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RHEOLOGICAL ANALYSIS OF LOW VISCOSITY HYDROGELS FOR 3D BIO-PRINTING PROCESSES

机译:3D生物印刷工艺低粘度水凝胶的流变分析

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Following the success of 3D printing with synthetic polymers like ABS, PLA, Nylon, etc., scientists and researchers have been putting efforts into fabricating bio-compatible materials. It has not only broadened the field of bioengineering and manufacturing but also regenerative medicine. Unlike the traditional 3D printing process, additive bio-manufacturing, also known as 3D bio-printing has a lot of challenges like cell survivability and proliferation, and the mechanical properties of the biomaterials which involve printability and the ability to hold its structural integrity. Proper design of experiments with extensive rheological investigation can help identify useful mechanical property ranges which are directly related to the geometric fidelity of 3D bio-printed scaffolds. Therefore, to investigate the printability of a low viscosity Alginate-Carboxymethyl Cellulose (CMC), multiple concentrations of the mixture were tested maintaining a 8% (w/v) solid content. A set of rheological tests such as the Steady Rate Sweep Test. Three Point Thixotropic Test (3ITT), and Amplitude test were performed. The outcome of those tests showed that the rheological properties can be controlled with the percentage of CMC in the mixtures. The fabricated filaments and scaffolds in the 5 combinations of CMC percentages were analyzed for flowability and shape fidelity. The rheological results and the printability and shape fidelity results were analyzed.
机译:随着ABS,PLA,尼龙等的合成聚合物的3D打印成功,科学家和研究人员一直努力制造生物兼容材料。它不仅拓宽了生物工程和制造领域,而且还拓展了再生医学。与传统的3D印刷过程不同,添加剂生物制造,也称为3D生物印刷具有很大的挑战,如细胞生存性和增殖,以及涉及可印刷性和保持其结构完整性的能力的生物材料的机械性能。适当的实验设计具有广泛的流变调查,可以帮助识别与3D生物印刷支架的几何保真直接相关的有用的机械性能范围。因此,为了研究低粘度藻酸盐 - 羧甲基纤维素(CMC)的可印刷性,测试了多种混合物的浓度,保持8%(w / v)固体含量。一组流变测试,如稳定的速率扫描试验。三点触变试验(3TT)和振幅试验。这些测试的结果表明,可以以混合物中的CMC百分比控制流变性能。分析了5种CMC百分比组合中的制造长丝和支架,用于流动性和形状保真度。分析了流变效果和可印刷性和形状保真度结果。

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