Solidator 3D Printer Prints Large Objects and Does it Fast

Two of the biggest challenges with today’s desktop 3D printers are that they 1) don’t print very large objects and 2) are painfully slow. The Solidator 3D printer aims to change both of those things, in a printer that costs less than $5,000.

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In the example shown above, the Solidator 3D printer was able to output a set of six Eiffel Tower models – each measuring almost 8-inches-tall – in just 5.5 hours. A similar feat on typical 3D printers would take days.

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By using DLP imaging technology to print an entire layer at a time instead of a voxel at a time, the Solidator is able to print at dramatically faster speeds than most desktop 3D printers. This method of 3D printing involves using a vat of liquid resin that is designed to harden when exposed to bright light. Software converts 3D objects into slices, and then the projector exposes the photosensitive resin. Each razor-thin layer of resin hardens in about 10 seconds, and then the Z-axis of the printer moves.

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The Solidator has a large output area, measuring 11.02″ W x 8.26″ D x 7.87″ H (716.37 cubic inches). For comparison’s sake, the print area of the industry-leading MakerBot Replicator 2 is 11.2″ W x 6.0″ H x 6.1″ H (409.92 cubic inches). Print resolution for the Solidator is also very good, with a typical layer height of 100 microns, though the z-stepper motor can move in increments as small as 10 microns. That said, 30 microns is the thinnest that can be printed with current resin technology. One limitation is the pixel density of the DLP projector, which reduces X/Y resolution to 270 microns – so objects printed with the Solidator aren’t as precise as those made with some of the better PLA and ABS printers out there.

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But for many of us, our time is far more valuable than a couple of hundred microns of detail. If you need to create large numbers of small 3D printed parts, or if you need to crank out lots of prototypes, the Solidator could be a godsend. Since the printer’s Z-axis is where all the time comes in, the shorter your objects are, the less time they’ll take to produce. I can imagine cranking out dozens of 3D printed gears in just minutes on a device like this.

Resin for the printer will sell for as little as $50(USD) per liter, and will eventually come in a variety of colors. As an added bonus, the resin is quite durable when hardened. In fact, Solidator’s creators demonstrated the durability of printed parts by running them over with a car.

The Solidator 3D printer is available for pre-order via Kickstarter for $4950(USD) through January 3rd, 2014. While that’s certainly not chump change, it’s an impressive price for a printer capable of attaining such speeds, and with such a large work area.

Need This New Invention? Glass Box Suspended Over The Alps

Glass Box Suspended Over the AlpsA new attraction in the French Alps opens today. It is a not-so-simple
glass box that is suspended more than 3,200 feet above the valley below.
The attraction, known as Step into the Void, is billed as the tallest
in Europe.  The box is the newest addition to the viewing platform at
the top of Aiguille du Midi. The box is glass on top and bottom, as well
as three sides, so that you can see everything — including straight
down!

15 Books That Will Change the Way You Look at Robots

15 Books That Will Change the Way You Look at Robots

What will robots really be like when they finally achieve a human level of intelligence and autonomy? No one knows for sure, but we’ve put together a list of books that will challenge and disturb your preconceptions about what robots might become.

Read more…


    

Stop Hurting Your Back – Use Home Cargo Lifts To Move Objects Between Floors

Home Cargo LiftWhether you live in a house with more than one floor or in an apartment inside a building with several floors, you almost certainly experienced the (literal) pains of moving heavy objects from one floor to another. Not only it can be dangerous, it also demands a lot of physical effort which, in the long term, can cause irreversible damages to one’s health. Fortunately there is a way to avoid all this – let’s meet the truly helpful home cargo lifts.

Six Californias Plan would make Silicon Valley its own state

Technology investor Tim Draper has a plan that would turn the state of California into six separate states. Draper says that he is submitting a polished version of his plan … Continue reading

Waiters need not apply: New Zealand cafe uses pneumatic tubes for straight-to-table delivery

The C One Espresso (sometimes called the C1 Cafe) in New Zealand has brought a bit of The Jetsons’ world to its customers, ushering in an altogether futuristic dining-out experience … Continue reading

Panono Panoramic Ball Camera: Spherefies

A couple of years ago we saw an unusual camera. It looked like a ball and took 360° panoramic photos, like the ones on Google Street View but completely spherical. Jonas Pfeil and his co-inventors are now gearing up to mass produce the camera, which they’re now calling the Panono.

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Panono works much like the prototype we saw back then. It has 36 cameras that together can make a 72mp 360° image.  Panono can be used in three ways. The fun way is to throw the ball up in the air. The camera will sense when it reaches its highest point, and will automatically activate all of its cameras. You can also prop it up on a stick and trigger it using the Panono mobile app or just hold it in your hand and press its button to shoot.

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Whichever method you choose, you’ll need a mobile device and an Internet connection in order to get the final panoramic image. That’s because the camera will wirelessly send the images it took to your mobile device. From there you need to upload the images to a free cloud service that will stitch your images together. If you don’t have an Internet connection, you’ll be able to view the images you took via the app, but they’ll be separated. The camera itself can store up to 400 panoramas (that’s 14,400 “normal” images) so you can still use it without a mobile device.

Pledge at least $500 (USD) on Indiegogo to get a Panono as a reward. You can check out the shots taken with the latest prototype on Panono’s website. Now someone needs to come up with a spherical picture frame.

Innovations in Ink Making Spurs the Advent of New-age Devices

Synergistic growth translates into one technology being able to complement the advances in another. The same principle can be applied to the recent innovations in ink making. Its technology is deeply integrated in electronic devices and systems, improving them as a result.

Behind these innovations is nanotechnology, which involves the use of small-sized membranes, tubes, and components that can be used for a variety of purposes. Currently, its use has been popularized within the healthcare and electronics industry. Nanotubes ensure that minute quantities can be delivered at the designated place, in a highly specific manner.

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A recent innovation by Linde Electronics involves using carbon nanotube inks to generate new display technologies. These nanotubes provide an ideal use for ink making and printing because of their size (their diameter is just 1/10,000 of the diameter of human hair) and physical properties (they have a high stress resistance when it comes to heat and mechanical pressure).

The ink industry is also making progress with the advent of organic electronics. For example, ink-based tags for biomedical implants has led to the development of thermochromic displays which uses conductive wires to make patterns.

Aside from these, InkTechnologies.com brings another model to the table that uses an online platform to promote the usage of diverse ink and printing technologies. This is an example of R&D moving so fast that it has basically created an online exchange for ink-savvy and eco-conscious consumers.

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Nanotechnology is still in its nascent phases, so the progress that has been achieved up until this point is just in its primer stage. Consider dye development through nanotechnology. If you think about it, numerous industries now need markers or fluorescent dyes for various applications.

Electro-wetting is another ongoing innovation which is massive because it would give e-paper the feel of classic ink on paper. Such displays have the advantage of being brighter than LCDs while consuming less power. Imagine how this can change e-readers

How ink technology will develop further – and the new tech it will spawn – is definitely something to watch out for.

[via LCN]

The Desktop Manufacturing Revolution

Thank you to Sprint for sponsoring this article. Get inspired by innovation and see what’s next at Sprint.com/faster.

Sprint Faster is a great site to visit if you’re looking for the latest on new and upcoming technological breakthroughs, featuring stories from leading tech experts on the shape of things to come.

Perhaps the most exciting area of technological growth for the early 21st century is in the realm of machines which make it fast, inexpensive and easy for anyone to create physical objects. Devices such as 3D printers, laser cutters, tabletop milling machines and other computer-controlled manufacturing tools are now within reach of small business entrepreneurs and hobbyists, and are headed towards the consumer market as well.

10 years ago, the idea that you or I could have a device that could output tangible goods or replacement parts on our desktops was just a pipedream. But rapid advancements in technology, as well as enthusiasm of startups and early adopters have created a cottage industry filled with 3D printers and other desktop manufacturing machines.

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Devices like the $2,000(USD) MakerBot Replicator 2 serve the prosumer market, while upcoming machines like the Pirate 3D Bucaneer are expected to hit consumer desktops in early 2014 for as little as $600. Both are capable of creating 3D models with tremendous precision.

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Earlier devices required a lot of fiddling about, frequent manual calibration and complex software setup. Now, the software is getting easier to use, and loading in a model to print only requires a basic understanding of 3D modeling. And if you don’t know how to do that, you can always download free models from sites like Thingiverse.

Most desktop 3D printers work by melting PLA or ABS plastic in a tiny bead, moving along the X and Y axis first, then building up layer by layer along the Z axis. Eventually, a fully-formed 3D object is revealed. It’s a time-consuming process, but the technology allows for the construction of incredibly detailed and complex structures that would be extremely difficult if not impossible to model by hand or using traditional machining tools. For example, check out the 3D printed menagerie I have hanging on my living room wall:

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But desktop manufacturing cannot just rely on melted plastic alone. While professional-grade 3D printing services like Shapeways can print molds which can be filled with metal or ceramic clay, these techniques are a bit more difficult to achieve on the desktop. Though there are products on the market like Composimold which let you make molds from 3D printed objects. That said, there are companies working on desktop 3D printers that can actually print in unconventional materials, ranging from molten metal to sugar.

If you want to work with metal or wood today, you might be better off using a desktop milling machine, like the Shapeoko 2, which sells in kit form for just under $700 with all the parts needed to assemble it.

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This device has a similar X/Y/Z armature system similar to that found in 3D printers, but instead of holding a heated print head, it can hold a Dremel or similar rotary tool. 3D milling machines work subtractively, rather than additively, so you start out with a solid hunk of wood, plastic or soft metal, clamp it into place, and let the machine cut away a form. This technique is especially effective for routing out objects like signage with true depth. In this example, a digitized brain scan was routed out of a piece of wood. Neat, eh?

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You can even use a milling machine to cut materials like carbon fiber, as is demonstrated with this cool gear clock by Bart Dring:

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In addition, these machine can be used to gently scrape away layers on copper board, so you can use it to make custom circuit boards. Keep in mind that 3D milling machines aren’t as precise as 3D printers, nor can they create details on the bottom of objects as they require that the working material be clamped in place and then cut out from above.

One other kind of desktop machine is the laser cutter. These machines use high-power lasers to cut or engrave images out of sheet materials. Companies like Full Spectrum Laser offer both prosumer and professional grade laser cutters, with prices starting just under $2000.

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Since laser cutters only work in two dimensions, outputting to them is as easy as using a desktop printer. You simply create an outline of an object in a drawing program on your computer, then load in a sheet of wood, cork, fabric, acrylic or Plexiglas and let the laser get to work. They also work very quickly compared to 3D printers as a result. By adjusting the laser intensity, you can either cut objects, or burn engraved images into materials.

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Objects like these video game console ornaments by UseYourDigits are some of my favorite examples of what can be made with a laser cutter:

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While desktop manufacturing machines are still in their relative infancy, I truly think we are on the precipice of mass adoption of these devices. Shops like Inventables and the Maker Shed have popped up, offering one-stop-shopping for both the machines and materials, making it easier than ever before to get started.

As the speed, cost and availability of these devices broadens, it’s only a matter of time before we’ll be outputting just about anything we can dream of on our desktops.


Disclosure of Material Connection: This is a “sponsored post.” Technabob received compensation for writing it, however, we only recommend products or services we find newsworthy or have used personally, and believe will be good for our readers.

Thank you to Sprint Faster and Technorati Media for being sponsors of this article. All opinions expressed here are my own.

Woof To Wash: Laundry Machines Controlled By Dogs

Those of us with pets are aware that they live pretty cushy lives. They
spend their days basking in the sun, chasing squirrels while out for
walks, and barking when someone comes to the door. The average dog has
few responsibilities – all we expect of them is to be semi-obedient and
do their business outside. One company believes that dogs should play
bigger roles when it comes to the maintenance of their households than
simply licking fallen crumbs off the floor.