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New approach to ‘cosmic magnet’ manufacturing could reduce reliance on rare earths in low-carbon technologies
The University of Cambridge ^ | 25 Oct 2022 | the University of Cambridge

Posted on 10/27/2022 12:53:06 PM PDT by Red Badger

Tetrataenite found in Nuevo Mercurio, Zacatecas, Mexico

Credit: Rob Lavinsky, iRocks.com

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Researchers have discovered a potential new method for making the high-performance magnets used in wind turbines and electric cars without the need for rare earth elements, which are almost exclusively sourced in China.

A team from the University of Cambridge, working with colleagues from Austria, found a new way to make a possible replacement for rare-earth magnets: tetrataenite, a ‘cosmic magnet’ that takes millions of years to develop naturally in meteorites.

Previous attempts to make tetrataenite in the laboratory have relied on impractical, extreme methods. But the addition of a common element – phosphorus – could mean that it’s possible to make tetrataenite artificially and at scale, without any specialised treatment or expensive techniques.

The results are reported in the journal Advanced Science. A patent application on the technology has been filed by Cambridge Enterprise, the University’s commercialisation arm, and the Austrian Academy of Sciences.

High-performance magnets are a vital technology for building a zero-carbon economy, and the best permanent magnets currently available contain rare earth elements. Despite their name, rare earths are plentiful in Earth’s crust. However, China has a near monopoly on global production: in 2017, 81% of rare earths worldwide were sourced from China. Other countries, such as Australia, also mine these elements, but as geopolitical tensions with China increase, there are concerns that rare earth supply could be at risk.

“Rare earth deposits exist elsewhere, but the mining operations are highly disruptive: you have to extract a huge amount of material to get a small volume of rare earths,” said Professor Lindsay Greer from Cambridge’s Department of Materials Science & Metallurgy, who led the research. “Between the environmental impacts, and the heavy reliance on China, there’s been an urgent search for alternative materials that do not require rare earths.”

Tetrataenite, an iron-nickel alloy with a particular ordered atomic structure, is one of the most promising of those alternatives. Tetrataenite forms over millions of years as a meteorite slowly cools, giving the iron and nickel atoms enough time to order themselves into a particular stacking sequence within the crystalline structure, ultimately resulting in a material with magnetic properties approaching those of rare-earth magnets.

In the 1960s, scientists were able to artificially form tetrataenite by bombarding iron-nickel alloys with neutrons, enabling the atoms to form the desired ordered stacking, but this technique is not suitable for mass production.

“Since then, scientists have been fascinated with getting that ordered structure, but it’s always felt like something that was very far away,” said Greer. Despite many attempts over the years, it has not yet been possible to make tetrataenite on anything approaching an industrial scale.

Now, Greer and his colleagues from the Austrian Academy of Sciences and the Montanuniversität in Leoben, have found a possible alternative that doesn’t require millions of years of cooling or neutron irradiation.

The team was studying the mechanical properties of iron-nickel alloys containing small amounts of phosphorus, an element that is also present in meteorites. The pattern of phases inside these materials showed the expected tree-like growth structure called dendrites.

“For most people, it would have ended there: nothing interesting to see in the dendrites, but when I looked closer, I saw an interesting diffraction pattern indicating an ordered atomic structure,” said first author Dr Yurii Ivanov, who completed the work while at Cambridge and is now based at the Italian Institute of Technology in Genoa.

At first glance, the diffraction pattern of tetrataenite looks like that of the structure expected for iron-nickel alloys, namely a disordered crystal not of interest as a high-performance magnet. It took Ivanov’s closer look to identify the tetrataenite, but even so, Greer says it’s strange that no one noticed it before.

The researchers say that phosphorus, which is present in meteorites, allows the iron and nickel atoms to move faster, enabling them to form the necessary ordered stacking without waiting for millions of years. By mixing iron, nickel and phosphorus in the right quantities, they were able to speed up tetrataenite formation by between 11 and 15 orders of magnitude, such that it forms over a few seconds in simple casting.

“What was so astonishing was that no special treatment was needed: we just melted the alloy, poured it into a mould, and we had tetrataenite,” said Greer. “The previous view in the field was that you couldn’t get tetrataenite unless you did something extreme, because otherwise, you’d have to wait millions of years for it to form. This result represents a total change in how we think about this material.”

While the researchers have found a promising method to produce tetrataenite, more work is needed to determine whether it will be suitable for high-performance magnets. The team are hoping to work on this with major magnet manufacturers.

The work may also force a revision of views on whether the formation of tetrataenite in meteorites really does take millions of years.

The research was supported in part by the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme and Seventh Framework Programme, and the Austrian Science Fund.

Reference:

Yurii P Ivanov et al. ‘Direct formation of hard-magnetic tetrataenite in bulk alloy castings.’ Advanced Science (2022).

DOI: 10.1002/advs.202204315

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TOPICS: Business/Economy; Computers/Internet; History; Science
KEYWORDS: physics; science

1 posted on 10/27/2022 12:53:06 PM PDT by Red Badger
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To: SunkenCiv; ShadowAce; Swordmaker; bitt; dayglored; SuperLuminal; upchuck

PING!.....................


2 posted on 10/27/2022 12:54:02 PM PDT by Red Badger (Homeless veterans camp in the streets while illegal aliens are put up in hotels.....................)
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To: Red Badger

https://onlinelibrary.wiley.com/doi/full/10.1002/advs.202204315


3 posted on 10/27/2022 12:56:19 PM PDT by Red Badger (Homeless veterans camp in the streets while illegal aliens are put up in hotels.....................)
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To: Red Badger
a ‘cosmic magnet’ that takes millions of years to develop

I think a Cosmic Midget would be much easier and a lot more fun.

Might even be profitable.

4 posted on 10/27/2022 12:59:34 PM PDT by humblegunner (Ain't drownin', Just wavin'...)
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To: humblegunner

DON'T EVER ANGER A Cosmic Midget, under ANY circumstances.................

5 posted on 10/27/2022 1:01:29 PM PDT by Red Badger (Homeless veterans camp in the streets while illegal aliens are put up in hotels.....................)
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To: Red Badger

Good luck! because there’s nowhere near enough Rare Earth Metals in the ENTIRE world to replace a fraction of the 2 billion or so passenger automobiles now in use.


6 posted on 10/27/2022 1:02:30 PM PDT by JJBookman (Democrats = Eating bugs for supper )
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To: Red Badger
And the energy required to manufacture the magnets will be provided by...


7 posted on 10/27/2022 1:05:34 PM PDT by rfp1234 (Comitia asinorum et rhinocerorum delenda sunt.)
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To: Red Badger

“The researchers say that phosphorus, which is present in meteorites, allows the iron and nickel atoms to move faster, enabling them to form the necessary ordered stacking without waiting for millions of years”

So since they admit the phosphorus is also present in the meteorites, why should we assume the process that forms this alloy in meteorites actually takes millions of years?


8 posted on 10/27/2022 1:05:59 PM PDT by Boogieman
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To: rfp1234

Gonna need bigger hamsters.....................


9 posted on 10/27/2022 1:06:59 PM PDT by Red Badger (Homeless veterans camp in the streets while illegal aliens are put up in hotels.....................)
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To: JJBookman
there’s nowhere near enough Rare Earth Metals in the ENTIRE world to replace a fraction of the 2 billion or so passenger automobiles

Yet another reason why we should shift focus to midgets.

Midgets can pull rickshaws. Wouldn't that be fun?

For long distances, you could have way-stations where you
get fresh midgets just like Pony Express. Except with midgets.

Midgets are green energy if you feed 'em carrots and spinach.

They LOVE that stuff.

10 posted on 10/27/2022 1:13:28 PM PDT by humblegunner (Ain't drownin', Just wavin'...)
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To: Red Badger

He’ll fire a round and knock himself out. I’ll keep the gun and sell the midget to the Libyans. Win win.


11 posted on 10/27/2022 1:24:19 PM PDT by dljordan
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To: humblegunner

“For long distances, you could have way-stations where you
get fresh midgets just like Pony Express. Except with midgets.”

I can see them waiting at the way station in their harness, tiny little feet pawing the earth ready to go.


12 posted on 10/27/2022 1:25:53 PM PDT by dljordan
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To: Red Badger

Rare Earths are not uncommon. But to refine them requires a series of over 20 acid baths that dissolve and precipitate solids.

Only the Chinese are willing to work with those dangerous pollutants at scale.


13 posted on 10/27/2022 1:27:09 PM PDT by MMusson
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To: dljordan

Anybody remember John Astin as Evil Roy Slade?

“Look, boss, midgets!”
“Aim for their tiny hearts.”


14 posted on 10/27/2022 1:31:11 PM PDT by HartleyMBaldwin
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To: Red Badger

Looks promising.


15 posted on 10/27/2022 1:47:24 PM PDT by marktwain
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To: HartleyMBaldwin

LOL!!!


16 posted on 10/27/2022 2:44:11 PM PDT by dljordan
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To: Red Badger

I’ll make them obsolete when I get my monopole magnets in production... I just need a few billion in tax payer dollars to get going.


17 posted on 10/27/2022 2:49:09 PM PDT by Organic Panic (Democrats. Memories as short as Joe Biden's eyes.)
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To: humblegunner

https://www.youtube.com/watch?v=Pehsws6QYEo


18 posted on 10/27/2022 3:46:30 PM PDT by telescope115 (Proud member of the ANTIFAuci movement. )
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