4.7 Article

Preparation of high strength lamellar porous calcium silicate ceramics by directional freeze casting

期刊

CERAMICS INTERNATIONAL
卷 47, 期 22, 页码 31187-31193

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2021.07.294

关键词

Porous calcium silicate ceramic; Directional freeze casting; Lamellar pores; High strength

资金

  1. National Key Research and Development Program of China [2018YFF01013605]
  2. National Natural Science Foundation of China [51302290, 51501215]

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The study found that increasing solid loading and sintering additive content in the preparation of porous calcium silicate ceramics leads to larger pore sizes, decreased open porosity, and increased compressive strength. Higher sintering temperature promotes densification of the pore wall, reduces porosity, and improves strength. Lower freezing temperature has little effect on porosity, but reduces the size of lamellar pores and pore walls, thereby increasing strength.
In this study, porous calcium silicate (CS) ceramics with oriented arrangement of lamellar macropore structure were prepared by directional freeze casting method. The lamellar macropores were connected by the micropores on the pore wall, which had good pore interconnectivity. The effects of solid loading of the slurry, freezing temperature, sintering additive content, and sintering temperature on the microstructures and compressive strength of the synthesized porous materials were investigated systematically. The results showed that with the increase of solid loading (<20 vol%) and sintering additive content, the sizes of lamellar pores and pore walls increased gradually, the open porosity decreased and the compressive strength increased. The sintering temperature had little effect on the pore size of the ceramics, but increasing the sintering temperature (<1050 degrees C) promoted the densification of the pore wall, reduced the porosity, and improved the strength. The decrease of freezing temperature had little effect on porosity, but it reduced the size of lamellar pore and pore wall, so as to improve the strength. Finally, porous CS ceramics with lamellar macropores of about 300-600 mu m and 2-10 mu m micropores on the pore wall were obtained. The porous CS ceramics had high pore interconnectivity, an open porosity of 66.25% and a compressive strength of 5.47 MPa, which was expected to be used in bone tissue engineering.

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