Pipe crawling snake robot is a masterpiece of a senior project

Here’s an oldie but a goodie: [Eiki], [Mark], and [Sheraz] built a pipe crawling robot for their senior engineering project at Florida Atlantic University way back in 2004. Despite being a rather old build, its aged well and still demonstrates the clever ways the guys overcame some engineering obstacles.

The original plan for the pipe crawler was to mount three spring-loaded wheels 120° apart at the fore and aft of each robot section. Six independent wheels for each section of the robot is overly complex, and too much for a single operator to control; the team moved on to a ‘screw drive’ system where each wheel is canted forward a few degrees. This drive system propels the snakebot along by simply spinning, although it does bring in a few challenges all its own.

The robot had separate sections consisting to house a motor, camera, and electronics, so a way to pass wires through a rotating shaft was needed. This came in the form of a few pairs of incredibly small ball bearings around a hollow shaft. After the mechanical portion of the build was finished, the team moved on to the electronic part where an IMU was built out of three small gyroscope sensors mounted perpendicularly to each other.

Sadly, there are no videos of the inside of a sewage pipe from the pipe crawler’s point of view, but YouTube wasn’t launched until a year after this project was finished.

http://eikimartinson.com/engineering/pipe/

Project Octopus

You know who thinks building a robotic octopus is an awesome idea? EVERYONE. Apparently the idea is a solid enough idea that the European Commision has funded this project. The goal is to mimic the capabilities of the squishiest of the cephalopods in order to advance soft robotics. Or possibly to take over the world.  They are hoping to have a fully capable robot octopus with no rigid structures at all.

You may be thinking that making a squirming tentacle is easy business. What they are attempting however, is the actual movement of an octopus including extension/contraction as well as grasping. This requires a complex system of control wires as well as “artificial muscular hydrostats” to allow it to do all these movements. A flexible skin covered in sensors will be added to the final design.

There's more than meets the eye to this robot car

This is a robot that any Transformers enthusiast will love. Sure, the car looks just a bit boxy, but you’ll forget all about that when you see it unfold into a bipedal robot (translated). [Zak Sawa] is responsible for the creation. He pull off the build using 22 servo motors which let the car transform, and provide the somewhat awkward ability to walk. Fold it back up again and the car can drive away. In other words, here’s the Transformers toy that you always wanted; radio controled and it actually works!

This is the result of about four years of work. Apparently it’s the eighth iteration, and a note on the video after the break teases a ninth version on the way. It’s not just the robot that looks great, check out the carrying case that houses it for storage.

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[Jaimie's] Giant Hexapod project

Warning, this may be a duplicate post. We all agree we’ve seen this before, but can’t find it in our archive. If it is, sorry. If it isn’t enjoy one of the most awesome projects we’ve seen in a long time.

Meet [Jaimie Mantzel] an eccentric, and very hyper, individual. He’s done many projects, but this one in particular stands out as being quite ambitious. [Jaimie] is building a giant hexapodal walker that he can ride in. Dubbed simply “Giant Robot”, the 12 foot tall and 18 foot wide robot began construction in 2007. This individual is so full of energy, you’ll get tired just watching his videos. We’ve included, below, his introduction video as well as the video where his giant robot takes its first steps. Note that there are 67 videos of the build process. Unfortunately, as of the last video in January 2011, the robot is unfinished.

Don’t worry though, we know [Jaimie] is still alive. We saw him recently coming up with cool toy ideas.

If this has left you with an insatiable craving for a video of a fully functional giant walking hexapod octopod, don’t forget about mondo spider.

[Thanks Kamil]

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Meet Stompy, your new robotic overlord

In case you weren’t already depressed about not starting a summer project already, a couple of guys are building a gigantic rideable hexapod they call Stompy.

The project leaders, [Gui Cavalcanti], [Dan Cody], and [James Whong] have worked on a few crazy robotics projects before like PETMAN and BigDog. Stompy won’t be a military-backed project like the others (we sincerely hope), so they’re enlisting the help of fellow makers at Artisan’s Asylum to complete a 15-foot diameter, 1-2 ton rideable hexapod before the end of August.

Right now, the team is still in the planning and preliminary testing stages. So far, they’ve built a 1/2 scale model of one leg to figure out the control systems, and getting the repurposed forklift motor up and running. It may not look like much now, but we’re sure the team is going to have a very fun time building Stompy.

You can check out the updates and progress of Stompy on the Project Hexapod blog

Land ROV is Internet connected and packed full of stuff

[Blair Kelly] has always been interesting in the concept of Remote Operated Vehicles. As soon as he got his hands on an Arduino he began his endeavor to turn an RC vehicle into a land-based ROV. What he’s done so far is incredible.

Here he’s showing off features of the build using a PS3 controller. But it can also take commands from an Xbox 360 controller or an arcade-style steering wheel. We like the latter the best, which is shown off at about six and a half minutes into the video (embedded after the break). Since there’s a webcam on board, this ends up being a virtual cockpit for the pint-sized car. But it gets better. That webcam is mounted on a servo motor, and [Blair] included controls that pan the camera. This lets the driver ‘look’ left and right. On the front of the vehicle there’s an accelerometer. Data is collected by the Arduino and sent via the WiFly module. This adds rumble to the controller if you’re using one that has that ability.

It’s a big project already, but it sounds like [Blair] has not end of ideas for future versions. Right now he’s planning to increase the overall size which will let him explore places that aren’t as flat as his livingroom.

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