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首页> 外文期刊>Journal of Materials Science >The dynamic water vapour sorption properties of natural fibres and viscoelastic behaviour of the cell wall: Is there a link between sorption kinetics and hysteresis?
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The dynamic water vapour sorption properties of natural fibres and viscoelastic behaviour of the cell wall: Is there a link between sorption kinetics and hysteresis?

机译:天然纤维的动态水蒸气吸附特性和细胞壁的粘弹性行为:吸附动力学和磁滞之间是否存在联系?

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In a previous article, the sorption kinetics' properties of a range of natural fibres were reported. Analysis of the sorption kinetics was made using the parallel exponential kinetics (PEK) model, and it was argued that the rate limiting step of the sorption process was determined by substrate swelling rather than being diffusion limited. The PEK model divides the sorption kinetics curve into two first-order kinetics processes (fast and slow) but there is as yet no generally accepted explanation of what these two processes represent. In this article, the PEK parameters for sorption have been further evaluated in terms of two Kelvin-Voigt elements arranged in series. The force constant in the spring of each Kelvin-Voigt elements determines the equilibrium moisture content for each of the processes, whereas the viscosity of the dashpot is represented by the time constant for each process. Determination of interfibrillar matrix modulus using the Kelvin-Voigt model gives values that are in line with what would be predicted, giving credence to this interpretation of the sorption kinetics. Possible interpretations of the fast and slow kinetics processes are discussed.
机译:在上一篇文章中,报道了一系列天然纤维的吸附动力学特性。使用平行指数动力学(PEK)模型对吸附动力学进行了分析,并认为吸附过程的速率限制步骤是由底物溶胀而不是扩散限制决定的。 PEK模型将吸附动力学曲线分为两个一级动力学过程(快速和慢速),但目前尚无关于这两个过程代表什么的公认解释。在本文中,已根据两个串联排列的开尔文-沃格特元素进一步评估了吸附的PEK参数。每个Kelvin-Voigt元件的弹簧中的力常数确定每个过程的平衡水分含量,而阻尼器的粘度由每个过程的时间常数表示。使用开尔文-沃格模型(Kelvin-Voigt model)测定原纤维间基体模量得出的值与预期相符,从而证明了这种对吸附动力学的解释。讨论了快速和慢速动力学过程的可能解释。

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