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首页> 外文期刊>Geology of Ore Deposits: A Journal of Theoretical and Applied Papers on All Aspects of Ore Genesis >A novel procedure for identification of 3D moisture diffusion parametersion thick composites:theory,validation and experimental results
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A novel procedure for identification of 3D moisture diffusion parametersion thick composites:theory,validation and experimental results

机译:一种识别3D湿气扩散参数厚复合材料的新方法:理论,验证和实验结果

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摘要

This paper presents a novel method for the identification of the parameters governing Fickian moisture diffusion in composite materials.In the first part of te manuscript,the theoretical background is given and closed-form solutions areproduced for 3D Fickian diffusion.Then,the different existing identificational ternatives are reviewed and a novel procedure is proposed that takes advantage of all the gravimetric curve data points instead of just initial slope and saturation.The method relies on the solution of an optimization problem.In the second part of the paper,validation of this identification technique is performed from simulated gravimetric curves.The main advantage of the method when compared to previously published materials is that diffusion coefficients and saturation level can be identified from gravimetric curves obtained from unsaturated coupons.This is particularly useful when considering thick coupons that will take a long time to saturate or when non-Fickian diffusion mecanisms occur after some time/Finally,the method is applied to experimental results obtained from glass/epoxy composites.It is shown that although the diffusion of moisture in the composite is basically non-Fickian,it can be considered Fickianup to about 10 days and that these data are sufficient to retrieve the 3D diffusion coefficients as well as the Fickian saturation level.
机译:本文提出了一种识别复合材料中Fickian水分扩散参数的新方法。在第一部分中,给出了3D Fickian扩散的理论背景并给出了封闭形式的解决方案。回顾了各种方法,并提出了一种利用所有重力曲线数据点而不仅仅是初始斜率和饱和度的新方法。该方法依赖于优化问题的解决方案。在本文的第二部分中,对该识别进行验证该技术是通过模拟重量曲线执行的。与以前发表的材料相比,该方法的主要优点是可以从从非饱和试样得到的重量曲线中识别出扩散系数和饱和度。长时间饱和或非菲克扩散长时间后会发生机械作用,最后将该方法应用于玻璃/环氧树脂复合材料的实验结果。结果表明,尽管复合材料中的水分扩散基本上是非菲克数的,但可以认为菲克数长达10天左右。这些数据足以检索3D扩散系数以及Fickian饱和度水平。

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