Splashing Onset

Splashing onset is the transition at which a liquid impacting a solid surface stops depositing smoothly and begins ejecting secondary droplets. It occurs when the impact dynamics overcome the liquid’s ability to remain attached, with inertia, viscosity, surface tension, impact speed, and surface condition influencing the threshold. In engineering, characterizing splashing onset helps predict and control droplet behavior in spray coating, inkjet printing, additive manufacturing, cooling systems, and industrial fluid handling. Understanding this transition supports more uniform surface coverage, reduced material loss, improved process efficiency, and safer management of high-speed liquid impacts.

Splashing Onset - Related Videos

Research

JoVE Journal - Medicine

The Use of Thermal Infra-Red Imaging to Detect Delayed Onset Muscle Soreness

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Cited by 110 •

2012

The purpose of this investigation was to assess whether using an infra-red thermal camera is a valid tool for detecting and quantifying the muscle soreness after exercising.

Research

JoVE Journal - Neuroscience
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A Magnetic Resonance Imaging Protocol for Stroke Onset Time Estimation in Permanent Cerebral Ischemia

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Cited by 17 •

2017

A protocol for stroke onset time estimation in a rat model of stroke exploiting quantitative magnetic resonance imaging (qMRI) parameters is described. The procedure exploits diffusion MRI for delineation of the acute stroke lesion and quantitative T1 and T2 (qT1 and qT2) relaxation times for timing of stroke.

Determination of Reproductive Competence by Confirming Pubertal Onset and Performing a Fertility Assay in Mice and Rats

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Cited by 42 •

2018

Many treatments and genetic mutations impact the timing of sexual maturity and fertility. This protocol describes a non-invasive method to evaluate pubertal onset in mice and rats prior to setting up a fertility study in sexually mature animals.

Utilizing High Resolution Ultrasound to Monitor Tumor Onset and Growth in Genetically Engineered Pancreatic Cancer Models

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Cited by 18 •

2018

This article describes the utilization of high-resolution ultrasound in genetically engineered pancreatic cancer mice. The primary aim is to provide a detailed instruction for detection and evaluation of endogenous pancreatic tumors.

Fast Imaging Technique to Study Drop Impact Dynamics of Non-Newtonian Fluids

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Cited by 2 •

2014

Drop impact of non-Newtonian fluids is a complex process since different physical parameters influence the dynamics over a very short time (less than one tenth of a millisecond). A fast imaging technique is introduced in order to characterize the impact behaviors of different non-Newtonian fluids.

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