摘要:
A high-voltage insulator includes a metal armature, an insulating tube joined to the metal armature, which is adhesively bonded to the metal armature at an end formed as a supporting ring, and an axially symmetrical adhesive-bonding joint disposed around the axis of the insulating tube. An annular grove, which is formed in the metal armature, is disposed around the axis of the insulating tube and receives an end portion of the supporting ring. Sealing surfaces are respectively formed in the groove and in the supporting ring. The sealing surfaces are arranged and formed in such a way that, when the insulating tube and the metal armature are joined, they slide on one another, thereby forming a seal, and the supporting ring acting as a displacement body presses adhesive that has been introduced into the groove before the joining into the adhesive-bonding joint.
摘要:
A high-voltage insulator includes a metal armature, an insulating tube joined to the metal armature, which is adhesively bonded to the metal armature at an end formed as a supporting ring, and an axially symmetrical adhesive-bonding joint disposed around the axis of the insulating tube. An annular grove, which is formed in the metal armature, is disposed around the axis of the insulating tube and receives an end portion of the supporting ring. Sealing surfaces are respectively formed in the groove and in the supporting ring. The sealing surfaces are arranged and formed in such a way that, when the insulating tube and the metal armature are joined, they slide on one another, thereby forming a seal, and the supporting ring acting as a displacement body presses adhesive that has been introduced into the groove before the joining into the adhesive-bonding joint.
摘要:
A high-voltage insulator contains, in a coaxial arrangement: an insulating tube with an end in the form of a bearing ring, a hollow metal armature held on the bearing ring, an adhesive-bonding joint, which is provided between an adhesive-bonding area of the bearing ring and an adhesive-bonding area of the metal armature and is filled in a vacuum-tight manner with a cured adhesive layer, and a cavity, which is extended along the axis of the insulating tube and is radially delimited by the insulating tube and the metal armature. At least one predominantly radially guided adhesive channel is arranged between the cavity and the adhesive-bonding joint, which adhesive channel is sealed with cured adhesive and has a cross section which is sufficient for guiding uncured adhesive from the cavity into the adhesive-bonding joint prior to the formation of the cured adhesive layer.
摘要:
An exemplary isolating tube, and production method thereof, includes a mechanically load-bearing plastic tube composed of a fiber-reinforced polymer for use in a cooling element which can be loaded with high voltage, during whose operation the isolating tube forms an electrical isolation gap and in the tube interior carries an agent which flows as a liquid and/or vapor. The isolating tube can have a diffusion barrier which is held coaxially by the plastic tube. Such an isolating tube can be produced using an exemplary novel method for production.
摘要:
An isolating tube is disclosed having a mechanically load-bearing plastic tube composed of a fiber-reinforced polymer for use in a cooling element which can be loaded with high voltage, during whose operation the isolating tube forms an electrical isolation gap and in the tube interior carries an agent which flows as a liquid and/or vapor. The isolating tube has a diffusion barrier which is held coaxially by the plastic tube. Methods for production of the isolating tube are disclosed.
摘要:
A high-voltage isolator is disclosed which has a first electrical connecting piece and a second electrical connecting piece, between which an electrical isolating body extends. The end sections of the connecting pieces are connected to the isolating body, with a toroidal field control element being arranged on at least one of the end sections. A slot, which extends in the circumferential direction of the end section, is introduced on the end section which has the field control element. The field control element and the respectively associated end section are formed integrally. As a result of the slot, tension and compression forces which occur during longitudinal and lateral contractions of the isolating body and act at right angles to the longitudinal axis of the end section can be largely prevented, as can shear forces, while at the same time achieving a high level of uniformity in an area of the isolating gap, for electrical fields which occur during operation.
摘要:
A high-voltage isolator is disclosed which has a first electrical connecting piece and a second electrical connecting piece, between which an electrical isolating body extends. The end sections of the connecting pieces are connected to the isolating body, with a toroidal field control element being arranged on at least one of the end sections. A slot, which extends in the circumferential direction of the end section, is introduced on the end section which has the field control element. The field control element and the respectively associated end section are formed integrally. As a result of the slot, tension and compression forces which occur during longitudinal and lateral contractions of the isolating body and act at right angles to the longitudinal axis of the end section can be largely prevented, as can shear forces, while at the same time achieving a high level of uniformity in an area of the isolating gap, for electrical fields which occur during operation.
摘要:
An exemplary encapsulated high-voltage switch is disclosed which contains a heat-generating current conductor, a metal encapsulation surrounding the current conductor, and a cooling element. A cooler of the cooling element is fixed on a part of the encapsulation that is embodied as a mounting plate, and has cooling ribs arranged outside the encapsulation. In a section of the cooler that is embodied as a cooling block, at least a portion of the cooling ribs is arranged parallel to the mounting plate and is held on a heat distributor fixed to the mounting plate in such a way that on both sides of the heat distributor in each case one of two groups of cooling channels arises, in which the cooling channels are in each case arranged in the manner of a sandwich. The cooling channels can, for example, be oriented in a manner inclined relative to a horizontal axis of the switch.
摘要:
An insulating part (20) is provided for a high voltage switch of a metal-enclosed circuit-breaker system and is executed as a pressure-gelated casting on the base of a polymeric composite material. It comprises a base-plate (21) with a centrally arranged large through-hole (23) for receiving a current terminal lead of the high voltage switch and with small through-holes (24, 25) for receiving fastening screws. The insulating part further comprises two bearing blocks (22) for receiving a shaft of a movable contact of a contact arrangement of the switch and at least a first collar (26) which surrounds the large through-hole (23).For reason of the execution as a pressure-gelated casting the insulating part (20) can be manufactured easily with low costs but with high precision. In general a finish-maching of the casting is not required. The integration of the large through-hole (23) and of the small through-holes (24, 25) as well as of the two bearing blocks (22) and the first collar (26) into the insulating part (20) during pressure gelation of the polymeric composite material result in a complex design which fulfills all required mechanical, electrical and thermal functions during operation of the system.
摘要:
An insulating part (20) is provided for a high voltage switch of a metal-enclosed circuit-breaker system and is executed as a pressure-gelated casting on the base of a polymeric composite material. It comprises a base-plate (21) with a centrally arranged large through-hole (23) for receiving a current terminal lead of the high voltage switch and with small through-holes (24, 25) for receiving fastening screws. The insulating part further comprises two bearing blocks (22) for receiving a shaft of a movable contact of a contact arrangement of the switch and at least a first collar (26) which surrounds the large through-hole (23).For reason of the execution as a pressure-gelated casting the insulating part (20) can be manufactured easily with low costs but with high precision. In general a finish-maching of the casting is not required. The integration of the large through-hole (23) and of the small through-holes (24, 25) as well as of the two bearing blocks (22) and the first collar (26) into the insulating part (20) during pressure gelation of the polymeric composite material result in a complex design which fulfills all required mechanical, electrical and thermal functions during operation of the system.