It's harder to splash on soft solids
arXiv:1511.06212 · doi:10.1103/PhysRevLett.117.184502
Abstract
Droplets splash when they impact dry, flat substrates above a critical velocity that depends on parameters such as droplet size, viscosity and air pressure. By imaging ethanol drops impacting silicone gels of different stiffnesses we show that substrate stiffness also affects the splashing threshold. Splashing is reduced or even eliminated: droplets on the softest substrates need over 70\% more kinetic energy to splash than they do on rigid substrates. We show that this is due to energy losses caused by deformations of soft substrates during the first few microseconds of impact. We find that solids with Young's moduli kPa reduce splashing, in agreement with simple scaling arguments. Thus materials like soft gels and elastomers can be used as simple coatings for effective splash prevention. Soft substrates also serve as a useful system for testing splash-formation theories and sheet-ejection mechanisms, as they allow the characteristics of ejection sheets to be controlled independently of the bulk impact dynamics of droplets.
5 pages, 4 figures
References in corpus (8)
- Drop Splashing on a Dry Smooth Surface
- Stiffening solids with liquid inclusions
- Liquid drop splashing on smooth, rough and textured surfaces
- Kelvin Helmholtz instability in an ultrathin air film causes drop splashing on smooth surfaces
- Drop impact on a solid surface: short time self-similarity
- How micropatterns and air pressure affect splashing on surfaces
- Granular impact cratering by liquid drops: Understanding raindrop imprints through an analogy to asteroid strikes
- Raindrop impact on sand: a dynamic explanation of crater morphologies
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- Introducing pre-impact air-cushioning effects into the Wagner model of impact theory
- High-speed photoelastic tomography for axisymmetric stress fields in a soft material: temporal evolution of all stress components
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- Droplet settling on solids coated with a soft layer
- Pre-impact dynamics of a droplet impinging on a deformable surface
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- Birth of a bubble: Drop impact onto a thin liquid film for an immiscible three-fluid system
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- Drop Impact Dynamics of Complex Fluids: A Review
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