Beta tricalcium phosphate ceramics with controlled crystal orientation fabricated by application of external magnetic field during the slip casting process

Mater Sci Eng C Mater Biol Appl. 2013 Jul 1;33(5):2967-70. doi: 10.1016/j.msec.2013.03.024. Epub 2013 Mar 23.

Abstract

Beta tricalcium phosphate (β-TCP) is a resorbable bioceramic that has hitherto been utilized in the medical field. Since it crystallizes in the anisotropic hexagonal system, properties such as chemical and physical ones are expected to depend on its crystal axis direction and/or on its crystal plane (anisotropy). Control of crystal orientation is thus important when used in polycrystalline form. Meanwhile, application of a strong magnetic field has been found to be a promising technique to control crystal orientation of anisotropic shape or structured crystals. In this work, we attempted to fabricate β-TCP ceramics with controlled crystal orientation by applying an external magnetic field during the slip casting process and subsequently sintering them at 1050°C, below the β-α transition temperature. Application of a vertical magnetic field increased intensities of planes perpendicular to c-plane on the top surface, while a horizontal one with simultaneous mechanical mold rotation decreased it. These results indicated that crystal orientation of β-TCP ceramics were successfully controlled by the external magnetic field and together that the magnetic susceptibility of β-TCP is χ(c[perpendicular])>χ(c//).

MeSH terms

  • Calcium Phosphates / chemistry*
  • Ceramics*
  • Crystallography, X-Ray
  • Magnetic Fields*
  • Materials Testing
  • Microscopy, Electron, Scanning

Substances

  • Calcium Phosphates
  • beta-tricalcium phosphate