Lama Hisay, Gogoi Tonmoy, Basavaraj Madivala G, Pauchard Ludovic, Satapathy Dillip K
Soft Materials Laboratory, Department of Physics, IIT Madras, Chennai-600036, India.
Department of Chemical Engineering, IIT Madras, Chennai-600036, India.
Phys Rev E. 2021 Mar;103(3-1):032602. doi: 10.1103/PhysRevE.103.032602.
Desiccation cracks in colloidal deposits occur to release the excess strain energy arising from the competition between the drying induced shrinkage of the deposit and its adhesion to the substrate. Here we report remarkably different morphology of desiccation cracks in the dried patterns formed by the evaporation of sessile drops containing colloids on elastomer (soft) or glass (stiff) substrates. The change in the crack pattern, i.e., from radial cracks on stiff substrates to circular cracks on soft substrates, is shown to arise solely due to the variation in elasticity of the underlying substrates. Our experiments and calculations reveal an intricate correlation between the desiccation crack patterns and the substrate's elasticity. The mismatch in modulus of elasticity between the substrate and that of the particulate deposit significantly alters the energy release rate during the nucleation and propagation of cracks. The stark variation in crack morphology is attributed to the tensile or compressive nature of the drying-induced in-plane stresses.
胶体沉积物中出现干燥裂纹是为了释放由沉积物干燥诱导收缩与其对基底的附着力之间的竞争所产生的过量应变能。在此,我们报道了由含有胶体的 sessile 液滴在弹性体(软)或玻璃(硬)基底上蒸发形成的干燥图案中干燥裂纹的显著不同形态。裂纹图案的变化,即从硬基底上的径向裂纹到软基底上的圆形裂纹,被证明完全是由于下层基底弹性的变化引起的。我们的实验和计算揭示了干燥裂纹图案与基底弹性之间的复杂关联。基底与颗粒沉积物的弹性模量不匹配显著改变了裂纹成核和扩展过程中的能量释放率。裂纹形态的明显变化归因于干燥诱导的面内应力的拉伸或压缩性质。