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Complex Geometry Cellulose Hydrogels Using a Direct Casting Method

机译:使用直接浇铸法的复杂几何形状纤维素水凝胶

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摘要

To facilitate functional hydrogel part production using the indirect wax mould method, it is necessary to understand the relationships between materials, process and mould removal. This research investigated the thermophysical properties, wettability and surface roughness of wax template moulds in the production of cellulose hydrogel objects. Cellulose gel was thermally formed and shaped in three different wax moulds—high melting point paraffin, sacrificial investment casting wax and Solidscape wax—by physical cross-linking of polymer networks of cellulose solution in NaOH/urea aqueous solvent. All three wax moulds were capable of casting cellulose hydrogel objects. Cellulose gelling time was reduced by increasing the temperature. Thus, the mould melting temperature had a direct effect on the gelling time. It was found that mould removal time varied based on the contact angle (CA) of the cellulose solution and the mould, and based on the melting point of the mould. A higher CA of cellulose solution on the wax moulds resulted in faster mould removal. When melting the wax in 90 °C water, high melting point paraffin, sacrificial investment casting and Solidscape wax took about 3, 2 and 1.5 h, respectively, to remove the moulds from the cellulose gel.
机译:为了使用间接蜡模法促进功能性水凝胶零件的生产,有必要了解材料,工艺和脱模之间的关系。这项研究调查了蜡模板模具在纤维素水凝胶物体生产中的热物理性质,润湿性和表面粗糙度。通过在NaOH /脲水溶液中纤维素溶液的聚合物网络的物理交联,在三种不同的蜡模(高熔点石蜡,牺牲熔模铸造蜡和Solidscape蜡)中对纤维素凝胶进行热成型和成型。所有三个蜡模均能够铸造纤维素水凝胶物体。通过增加温度来减少纤维素胶凝时间。因此,模具熔化温度直接影响胶凝时间。发现脱模时间基于纤维素溶液与模具的接触角(CA)以及基于模具的熔点而变化。蜡模中较高的纤维素溶液CA可以加快脱模速度。将蜡在90°C的水中融化时,高熔点石蜡,牺牲熔模铸造和Solidscape蜡分别花费了约3、2和1.5 h,才能从纤维素凝胶中去除霉菌。

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