Platov
Anatoly Ivanovich Platov, Elektrogorsk RU
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20120305255 | Method of Treating the Near-Wellbore Zone of the Reservoir - The invention describes a method for treating near-wellbore zones involving the steps of injecting a magnesium metal with a catalyst into the desired area of the formation to be treated. Subsequently, combustive-oxidizing solution (COS) is injected into the zone of the formation to be treated. The COS initially reacts with the magnesium, which in turn initiates a vigorous oxidation reaction of the COS. The reaction gases and heat produced by the COS oxidation reaction are harnessed to enhance the productivity of the well by creating fractures in the treatment zone and by melting of paraffin and resin deposits in the treatment zone. As a final step, acid is injected into the formation to react with the formation thereby further enhancing the porosity of the fractures. In one embodiment, the COS uses ammonium nitrate as the oxidizer, and in another, urea or ethylene glycol may be added as a reaction fuel. | 12-06-2012 |
Mikhail Platov, Suwon-Si KR
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20090033985 | MOBILE DEVICE, PRINTER SERVER AND PRIVATE NETWORK SYSTEM, AND METHODS TO RECEIVE FAX DATA THEREBY - A private network system includes a PBX to transmit a message to inquire about receipt of fax data to a mobile device if a message notifying that the fax data will be transmitted is received via an external repeater, a receiver to receive the fax data transmitted from an external device if a fax receipt command is input from the mobile device, and a printer server to check information regarding a printer adjacent to the mobile device from among a plurality of printers, and to control the receiver to transmit the fax data to the checked printer. Accordingly, the private network system facilitates providing the fax data to a printer which is, for example, most suitable for receipt of the fax data, using information regarding the position of a fax recipient and printer information, and thus user convenience can be increased. | 02-05-2009 |
Sergei Iosifovich Platov, Moscow RU
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20080211146 | Installation for Supplying Materials into Metallurgical Unit - The invention relates to ferrous metallurgy and can be used in the processes of direct alloying of steel in steel-teeming ladles or installations for the out-of-furnace treatment. An installation for supplying materials into a metallurgical unit comprises a distributing device made as a funnel and a swivel launder with a drive, and intermediate hoppers interconnected with a pipe-chute, wherein the installation is provided with a housing having a lid and means for fastening to structures of a plant, wherein the funnel is mounted in the lid, the swivel launder is mounted under the lid, and the intermediate hoppers are positioned radially in the housing to form a cavity by hopper surfaces facing a longitudinal axis of the installation, said cavity being separated from the interior of the hoppers, wherein the hoppers are coupled to the pipe-chute by means of discharge openings formed therein and shutters mounted to move relative to a longitudinal axis of a hopper. The inventive installation provides the rapidity in supply of materials into the metallurgical unit, while use of this installation provides synchronism of the processes of melting the supplied materials and reducing the alloying elements. | 09-04-2008 |
Sergey Iosifovich Platov, Magnitogorsk RU
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20130153090 | METHOD FOR THERMAL TREATMENT OF ARTICLES FROM IRON-BASED ALLOYS (VARIANTS) - The invention relates to the field of thermal processing of articles consisting of steel and iron-based alloys with a carbon content of up to 4.3% by weight. In order to reduce the duration of the technological processes used for producing articles consisting of iron-based alloys with a set structural state, the first variant of the method comprises heating the articles so as to form austenite and then cooling, which is performed under conditions which ensure the formation, in the structure of the alloy, of regions of austenite with a chemical composition similar to eutectoid with the subsequent formation in said regions of marinite and a set structural state so as to produce perlite with a different degree of dispersion and/or hardened structures. The second variant of the method comprises heating the article, which is performed under conditions which ensure the formation, in the structure of the alloy, of marinite and then cooling with the formation a set structural state so as to produce perlite with a different degree of dispersion and/or hardened structures. When implementing the methods, pulsed cooling and plastic deformation are used. | 06-20-2013 |