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Granular rheology: measuring boundary forces with laser-cut leaf springs

机译:粒状流变学:用激光切割弹簧测量边界力

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摘要

In granular physics experiments, it is a persistent challenge to obtain the boundary stress measurements necessary to provide full a rheological characterization of the dynamics. Here, we describe a new technique by which the outer boundary of a 2D Couette cell both confines the granular material and provides spatially- and temporally- resolved stress measurements. This key advance is enabled by desktop laser-cutting technology, which allows us to design and cut linearly-deformable walls with a specified spring constant. By tracking the position of each segment of the wall, we measure both the normal and tangential stress throughout the experiment. This permits us to calculate the amount of shear stress provided by basal friction, and thereby determine accurate values of μ(I).
机译:在粒状物理实验中,获得持续存在的挑战,以获得提供充分的动态流变特征所需的边界应力测量。这里,我们描述了一种新技术,通过该技术,通过该技术,通过该技术,2D槽电池的外边界都限制了颗粒材料并提供了空间和时间分辨的应力测量。桌面激光切割技术启用了此键进展,使我们能够设计和切割具有指定弹簧常数的线性可变形墙壁。通过追踪墙壁的每个段的位置,我们在整个实验中测量正常和切向应力。这允许我们计算由基础摩擦提供的剪切应力量,从而确定精确的μ(i)的值。

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