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Fabrication of Cellulose Hydrogel Objects Through 3D Printed Sacrificial Molds

机译:通过3D印刷牺牲模具的纤维素水凝胶物体的制造

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Effects of mold removal methods in fabrication of cellulose hydrogel objects were investigated in the present work. Cellulose was dissolved in 7 wt% NaOH/12 wt% urea aqueous solution and thermally gelled at 55°C in three different mold materials, Acrylonitrile Butadiene Styrene (ABS) as a common 3D printing material, Solidscape wax, specifically designed as a 3D printing cast material, and sacrificial casting wax (Lost Wax), commonly used for casting. After completion of the gelling process, the molds were removed from the cellulose gel by using a solvent for the ABS mold and melting the waxes in hot water. At the same time, the solvent was extracted from the gel and the cellulose hydrogel regenerated. The results show that mold materials and their associated removal methods have a significant effect on the mechanical properties and microstructure of cellulose hydrogel and cause shrinkage. Larger pore sizes decreased the compression strength and modulus of cellulose hydrogels samples. A balance between the porosity and density for a cellulose hydrogel part must be established for the specific applications.
机译:在本作工作中研究了模具去除方法在制备纤维素水凝胶物体中的影响。纤维素溶解在7wt%NaOH / 12wt%尿素水溶液中,并在35℃下在三种不同的模具材料中热凝胶,丙烯腈丁二烯苯乙烯(ABS)作为常见的3D印刷材料,专门设计为3D印刷铸造材料和牺牲铸造蜡(丢失的蜡),常用于铸造。在完成胶凝过程之后,通过使用用于ABS模具的溶剂并在热水中熔化蜡的溶剂从纤维素凝胶中除去模具。同时,从凝胶中萃取溶剂,并再生纤维素水凝胶。结果表明,模具材料及其相关的去除方法对纤维素水凝胶的机械性能和微观结构具有显着影响并引起收缩。较大的孔径尺寸降低了纤维素水凝胶样品的压缩强度和模量。必须为特定应用建立纤维素水凝胶部分的孔隙率和密度之间的平衡。

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