材料科学
开裂
刚度(电磁)
复合材料
毛细管作用
胶体
陶瓷
涂层
毛细管压力
多孔介质
化学工程
多孔性
工程类
作者
Karnail B. Singh,Mahesh S. Tirumkudulu
标识
DOI:10.1103/physrevlett.98.218302
摘要
It has long been known that thick films of colloidal dispersions such as wet clays, paints, and coatings crack under drying. Although capillary stresses generated during drying have been recently identified as the cause for cracking, the existence of a maximum crack-free film thickness that depends on particle size, rigidity, and packing has not been understood. Here, we identify two distinct regimes for crack-free films based on the magnitude of compressive strain at the maximum attainable capillary pressure and show remarkable agreement of measurements with our theory. We anticipate our results to not only form the basis for design of coating formulations for the paints, coatings, and ceramics industry but also assist in the production of crack-free photonic band gap crystals.
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