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Colloidal forming of macroporous calcium pyrophosphate bioceramics in 3D-printed molds

机译:3D打印模具中大孔焦磷酸钙生物陶瓷的胶体形成

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摘要

A technique for colloidal forming of Ca P O macroporous bioceramics, based on low-pressure injection molding (LPIM) of a glycerol-water slip containing Ca P O and Ca(Н PO ) into a plastic mold fabricated via FDM 3D-printing, was proposed. Chemical reaction between the solid phases of the water containing slip - Ca P O and Ca(Н PO ) , resulting in brushite (CaHPO ·2H O) formation, led to consolidation of the casting and preserved its complex architecture in the course of mold burning-out. Macroporous ceramics of Kelvin structure (70% macropores with the sizes from 2 up to 4 mm), based on a pre-defined composition with 10 wt% Ca(PO ) and sintered in liquid-phase regime, demonstrated a compressive strength of 1.4 ± 0.1 MPa at a density of 22 ± 2%. tests on bioactivity in SBF solution, as well as on resorption of the ceramics in model solution of citric acid, were carried out.
机译:提出了一种通过低压注射成型(LPIM)将含有Ca P O和Ca(НPO)的甘油-水滑模注模到通过FDM 3D打印制成的塑料模具中的Ca P O大孔生物陶瓷的胶体成型技术。含粉浆的水-Ca PO和Ca(НPO)的固相之间的化学反应,导致透钙铁矿(CaHPO·2H O)的形成,导致铸件的固结并在铸模燃烧过程中保留了其复杂的结构。出来。开尔文结构的大孔陶瓷(70%的大孔,尺寸从2到4毫米)基于预定义的成分,含10重量%的Ca(PO)并在液相条件下烧结,显示出1.4±的抗压强度0.1 MPa,密度为22±2%。对SBF溶液中的生物活性以及柠檬酸模型溶液中的陶瓷吸收进行了测试。

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