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Tackiness and cohesive failure of granular pastes: Mechanistic aspects

机译:颗粒状糊料的粘性和内聚破坏:机械方面

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Granular pastes are dense dispersions of non-colloidal grains in a simple or a complex fluid. Typical examples are the coating, gluing or sealing mortars used in building applications. We study the rupture of a thick layer of mortar paste in a simple pulling test where the paste is confined between two flat surfaces. It is shown that, depending on the rheological properties of the paste and the plate separation velocity, two main failure modes are obtained. The first mode is the inwards shear flow of the paste with viscous fingering instabilities, similarly to what has been observed with Newtonian fluids and with non-Newtonian colloidal suspensions or polymer solutions. The second failure mode is stemming from the expansion of bubbles, similarly to what has been observed in soft adhesive polymer layers and, more recently, in highly viscous fluids. It is shown that the crossover between the two failure modes is determined by the conditions required to generate a pressure drop able to trigger the growth of pre-existing microbubbles smaller than the inter-granular distance.
机译:颗粒状糊剂是非胶体颗粒在简单或复杂流体中的密集分散体。典型的例子是建筑应用中使用的涂料,胶合或密封砂浆。我们在一个简单的拉力试验中研究了厚厚的砂浆浆层的破裂,该试验将浆浆限制在两个平坦的表面之间。结果表明,取决于浆料的流变性质和板分离速度,获得了两种主要的破坏模式。第一种模式是具有粘性指状不稳定性的糊料的向内剪切流动,类似于牛顿流体和非牛顿胶体悬浮液或聚合物溶液所观察到的情况。第二种失效模式是由于气泡的膨胀,类似于在柔软的粘合剂聚合物层以及最近在高粘性流体中所观察到的。结果表明,两种失效模式之间的交叉是由产生压降所需的条件决定的,该压降能够触发小于晶粒间距离的预先存在的微气泡的生长。

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