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- W2479238765 abstract "Thin gauge, high silicon content, perfect crystal orientation and small domain wall spacings are the fundamental features of an ideal electrical steel sheet with minimum core loss and maximum polarization. For achieving these properties in the fabrication process, very exact control of secondary recrystalliration is necessary, which becomes more and more difficult with decreasing sheet thickness and increasing silicon content. In the present paper the influence of the starting conditions – i.e. the primary recrystallized grain structure and precipitation distribution – on selective grain growth and Goss-texture formation is described. For RGO and HGO typical differences in the primary grain size, critical inhibitor diameter and amount of primary Goss-grains have been observed. By increasing the knowledge about the physics of electrical steel sheet, the fabrication process and magnetic properties have been continuously improved in the past. Today, new techniques of strip production like thin strip casting are an important aspect for further development offering very promising perspectives on new possibilities of texture control. Die Zielvorstellungen für ein ideales Elektroblech sind geringe Dicke, hoher Legierungsgrad, scharfe Orientierung der Kristallite und kleiner Blochwandabstand. Hiermit sollen ein niedriger Ummagnetisierungsverlust und eine hohe Polarisation bei kleiner Feldstärke erreicht werden. Eine zentrale Rolle spielt dabei die Beherrschung einer ungestörten Sekundärrekristallisation, die mit fallender Blechdicke und steigendem Legierungsgrad immer problematischer wird. In der vorliegenden Arbeit wird die Bedeutung der „Startbedingungen“, d.h. der primärrekristallisierten Gefügestruktur und der Inhibitordispersion für das nachfolgende selektive Kornwachstum und die Entstehung der Goss-Textur beschrieben, wobei sich RGO- und HGO-Elektroblech in der Primärkorngröße, in der kritischen Inhibitorengröße und in der Menge primärer Goss-Körner charakteristisch unterscheiden. Die zunehmenden Kenntnisse über die metallphysikalischen Zusammenhänge und ihre Übertragung in die Herstellungstechnik ermöglichen eine ständige Verbesserung der magnetischen Eigenschaften. Außerdem eröffnen neue Wege bei der Banderzeugung (endabmessungsnahes Gießen von Bändern) neuartige Möglichkeiten der Texturbeeinflussung." @default.
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- W2479238765 date "1992-09-01" @default.
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- W2479238765 title "Trends in the development of grain-oriented electrical sheet" @default.
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- W2479238765 doi "https://doi.org/10.1002/srin.199201733" @default.
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