RussianPatents.com
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Vacuum contactor. RU patent 2276424. |
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FIELD: electrical engineering; low-voltage devices for switching ac power circuits. SUBSTANCE: proposed vacuum contactor has insulating case, electromagnetic operating mechanism, vacuum arc-control chamber coupled through movable current lead and insulating swivel lever with electromagnetic operating mechanism armature, and disconnecting spring. Insulating case is provided with jumpers disposed in clearance between electromagnetic operating mechanism and current leads of mentioned chamber to form opening for heat transfer. Contactor incorporates provision for reducing thermocyclic impacts on insulator-metal junction of chamber liable to cause its destruction. EFFECT: enhanced operating reliability of contactor in handling heavy currents. 1 cl, 2 dwg
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Vacuum contactor / 2273072 Proposed vacuum contactor has insulating case, vacuum arc-control chambers, electromagnetic operating mechanism, disconnecting spring, articulated joint, and insulating rotary lever that mounts plate with hole to pass movable current lead rod and hold-down spring. Articulated joint is disposed in space between movable current lead and rotary lever; hold-down spring abuts against stop on one end and against plate with hole affording easy movement of rod along its axis, on other end. |
Vacuum contactor / 2273072 Proposed vacuum contactor has insulating case, vacuum arc-control chambers, electromagnetic operating mechanism, disconnecting spring, articulated joint, and insulating rotary lever that mounts plate with hole to pass movable current lead rod and hold-down spring. Articulated joint is disposed in space between movable current lead and rotary lever; hold-down spring abuts against stop on one end and against plate with hole affording easy movement of rod along its axis, on other end. |
Vacuum contactor / 2276424 Proposed vacuum contactor has insulating case, electromagnetic operating mechanism, vacuum arc-control chamber coupled through movable current lead and insulating swivel lever with electromagnetic operating mechanism armature, and disconnecting spring. Insulating case is provided with jumpers disposed in clearance between electromagnetic operating mechanism and current leads of mentioned chamber to form opening for heat transfer. Contactor incorporates provision for reducing thermocyclic impacts on insulator-metal junction of chamber liable to cause its destruction. |
Vacuum switch / 2317609 Proposed vacuum switch has chamber installed in insulating tank accommodating vacuum arc chute installed in first insulating case, fixed contact coupled with first current-carrying bushing of switch, and movable contact connected to second current-carrying bushing. Current-carrying bushings are partially disposed in tank and partially are brought out of tank through cover. Space between outer surface of vacuum arc chute and inner surface of first case is filled with insulating material. Second insulating case made in the form of cylinder with two longitudinal ribs is installed outside the first case coaxially with the latter. Second case is mounted on first one in such manner that current-carrying bushings are disposed on opposite ends of second case relative to ribs. Rib width in direction perpendicular to longitudinal axis of case is chosen to ensure reliable air insulation between current-carrying bushings. |
Vacuum arc chute with shielding to be applied by thermosetting / 2331133 Invention relates to vacuum arc chute with molded polar detail for use in low, medium and high voltages and to process of manufacture. At the stage of preparation for further filling, vacuum arc chute is provided with shielding consisting of elastic material from the external side and, accordingly, elastomer or plastomer material which is applied to vacuum arc chute surface without additional tensile mechanical means and only by thermosetting method. |
Vacuum switching unit / 2374718 Vacuum switching unit contains insulating casing, arc-suppressing electrodes and screen system at least from five screens, part of which are isolated and two of near-flange are under electrode potential. Central and isolated screens are implemented in the form of solid of revolution, generatrix of which allows echelon form, additionally each of ends of screen of minor diametre is enveloped by end of major diametre of adjoining screen, and annular channels between adjoining screens in areas of reciprocal overlapping and annular slots between casing and screen fulfil conditions: L≥M; 4≤P/S≤15; where L - length of annular channel; M - width of annular channel; P - depth of annular slot; S - width of slot at the middle of slot depth. |
Interrupter pole insulated with solid electric insulating material with connection of moving contact pieces on edge side / 2377684 Invention refers to interrupter pole (1) insulated with solid electric insulating material, which is intended for interrupting electric current, with steady as to shape and electrically non-conducting housing made from electric insulating material (2), in which there installed is arc blow-out chamber (5) with stationary unmovable contact piece and movable contact piece; with inlet connection part (3) electrically connected to unmovable contact piece and contacting from outside and outlet connection part (13) connected to movable contact piece by means of connecting movable contact piece (12). Outlet connection part (13) is rigidly connected to housing made from insulating material (2) and has contact surface contacted from outside. Housing made from electric insulating material (2) is equipped with hole for introducing drive movement to movable contact piece. Connection of moving contact piece (12) is fixed on outlet connection part (4) by means of connection device (17) acting on contact surface. |
Switch vacuum chamber / 2400854 Coats from heat-resistant material or heat-resistant metals consisting of nanoparticles are applied at least partially in the area of shield 4, 7 or other structural elements inside vacuum chamber. |
Vacuum arc-quenching chamber for low voltage switching installations / 2407094 Invention relates to vacuum arc-quenching chamber for medium voltage switching plant with one or several ceramic cylindrical tubular sections, closed with metal covers both on side of fixed contact and on side of switching contact, in which, at least one of covers inside and/or outside is equipped with insert, increasing overall thickness of external cover wall, or with external ring, accordingly inserted into cover or applied onto cover, at least partially with geometric closure. According to the invention, the insert dimensions are selected and inserted so that it leaves a small gap to support edge of ceramics so that in internal contact zone, in process of assembly, there might be a flanging of pressed element of central screen could be received. |
Vacuum circuit breaker / 2419911 In vacuum circuit breaker containing at least one vacuum arc-extinguishing chamber, two insulating pipes from composite material, on outer surfaces of which there are ribs from organic-silicon material, and metal flange coaxially attaching the above pipes, the above insulating pipes have equal outer diametres, and metal flange in the centre of outer cylindrical surface is equipped with annular projection. At that, insulating pipes are installed on outer cylindrical surface of metal flange as far as they will go in the above annular projection. |
Attachment method of element in electric device and electric device such as vacuum circuit breaker containing at least two parts fixed according to such method / 2428762 Method consists in insertion of extender (26, 27, 19, 20, 21) between the above element (6, 7, 11, 12, 13) and the above part (8, 9, 1, 3). The above extender is capable of applying forces to the element and the above part in order to position the element in relation to the above part and/or fix the above element in place in relation to the above part by means of friction, on one side, between extender (26, 27, 19, 20, 21) and element (6, 7, 11, 12, 13) and on the other side, between extender and the above part, and in order to provide the positioning and/or attachment of the above element in relation to the above part till it is fully attached, and in order to perform the above final attachment by performing two welding operations respectively between the above element (6, 7, 11, 12, 13) and extender (26, 27, 19, 20, 21), and between extender and the above part. |
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