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Water/ice as sprayable sacrificial materials in low-temperature 3D printing for biomedical applications

机译:水/冰作为生物医学应用的低温3D打印中的可喷涂牺牲材料

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摘要

A spray-valve-based sacrificial process and "water/ice" supportmaterials were developed in this study, based on the phase changes of water and low-temperature AM technology. The process entails utilizing the three phases of water to effectively and rapidly generate support structures that can also be efficiently removed completely after fabrication. Two scaffold materials, polycaprolactone-based water borne polyurethane and chitosan, were tested. Moreover, ethanol or ethylene glycol was employed as the additive of pure water for facilitating the removal of excess support materials during fabrication. To verify the proposed sacrificial process, three complex and large scaffolds were fabricated, including a Y-type tubular scaffold, a square scaffold with dual inverted T-type inner channels, and a three-layer tapered scaffold. Results revealed that the properties of the printed complex structures were properly maintained and the adhesion between the layers was firm enough to resist elastic deformation. (C) 2018 Elsevier Ltd. This is an open access article under the CC BY-NC-ND license.
机译:本研究基于水和低温AM技术的相变,开发了一种基于喷雾阀的牺牲工艺和“水/冰”支撑材料。该工艺需要利用水的三相来有效而迅速地产生支撑结构,该支撑结构在制造后也可以被有效地完全去除。测试了两种支架材料,聚己内酯基水性聚氨酯和壳聚糖。此外,使用乙醇或乙二醇作为纯水的添加剂,以利于在制造过程中除去过量的载体材料。为了验证提议的牺牲过程,制造了三个复杂且大型的脚手架,包括Y型管状脚手架,具有双倒T型内部通道的方形脚手架和三层锥形脚手架。结果表明,印刷的复杂结构的特性得到了适当的维护,各层之间的粘附力足以抵抗弹性变形。 (C)2018 Elsevier Ltd.这是CC BY-NC-ND许可下的开放获取文章。

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