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Long-term stabilized amorphous calcium carbonate—an ink for bio-inspired 3D printing

机译:长期稳定的无定形碳酸钙 - 用于生物启发3D印刷的油墨

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摘要

Biominerals formed by organisms in the course of biomineralization often demonstrate complex morphologies despite their single-crystalline nature. This is achieved owing to the crystallization via a predeposited amorphous calcium carbonate (ACC) phase, a precursor that is particularly widespread in biominerals. Inspired by this natural strategy, we used robocasting, an additive manufacturing three-dimensional (3D) printing technique, for printing 3D objects from novel long-term, Mg-stabilized ACC pastes with high solids loading. We demonstrated, for the first time, that the ACC remains stable for at least a couple of months, even after printing. Crystallization, if desired, occurs only after the 3D object is already formed and at temperatures significantly lower than those of common postprinting sintering. We also examined the effects different organic binders have on the crystallization, the morphology, and the final amount of incorporated Mg. This novel bio-inspired method may pave the way for a new bio-inspired route to low-temperature 3D printing of ceramic materials for a multitude of applications.
机译:尽管它们单晶性质,但生物丙原化过程中的生物体形成的生物体通常常显示复杂的形态。这是通过预先沉积的无定形碳酸钙(ACC)相的结晶而结晶来实现的,该前体在生物体中特别广泛地普及。灵感来自这种自然策略,我们使用抢劫,一种添加剂制造三维(3D)印刷技术,用于从新型长期印刷3D物体,MG稳定的ACC浆料具有高固体载荷。我们首次证明ACC仍然保持稳定,即使在印刷之后也仍保持稳定。如果需要,结晶仅在已经形成3D对象之后发生并且在温度明显低于普通张印烧制的温度之后发生。我们还研究了不同的有机粘合剂对结晶,形态和掺入Mg的最终量的影响。这种新颖的生物启发方法可以为陶瓷材料的低温3D打印提供新的生物启发途径,为多种应用铺平。

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