Abstract:
It is proposed a conductor arrangement (100) for insulating an electrical conductor (101) with a mica tape (200) and a resin mixture. The conductor arrangement including an electrical conductor (101); and an insulation being provided around the electrical conductor (101) and including at least one mica tape layer (110; 110-1; 110-2) and at least one impregnation resin layer (120; 120-1; 120-2), wherein the at least one mica tape layer and the at least one impregnation layer contain a resin mixture. The insulation includes a catalyst for curing the resin mixture and a catalyst-activating agent (230) activating the catalyst. The concentration of the catalyst-activating agent (230) is greater in the mica tape layer than in the impregnation resin layer and the concentration of the catalyst per resin unit of the respective layer is substantially the same in the mica tape layer and in the impregnation resin layer.
Abstract:
Herein, an electrical conductor arrangement (100) for an electrical machine is proposed. The conductor arrangement includes an electrical conductor (120) and an insulator (110) for electrically insulating the conductor (120) has an electrical insulation material. The insulator (110) has at least one film (150) including a first edge portion (151). The first edge portion (151) is bonded to an overlapping portion (114, 115, 116) of the insulator (110) by heating and melting a portion of the insulation material. Moreover, a method for producing an electrically insulated electrical conductor is described, too.
Abstract:
A Dielectric Barrier Discharge system controller for controlling a fluid treatment by a Dielectric Barrier Discharge system is provided. Therein, the strength of an effect caused by a discharge created by the Dielectric Barrier Discharge system is monitored, and the generation of high-voltage pulses by the high-voltage pulse generator (110) is controlled. The controlling of the generation of the high-voltage pulses is adapted based on the received sensor data.
Abstract:
A reference electrode system (10) for a pH-sensor system, the reference electrode system comprising: a junction (30) comprising a polymerized ionic liquid, a reference electrode layer (40) comprising an electrolytic solution, and a reference electrode (45), which is at least partly arranged in the reference electrode layer (40).
Abstract:
It is proposed a method for producing an insulated wound conductor (200) for an electrical machine. The method includes providing one or more shrinkable tubes (101; 102) including a tube wall (103) and an inner hollow space (104) being surrounded by the tube wall (103). The tube wall includes at least an insulation layer of insulation material for insulating the wound conductor (200). The method further includes forming a wound conductor (200) by guiding at least one wire (105) including a conductive material from a wire supply device (110) to the at least one shrinkable tube (101; 102) and driving the wire (105) at least once in and through the inner hollow space (104) of the shrinkable tube (101; 102). The method further includes shrinking the shrinkable tube (101; 102) around the one or more wires (105) within the shrinkable tube.
Abstract:
Herein, an electrical conductor arrangement (100) for an electrical machine is proposed. The conductor arrangement includes an electrical conductor (120) and an insulator (110) for electrically insulating the conductor (120) has an electrical insulation material. The insulator (110) has at least one film (150) including a first edge portion (151). The first edge portion (151) is bonded to an overlapping portion (114, 115, 116) of the insulator (110) by heating and melting a portion of the insulation material. Moreover, a method for producing an electrically insulated electrical conductor is described, too.