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Branch Technology
Приєднався 9 жов 2014
Using our patented technology and digital fabrication process, we’re enabling architects, designers, and innovators to imagine, compose, and construct complex design structures previously thought impossible using traditional build methods.
Branch Lunar Facade
A brief overview of how Branch delivers tremendous value to architects, designers and contractors. To learn more about the US Space & Rocket Center project discussed here, check out the case study on the Branch website at branchtechnology.com/ussrc/.
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Відео
Cellular Fabrication Video Series Summary
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Thank you for watching the video series in this playlist. We hope we've inspired you to design projects to be built like nature. Please reach out to us at info@branchtechnology.com if interested in working together.
Advanced Concepts Team - Branch Technology
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Learn about Branch Technology's Advanced Concepts Team (ACT) and the unique and cutting-edge projects the team works on to apply Cellular Fabrication to new challenges.
Branch Technology - Series Introduction
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Welcome to Branch Technology! We're glad you're interested in learning about the 3D printing construction revolution. This video is the first of several in an exciting series, and introduces the company and technology through an interview with the company's Founder and Chief Innovation Architect, Platt Boyd. Also, David Goodloe provides an overview of the video series and what you can expect to...
Branch Technology and NASA - Lunar Habitat Prototype Outfitting Demonstrators (PODs) Tech Tour
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Branch Technology, in collaboration with NASA, Stanford University, and Foster Partners, had the opportunity to 3D print these lunar habitat demonstration structures. Join David Goodloe of our Advanced Concepts Team to investigate questions like "What will the interior of a lunar habitat look like?" and "How will it be informed by the manufacturing and construction processes used?". Outfitting ...
Lunar Habitat Demonstration Structure Presentation
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Presentation of the Lunar Habitat Demonstration Structure at Branch Technology's headquarters in Chattanooga, TN featuring Branch, Foster Partners, NASA, Stanford University & Sky Factory.
Composite Construction 3D Printing through Cellular Fabrication (C-Fab®)
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Buildings are composites - assemblies of multiple materials needed to achieve certain functions. These materials come together to create habitable enclosures. Branch Technology believes that 3D-printed construction should follow the same logic in order to perform as well as or better than traditionally constructed buildings. Branch also understands that no single 3D printing material feedstock ...
Digital Prefabrication in Construction 3D Printing - Branch Technology
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Branch Technology's Cellular Fabrication (C-Fab®) process is a manifestation of digital prefabrication. As an additive manufacturing process, Branch employs digital tools to fabricate physical objects from digital models. As a prefabrication operation, Branch efficiently produces mass-customizable construction components that unlock ultimate design freedom and resource stewardship. Learn more i...
Cellular Fabrication (C-Fab®) Geometric Design Principles
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Branch's revolutionary C-Fab® additive manufacturing process is built on a new technique called Freeform 3D printing that allows printed material to solidify in free space without supports. This unique capability produces ultra lightweight and material-efficient parts at construction scale and with structural capacity greater than traditional framing methods. But the geometric design principles...
C-Fab® Design Case Studies: TVFCU Facade and OneC1ty Pavilion
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Learn more about two of Branch's completed C-Fab® projects and the principles of design that inform project development through this case study video. Branch fabricated the world's first Freeform 3D printed building enclosure for Tennessee Valley Federal Credit Union (TVFCU) in Chattanooga, TN. Also shown is the world's largest-spanning 3D printed structure at OneC1ty in Nashville, TN.
Cellular Fabrication - Construction Scale 3D Printing
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What is 3D Printing? How can it be applied in the construction arena? Branch Technology is revolutionizing the built environment with its patented Cellular Fabrication (C-Fab) process. Learn how this capability differs from standard 3D Printing technologies and construction practices. www.branch.technology/
Branch Technology - IASS 2018
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Branch Technology and Thornton Tomasetti's Core Studio have created the world's largest 3D printed structure for OneCity in Nashville, TN.
Are thes panels light enough not to need large cranes to assemble?
but but but ... where's the lunar carbon?
At least they got the part about burying the habitation space under several meters of regolith or (preferably) underground correct. No windows either, another valid point. Virtually every depiction of a moon base or Martian base in modern film/TV is laughably wrong, glass/transparent domes, windows, on the surface, mono airlocks, cultivation using martian or lunar soil (hahaha)... This seems to be getting some of it right.
I’m no astronaut, but you better build those habitats bigger than that. People are gonna be up there killing each other.
You don't send people who are likely to do that up there in the first place. There are VERY strict and rigorous tests to screen out people with those traits.
@@justinmorgan2126 duh but things happen after a while.
I have an idea for creating a landing pad with In-Situ resources. You scoop out a large rectangular area of the lunar regolith, feed that regolith through a melting head, similar to the top secret tunnel boring machine the navy uses to melt through rock, then pour that molten regolith or "lava" back into the excavated area. Viola! instant landing pad.
Nice reporting! I recommend Alon (aluminum oxynitride, "Transparent Aluminum") for any application where you have need of a glass-like substance for windows or transparent domes or surfaces, including space helmets/faceplates. It is four times harder than fused, tempered glass and will stop multiple .50 caliber rounds; so you can imagine the benefit of this kind of durability where you can occasionally fall or bump into rocks or be hit by micrometeorites.
then subject to immense suffering..
"if you could build like nature" if would be self assembling..
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Freeeform 3D printing what an awesome technology.I like that chief scientist inventor guy. The other guys well some are a little too roboto hanging out in the aerospace medium with count megeles grandkids and nephews.
People habitat you GA robots. We're going to make you watch the roots mini series with lavar Burton from the 80s 100 times or something. Awesome Turner Gingrich video action they'll give you nightmares and make you do three finger push-ups like Herschel Walker.
BRANCH offers the Tom Peter’s WOW FACTOR!❤
Cool. Artful. Finding a word to put after "unlock"... not so much. Watching the gears turn, landing on "interest", and the expression of I-can't-unsay-that-oh-well-time-for-buzzword-bingo...
😉 'Promo sm'
So cool! Can't wait to see the future of Branch Technology on the Moon and Mars!
Love the thought you are putting into making the spaces comforting. Sunlight boxes, would be great at providing that "on Earth" skylight effect, i believe several companies make these now like Innerscene. How about a wall or partial wall that shows a live view from some nature scene on Earth (beach, forest, river, etc). An example now is that on UA-cam you can watch a live cam from Africa that is on a man made water hole where animals come up to get a drink, project that life size on a wall for example. Very relaxing. It does not have to be of nature, it could be a coffee shop or nice city street live cam that the people can watch. Teh viewer could even choose which scene they want to watch to relax.
This takes the Advantages of "Tri-Axial Composite Fabrics" and elevates them a few steps up! It also takes "Honeycomb" cores into a 3-D direction! However, Honeycomb, has an advantage (in Space Consumed) in the "HOBE" state (HOneycomb Before Expansion), that, if this method can also accomplish (Compacted Skeleton for Shipment) that can easily be "Expanded" by 3x to 20x in thickness upon arrival (to the Moon, in this case)!
Floating Stiff Threads of Cabin Fibre, introduces a whole new method of 3D Strength Optimization!
Why isn't your factory made with this technique 🤔
lol. you will be waiting a long time for an answer...
Nice videos
The thumbnail have goose😂
I'm reaaly glad I saw your video. I was trying to come up with a way to make a shell for my electric travel camping vehicle. I'm building it from the ground up. You made my day. 👍👍
This is really amazing. Proof that creative and unconventional thinking/engineering can be the basis for incredible advancement in material structures.
Grasshopper is great at generating latice geometry. I've been using it for some product design.
Very cool. Hope you can figure out how to make money at it.
This is awesome!
I’d love to visit and do a video with you guys!
very good advance technology.
What happened with the curve appeal project?
Awesome!!
3D printed in sections and then assembled without the use of a 3D printer.... its impressive but i wouldn't call is the worlds largest free standing "3D printed" structure, i might call it something like the worlds largest structure assembled with 3D printed parts.
I see your logic, but your definition is flawed. The word structure is defined as an assembly of parts so I think their claim is accurate. Anyone know how long it took them to print and assemble this?
Mark Taylor I'm just not very impressed by the structure. I wanna see a 30ft by 30 ft printer do a sculpture.