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Self healing by Cu precipitation in deformed Fe-Cu-B-N-C
Self healing by Cu precipitation in deformed Fe-Cu-B-N-C
Self healing by Cu precipitation in deformed Fe-Cu-B-N-C
Self healing by Cu precipitation in deformed Fe-Cu-B-N-C
Enhancing the creep life of steels by self-healing through dynamic in-service precipitation
Enhancing the creep life of steels by self-healing through dynamic in-service precipitation
Autonomous Repair Mechanism of Creep Damage in Fe-Au and Fe-Au-B-N Alloys
Autonomous Repair Mechanism of Creep Damage in Fe-Au and Fe-Au-B-N Alloys
Giant magnetocaloric effects by tailoring the phase transitions
Giant magnetocaloric effects by tailoring the phase transitions
High/low-moment phase transition in hexagonal Mn-Fe-P-Si compounds
High/low-moment phase transition in hexagonal Mn-Fe-P-Si compounds
Tuning the phase transition in transition-metal-based magnetocaloric compounds
Tuning the phase transition in transition-metal-based magnetocaloric compounds
From first-order magneto-elastic to magneto-structural transition in (Mn,Fe)1.95P0.50Si0.50 compounds
From first-order magneto-elastic to magneto-structural transition in (Mn,Fe)1.95P0.50Si0.50 compounds
From single- to double-first-order magnetic phase transition in magnetocaloric Mn1−xCrxCoGe compounds
From single- to double-first-order magnetic phase transition in magnetocaloric Mn1−xCrxCoGe compounds
Magnetic properties of Dy nanoparticles and Al2O3-coated Dy nanocapsules
Magnetic properties of Dy nanoparticles and Al2O3-coated Dy nanocapsules
Effect of carbon on copper precipitation in deformed Fe-based alloys studied by positron annihilation spectroscopy
Effect of carbon on copper precipitation in deformed Fe-based alloys studied by positron annihilation spectroscopy
Magnetocaloric effect in the (Mn,Fe)<sub>2</sub>(P,Si) system
Magnetocaloric effect in the (Mn,Fe)2(P,Si) system: From bulk to nano
Nonlinear influence of excess Mn on the magnetoelastic transition in (Mn,Cr)<sub>2</sub>Sb
Nonlinear influence of excess Mn on the magnetoelastic transition in (Mn,Cr)2Sb
Enhanced reversibility of the magnetoelastic transition in (Mn,Fe)<sub>2</sub>(P,Si) alloys via minimizing the transition-induced elastic strain energy
Enhanced reversibility of the magnetoelastic transition in (Mn,Fe)2(P,Si) alloys via minimizing the transition-induced elastic strain energy
Effect of Co and Ni doping on the structure, magnetic and magnetocaloric properties of Fe-rich (Mn,Fe)<sub>2</sub>(P,Si) compounds
Effect of Co and Ni doping on the structure, magnetic and magnetocaloric properties of Fe-rich (Mn,Fe)2(P,Si) compounds
Impact of F and S doping on (Mn,Fe)<sub>2</sub>(P,Si) giant magnetocaloric materials
Impact of F and S doping on (Mn,Fe)2(P,Si) giant magnetocaloric materials
Impact of W doping on Fe-rich (Mn,Fe)<sub>2</sub>(P,Si) based giant magnetocaloric materials
Impact of W doping on Fe-rich (Mn,Fe)2(P,Si) based giant magnetocaloric materials
Magnetoelastic transition and negative thermal expansion of Fe<sub>2</sub>Hf<sub>0.83</sub>Ta<sub>0.17</sub> ribbons
Magnetoelastic transition and negative thermal expansion of Fe2Hf0.83Ta0.17 ribbons
Impact of fast-solidification on all-d-metal NiCoMnTi based giant magnetocaloric Heusler compounds
Impact of fast-solidification on all-d-metal NiCoMnTi based giant magnetocaloric Heusler compounds
Competing magnetic interactions, structure and magnetocaloric effect in Mn<sub>3</sub>Sn<sub>1-x</sub>Zn<sub>x</sub>C antiperovskite carbides
Competing magnetic interactions, structure and magnetocaloric effect in Mn3Sn1-xZnxC antiperovskite carbides
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