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首页> 外文期刊>Advances in colloid and interface science >Surface hydrodynamics of viscoelastic fluids and soft solids: Surfing bulk rheology on capillary and Rayleigh waves
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Surface hydrodynamics of viscoelastic fluids and soft solids: Surfing bulk rheology on capillary and Rayleigh waves

机译:粘弹性液和软固体的表面流体动力学:毛细管和瑞利波冲浪散装流变学

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AbstractFrom the recent advent of the new soft-micro technologies, the hydrodynamic theory of surface modes propagating on viscoelastic bodies has reinvigorated this field of technology with interesting predictions and new possible applications, so recovering its scientific interest very limited at birth to the academic scope. Today, a myriad of soft small objects, deformable meso- and micro-structures, and macroscopically viscoelastic bodies fabricated from colloids and polymers are already available in the materials catalogue. Thus, one can envisage a constellation of new soft objects fabricated by-design with a functional dynamics based on the mechanical interplay of the viscoelastic material with the medium through their interfaces. In this review, we recapitulate the field from its birth and theoretical foundation in the latest 1980s up today, through its flourishing in the 90s from the prediction of extraordinary Rayleigh modes in coexistence with ordinary capillary waves on the surface of viscoelastic fluids, a fact first confirmed in experiments by Dominique Langevin and me with soft gels [Monroy and Langevin, Phys. Rev. Lett. 81, 3167 (1998)]. With this observational discovery at sight, we not only settled the theory previously formulated a few years before, but mainly opened a new field of applications with soft materials where the mechanical interplay between surface and bulk motions matters. Also, new unpublished results from surface wave experiments performed with soft colloids are reported in this contribution, in which the analytic methods of wave surfing synthetized together with the concept of coexisting capillary-shear modes are claimed as an integrated tool
机译:<![cdata [ 抽象 从最近的新软微型技术出现,表面模式的流体动力学理论在粘弹性体上传播随着有趣的预测和新的可能应用,重新发明了这一技术领域,因此在出生时恢复其科学兴趣非常有限。今天,材料目录中已经提供了一种无数的软矮小物体,可变形的中间和微结构,以及由胶体和聚合物制造的宏观粘弹性体。因此,可以通过基于粘弹性材料与介质的机械相互作用,设想旁观设计制造的新软物质的星座。在这篇综述中,我们在今天的最新20世纪80年代推出了该领域,通过其在90年代的繁荣中,从粘弹性液面上与普通毛细管共存的非凡瑞利模式的预测,这是首先在Dominique Langevin和Me的实验中确认了软凝胶[蒙罗伊和Langevin,Phys。 rev. lett。 81,3167(1998)]。通过这种观察性发现,我们不仅结算了前几年前方的理论,而且主要开设了一种新的应用领域,柔软的材料,表面和散装运动之间的机械相互作用。此外,在该贡献中报告了用软胶体进行的表面波实验的新未发表的结果,其中将与共存毛细管 - 剪切模式的概念合成的波浪冲浪的分析方法称为集成工具

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