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Joining first ceramic joining partner with second joining partner in joining area, comprises applying metallic glass solder on first- and/or second joining partner in the joining area, and combining the joining partners in the joining area
Joining first ceramic joining partner with second joining partner in joining area, comprises applying metallic glass solder on first- and/or second joining partner in the joining area, and combining the joining partners in the joining area
The method for joining a first ceramic joining partner (2) with a second joining partner (3) in a joining area (4), comprises applying a metallic glass solder on the first- and/or the second joining partner in the joining area, combining the joining partners in the joining area, and heating the joining area by microwave radiation. The metallic glass solder absorbs the microwave radiation. The solder is doped with a liquid, ferrite particles and/or non-metal particles absorbing the microwave radiation. The first- and/or the second joining partner are doped with a material. The method for joining a first ceramic joining partner (2) with a second joining partner (3) in a joining area (4), comprises applying a metallic glass solder on the first- and/or the second joining partner in the joining area, combining the joining partners in the joining area, and heating the joining area by microwave radiation. The metallic glass solder absorbs the microwave radiation. The solder is doped with a liquid, ferrite particles and/or non-metal particles absorbing the microwave radiation. The first- and/or the second joining partner are doped with a material absorbing the microwave radiation. A temperature-sensitive region of an electrical or electronic component is protected by impermeable or less permeable protective mask for the microwave radiation. An element formed from ceramic material is used as second joining partner in the joining area. A temperature-dependent monitoring- and/or temperature-dependent regulation process are carried out in dependence of the temperature in the joining area and/or of the temperature in a temperature critical region under the utilization of a pyrometer. A monitoring process and/or a regulation process are carried out in the case of radiography of the first and/or the second joining partners in dependence of the attenuation rate of the microwave radiation. A heat source is additionally used to the microwave radiation. An independent claim is included for a composite from a first- and a second ceramic joining partner in a joining area.
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