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A self-fueled liquid metal motor

newscientist.com

11–14 of 14 posts

Re: A self-fueled liquid metal motor

#11
This was posted the other day, but surprisingly sank unnoticed. Here's a repost of the comment I left then:

O.o The micro pumping and capillary action are extremely interesting, but seeing how it deforms in response to an electrical current is just eye-popping. Naturally I want to see what happens if you send AC signals rather than static DC...at the least I would expect something similar to the behavior of ferrofluids on a speaker cone, eg https://vimeo.com/65815077 or even suspensions of cornstarch: https://www.youtube.com/watch?v=dS9LNBQE2Jw which has a handy how-to at the end. The supplementary material is available free even though the article is paywalled and is a great read. http://onlinelibrary.wiley.com/doi/10.1002/adma.201405438/su.... The alloy is described here: https://gmwgroup.harvard.edu/pubs/pdf/1014.pdf According to the supplementary, the aluminum flake 'fuel' is not consumed but breaks up into tiny fragments and eventually diffuses to the surface, causing the reaction to tail off. This seems like fairly fundamental research.

Re: A self-fueled liquid metal motor

#13

This was posted the other day, but surprisingly sank unnoticed. Here's a repost of the comment I left then: O.o The micro pumping and capillary action are extremely interesting, but seeing how it deforms in response to an electrical current is just eye-popping. Naturally I want to see what happens if you send AC signals rather than static DC...at the least I would expect something similar to the behavior of ferroflui…

The shape it makes when electricity passes through it reminds me more of Lichtenberg figures: http://www.wikiwand.com/en/Lichtenberg_figure

Re: A self-fueled liquid metal motor

#14
post #13

This was posted the other day, but surprisingly sank unnoticed. Here's a repost of the comment I left then: O.o The micro pumping and capillary action are extremely interesting, but seeing how it deforms in response to an electrical current is just eye-popping. Naturally I want to see what happens if you send AC signals rather than static DC...at the least I would expect something similar to the behavior of ferroflui…

The shape it makes when electricity passes through it reminds me more of Lichtenberg figures: http://www.wikiwand.com/en/Lichtenberg_figure

Oh definitely, that's what I'd expect when you just pump electrons in it with DC. But alternating current should lead to interference patterns of some sort.
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