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Shear Banding in Drying Films of Colloidal Nanoparticles

机译:胶态纳米颗粒干燥膜的剪切带

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摘要

Drying suspensions of colloidal nanoparticles exhibit a variety of interesting strain release mechanisms during film formation. These result in the selection of characteristic length scales during failure processes such as cracking and subsequent delamination. A wide range of materials (e.g., bulk metallic glasses) release strain through plastic deformations which occur in a narrow band of material known as a shear band. Here we show that drying colloidal films also exhibit shear banding. Bands are observed to form a small distance behind the drying front and then to propagate rapidly at 45 to the direction of drying. It is shown that the spacing of the bands depends on salt concentration and the evaporation rate of the colloidal suspension. These combined observations suggest that there is a critical shear rate (related to the film yield stress) which controls the ratio of bandwidth to band spacing. Local deformations were measured in the early stages of drying using fluorescent tracer particles. The measurements were used to show that the existence of shear bands is linked to the compaction of particles perpendicular to the drying front. The spacing of shear bands was also found to be strongly correlated with the characteristic length scale of the compaction process. These combined studies elucidate the role of plastic deformation during pattern formation in drying films of colloidal nanoparticles.
机译:胶体纳米颗粒的干燥悬浮液在成膜过程中表现出多种有趣的应变释放机制。这些导致在破坏过程(例如开裂和随后的分层)过程中选择特征长度尺度。各种各样的材料(例如,块状金属玻璃)通过塑性变形释放应变,塑性变形发生在称为剪切带的窄带材料中。在这里,我们表明干燥的胶体薄膜也表现出剪切带。观察到条带在干燥前沿的后面形成一小段距离,然后在45处迅速向干燥方向传播。结果表明,条带的间距取决于盐浓度和胶体悬浮液的蒸发速率。这些综合的观察结果表明,存在一个临界剪切速率(与薄膜屈服应力有关),该临界剪切速率控制带宽与带间距的比率。在干燥的早期使用荧光示踪剂颗粒测量了局部变形。测量结果表明剪切带的存在与垂直于干燥前沿的颗粒的压实有关。还发现剪切带的间距与压实过程的特征长度尺度密切相关。这些综合研究阐明了胶体纳米颗粒干燥膜中图案形成过程中塑性变形的作用。

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