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Dive into the research topics where Björn Skårman is active.

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Featured researches published by Björn Skårman.


Science and Technology of Advanced Materials | 2018

Development of permanent magnet MnAlC/polymer composites and flexible filament for bonding and 3D-printing technologies

Ester Maria Palmero; Javier Rial; Javier de Vicente; J. Camarero; Björn Skårman; Hilmar Vidarsson; Per-Olof Larsson; Alberto Bollero

Abstract Searching for high-performance permanent magnets components with no limitation in shape and dimensions is highly desired to overcome the present design and manufacturing restrictions, which affect the efficiency of the final devices in energy, automotive and aerospace sectors. Advanced 3D-printing of composite materials and related technologies is an incipient route to achieve functional structures avoiding the limitations of traditional manufacturing. Gas-atomized MnAlC particles combined with polymer have been used in this work for fabricating scalable rare earth-free permanent magnet composites and extruded flexible filaments with continuous length exceeding 10 m. Solution casting has been used to synthesize homogeneous composites with tuned particles content, made of a polyethylene (PE) matrix embedding quasi-spherical particles of the ferromagnetic τ-MnAlC phase. A maximum filling factor of 86.5 and 72.3% has been obtained for the composite and the filament after extrusion, respectively. The magnetic measurements reveal no deterioration of the properties of the MnAlC particles after the composite synthesis and filament extrusion. The produced MnAlC/PE materials will serve as precursors for an efficient and scalable design and fabrication of end-products by different processing techniques (polymerized cold-compacted magnets and 3D-printing, respectively) in view of technological applications (from micro electromechanical systems to energy and transport applications).


Archive | 2003

Iron-based powder

Mikhail Kejzelman; Paul Skoglund; Ola Andersson; Per Knutsson; Hilmar Vidarsson; Björn Skårman


Archive | 2006

Soft magnetic composite materials

Björn Skårman; Zhou Ye; Patricia Jansson


Archive | 2003

Soft magnetic powder composition comprising insulated particles and a lubricant selected from organo-silanes, -titanates, -aluminates and zirconates and a process for their preparation

Mikhail Kejzelman; Björn Skårman; Paul Skoglund; Ola Andersson; Per Knutsson; Hilmar Vidarsson


Archive | 2005

Lubricants For Insulated Soft Magnetic Iron-Based Powder Compositions

Hilmar Vidarsson; Paul Skoglund; Björn Skårman


Journal of The Electrochemical Society | 2017

Core/shell structure nano-iron/iron carbide electrodes for rechargeable alkaline iron batteries

Alagar Raj Paulraj; Yohannes Kiros; Björn Skårman; Hilmar Vidarsson


Journal of The Electrochemical Society | 2017

Stannate Increases Hydrogen Evolution Overpotential on Rechargeable Alkaline Iron Electrodes

Mylad Chamoun; Björn Skårman; Hilmar Vidarsson; Ronald I. Smith; Stephen Hull; Martynas Lelis; D. Milcius; Dag Noréus


Archive | 2009

Soft magnetic powder composition comprising insulated particles and a lubricant and a process for their preparation

Mikhail Kejzelman; Paul Skoglund; Ola Andersson; Per Knutsson; Hilmar Vidarsson; Björn Skårman


The 18th International Meeting on Lithium Batteries (IMLB-18) 19-24 June 2016, Chicago, USA. | 2016

Development of an Li2FeSiO4 vs. Graphite LIB for Sustainable Energy Storage

Josh Thomas; Jingjing Cai; Henrik Eriksson; Kristofer Fredin; Anti Liivat; Torbjörn Gustafsson; Björn Skårman; Hilmar Vidarsson


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

Electrochemical Study of Nano-Iron/Iron Carbide As Rechargeable Electrodes

Alagar Raj Paulraj; Yohannes Kiros; Björn Skårman; Hilmar Vidarsson

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Alagar Raj Paulraj

Royal Institute of Technology

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Yohannes Kiros

Royal Institute of Technology

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