Berkeley CSUA MOTD:Entry 49851
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2024/11/22 [General] UID:1000 Activity:popular
11/22   

2008/4/29-5/4 [Science/GlobalWarming, Computer/HW/Printer] UID:49851 Activity:nil
4/29    http://computerworld.co.nz/news.nsf/tech/2F5C3C5D68A380EDCC257423006E71CD
        http://reprap.org/bin/view/Main/WebHome
        (Open source, low cost 3d printer that can replicate all parts
        necessary to build a copy of itself). -- ilyas
        \_ This is a really cool project. Will they someday also print the
           circuit boards they need to run it?
2024/11/22 [General] UID:1000 Activity:popular
11/22   

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computerworld.co.nz/news.nsf/tech/2F5C3C5D68A380EDCC257423006E71CD
Of biofuels and biodiversity Here's a good round-up of the biofuels debate. There's been a lot on this recently and I've also read good things about Times' opinionated coverage "The clean energy scam", which I haven't read yet. Sign up now Based in the Waitakeres, in West Auckland, software developer and artist Vik Olliver is part of a team developing an open-source, self-copying 3D printer. RepRap (Replicating Rapid-prototyper) printer can replicate and update itself. It can print its own parts, including updates, says Olliver, who is one of the core members of the RepRap team. The 3D printer works by building components up in layers of plastic, mainly polylactic acid (PLA), which is a bio-degradable polymer made from lactic acid. The technology already exists, but commercial machines are very expensive. They also can't copy themselves, and they can't be manipulated by users, says Olliver. The team, which is spread over New Zealand, the UK and the US, develops and gives away the designs for its much cheaper machine, which also has self-copying capabilities. It wants to make the machine available to anybody -- including small communities in the developing world, as well as people in the developed world, says Olliver. Accordingly, the RepRap machine is distributed, at no cost, under the GNU (General Public Licence). RepRap's open-source project aims to keep on improving the machine. Improvements will go back to users and, in this way, the machine as a whole evolves, he says. The device Olliver is creating now will probably bear very little resemblance to the device that will appear on everybody's desks in the future, he says. "We want to make sure that everything is open, not just the design and the software you control it with, but the entire tool-chain, from the ground up," he says. Olliver works for Catalyst IT, a Wellington-based open-source business system provider. He is fortunate enough to get "Google-time" from the company, which means he is allowed to work on his own research projects one day a week -- just like employees at Google. This has led to considerable developments in the RepRap project in the last six months, his says. New features include, for example, heads that can be changed for different kinds of plastic. A head that deposits low melting-point metal is in development, he says. The metal melts at a lower temperature than that at which plastic melts, which means the metal can be put inside plastic, says Olliver. "That means, in theory, we could build structures like motors." RepRap also allows people to build circuits in 3D, as well as various shapes, with the result that objects, such as a cell phone, don't have to be flat, he says. There are at least seven copies of the RepRap machine in the world that Olliver knows about. The 3D printer also allows for a new and fascinating way of communicating: Olliver can design something at home in New Zealand, which then appears on another researcher's desk, in Bath, in the UK, or the other way around. At the moment, the RepRap uses two different kinds of plastic -- PLA, a relatively rigid plastic, which is ideal for making objects such as corner brackets; and a more flexible plastic for making, for example, iPod cases, he says. But having the machine copy itself is the most useful thing the team can make it do, and that is the primary goal of the project, says Olliver. However, it can also be used to make other things, such as wine glasses -- definitely water-tight, he adds -- and plastic parts for machines. When Computerworld talked to him, Olliver had just printed out a small part to fix his blender.
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reprap.org/bin/view/Main/WebHome
RepRap version 10 Look at your computer setup and imagine that you hooked up a 3D printer. Instead of printing on bits of paper this 3D printer makes real, robust, mechanical parts. To give you an idea of how robust, think Lego bricks and you're in the right area. You could make lots of useful stuff, but interestingly you could also make most of the parts to make another 3D printer. It is the practical self-copying 3D printer shown on the right - a self-replicating machine. This 3D printer builds the component up in layers of plastic. This technology already exists, but the cheapest commercial machine would cost you about EUR30,000. RepRap team are doing is to develop and to give away the designs for a much cheaper machine with the novel capability of being able to self-copy (material costs are about EUR400). That way it's accessible to small communities in the developing world as well as individuals in the developed world.