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System-spanning dynamically jammed region in response to impact of cornstarch and water suspensions

机译:系统跨越动态卡住的区域,响应玉米淀粉和水悬浮液的影响

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摘要

We experimentally characterize the structure of concentrated suspensions of cornstarch and water in response to impact. Using surface imaging and particle tracking at the boundary opposite the impactor, we observed that a visible structure and particle flow at the boundary occur with a delay after impact.We show the delay time is about the same time as the strong stress response, confirming that the strong stress response results from deformation of the dynamically jammed structure once it spans between the impactor and a solid boundary. A characterization of this strong stress response is reported in a companion paper [Maharjan,Mukhopadhyay, Allen, Storz, and Brown, Phys. Rev. E 97, 052602 (2018)]. We observed particle flow in the outer part of the dynamically jammed region at the bottom boundary, with a net transverse displacement of up to about 5% of the impactor displacement, indicating shear at the boundary. Direct imaging of the surface of the outer part of the dynamically jammed region reveals a change in surface structure that appears the same as the result of dilation in other cornstarch suspensions. Imaging also reveals cracks, like a brittle solid. These observations suggest the dynamically jammed structure can temporarily support stress according to an effective modulus, like a soil or dense granular material, along a network of frictional contacts between the impactor and solid boundary.
机译:我们在响应撞击时实验表征玉米淀粉和水浓缩悬浮液的结构。在与冲击器相对的边界处使用表面成像和颗粒跟踪,我们观察到在撞击后延迟发生边界的可见结构和颗粒流量。我们显示延迟时间大致与强应力响应的强大应力响应大致相同,确认一旦它在撞击器和固体边界之间跨越动态卡住的结构,强应力反应就会产生强力应力响应。在伴侣论文[Maharjan,Mukhopadhyay,Allen,Storz和Brown,Phys。 Rev. E 97,052602(2018)]。我们观察到底部边界处的动态干扰区域的外部部分中的颗粒流,近似横向位移高达约5%的冲击器位移,在边界处表示剪切。动态堵塞区域的外部表面的直接成像显示出表面结构的变化,其与其他玉米淀粉悬浮液中的扩张结果相同。成像还揭示了裂缝,如脆性固体。这些观察结果表明动态卡住的结构可以根据撞击器和实体边界之间的摩擦接触网络暂时支撑压力,如土壤或致密的颗粒材料。

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