首页> 外文期刊>The European physical journal, E. Soft matter >Wrinkling number and force of a particle raft in compression
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Wrinkling number and force of a particle raft in compression

机译:压缩中粒子筏的皱纹数量和力量

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A particle raft is formed by a layer of small particles floating on a water surface, which has a higher load bearing capacity than pure water. In the present work, we have made a comprehensive study on the wrinkling number and force of the particle raft in planar compression. The wrinkling number during the whole loading process is measured, accompanied with snapshots on the morphologies of the particle raft. The force-displacement curve is given based on the loading system, which has been validated by the numerical simulation. Moreover, the experiment and theoretical results both show that the equivalent Young's modulus is dependent upon the loading displacement. Finally, the maximum wrinkling number of the raft has been analyzed by the scaling law, which agrees well with the experimental result. These findings have deepen our understandings on the mechanical properties of soft materials, which also hold implications on drug delivery, chemical engineering, micro-fluidics, environment protection, petroleum exploitation, mineral flotation, etc.
机译:粒子筏由漂浮在水面上的小颗粒层形成,该水表面具有比纯水更高的承载能力。在目前的工作中,我们对平面压缩中的粒子筏的皱纹数量和力进行了全面的研究。测量整个装载过程中的皱纹数量,伴随着粒子筏的形态的快照。基于负载系统给出了力 - 位移曲线,该装载系统已经通过数值模拟验证。此外,实验和理论结果既表明相同的杨氏模量取决于装载位移。最后,通过缩放法律分析了筏的最大皱纹数量,这与实验结果很好。这些调查结果深化了我们对软材料的力学性质的理解,这也对药物交付,化学工程,微流体,环境保护,石油开采,矿物浮选等产生影响。

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