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Stress relaxation and humidity dependence in sodium alginate-glycerol films

机译:藻酸钠 - 甘油薄膜中应力松弛和湿度依赖性

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The control of viscoelastic properties of alginate biopolymer that mimics the matrix properties of biological substrates plays an important role for the success of its biomedical applications. For this purpose stress relaxation behavior of glycerol plasticized sodium alginate films is characterized at room temperature as a function of the glycerol concentration ranging up to 40%. A series of experiments are thus conducted at relative humidity levels of 38 +/- 1% and 51 +/- 1%. The glycerol content is demonstrated to amplify the effect of humidity on relaxation profiles. In the case of 30% glycerol, normalized stress at the level of 65% is recorded at the end of the first 30 min at the low humidity level, whereas the corresponding value drops to 8% with increased humidity. Alginate films with no glycerol content exhibit much higher normalized stresses of 89% and 73% at low and high humidity levels, respectively. In addition, stress relaxation is observed to continue well beyond the first 30 min, especially for glycerol concentrations lower than 30%, where 9-hour parameters for a stretched exponential Kohlrausch - Williams - Watts function are reported demonstrating the importance of relaxation time for successful modeling.
机译:藻酸盐生物聚合物的粘弹性的控制模拟生物基质的基质特性对其生物医学应用的成功起着重要作用。为此目的,甘油塑化的应力松弛行为在室温下表征为甘油浓度范围高达40%的函数。因此,在相对湿度水平为38 +/- 1%和51 +/- 1%的情况下进行一系列实验。甘油含量被证明扩增湿度对松弛型材的影响。在30%甘油的情况下,在低湿度水平的前30分钟的末端记录65%水平的归一化应力,而相应的值随着湿度的增加而下降至8%。在低湿度水平下,藻酸盐膜的藻酸盐薄膜具有甘油含量的较高标准化应力为89%和73%。此外,观察到应力松弛以继续超过前30分钟,特别是对于低于30%的甘油浓度,其中报告了一个拉伸指数Kohlrausch-Williams-Watts函数的9小时参数证明了放松时间成功的重要性造型。

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