An electric motor that does not need expensive rare-earth magnets
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Re: An electric motor that does not need expensive rare-earth magnets
#2Thanks.
Re: An electric motor that does not need expensive rare-earth magnets
#3Wikipedia:
> Although it belongs to the rare earth metals, neodymium is not rare at all.
Re: An electric motor that does not need expensive rare-earth magnets
#4Oh wait, that would make them rare-mars metals...
Re: An electric motor that does not need expensive rare-earth magnets
#5'rare-earth' does not mean 'rare' Wikipedia: > Although it belongs to the rare earth metals, neodymium is not rare at all.
Re: An electric motor that does not need expensive rare-earth magnets
#6Induction motors have long been in existence and they achieve the same goals too. In fact, many popular automotive companies still use Induction motors in their cars (Eg.Tesla). What makes these switch reluctance motors attractive over the induction motors , then? Could someone please clarify?? Thanks.
Re: An electric motor that does not need expensive rare-earth magnets
#7'rare-earth' does not mean 'rare' Wikipedia: > Although it belongs to the rare earth metals, neodymium is not rare at all.
http://web.mit.edu/newsoffice/2012/rare-earth-alternative-en... http://www.rtcc.org/sei-scarcity-of-metals-could-hamper-low-...
Re: An electric motor that does not need expensive rare-earth magnets
#8I wonder how this works: The motor requires a control system anticipating how it moves to keep it running. But when used as a dynamo, it's the inverse, something else makes it rotate. Does the control system go to a different mode here?
Re: An electric motor that does not need expensive rare-earth magnets
#9Re: An electric motor that does not need expensive rare-earth magnets
#10"Despite that, it can still act as a generator when slowing down, as permanent-magnet motors do in electric cars." I wonder how this works: The motor requires a control system anticipating how it moves to keep it running. But when used as a dynamo, it's the inverse, something else makes it rotate. Does the control system go to a different mode here?
I assume that the operation of the switched reluctance motor covered in the article is similar.