These college students are vying to build Elon Musk's hyperloop

This team of University of Maryland students is hoping to prove it can win SpaceX’s hyperloop capsule competition and bring in a new form of transportation to life.
This team of University of Maryland students is hoping to prove it can win SpaceX’s hyperloop capsule competition and bring in a new form of transportation to life.

It may take years to see if Elon Musk’s dream of a hyperloop will lead to humans zipping between cities at hundreds of miles an hour aboard pods packed inside low-pressure tubes, but one team of college students is sure they can help lead the way there.

And starting later this month, they and 23 other teams will have a chance to prove it by competing in SpaceX’s Hyperloop Pod Competition, where they’ll send their own pod flying down a mile-long test track at the company’s headquarters in Hawthorne, California.

Meet Nemesis

The University of Maryland’s UMD Loop team showed off their entry at the school’s College Park, Md., campus Tuesday morning. Their entry, named Nemesis, consists of two parts: an aluminum frame containing all the electronic and mechanical systems, and a streamlined carbon-fiber shell atop that.

“We are at about three months building it,” explained systems lead Mike Rennie, 29, in a room at UMD’s Institute for Physical Science and Technology. He put the cost of this prototype at about $90,000 after some machining mistakes and do-overs of components like the circuit board holding the pod’s computer.

The roughly 450-pound assembly starts its journey on four sets of polyurethane wheels as it gets pushed down the hyperloop tube by the functional equivalent of the spring launcher in a pinball machine. The pod should begin levitating magnetically at about 11 mph, said his colleague Shelly Szanto, 19, and continue picking up speed rapidly until its pusher plate is free of the launcher.

UMD’s hyperloop pod will roll up to about 11 miles per hour then begin levitating via magnets.
UMD’s hyperloop pod will roll up to about 11 miles per hour then begin levitating via magnets.

“Then it’s us from there,” she said. That is, while the hyperloop concept employs a series of magnets to sling each pod down the track, the test track doesn’t provide propulsion and instead lets each pod coast.

The design speed of Nemesis is about 180 mph, although team members said they weren’t sure what would happen if it went faster. At the end of the test track, Nemesis should brake to a halt using magnets on its underside.

If the undergrads need to do some last-minute tweaks when the competition kicks off, they’ll plenty of help close by: Sponsors Northrop Grumman (NOC) and Lockheed Martin (LMT) have facilities near SpaceX’s headquarters.

Engineering challenges

The team of engineering students has been through this once before. At a hyperloop competition hosted by SpaceX in January, an earlier prototype called Prometheus placed fifth overall and finished first in the “operations” and performance category.

This time around, the contest rules specify only one goal: “maximum speed with successful deceleration (i.e. without crashing).”