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Fabrication of CaSiO_3 bioceramics with open and unidirectional macro-channels using an ice/fiber-templated method

机译:用冰/纤维模板法制备具有开放和单向大通道的CaSiO_3生物陶瓷

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摘要

Porous CaSiO_3 bioceramics with open and unidirectional macro-channels of pore size more than 200 μm are of particular interest for biomedical applications. An ice/fiber-templated method was employed for the fabrication of CaSiO_3 bioceramics with interconnected lamellar pores and macro-channels of pore size more than 200 μm. The pores formed by ice crystals transformed from cellular to lamellar, while the pores formed by fibers were aligned macro-channels, which were also in alignment with the lamellar pores. Keeping the initial slurry concentration constant and increasing the packing density of fibers, the volume fraction of macro-channels and open porosity increased, and the compressive strength decreased. Maintaining the packing density of fibers and increasing the initial slurry concentration, the pore sizes of lamellar pores and open porosity decreased, and the compressive strength increased. The results indicated that it was possible to manufacture porous CaSiO_3 bioceramics with the macro-channels of 250-350μm, lamellae spacing of 50-100 μm, open porosity of 71.12-83.94% and compressive strength of 0.87-3.59 MPa, indicating the suitability for tissue engineering.
机译:具有开孔和单向大孔且孔径大于200μm的多孔CaSiO_3生物陶瓷对于生物医学应用特别感兴趣。采用冰/纤维模板法制备具有相互连接的层状孔和孔径大于200μm的大通道的CaSiO_3生物陶瓷。由冰晶形成的孔从蜂窝状转变为层状,而由纤维形成的孔是对准的大通道,其也与层状孔对准。保持初始浆液浓度恒定并增加纤维的堆积密度,大通道的体积分数和开孔率增加,抗压强度降低。保持纤维的堆积密度并增加初始浆液浓度,层状孔的孔径和开孔率降低,抗压强度提高。结果表明,可以制备具有250-350μm的大通道,50-100μm的薄片间距,71.12-83.94%的开孔孔隙率和0.87-3.59 MPa的抗压强度的多孔CaSiO_3生物陶瓷。组织工程。

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