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Dive into the research topics where Caroline Cassignol is active.

Publication


Featured researches published by Caroline Cassignol.


Journal of Magnetism and Magnetic Materials | 2014

Micromagnetics of shape anisotropy based permanent magnets

Simon Bance; Johann Fischbacher; T. Schrefl; Inga Zins; Gotthard Rieger; Caroline Cassignol

In the search for rare-earth free permanent magnets, various ideas related to shape anisotropy are being pursued. In this work we assess the limits of shape contributions to the reversal stability using micromagnetic simulations. In a first series of tests we altered the aspect ratio of single phase prolate spheroids from 1 to 16. Starting with a sphere of radius 4:3 times the exchange length Lex we kept the total magnetic volume constant as the aspect ratio was modified. For a ferromagnet with zero magnetocrystalline anisotropy the maximum coercive field reached up to 0:5 times the magnetization Ms. Therefore, in materials with moderate uniaxial magnetocrystalline anisotropy, the addition of shape anisotropy could even double the coercive field. Interestingly due to non-uniform magnetization reversal there is no significant increase of the coercive field for an aspect ratio greater than 5. A similar limit of the maximum aspect ratio was observed in cylinders. The coercive field depends on the wire diameter. By decreasing the wire diameter from 8:7Lex to 2:2Lex the coercive field increased by 40%. In the cylinders nucleation of a reversed domain starts at the corners at the end. Smoothing the edges can improve the coercive field by about 10%. In further simulations we compacted soft magnetic cylinders into a bulk-like arrangement. Misalignment and magnetostatic interactions cause a spread of 0:1Ms in the switching fields of the rods. Comparing the volume averaged hysteresis loops computed for isolated rods and the hysteresis loop computed for interacting rods, we conclude that magnetostatic interactions reduce the coercive field by up to 20%.


Journal of Magnetism and Magnetic Materials | 2017

On the advantages of spring magnets compared to pure FePt: Strategy for rare-earth free permanent magnets following a bottom-up approach

Marc Pousthomis; C. Garnero; Cécile Marcelot; Thomas Blon; S. Cayez; Caroline Cassignol; V.A. Du; M. Krispin; Raul Arenal; Katerina Soulantica; Guillaume Viau; Lise-Marie Lacroix


Archive | 2015

Hochgefüllte matrixgebundene anisotrope Hochleistungspermanentmagnete und Verfahren zu deren Herstellung

Caroline Cassignol; Michael Krispin; Inga Zins


Archive | 2015

Anisotroper seltenerdfreier kunststoffgebundener hochperformanter Permanentmagnet mit nanokristalliner Struktur und Verfahren zu dessen Herstellung

Caroline Cassignol; Michael Krispin; Inga Zins


Archive | 2016

Anisotropic rare earths-free matrix-bonded high-performance permanent magnet having a nanocristalline structure, and method for production thereof

Caroline Cassignol; Michael Krispin; Inga Zins


Archive | 2009

Resin formulation with cross-linkable bismaleimide-component, useful e.g. for manufacturing electrically isolating sealing compound, and foil comprises bismaleimide-component having bismaleimide phenylindane

Caroline Cassignol; Stefan Czwienczek; Walter Fischer; Volker Muhrer


Archive | 2016

Nanoscale Magnet Composite for High-Performance Permanent Magnets

Caroline Cassignol; Michael Krispin; Inga Zins


Archive | 2016

ANISOTROPIC HIGH-PERFORMANCE PERMANENT MAGNET HAVING OPTIMISED NANOSTRUCTURAL DESIGN AND METHOD FOR PRODUCTION OF SAME

Caroline Cassignol; Van An Du; Michael Krispin; Inga Zins


Archive | 2016

Anisotroper Hochleistungspermanentmagnet mit optimiertem nanostrukturellem Aufbau und Verfahren zu dessen Herstellung

Caroline Cassignol; Van An Du; Michael Krispin; Inga Zins


Archive | 2015

Nanoskaliges Magnetkomposit für hochperformante Permanentmagnete

Caroline Cassignol; Michael Krispin; Inga Zins

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Georg Dirscherl

Osram Opto Semiconductors GmbH

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Walter Wegleiter

Osram Opto Semiconductors GmbH

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