NASA Selects Proposals for Ultra-Lightweight Materials For Journey To Mars | Aero-News Network
Aero-News Network
RSS icon RSS feed
podcast icon MP3 podcast
Subscribe Aero-News e-mail Newsletter Subscribe

Airborne Unlimited -- Most Recent Daily Episodes

Episode Date

Airborne-Monday

Airborne-Tuesday

Airborne-Wednesday Airborne-Thursday

Airborne-Friday

Airborne On YouTube

Airborne-Unlimited-09.15.25

AirborneNextGen-
09.09.25

Airborne-Unlimited-09.10.25

Airborne-AffordableFlyers-09.11.25

AirborneUnlimited-09.12.25

Sun, Apr 12, 2015

NASA Selects Proposals for Ultra-Lightweight Materials For Journey To Mars

Three Companies To Manufacture Components For Future Aerospace Vehicles

NASA has selected three proposals to develop and manufacture ultra-lightweight (ULW) materials for future aerospace vehicles and structures. The proposals will mature advanced technologies that will enable NASA to reduce the mass of spacecraft by 40 percent for deep space exploration.

"Lightweight and multifunctional materials and structures are one of NASA's top focus areas capable of having the greatest impact on future NASA missions in human and robotic exploration," said Steve Jurczyk, associate administrator for the agency’s Space Technology Mission Directorate in Washington. "These advanced technologies are necessary for us to be able to launch stronger, yet lighter, spacecraft and components as we look to explore an asteroid and eventually Mars."

Composite sandwich structures are a special type of material made by attaching two thin skins to a lightweight core. Traditional composite sandwich structures incorporate either honeycomb or foam cores. This type of composite is used extensively within the aerospace industry and in other applications making it possible for future journeys to Mars. The ULW materials being developed by NASA vary significantly from traditional cores and are expected to result in a significant decrease in mass.

The three awards selected for contract negotiations are:

HRL Laboratories LLC of Malibu, California: Ultralight Micro-truss Cores for Space Launch Systems
ATK Space Systems LLC of Magna, Utah: Game Changing Technology Development Program Ultra-Light Weight Core Materials for Efficient Load Bearing Composite Sandwich Structures
Dynetics Inc. of Huntsville, Alabama: Ultra-Lightweight Core Materials for Efficient Load-Bearing Composite Sandwich Structures

Phase I awards of the solicitation are valued up to $550,000, providing awardees with funding for 13 months to produce 12-by-12-by1-inch ULW core panels. Technologies selected to continue to Phase II will demonstrate the ability to scale up to 2-feet by 2-feet by 1-inch and ultimately to produce 10-feet by 11-feet by 1-inch ULW core panels, with NASA providing up to $2 million per award for up to 18 months.

FMI: www.nasa.gov

Advertisement

More News

NTSB Final Report: Evektor-Aerotechnik A S Harmony LSA

Improper Installation Of The Fuel Line That Connected The Fuel Pump To The Four-Way Distributor Analysis: The airplane was on the final leg of a flight to reposition it to its home>[...]

ANN's Daily Aero-Term (09.15.25): Decision Altitude (DA)

Decision Altitude (DA) A specified altitude (mean sea level (MSL)) on an instrument approach procedure (ILS, GLS, vertically guided RNAV) at which the pilot must decide whether to >[...]

Aero-News: Quote of the Day (09.15.25)

“With the arrival of the second B-21 Raider, our flight test campaign gains substantial momentum. We can now expedite critical evaluations of mission systems and weapons capa>[...]

Airborne 09.12.25: Bristell Cert, Jetson ONE Delivery, GAMA Sales Report

Also: Potential Mars Biosignature, Boeing August Deliveries, JetBlue Retires Final E190, Av Safety Awareness Czech plane maker Bristell was awarded its first FAA Type Certification>[...]

Airborne 09.10.25: 1000 Hr B29 Pilot, Airplane Pile-Up, Haitian Restrictions

Also: Commercial A/C Certification, GMR Adds More Bell 429s, Helo Denial, John “Lucky” Luckadoo Flies West CAF’s Col. Mark Novak has accumulated more than 1,000 f>[...]

blog comments powered by Disqus



Advertisement

Advertisement

Podcasts

Advertisement

© 2007 - 2025 Web Development & Design by Pauli Systems, LC