Journal of the American Ceramic Society · 2016 · 52 citations · 39 references
Magnetic PropertiesEngineeringMechanical EngineeringMaterial InnovationDirectional SolidificationCeramic PowdersWeak Magnetic FieldsMagnetoelastic MaterialsMagnetic MaterialsStructural MaterialsMagnetismSolidificationCeramic TechnologyMaterials ScienceCeramic MaterialNanomanufacturingO 4Magnetic MaterialMicrostructureFerromagnetismIce CrystalsNatural SciencesApplied PhysicsCeramics MaterialsCeramic SynthesisMicrostructural ControlFunctional MaterialsMaterial Preparation
The use of weak magnetic fields to control the microstructural evolution of colloidal‐based systems in conjunction with directional solidification is demonstrated as a convenient processing route to fabricate anisotropic ceramic scaffolds with complex microarchitectures. A variety of graded and aligned microstructures were formed by applying external static magnetic fields oriented radially, axially, and transversely with respect to the solidification direction of freezing slurries containing micro/nanoparticles of ZrO 2 and Fe 3 O 4 . The graded structures, formed by the radial and axial fields, resemble core–shell architectures composed of dense outer perimeters surrounding porous inner cores. The aligned structures, formed by transverse fields, exhibit two modes of microstructural alignment: lamellar walls aligned by the growing ice crystals and mineral bridges aligned by the magnetic fields. The alignment of mineral bridges that connect adjacent lamellae, provide these scaffolds enhanced strength and stiffness when compressed parallel to their orientation (parallel to the direction of the magnetic field).
39
Freezing as a Path to Build Complex Composites
Sylvain Deville, Eduardo Saiz, R.K. Nalla et al. · Science · 2006 · 1.9K citations · Full text
Colloidal Processing of Ceramics
Jennifer A. Lewis · Journal of the American Ceramic Society · 2000 · 1.3K citations
Strong, tough and stiff bioinspired ceramics from brittle constituents
Florian Bouville, Éric Maire, Sylvain Meille et al. · Nature Materials · 2014 · 909 citations · Full text