality printability and lacquer adhesion and removes any brown spotting on the cans that may have developed during the cleaning or post-cleaning rinses. The cans after treatment are substantially free from any water breaks when rinsed with water. The foaming resistance and storage stability of the water based composition as described above, and of other similar surface friction reducing treatments for aluminum containers, may be advantageously increased by adding a biocidal agent, preferably hydrogen peroxide, and a combination of liquid paraffin, solid wax, and a high molecular weight fatty acid derivative(s) as antifoam agent.
Abstract:
A novel lubricant composition which processes high and positive friction characteristics and comprises (a) at least 20 % by weight of a polymer medium; (b) at least 5 % by weight of a solid lubricant; and (c) at least 5 % by weight of a powderized solid mineral friction modifier.