Off-World Manufacturing is Here

Made In Space Announces Launch of First Zero-Gravity 3D Printer to International Space Station.


On September 20 at 2:14am the first 3D printer intended for in-space use departed aboard a rocket from Cape Canaveral, Fla., headed for the International Space Station (ISS).

This “machine shop for space” will mark the first time that a multi-purpose manufacturing device will be utilized off-world to create parts, tools and emergency solutions.

Developed by Made In Space, Inc., under a contract with NASA Marshall Space Flight Center (MSFC), the 3D printer is part of a technology demonstration intended to show that on-site, on-demand manufacturing is a viable alternative to launching items from Earth.

“Everything that has ever been built for space has been built on the ground. Tremendous amounts of money and time have been spent to place even the simplest of items in space to aid exploration and development,” said Aaron Kemmer, Chief Executive Officer of Made In Space. “This new capability will fundamentally change how the supply and development of space missions is looked at.”

Following delivery to ISS, the 3D printer is scheduled to be installed in the Microgravity Science Glovebox (MSG) to conduct its series of prints.

The printer will create a series of test coupons, parts, tools, use case examples and even STEM project designs by students as part of the 3D Printing in Zero-G Experiment. This experiment, intended to demonstrate additive manufacturing capabilities in space, was developed through a partnership between Made In Space and NASA MSFC.

Made In Space is working with business partners to formulate additional use case examples to demonstrate printer capabilities.

Zero-G Printer - A Historic Revolution in Space Access
The Zero-G Printer is the first 3D printer designed to operate in zero gravity. Launched into orbit on September 21, 2014, the printer was built under a joint partnership between NASA MSFC and Made In Space. Contracted as the “3D Printing in Zero-G Experiment,” this first version of the Zero-G printer will usher in the era of off-world manufacturing.

This initial version of the Zero-G Printer will serve as a test bed for understanding the long-term effects of microgravity on 3D printing, and how it can enable the future of space exploration. It is a culmination of contracts and development dating back to 2010 including microgravity tests with NASA’s Flight Opportunities Program, R&D contracts under NASA’s SBIR Programs, and development contracts with NASA MSFC.

Source: Made In Space


Made In Space’s additive manufacturing technology creates 3D objects layer by layer from filament through an extrusion method specifically adapted for the challenges of the space environment. In addition to designing and building the hardware, Made In Space will be operating the printer from a mission control ground station.

“There were dozens of specific problems we had to solve in constructing a 3D printer for the Space Station. From thermal process adjustments to rigorous safety requirements, the challenges our team had to overcome were numerous, and we’re deeply proud to see the results of the work done by the Made In Space and NASA MSFC team now head out for a grand field test,” said Kemmer.

Now that we’ve made this breakthrough, the sky is no longer the limit for additive manufacturing – the era of off-world manufacturing has begunAaron Kemmer, Chief Executive Officer, Made In Space

This first printer will be using ABS plastic while the second generation unit, scheduled for delivery to ISS in 2015, will offer multiple material capacity and an increased build volume.

The second Made In Space printer will be available for use by businesses, researchers and anyone who wants to create in-space hardware rapidly, affordably, and safely.

“Placing additive manufacturing in space will lead to similar capabilities on every future space station, deep space exploration vehicle, and space colony,” said Kemmer. “Rapid construction of important materials is a critical need if humans are going to establish a greater footprint in our universe.”

Made In Space developed the zero-gravity printer through NASA’s Small Business Innovation Research (SBIR) program. The prototype unit was tested on Zero-G Corporation’s modified Boeing 727 parabolic airplane, made possible by NASA’s Flight Opportunities Program. The flight unit passed NASA’s extensive safety and operational standards on the way to being deemed flight ready.

Kemmer said, “This is more than a 3D printer. It’s more than a machine shop in space. It’s a landmark for humanity. For the first time in the history of our species, we will be manufacturing tools and hardware away from the Earth. Now that we’ve made this breakthrough, the sky is no longer the limit for additive manufacturing – the era of off-world manufacturing has begun.”

About Made In Space
Founded in 2010 with the goal of enabling humanity’s future in space, Made In Space, Inc. has developed additive manufacturing technology for use in zero-gravity. By constructing hardware that can build what is needed in space, as opposed to launching it from Earth, the company plans to accelerate and broaden space development while also providing unprecedented access for people on Earth to use in-space manufacturing capabilities.

Made In Space’s team consists of successful entrepreneurs, experienced space experts and key 3D printing developers. With over 30,000+ hours of 3D printing technology testing, and 400+ parabolas of microgravity test flights, Made In Space’s experience and expertise has led to the first 3D printers designed for use on the International Space Station.

For more information about Made In Space, visit: www.madeinspace.us

Related: Supply Chains and Third-Party Logistics Make Room for 3D Printing


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Founded in 2010 with the goal of enabling humanity’s future in space, Made In Space, Inc. has developed additive manufacturing technology for use in zero-gravity. By constructing hardware that can build what is needed in space, as opposed to launching it from Earth, the company plans to accelerate and broaden space development while also providing unprecedented access for people on Earth to use in-space capabilities. Made In Space’s team consists of successful entrepreneurs, experienced space experts and key 3D printing developers. With over 30,000+ hours of 3D printing technology testing, and 400+ parabolas of microgravity test flights, Made In Space’s experience and expertise has led to the first 3D printers designed for use on the International Space Station.
View Made In Space company profile

 

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