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Amazing; imagine when 4D printing produces building materials that self assemble themselves and with 5D printing the building can monitor the building and repairs itself someday in the future.


Hushang Tengda has 3D printed a 400 square meter luxury villa, on site, in just 45 days.

Construction is a huge deal in the 3D printing world right now and the likes of WinSun have made an impact with the first 3D printed office in Dubai. It also printed a five-storey apartment building and 10 3D printed houses in just 24 hours back in China. This villa is a still a breakthrough though, because it was built on site.

We’re making flat pack houses now

Most 3D printed houses are made in parts at a nearby facility and then transported to the final construction site for assembly, almost like flat pack furniture. It is a massive step forward, but the elephant in the room is still the transport costs. So this new construction is a landmark venture in its own right.

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Exponential Finance celebrates the incredible opportunity at the intersection of technology and finance. Apply here to join Singularity University, CNBC, and hundreds of the world’s most forward-thinking financial leaders at Exponential Finance in June 2017.

Modern life is punctuated by market cycles.

One year the gears of commerce are whirring along. Businesses are hiring and investing. People are buying houses and cars, televisions and computers. Things are going great. Then a year later, the gears screech to halt—sweeping layoffs, plummeting investment, and crashing markets. No one’s buying anything.

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Finally, someone is getting the concept about why in tech where you’re producing technologies that ultimately support many areas of the consumer market in the form of bio/ medical, consumer commercial products, art, homes/ buildings, autos, etc. You must be more inclusive in your teams or find your product and services will plataeu as more and more competitors crowd the space over time; something that other industries have learned many many decades ago.


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Because most of the quickly growing companies and startups that tend to dominate it emerged from the maker community, the 3D printing industry often seems to find itself a little sequestered from the rest of the tech industry. Part of the reason is that very few of the industry’s largest companies started or are even based in Silicon Valley. While there is more to the tech industry than Northern California, it is often treated like the popular kids’ lunch table: everyone wants to sit there, and those that are tend to ignore those that aren’t. Sure most of the world’s large tech shows and conferences include plenty of 3D printing these days, but there still isn’t as much crossover as you’d expect, and 3D printing is still treated like that weird cousin who you’re not exactly sure is going to amount to anything.

I certainly can’t speak for everyone, but it almost feels as if being off in its own corner has been good for 3D printing. It has allowed a culture that thrives on open source technology and software to take root, and proven that businesses don’t need excessive patents to be successful if they build their companies correctly. In reality, 3D printing, despite being tech- and software-driven, probably has more in common with the manufacturing industry than high tech. However for all of its varied differences, the 3D printing industry does share one thing with most of the big tech companies in the world, it has a bit of a diversity problem.

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IKEA recently launched a hydroponic gardening system to allow people to grow fresh produce at home (without soil or sunlight) and has just unveiled a similar system under development that is aimed at helping restaurants raise ingredients in-house.

ikea home grown

The KRYDDA/VÄXER hydroponic garden lets sprout seeds without soil using absorbent foam plugs that keep plants moist (without over-watering, thanks to a built-in sensor). Germinated seeds can then be transferred to pots fitted into a growing tray featuring a solar lamp. The system is designed to be easy to use for even inexpert gardeners.

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Wow — if Mrs. Winchester (of famed Winchester Mystery House in SF) had lived today; she could have had her dream infinity house.


Dutch architect Janjaap Ruijssenaars has done something with a large 3D printer that few have probably ever attempted. He took a concrete structure and turned it into a Mobius strip, or “Landscape House,” so the building literally has no ends.

There are currently no practical reasons for this structure to be made, which is probably why nobody has jumped at the chance to build it. Other than being artistic, having such an odd form would serve almost no purpose and prove to be problematic as a home. Moving furniture or any appliances into the structure would prove to be an obstacle, even for the fully-abled. It would likely end up being a playground for children at a science museum or an exhibit at a university.

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Wishing them luck.


Tennessee -based Branch Technology has announced it will begin construction of a 3D-printed house in 2017. Designed by Honolulu-based WATG, the project was initiated for the Freeform Home Design Challenge, which asked participants to design for Branch’s Cellular Fabrication (C-Fab) 3D printing technology. The small house designs were required to be between 600 and 800 square feet.

Branch’s C-Fab technology involves 3D printing carbon-fiber-reinforced ABS plastic with a large robotic arm. The resulting formwork can then be covered in more traditional building materials, such as concrete or foam. Instead of the typical completely 3D printed additive technique, C-Fab uses an algorithm to formulate an interior framework for the structure.

WATG’s design, entitled Curve Appeal, will be built at Branch Technology’s lab in Chattanooga, Tennessee. The house is comprised of a curving shell around an open plan. The form of the building also provides a car port. The interior of the house is divided up with class walls and a solid core.

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For a planetarium program intended to show possible future NASA exploration directions, Home Run Pictures was tasked with creating plausible human habitats on the various planets and moons in the Solar System. Engineering concepts required understanding of the environments and the structures or spacecraft necessary for longer term human survival. Avoiding being too science fiction was difficult at times. The surface of Venus is a rough environment with temperatures and pressures at the extreme. But the dense atmosphere seems to allow the possibility of “floating” a space station hanging below some sort of blimp-like structure. An attempt at using what would look like modular structures, similar to what has been used with the International Space Station was implemented. A circular structure was used to keep the station in balance in the turbulent Venusian upper atmosphere with a long strut hanging down from the center to help stabilize the craft and provide mounting points for various experimental packages and docking ports for shuttles or exploratory probes. Small shuttles would drop into the upper atmosphere delivering cargo and personnel. When the station’s scientists desire to dive deeper into the Venus atmosphere for exploration, shuttles that lean more towards the submersibles used for Earth ocean exploration are used. The Venusian atmosphere is very dense and the pressure would crush anything but craft that are constructed like submarines with reinforced portholes instead of windows. Instead of using rocket power for maneuvering, the shuttle/submersible vehicles use large turbo-fan like engines. Everything needs to be constructed of cororsive-resistent materials to survive the acidic Venusian atmosphere. Scientists theorize that massive lighting events would be the norm and electronic and digital hardware would need to be insulated from the extreme electrical environment.

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Medical/ Biocomputing will only continue to grow and advance as a result of the demand for more improved experiences by consumers and business in communications and entertainment, food, home life, travel, business, etc.

Today, we have seen early opportunities and benefits with 3D printing, BMI, early stage Gene/ Cell circuitry and computing. In the future, we will see these technologies more and more replaced by even more advance Biocomputing and gene circuitry technology that will ultimately transform the human experiences and quality of life that many like to call Singularity.


Printing technology has come a long way from screechy dot-matrix printers to 3D printers which can print real life objects from metals, plastics, chemicals and concrete. While, at first, 3D printers were being used to create just basic shapes with different materials, more recently, they have been used to create advanced electronics, bio-medical devices and even houses.

Aircraft manufacturer Airbus recently showcased the world’s first 3D-printed mini aircraft, Thor, at the International Aerospace Exhibition and Air Show in Berlin. Although Airbus and its competitor have been using 3D-printed parts for their bigger assemblies, recent attempt shows that aviation may be ready for a new future with much lighter and cheaper planes given 3D printing not only cuts down the costs with less wastage, it also makes the plane lighter, thereby making them faster and more fuel efficient. But planes and toys is not what 3D printing might be restricted to; though in the elementary stage at the moment, the technology is being used for creating complex electronics like phones and wearables and may be able to reduce costs for manufacturers like Samsung and Apple.

One of the most important uses for the technology comes in the field of medical sciences. While pharma companies have been working on producing medicines from 3D printers, with one winning approval from the US’s Food and Drug Administration earlier this year, the technology is also being used to create bones, cartilages and customisable prosthetic limbs. But the real test for the technology lies in bioprinting—creating living cells via a 3D printer. Doctors have been using 3D printed organs to practice on, but scientists at research institutes have been experimenting with printing stem cells, skin tissue, organs and DNA. Though this is still decades from being a reality, printing of regenerative tissues can help cure heart ailments. 3D printing is also helping in construction, with a printer being used to create the first office space in Dubai using concrete blocks. The city aims that 25% of its buildings will be 3D printed by 2030.

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You’ve seen that tensegrity sphere toy. I own one. This is like Bigelow modules but a step beyond.


NASA NIAC has funded a proposal that seeks to design a rotating habitat with a robotic system that constructs the structure and provides a habitat growth capability.

The tensegrity technology allows minimum mass of both the habitat and the robotic system. This proposal solves three unsolved space travel problems:

A) growth,
b) radiation protection, and
c) gravity.

Their innovative tensegrity-based evolvable habitat designs will solve three critical technical problems that NASA must address:

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When you think about the headliners at a music festival, it’s unlikely that the first person to pop into your head would be Martine Rothblatt—the founder of Sirius XM, the one-time highest-paid female CEO in the world who made a robot clone of her wife, and the founder of the Terasem religion, which believes we’ll live forever by uploading our consciousness to the cloud. But Moogfest, a four-day citywide festival of music and technology in Durham, North Carolina, was not the average music festival. Unlike other festivals that make cursory overtures to technology, Moogfest dedicated as much time to explaining how technology influences creativity as to the creative output itself, even listing headline ‘technologists’ alongside its top-billed musical acts.

On the festival’s second day, Friday 20 May, Rothblatt took the stage to talk to a packed house at Durham’s Carolina Theater, in an atmosphere that felt far more like a TED talk than a music fest. Rothblatt, who is transgender, discussed the contentious North Carolina HB2 law, which bans transgender people from using public bathrooms of the gender they identify with; the idea that creativity would be better encouraged by free college tuition; and how she got to a point where she and her company, United Therapeutics, can actually think about 3D printing new body parts, and leaving our bodies behind—if we want. “You want to win more than you want to live,” she told the rapt crowd. “You yell ‘Geronimo’ as you jump crazily into monopolistic opposition.”

Quartz sat down with Rothblatt after her talk to chat more about her thoughts on AI, living forever, free education, and what happens to the soul once we’ve made digital copies of ourselves.

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