Abstract:
Agent for the pickling of and as an antioxidant for workpieces made of iron and steel in the case of when they are subjected to non-cutting, hot transformation. The agent is used in dry form. The agent contains: (a) 20 to 80 percent by weight of a pickling-effective compound, such as, sodium metaborate; (b) 1 to 80 percent by weight of a component, such as, graphite; and (c) zero to 79 percent by weight of at least one substance selected from group (d), (e) and/or (f). Zero to 35 percent by weight of group (d), such as, coke, can be used as substance (c) and, for example, act as antioxidants. Zero to 50 percent by weight of group (e), such as, sodium chloride, can be used as substance (c), and control the physical characteristics. Zero to 5 percent by weight of group (f), such as, ammonium chloride, can be used as substance (c) and, for example, act on the reduction of the oxides of group (a).
Abstract:
A grease composition suitable as a lubricating sealant which is resistant to aprotic solvents such as chloroform and carbon disulfide comprises glycerine, fumed silica, polyethylene glycol and a minor amount of water. A preferred grease composition is one in which the amount of glycerine ranges is from 50 to 95 weight % of the total composition, the amount of fumed silica is from 1 to 25% by weight of the total composition, the amount of polyethylene glycol ranges is from 0.5% to 50% by weight of total composition and the amount of water is from 0.01% to 1.0% by weight of total composition, the total composition amounting to 100%.
Abstract:
본 발명에 따른 방법에 따라서 플라스틱슬라이드층의 제조를 위해 무엇보다도 페이스트가 플라스틱분산물과 충진재로부터 만들어진다. 상기 페이스트는 유기용매를 포함하지 않으며, 소결된 다공성 금속층에 도포된다. 생산된 다층재료는 그다음 소결된다. 유기용매가 사용되지 않으므로 건강상의 위험과 화재의 위험이 경감된다. 더구나 본 발명에 따라 제조된 복합재료는 뛰어난 공동화 내성을 보인다. 베어링과 같이 종래의 윤활제가 없는 적용에 추가하여 이들 복합재료들은 특히 기어펌프 및 충격흡수기에서 결과적으로 사용될 수 있다.
Abstract:
The present invention is directed to a powdery lubricant for aluminum alloy forging. A mixture of a lubricant base material composed of an inorganic compound and an organic compound is formed into the lubricant wherein at least the lubricant base material has a powdery or granulated form. The lubricant of the present invention allows for the production of high quality forging in a forging work, with good workability and without worsening environmental conditions.
Abstract:
A permanent mold casting mold releasing agent comprising a mixture of a mold releasing base material, which is an inorganic compound, with an organic compound, at least the mold releasing base material being of powdery or granulated form. This mold releasing agent allows production of castings of high quality, with good workability and without adversely affecting environmental situations.
Abstract:
Novel aqueous lubricant dispersions contain at least one rare earth halide, e.g., cerium trifluoride, and at least one polymeric dispersing agent therefor, such at least one dispersing agent including: (a) a copolymer of an ethylenically unsaturated carboxylic acid or derivative thereof with an alpha -olefin comonomer and/or a vinyl comonomer; (b) a homopolymer or copolymer of an ethylenically unsaturated carboxylic acid or derivative thereof; (c) a copolymer of at least one ethylenically unsaturated carboxylic acid and at least one ethylenically unsaturated sulfonic acid comonomer; and/or (d) a polymer of an alkylene oxide of an (arylalkyl)phenol, or phosphated or sulfated derivative thereof.
Abstract:
Method and System of lubricating at least one moving part with a medium. The medium includes a dissolved mixture of lubricant and compressed gas. The amount of lubricant and compressed gas may be controlled in forming the dissolved mixture in response to input conditions. A user and/or external factors may be used to determine the input conditions. In response to the input conditions the amount of lubricant and compressed gas is delivered to the moving part that is housed in a pressurized chamber. The properties of the dissolved mixture can be adjusted, whereby the properties may include, but are not limited to, the following: viscosity, temperature, and thermal conductivity. This adjustment to the gas may be accomplished, for example, by releasing gas from the pressurized chamber in an amount to adjust the properties. In a further approach, lubricant may be scavenged from the pressurized chamber by returning surplus lubricant to its original source or other designated location.
Abstract:
Das erfindungsgemäße Schmiermittelträgersalz zur Erleichterung der Kaltumformung von Werkstücken aus Eisen oder Stahl auf Basis Borsäure und/oder Alkaliborat weist einen zusätzlichen Gehalt an aliphatischer Di- oder Tricarbonsäure, die entweder nicht substituiert oder durch mindestens eine OH-Gruppe substituiert ist, und/oder an Alkalisalzen hiervon auf, wobei das Gewichtsverhältnis von Borsäure/Alkaliborat (berechnet als H₃BO₃) zu Carbonsäure (berechnet als Zitronensäure) (5 bis 15) : 1 beträgt. Besonders geeignete Carbonsäuren sind Malonsäure, Maleinsäure, Bernsteinsäure, Weinsäure und/oder Zitronensäure. Als weitere Bestandteile können im erfindungsgemäßen Schmiermittelträgersalz anorganische oder organische Verdickungsmittel, wie Bentonit und/oder Polysaccharid, Aluminat und/oder Silikat, Dispergier-, Gleit- und/oder Rostschutzmittel sowie Titansalz enthalten sein. Gegenstand der Erfindung ist ferner ein Verfahren zur Erleichterung der Kaltumformung von Werkstücken aus Eisen oder Stahl, bei dem das Schmiermittelträgersalz aus einer wäßrigen Lösung oder Dispersion mit einer Konzentration von 5 bis 30 Gew.% und mit einer Temperatur von 80 bis 100°C im Tauchen oder Durchlaufverfahren auf die gegebenenfalls mit einem Phosphatüberzug versehenen Werkstücke aufgebracht wird.
Abstract:
A lubricant to be sprayed onto the surface of a steel material for forming a lubricant coat on the surface of the steel material to be forged. The lubricant comprises a particulate lubricant composed of thermally melting resin mixed with inorganic lubricant. The particulate lubricant is applied onto the surface of a steel material to be forged. Before or after applying the particulate lubricant onto the surface of the steel material, the surface of the steel material is heated. Consequently, the thermally melting resin melts and coheres with the inorganic lubricant over the surface of the steel material, resulting in the formation of a uniformly thick lubricant coat over the steel material. The lubricant coat prevents the steel material from being burnt in a forging device even during hot forging. The lubricant coat is fit for the forging of hard to work steel material. The lubricant coat also contributes to the decrease in forging cost, without deteriorating the forging environment.
Abstract:
A carrier-free pulverulent metalworking lubricant composition. In one form, the composition contains from 2 to 30% by weight sulfur and at least one component having adhesive properties at forging temperatures, the composition being formed by a method comprising the steps of: (a) forming a dry mixture of said particulate lubricant components, and (b) agglomerating said admixture to form agglomerated particles. The application of the composition as a metal working lubricant significantly reduces smoke and oily waste generation in hot forging operations by eliminating the use of oils or volatile organic compounds as carriers, while providing acceptable performance, cleanability and sprayability.