When a permanent magnet is considered for an application, the quantity that quantifies the usability of that material is the magnetic energy product (BH)max. In today’s world, rare earth transition metal permanent magnets like Nd-Fe-B, Sm-Co possesses the maximum magnetic energy product. But still for the industrial application, the ferrite permanent magnets are the primary choice over these rare transition metal magnets. Thus, in the present context, the magnetic energy product of the low cost ferrite system makes it unsuitable for the high magnetic energy application. In this regard, exchange spring magnets which combine the magnetization of the soft phase and coercivity of the hard magnetic phases become important in enhancing the magnet...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
Magnetically hard-soft (100-x) SrFe12O19–x wt % La0.7Sr0.3MnO3 nanocomposites were synthesized via a...
Pure phase exchange-coupled nanocomposites of hard-soft magnetic oxides, (hard) SrFe10Al2O19- (soft)...
Nanocomposites of hard (SrFe12O19) and soft ferrite (CoFe2O4) are prepared by mixing individual ferr...
Nanocomposite of hard (BaFe12O19) and soft ferrite (Ni0.8Zn0.2Fe2O4) are prepared by the mixing of t...
The paper reports exchange-spring soft and hard ferrite nanocomposites synthesized by chemical co-pr...
Nanocomposite magnet consisting of hard and soft magnetic phases has attracted many attentions from...
We have observed the exchange spring behavior in the soft (Fe3O4)-hard (BaCa2Fe16O27)-ferrite comp...
We report on an investigation of the magnetic properties of nanocomposite ferrite via different tech...
The role of the soft phase (Ni0.8Zn0.2Fe2O4) on the magnetization reversal and coercivity mechanism ...
Abstract Among hard/soft nanocomposites (NCs), ferrite-based materials are potentially promising for...
The exploitation of the exchange coupling between hard and soft magnetic materials has been proposed...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
Permanent magnets (PMs) are essential to an amazing variety of current and future devices, causing w...
Pure phase exchange coupled nanocomposites of magnetically hard-soft oxides, (hard) SrFe12-yAlyO19 -...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
Magnetically hard-soft (100-x) SrFe12O19–x wt % La0.7Sr0.3MnO3 nanocomposites were synthesized via a...
Pure phase exchange-coupled nanocomposites of hard-soft magnetic oxides, (hard) SrFe10Al2O19- (soft)...
Nanocomposites of hard (SrFe12O19) and soft ferrite (CoFe2O4) are prepared by mixing individual ferr...
Nanocomposite of hard (BaFe12O19) and soft ferrite (Ni0.8Zn0.2Fe2O4) are prepared by the mixing of t...
The paper reports exchange-spring soft and hard ferrite nanocomposites synthesized by chemical co-pr...
Nanocomposite magnet consisting of hard and soft magnetic phases has attracted many attentions from...
We have observed the exchange spring behavior in the soft (Fe3O4)-hard (BaCa2Fe16O27)-ferrite comp...
We report on an investigation of the magnetic properties of nanocomposite ferrite via different tech...
The role of the soft phase (Ni0.8Zn0.2Fe2O4) on the magnetization reversal and coercivity mechanism ...
Abstract Among hard/soft nanocomposites (NCs), ferrite-based materials are potentially promising for...
The exploitation of the exchange coupling between hard and soft magnetic materials has been proposed...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
Permanent magnets (PMs) are essential to an amazing variety of current and future devices, causing w...
Pure phase exchange coupled nanocomposites of magnetically hard-soft oxides, (hard) SrFe12-yAlyO19 -...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
Magnetically hard-soft (100-x) SrFe12O19–x wt % La0.7Sr0.3MnO3 nanocomposites were synthesized via a...
Pure phase exchange-coupled nanocomposites of hard-soft magnetic oxides, (hard) SrFe10Al2O19- (soft)...