SUMMARYResearchers at the Max Planck Institute for Polymer Research found that water droplets can carry electrical charge large enough to damage insulating coatings on surfaces. The study, led by Zhongyuan Ni, Rüdiger Berger, and Hans-Jürgen Butt in Mainz, Germany, examined “slide electrification,” in which moving drops can reach voltages up to 9,000 volts. The finding helps explain an additional mechanism behind corrosion on painted, plastic, and other protected materials.

Raindrops are tiny lightning bolts, and they’re corroding cars, study finds
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arstechnica.com

The standard explanation for why rain causes corrosion is that water carries dissolved salts and acids to a surface, constant drumming of raindrops abrades whatever protective coating is on it, and oxygen does the rest. Nearly all our tools to prevent this—paints, polymer films, or oxide layers—are built around this idea. But we’ve apparently been missing something important about the rain.

A new study led by Zhongyuan Ni, Rüdiger Berger, and Hans-Jürgen Butt at the Max Planck Institute for Polymer Research in Mainz, Germany, has shown that water drops routinely arrive at a surface carrying an electrical charge large enough to punch through an insulating coating. Not scratch it. Not slowly dissolve it. Electrically blow a hole in it, the way a spark jumps a gap.

Charged rain

The starting point of the study is a phenomenon called "slide electrification," which has only been properly quantified in the past few years. When a water drop slides across an insulating surface like a leaf, a painted wall, a windowpane, or a plastic panel, it strips charge from that surface and leaves an opposing charge behind. The voltages involved are not trivial. Drops charged this way have been measured at up to 9,000 volts.

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