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Bogdanov
Andrei Bogdanov, Vancouver CA
| Patent application number | Description | Published |
|---|---|---|
| 20110143221 | Method of Chemical Treatment of Fuel Cell Plate Surface to Modify Wettability of Flow Field Channels - A method of surface treating a separator plate of a fuel cell comprises reacting the separator plate with an aqueous solution of hydrogen peroxide. The aqueous solution of hydrogen peroxide comprises one or more salts of one or more transition metals. The one or more transition metals have variable oxidation states. This method makes the surface of the separator plate hydrophilic (˜35 deg contact angle of water) and improves its electrical conductivity. The method of surface treating a separator plate (e.g., a graphite and/or graphite composite plate) of a fuel cell can further comprise a method of modifying wettability of the separator plate comprising treating the separator plate with a solution comprising one or more silanes. In another embodiment, a method of modifying wettability of a separator plate (e.g., a stainless steel separator plate) of a fuel cell comprises treating the separator plate with a solution comprising one or more silanes without a surface treating step prior to treating the separator plate with the solution comprising one or more silanes. | 06-16-2011 |
Bogdan Bogdanov, Borgerhout BE
| Patent application number | Description | Published |
|---|---|---|
| 20090075542 | HYBRID FABRIC - This invention relates to a hybrid fabric comprising at least one structural fiber having a first melting temperature range and at least one thermo-formable fiber of having a second melting temperature range which is lower than the first melting temperature range to such an extent that the structural fiber does not melt in the second melting temperature range of the thermo-formable fiber. The hybrid fabric comprises (1) a first network comprising the structural fibers, (2) a second network comprising the thermo-formable fibers, the thermo-formable fibers comprising non-relaxed fibers made of a thermoplastic material, and (3) a plurality of openings between the fibers of the first and second network. The structural and thermo-formable fibers of respectively the first and second network interpenetrate one another and are connected to each other over at least part of the first and second network at a plurality of knot positions in the fabric where the structural and thermo-formable fibers are interwoven. | 03-19-2009 |
Natalie Bogdanov, Toenisvorst DE
| Patent application number | Description | Published |
|---|---|---|
| 20100234553 | Molded Polyurethane Part, Method for its Production and its Use - The present invention relates to lightfast and hydrolytically resistant molded polyurethane parts with excellent strength properties and a high temperature resistance and colorfastness to light at elevated temperatures for sophisticated applications in the sector of automobile interiors, which products are produced from a reaction mixture of aliphatic and/or cycloaliphatic compositions by using a cost-effective reaction injection molding method (RIM) or a casting method that requires only a short mold residence time. To this end, A) a composition composed of A1) an OH-terminated trifunctional prepolymer, A2) a polyol or a polyol combination, A3) at last one di- and/or trifunctional chain-lengthening agent and/or crosslinking agent with amine and/or hydroxyl groups, and A4) a catalyst system, and optionally A5) a stabilizer system, and optionally A6) at least one additive, and B) an isocyanate composition, are reacted. | 09-16-2010 |
Nikolay Alexandrovitch Bogdanov, Revda Sverdlovskaya Obl. RU
| Patent application number | Description | Published |
|---|---|---|
| 20100206132 | METHOD FOR TREATING SLAG FLOWING FROM A METALLURGICAL VESSEL AND A DEVICE FOR CARRYING OUT SAID METHOD - The invention relates to steel production in the steel and iron industry. The inventive method consists in dividing a solid slag stream which flows from a metallurgical vessel and falls down, into individual streams along the solid stream, in forcedly cooling the thus obtained individual streams, in dividing the individual streams into parts (pieces) by cutting across the movement thereof, in forcedly cooling said parts and transferring to a belt conveyor, on which said separate parts/pieces are forcedly cooled and transported away from the vessel. A shaped (with containers) conveyor belt, on which the slag pieces are crushed by means of a cylindrical roll, is used for additional crushing. The inventive device for carrying out the totality of the above-listed operations, comprises at least three throat grates which are horizontally positioned in an assembled body and one of which is provided with a drive for carrying out reciprocating motion. The device also comprises a drive for displacing to/from the vessel. In the position closest to the vessel, the device is fed with air and water from a stationary plant for forcedly cooling the individual slam streams and the parts (pieces) of slam. The throat grate displacing drives and a conveyor belt drive are mounted on the device assembled body, and the roll and a drive for rotating it, when the shaped belt is used, are fastened thereto. The ribs of the throat grate are made from tensioned steel ropes. | 08-19-2010 |
Oleg Bogdanov, Toronto CA
| Patent application number | Description | Published |
|---|---|---|
| 20110164782 | LOUDSPEAKER DRIVER SUSPENSION - A loudspeaker driver has a diaphragm connected to a surrounding frame by a roll suspension which extends around the diaphragm and within the frame. The roll suspension connects the outer edge of the diaphragm to the inner edge of the frame and flexes as the diaphragm is displaced to and fro axially relative to the frame. In order to provide for better integrity of the roll suspension during its displacement, and reduce unwanted deformation and concomitant distortion, the suspension roll is provided with pleats extending across the roll suspension transversely to the direction of axial movement of the diaphragm to create a series of undulations (peaks and troughs) around the perimeter of the roll suspension. In transverse cross-section, the roll suspension is parabolic. The roll suspension varies continuously between each peak and adjacent trough. Preferably, outer surfaces of each peak and adjacent trough merge to a common point on the outer edge of the roll, while their inner surfaces merge to a common point on the outer edge of the roll, such that the peaks and troughs effectively disappear. | 07-07-2011 |
Vladimir Bogdanov, Chelyabinsk RU
| Patent application number | Description | Published |
|---|---|---|
| 20110154913 | VORTEX FLOW METER WITH VORTEX OSCILLATION SENSOR PLATE - A vortex flow meter includes a vortex responsive assembly having a diaphragm. The diaphragm seals a base end of the assembly to form an isolation chamber. The assembly is adapted to seal an opening in a sidewall of a flow passage. Support struts preferably protrude from the assembly into the flow passage. In one configuration, a vortex oscillation sensor plate has a proximate edge supported on the diaphragm and an opposite distal edge that is unsupported. The vortex oscillation sensor plate has upstream and downstream edges preferably supported by the support struts. A pivoting strut extends along a central region of the vortex oscillation sensor plate. The pivoting strut extends through the diaphragm. The pivoting strut transfers vortex oscillations to a sensor. An electronic transmitter circuit receives a sensor output and provides an output related to flow of the fluid. | 06-30-2011 |
