The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstrate through multiscale simulations that the exchange in Nd–Fe–B magnets, including bulk exchange stiffness (Ae) in Nd2Fe14B phase and interface exchange coupling strength (Jint>) between Nd2Fe14B and grain boundary (GB), is strongly anisotropic. Ae is larger along crystallographic a/b axis than along c axis. Even when the GB FexNd1–x has the same composition, Jint for (100) interface is much higher than that for (001) interface. The discovered anisotropic exchange is shown to have profound influence on the coercivity. These findings enable more freedom in designing Nd–Fe–B magnets by tuning exchange. IMPACT STATEMENT: Bulk exchange stiffness i...
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
This is the final version of the article. Available from the American Institute of Physics via the D...
This is the final version. Available from AIP Publishing via the DOI in this recordThe maximum coerc...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
This is the final version of the article. Available from the American Institute of Physics via the D...
This is the final version. Available from AIP Publishing via the DOI in this recordThe maximum coerc...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
The exchange is critical for designing high-performance Nd–Fe–B permanent magnets. Here we demonstra...
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
This is the final version of the article. Available from the American Institute of Physics via the D...
This is the final version. Available from AIP Publishing via the DOI in this recordThe maximum coerc...