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Effect of Strain on Viscoelastic Behavior of Fresh, Swelled and Mineralized PVP-CMC Hydrogel

机译:菌株对新鲜,膨胀和矿化PVP-CMC水凝胶粘弹性的影响

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Mineralization of calcium carbonate (CaCO_3) in hydrogel matrix is one of the most interesting topics of research by material scientists for the development of bio-inspired polymeric biomaterial for biomedical applications especially for bone tissue regeneration. As per our knowledge there was no work reported about rheological properties of CaCO_3 mineralized hydrogel though some works have done on mineralization of CaCO_3 in various gel membranes, and also it was reported about the viscoelastic properties of Agarose, Cellulose, PVA and PVPCMC hydrogels. This paper mainly focuses about the effect of strain on viscoelastic properties of fresh, swelled and mineralized (CaCO_3) PVP-CMC hydrogel. All these three types of hydrogel sustain (or keep) strictly the elastic properties when low strain (1%) is applied, but at higher strain (10%) the viscoelastic moduli (G' and G") show significant change, and the nature of these materials turned from elastic to viscous.
机译:水凝胶基质中碳酸钙(Caco_3)的矿化是材料科学家研究生物理发型化聚合物生物材料的最有趣的研究主题之一,特别是用于生物医学应用,特别是对于骨组织再生。 根据我们的知识,没有关于CaCO_3矿化水凝胶的流变性质的工作,尽管有些作品在各种凝胶膜中的Caco_3矿化,并且还报道了琼脂糖,纤维素,PVA和PVPCMC水凝胶的粘弹性。 本文主要侧重于应变对新鲜,膨胀和矿化(Caco_3)PVP-CMC水凝胶粘弹性的影响。 当施加低菌株(1%)时,所有这三种类型的水凝胶维持(或保持)严格的弹性性能,但在较高的菌株(10%)下粘弹性模量(G'和G“)显示出显着变化,以及性质 这些材料从弹性转向粘稠。

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