Abstract We quantify and explain the effects of both anti-phase boundaries and twin defects in as-transformed τ-MnAl by carrying out micromagnetic simulations based closely on the results of microstructural characterization. We demonstrate that magnetic domain walls nucleate readily at anti-phase boundaries and are strongly pinned by them, due to anti-ferromagnetic coupling. Likewise, twin boundaries reduce the external field required to nucleate domain walls and provide strong pinning potentials, with the pinning strength dependent on the twinning angle. The relative strengths of the known twin defect types are quantified based on the anisotropy angles across their boundaries. Samples that have undergone heat treatment are imaged using el...
How to generate and use electricity in a more efficient way is a major challenge for humankind. In t...
In order to understand the genesis of the magnetic tau-phase of MnAl alloy, which due to its multiph...
The tau- phase of the binary Mn-Al system is a promising rare-earth free permanent magnet. However, ...
In this work we use a multiscale approach toward a realistic design of a permanent magnet based on M...
A complex interplay between magnetic domain structure and crystalline imperfections, here twins, is ...
Detailed microstructural characterisation has been conducted in both ‘as-transformed’ and ‘hot defor...
Formation of twins have been recognized as the bottleneck that limit the high-performance of L10-typ...
In this paper, we use a multiscale approach to describe a realistic model of a permanent magnet base...
In this study, detailed microstructural characterisation has been conducted in both as-transformed a...
Paper presented at the IEEE International Magnetics Conference that was held in Dresden (Germany) on...
The phase transformation in two modes, including both displacive and massive growth of τ-phase from ...
Magnetic and structural aspects of the annealing-induced transformation of rapidly-solidified Mn55Al...
MnAl is a promising rare-earth free permanent magnet for technological use. We have examined the eff...
In this work we develop an atomistic spin dynamics model for the ideal Mn 50 Al 50 τ -phase b...
The growing need for electrical power in machines and vehicles brings with it a growing need for cri...
How to generate and use electricity in a more efficient way is a major challenge for humankind. In t...
In order to understand the genesis of the magnetic tau-phase of MnAl alloy, which due to its multiph...
The tau- phase of the binary Mn-Al system is a promising rare-earth free permanent magnet. However, ...
In this work we use a multiscale approach toward a realistic design of a permanent magnet based on M...
A complex interplay between magnetic domain structure and crystalline imperfections, here twins, is ...
Detailed microstructural characterisation has been conducted in both ‘as-transformed’ and ‘hot defor...
Formation of twins have been recognized as the bottleneck that limit the high-performance of L10-typ...
In this paper, we use a multiscale approach to describe a realistic model of a permanent magnet base...
In this study, detailed microstructural characterisation has been conducted in both as-transformed a...
Paper presented at the IEEE International Magnetics Conference that was held in Dresden (Germany) on...
The phase transformation in two modes, including both displacive and massive growth of τ-phase from ...
Magnetic and structural aspects of the annealing-induced transformation of rapidly-solidified Mn55Al...
MnAl is a promising rare-earth free permanent magnet for technological use. We have examined the eff...
In this work we develop an atomistic spin dynamics model for the ideal Mn 50 Al 50 τ -phase b...
The growing need for electrical power in machines and vehicles brings with it a growing need for cri...
How to generate and use electricity in a more efficient way is a major challenge for humankind. In t...
In order to understand the genesis of the magnetic tau-phase of MnAl alloy, which due to its multiph...
The tau- phase of the binary Mn-Al system is a promising rare-earth free permanent magnet. However, ...