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Three-dimensional printing of porous load-bearing bioceramic scaffolds

机译:多孔承载生物陶瓷支架的三维印刷

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摘要

This article reports on the use of the binder jetting three-dimensional printing process combined with sintering to process bioceramic materials to form micro- and macroporous three-dimensional structures. Three different glass-ceramic formulations, apatite-wollastonite and two silicate-based glasses, have been processed using this route to create porous structures which have Young's modulus equivalent to cortical bone and average bending strengths in the range 24-36 MPa. It is demonstrated that a range of macroporous geometries can be created with accuracies of +/- 0.25 mm over length scales up to 40 mm. Hot-stage microscopy is a valuable tool in the definition of processing parameters for the sintering step of the process. Overall, it is concluded that binder jetting followed by sintering offers a versatile process for the manufacture of load-bearing bioceramic components for bone replacement applications.
机译:本文报道了利用粘合剂喷射三维打印工艺结合烧结工艺加工生物陶瓷材料,以形成微孔和大孔三维结构。三种不同的微晶玻璃配方(磷灰石-硅灰石和两种硅酸盐玻璃)已使用该方法加工,以形成多孔结构,其杨氏模量相当于皮质骨,平均弯曲强度在24-36 MPa范围内。研究表明,在长达40mm的长度范围内,可以创建一系列大孔几何形状,精确度为+/-0.25mm。热台显微镜是一种有价值的工具,可用于确定烧结工艺步骤的工艺参数。总的来说,可以得出结论,粘结剂喷射后烧结为骨替代应用的承重生物陶瓷组件的制造提供了一种通用的工艺。

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