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Shear with comminution of a granular material: Microscopic deformations outside the shear band - art. no. 011304

机译:切碎的颗粒状材料:剪切带外的微观变形-艺术。没有。 011304

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摘要

A correlation imaging velocimetry technique is applied to recover displacement fields in a granular material subjected to extended shear. A thick (10 cm) annular sand sample (grain size: 1 mm) is confined at constant pressure (sigma=0.5 MPa) against a rough moving wall displacing at very low speed (delta=83 mum s(-1)). Localization of the strain rapidly forms a shear band (seven particles wide) in which comminution develops. We focused on the strain field outside this shear band and observed a rich dynamics of large and intermittent mechanical clusters (up to 50 particles wide). Quantitative description of the radial velocity profile outside the shear band reveals an exponential decrease. However, a significant slip evolution of the associated characteristic length is observed, indicative of a slow decoupling between the shear band and the rest of the sample. This slow evolution is shown to be well described by power laws with the imposed slip, and has important implications for friction laws and earthquake physics. [References: 23]
机译:相关成像测速技术被应用于恢复颗粒材料在扩展剪切作用下的位移场。将厚(10厘米)的环形砂样品(粒度:1 mm)以恒定的压力(sigma = 0.5 MPa)限制在以极低的速度(δ= 83 ms(-1))移动的粗糙移动壁上。应变的局部迅速形成剪切带(七个颗粒宽),在其中产生粉碎。我们专注于该剪切带以外的应变场,并观察到了大型且间歇性机械簇(最多50个粒子宽)的丰富动态。剪切带外的径向速度分布的定量描述揭示了指数下降。但是,观察到相关特征长度的明显滑移演变,表明剪切带与样品其余部分之间的缓慢解耦。这种缓慢的演变已被幂定律和所施加的滑移很好地描述,并且对摩擦定律和地震物理具有重要意义。 [参考:23]

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