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3D Printing of Gelled and Cross-Linked Cellulose Solutions; an Exploration of Printing Parameters and Gel Behaviour

机译:胶凝和交联纤维素溶液的3D打印;印刷参数和凝胶行为的探讨

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摘要

In recent years, 3D printing has enabled the fabrication of complex designs, with low-cost customization and an ever-increasing range of materials. Yet, these abilities have also created an enormous challenge in optimizing a large number of process parameters, especially in the 3D printing of swellable, non-toxic, biocompatible and biodegradable materials, so-called bio-ink materials. In this work, a cellulose gel, made out of aqueous solutions of cellulose, sodium hydroxide and urea, was used to demonstrate the formation of a shear thinning bio-ink material necessary for an extrusion-based 3D printing. After analysing the shear thinning behaviour of the cellulose gel by rheometry a Design of Experiments (DoE) was applied to optimize the 3D bioprinter settings for printing the cellulose gel. The optimum print settings were then used to print a human ear shape, without a need for support material. The results clearly indicate that the found settings allow the printing of more complex parts with high-fidelity. This confirms the capability of the applied method to 3D print a newly developed bio-ink material.
机译:近年来,3D打印已实现了复杂设计的制造,低成本的定制以及材料范围的不断扩大。然而,这些能力在优化大量工艺参数方面也带来了巨大挑战,尤其是在可膨胀,无毒,生物相容性和可生物降解材料(所谓的生物墨水材料)的3D打印中。在这项工作中,由纤维素,氢氧化钠和尿素的水溶液制成的纤维素凝胶用于证明形成基于挤出的3D打印所需的剪切稀化生物墨水材料。通过流变法分析纤维素凝胶的剪切稀化行为后,应用实验设计(DoE)来优化3D生物打印机设置,以打印纤维素凝胶。然后,将最佳打印设置用于打印人耳形状,而无需支撑材料。结果清楚地表明,找到的设置允许以高保真度打印更复杂的零件。这证实了所应用方法能够3D打印新开发的生物墨水材料的能力。

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