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Role of particle shape anisotropy on crack formation in drying of colloidal suspension

机译:颗粒形状各向异性对胶体悬浮液干燥过程中裂纹形成的作用

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Cracks in a colloidal film formed by evaporation induced drying can be controlled by changing drying conditions. We show, for the first time that the crack morphologies in colloidal films are dependent on shape of constituting particles apart from the microstructure and particle assembly. In order to investigate the particle shape effect on crack patterns, monodispered spherical and ellipsoidal particles are used in sessile drop experiments. On observing the dried sessile drop we found cracks along the radial direction for spherical particle dispersions and circular crack patterns for ellipsoidal particle dispersions. The change in crack pattern is a result of self assembly of shape anisotropic particles and their ordering. The ordering of particles dictate the crack direction and the cracks follow the path of least resistance to release the excess stress stored in the particle film. Ellipsoids having different aspect ratio (~3 to 7) are used and circular crack patterns are repeatedly observed in all experiments.
机译:可以通过改变干燥条件来控制由蒸发诱导的干燥形成的胶体膜中的裂纹。我们首次表明,胶体膜中的裂纹形态除了微观结构和颗粒组装以外,还取决于构成颗粒的形状。为了研究颗粒形状对裂纹模式的影响,在无滴试验中使用了单分散的球形和椭圆形颗粒。通过观察干燥的无柄水滴,我们发现球形颗粒分散体沿径向出现裂纹,而椭圆形颗粒分散体沿圆形出现裂纹。裂纹模式的变化是形状各向异性颗粒自组装及其有序的结果。颗粒的顺序决定了裂纹的方向,并且裂纹遵循最小的阻力路径释放出存储在颗粒膜中的多余应力。使用具有不同长宽比(〜3至7)的椭球体,并且在所有实验中都反复观察到圆形裂纹图案。

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