The characteristic microstructure of Sm (Co, Fe, Cu, Zr) z (z = 6.7 - 9.1) alloys with SmCo 5 cell walls in Sm 2 Co 17 cells, all intersected by Zr-rich platelets, makes them some of the best performing high-temperature permanent magnets. Plentiful research has been performed to tailor their microstructure at the nanoscale; but due to its complexity, many questions remain unanswered about the effect of the individual phases on the magnetic performance at different temperatures. Here, we explore this effect for three different Sm (Co, Fe, Cu, Zr) z alloys by deploying high-resolution magnetic imaging via in situ transmission electron microscopy and three-dimensional chemical analysis via atom probe tomography. We show that their microstructu...
We revisited the microstructure of Sm2Co17-type sintered magnets to understand the underlying mechan...
Two types of Sm(Co, Fe, Cu, Zr)(Z) ribbons with different temperature dependence of coercivity are i...
The microstructure and magnetic domain-wall motion of a sintered Sm(Co,Fe,Cu,Zr)(z) permanent magnet...
The characteristic microstructure of Sm(Co,Fe,Cu,Zr)z(z=6.7–9.1) alloys with SmCo5 cell walls in Sm...
The characteristic microstructure of Sm (Co, Fe, Cu, Zr) z (z = 6.7 - 9.1) alloys with SmCo 5 cell w...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
Some of the best-performing high-temperature magnets are Sm–Co-based alloys with a microstructure th...
Some of the best-performing high-temperature magnets are Sm–Co-based alloys with a microstructure th...
Sm2Co17-type high-temperature permanent magnets with composition Sm(Co, Fe, Cu, Ti)z are investigate...
Sm2Co17-type high-temperature permanent magnets with composition Sm(Co, Fe, Cu, Ti)z are investigate...
We revisited the microstructure of Sm2Co17-type sintered magnets to understand the underlying mechan...
We revisited the microstructure of Sm2Co17-type sintered magnets to understand the underlying mechan...
Two types of Sm(Co, Fe, Cu, Zr)(Z) ribbons with different temperature dependence of coercivity are i...
The microstructure and magnetic domain-wall motion of a sintered Sm(Co,Fe,Cu,Zr)(z) permanent magnet...
The characteristic microstructure of Sm(Co,Fe,Cu,Zr)z(z=6.7–9.1) alloys with SmCo5 cell walls in Sm...
The characteristic microstructure of Sm (Co, Fe, Cu, Zr) z (z = 6.7 - 9.1) alloys with SmCo 5 cell w...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
A higher saturation magnetization obtained by an increased iron content is essential for yielding la...
Some of the best-performing high-temperature magnets are Sm–Co-based alloys with a microstructure th...
Some of the best-performing high-temperature magnets are Sm–Co-based alloys with a microstructure th...
Sm2Co17-type high-temperature permanent magnets with composition Sm(Co, Fe, Cu, Ti)z are investigate...
Sm2Co17-type high-temperature permanent magnets with composition Sm(Co, Fe, Cu, Ti)z are investigate...
We revisited the microstructure of Sm2Co17-type sintered magnets to understand the underlying mechan...
We revisited the microstructure of Sm2Co17-type sintered magnets to understand the underlying mechan...
Two types of Sm(Co, Fe, Cu, Zr)(Z) ribbons with different temperature dependence of coercivity are i...
The microstructure and magnetic domain-wall motion of a sintered Sm(Co,Fe,Cu,Zr)(z) permanent magnet...