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Viscosity measurement of Xanthan–Poly(vinyl alcohol) mixture and its effect on the mechanical properties of the hydrogel for 3D modeling

机译:黄原胶与聚乙烯醇混合物的粘度测量及其对3D建模水凝胶力学性能的影响

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摘要

Biomodels made of poly(vinyl alcohol) (PVA) are demanded because they can represent the geometries and mechanical properties of human tissues realistically. Injecting and molding, commonly used in three-dimensional (3D) modeling, help to represent the blood vessels accurately. However, these techniques sometimes require higher pressures than the upper pressure limit of the dispensers for pouring in high viscosity materials; the material viscosity should therefore be lower. Moreover, the mechanical properties of the biomodels should be reproduced. This study proposes a PVA solution through the addition of xanthan gum (XG) for 3D modeling, which lowers liquid viscosity while maintaining the mechanical properties of biomodels. XG is known to facilitate the achievement of non-Newtonian fluidity; however, the effects of XG on a PVA solution and PVA hydrogel (PVA-H) are not confirmed. The viscosity measurement using 15 wt% PVA with XG solution (PVA/XG) shows that it will provide easier pouring than 17 wt% PVA solution. The tensile test using the PVA-H of PVA(15 wt%)/XG(0.2 wt%) reveals that the gel is comparable in Young’s modulus to 17 wt% PVA-H. X-ray diffraction shows the crystalline structures of the PVA/XG gel and PVA-H are identical. Thus, this PVA/XG would be useful for fabricating biomodels using injection molding techniques.
机译:需要由聚乙烯醇(PVA)制成的生物模型,因为它们可以真实地代表人体组织的几何形状和机械特性。通常在三维(3D)建模中使用的注射和成型有助于准确表示血管。但是,这些技术有时需要比分配器的上限压力更高的压力才能浇注高粘度材料。因此,材料粘度应较低。此外,应复制生物模型的机械性能。这项研究提出了通过添加黄原胶(XG)进行3D建模的PVA解决方案,该解决方案可降低液体粘度,同时保持生物模型的机械性能。众所周知,XG有助于实现非牛顿的流动性。然而,尚未证实XG对PVA溶液和PVA水凝胶(PVA-H)的影响。使用15%(重量)的PVA和XG溶液(PVA / XG)进行的粘度测量表明,与17%(重量)的PVA溶液相比,它更易于浇注。使用PVA-H的PVA(15%重量%)/ XG(0.2%wt%)进行的拉伸试验表明,该凝胶的杨氏模量可与17%wt%的PVA-H相媲美。 X射线衍射表明PVA / XG凝胶的晶体结构与PVA-H相同。因此,该PVA / XG对于使用注射成型技术制造生物模型将是有用的。

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