Tag Archives: video

3D Printed Bioscope: New Design Reinvents the Old Film Camera

Bioscope 3D Printing

Inspired by an early movie projector of the same name, the Bioscope is a medium to experience memories in relative time. It consists of a hand-held device, to be viewed with one eye, resembling an old film camera.

Simon de Bakker and Jon Stam, who designed and 3D printed their ‘Bioscope’ at i.materialise are pushing the boundaries of photography, film and technology. The Bioscope is a digital movie viewer in the shape of a Fisherprice camera.

Designers often use 3D printing for accessories and interior design, but there is another market that reaches 3D printing more and more: the one with digital gadgets like the Bioscope: you look with your eye through the ‘lens’ and then, by moving the red button forward or backward you can see your home movie frame by frame which creates a very retro like effect.

The Magical Experience – Interview with Jon Stam

“For this project, I wanted to recreate the magical experience of those old projectors but adjusted to our modern times by using movies on USB sticks. The Bioscope is interactive and allows the user to move through time with the turn of the crank. Moving forward and backward, as fast as slow as you want. You’re invited to pause at your favorite moments and reflect. This way people get manual control over digital information and it allows them to transform every viewing into something entirely new and personal.”

3D Printing and the Bioscope

Through traditional manufacturing it was hard to bring this idea to life, so Jon Stam and Simon de Bakker decided to try 3D printing: “We were thinking about how we could take old technology and adapt it for the modern world. Going to the traditional manufacturing route of making a mold and going into full production was not only too expensive, but it also made it impossible to customize the Bioscopes the way we wanted.”

“Luckily, there is 3D Printing. By using this technology, we could create the bioscope digitally and together with i.materialise, repair any errors in the file and find the best material and printing technique to bring the bioscope to life in polyamide. Quickly and affordably. Plus, when I am not completely satisfied with how the bioscope feels – not a problem. I change the digital file, contact i.materialise, and presto…a new and improved Bioscope!”

Bioscope MultiView 3D Printing

The Bioscope will be showcased at the 3D Print Show in London this weekend from the 19th until the 21st of October.

Below is a video of the Bioscope project.

Top 3D Printing Headlines Last Week: Weapons, Disney, Patents, Europe

Disney Printed Optics 3D Printing

A roundup of the top news On 3D Printing brought you from October 6 to October 13.

Saturday, October 6
Monday, October 8
Tuesday, October 9

Video: Broad Horizons for 3D Printing – RepRap, MakerBot, and Beyond

3D Printing Broad Horizons

The video below explores the evolution and future potential of 3D printing.

3D printing technology has come a long way, fast. And after two new product launches 3D printing has stepped firmly into the mainstream consumer market, in the process diverging from some of its early roots. In late September Makerbot released its latest printer, the ‘Replicator 2′, geared less towards the 3D printing enthusiast and more towards the mainstream consumer. They’ve even opened a retail store in Manhattan. And that same week Form Labs debuted their ‘Form 1′ 3D printer which boasts a minimum print resolution of 25 microns. The sleek machine was on display at this year’s Maker Faire.

“We were students at the media lab at MIT and we did a lot of work with personal fabrication tools there. And we’re all designers and engineers ourselves, but we were very frustrated that really, really truly professional high design tools like 3D printing were too expensive, tens or hundreds of thousands of dollars for the independent professional designer. So we decided to start a company to make the ‘Form 1′ which is the first high-quality, yet affordable and well-designed 3D printer that you can buy,” Form Labs co-founder David Cranor explained at their booth at Maker Faire 2012.

On the other side of the Maker Faire at the ’3D Printer Village’ was a collection of some 30 homebrew 3D printers, products of the RepRap Project, a loose-knit community that pioneered much of 3D printing’s recent revolution. The project’s goal is to develop a 3D printer that can print itself.

John Abella has been hosting the ’3D printer village’ for three years now. His Frankenstein printer, originally a Makerbot ‘Cupcake’, is typical of the RepRap community. RepRap is open-source, which means any designs produced under the project are free to use. That makes finding replacement parts and upgrading parts especially easy.

“Because it’s open source, people were able to take the original designs, improve on them, get electronics made and then sell them really cheaply, twenty, thirty dollars. So you can keep these old machines going even though they’re not supported and original parts aren’t available anymore.”

And then there’s Jordan Miller who is taking advantage of RepRap’s open-source designs to build 3D printers that can be used to create functional vascular structures.

Miller’s method works by having the 3D printer print vasculature models in a sugar-like material which can then be used as a mold for living cells and eventually dissolved. In proof-of-concept experiments blood pumped through the vasculature was able to deliver nutrients and oxygen.

“Instead of starting with a commercial system, like a hundred thousand dollar machine and trying to make it print sugar, we’re trying to start with these open-source printers, this amazing community that we have here at Maker Faire and we’re trying to have this community help this community develop this kind of technology from the ground up. The open source community and science, they’re very compatible. Everything is science is open anyway, so it’s been a good merge of communities.”

As a potential side business, they’re also using the printer to make custom chocolates.

With the release of the closed-source ‘Replicator 2′ Makerbot, largely a product of the RepRap project, is to some degree, turning its back on RepRap and open-source. After all it’s hard to make a profit off of something if the designs are open source. While some may see it as a betrayal Jeff Keegan says he understands why Makerbot did what they did.

“I’m interested in having the essence of open-source not be hurt. So I don’t want to see someone testing to see if they can close something that’s open.”

He insists, however, that it won’t hamper the RepRap project’s goal of developing a self-replicating 3D printer.

Open-source is here already. Other people doing things on the side may cause problems for themselves, but it doesn’t really affect me… I got bigger fish to fry, getting my thing to work better, designing new things for this, I’m happy about that.”

Printed Optics: Disney Research 3D Printing to Create Future of Toys

Disney Printed Optics 3D Printing

Collaborators from Disney Research and Carnegie Mellon University are using 3D printing to create the future of interactive toys they call “Printed Optics.” Excerpts from a research paper are included below.

We present an approach to 3D printing custom optical elements for interactive devices labelled Printed Optics. Printed Optics enable sensing, display, and illumination elements to be directly embedded in the casing or mechanical structure of an interactive device. Using these elements, unique display surfaces, novel illumination techniques, custom optical sensors, and embedded optoelectronic components can be digitally fabricated for rapid, high fidelity, highly customized interactive devices. Printed Optics is part of our long term vision for interactive devices that are 3D printed in their entirety. In this paper we explore the possibilities for this vision afforded by fabrication of custom optical elements using today’s 3D printing technology.

Printed Optics is a new approach to creating custom optical elements for interactive devices using 3D printing. Printed Optics enable sensing, display, and illumination elements to be directly embedded in the body of an interactive device. Using these elements, unique display surfaces, novel illumination techniques, custom optical sensors, and robust embedded components can be digitally fabricated for rapid, high fidelity, customized interactive devices.

Today, 3D printing enables rapid prototyping to advance their research.

3D printing allows digital geometry to be rapidly fabricated into physical form with micron accuracy. Usable optical elements can be designed and simulated in software, then 3D printed from transparent material with surprising ease and affordability.

But Disney’s vision is much grander. Watch the video below.

More at Disney Research.

 

Via WebProNews.

MakerBot Store Grand Opening in Manhattan: Photo Tour and Video

MakerBot Store Grand Opening

MakerBot held the Grand Opening of their new MakerBot store in Manhattan last week. In the store, they have their latest 3D printers – called Replicator 2 – printing away, they sell the special plastic spools to fit the printer, and they sell 3D printed goods. It’s as much of a showcase as it is a store.

The photo above is of a proud Bre Pettis manning the store. See the full photo tour at Engadget.

And here is a video walkthrough from adafruit.