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首页> 外文期刊>International Journal of Fracture >Crack patterns obtained by unidirectional drying of a colloidal suspension in a capillary tube: experiments and numerical simulations using a two-dimensional variational approach
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Crack patterns obtained by unidirectional drying of a colloidal suspension in a capillary tube: experiments and numerical simulations using a two-dimensional variational approach

机译:通过单向干燥毛细管中的胶体悬浮液而获得的裂纹图案:使用二维变分方法的实验和数值模拟

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摘要

Basalt columns, septarias, and mud cracks possess beautiful and intriguing crack patterns that are hard to predict because of the presence of cracks intersections and branches. The variational approach to brittle fracture provides a mathematically sound model based on minimization of the sum of bulk and fracture energies. It does not require any a priori assumption on fracture patterns and can therefore deal naturally with complex geometries. Here, we consider shrinkage cracks obtained during unidirectional drying of a colloidal suspension confined in a capillary tube. We focus on a portion of the tube where the cross-sectional shape cracks does not change as they propagate. We apply the variational approach to fracture to a tube cross-section and look for two-dimensional crack configurations minimizing the energy for a given loading level. We achieve qualitative and quantitative agreement between experiments and numerical simulations using a regularized energy (without any assumption on the cracks shape) or solutions obtained with traditional techniques (fixing the overall crack shape a priori). The results prove the efficiency of the variational approach when dealing with crack intersections and its ability to predict complex crack morphologies without any a priori assumption on their shape.
机译:玄武岩柱,septarias和泥浆裂缝具有美丽而有趣的裂缝模式,由于存在裂缝相交和分支,很难预测。脆性断裂的变分方法基于最小的体积和断裂能之和提供了数学上合理的模型。它不需要对断裂模式进行任何先验假设,因此可以自然地处理复杂的几何形状。在这里,我们考虑在单向干燥限制在毛细管中的胶体悬浮液过程中获得的收缩裂纹。我们将重点放在管子的横截面形状裂纹在传播时不会改变的部分上。我们将变分方法应用于管横截面的断裂,并寻找二维裂纹构造,以在给定的载荷水平下将能量最小化。我们使用正则化的能量(不对裂纹形状进行任何假设)或使用传统技术获得的解决方案(先确定整体裂纹形状)在实验和数值模拟之间达成定性和定量的协议。结果证明了变分方法在处理裂纹交点时的效率以及预测复杂裂纹形态的能力,而无需对其形状进行任何先验假设。

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