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Briefs: Manufacturing & Prototyping
Projects that utilize large volumes of nonmetallic materials of planetary protection concern pose a challenge to their bioburden budget, as the most...
Briefs: Manufacturing & Prototyping
Demonstration of Minimally Machined Honeycomb Silicon Carbide Mirrors
Honeycomb silicon carbide composite mirrors are made from a carbon fiber preform that is molded into a honeycomb shape using a rigid mold. The carbon fiber honeycomb is densified by using polymer infiltration pyrolysis, or through a reaction with liquid silicon. A chemical vapor...
Briefs: Materials
Nanoengineered Thermal Materials Based on Carbon Nanotube Array Composites
State-of-the-art integrated circuits (ICs) for microprocessors routinely dissipate power densities on the order of 50 W/cm2. This large power is due to the localized heating of ICs operating at high frequencies and must be managed for future highfrequency microelectronic...
Briefs: Materials
Polyimide Aerogel Thin Films
Polyimide aerogels have been cross-linked through multifunctional amines. This invention builds on “Polyimide Aerogels With Three-Dimensional Cross-Linked Structure,” (LEW-18486-1), NASA Tech Briefs, Vol. 34, No. 8 (August 2010), page 38, and may be considered as a continuation of that invention, which results in a...
Briefs: Materials
Composite Laminate With Coefficient of Thermal Expansion Matching D263 Glass
The International X-ray Observatory project seeks to make an X-ray telescope assembly with 14,000 flexible glass segments. The glass used is commercially available SCHOTT D263 glass. Thermal expansion causes the mirror to distort out of alignment. A housing material is...
Briefs: Manufacturing & Prototyping
Heat Shield Employing Cured Thermal Protection Material Blocks Bonded in a Large-Cell Honeycomb Matrix
A document describes a new way to integrate thermal protection materials on external surfaces of vehicles that experience the severe heating environments of atmospheric entry from space. Cured blocks of thermal protection materials are bonded into...
News: Semiconductors & ICs
Many organic contaminants in the air and in drinking water need to be detected at very low-level concentrations. Research published by the laboratory of Prashant V. Kamat, the John A. Zahm Professor of Science at...
Briefs: Manufacturing & Prototyping
Single-Layer, All-Metal Patch Antenna Element With Wide Bandwidth
It is known that the impedance at the center of a patch antenna element is a short circuit, implying that a wire or post can be connected from the patch to the groundplane at this point without impacting radiation performance. In principle, this central post can be used to support...
Briefs: Manufacturing & Prototyping
Scanning Laser Infrared Molecular Spectrometer (SLIMS)
This prototype innovation is a novel design that achieves very long, effective laser path lengths that are able to yield ppb (parts per billion) and sub-ppb measurements of trace gases. SLIMS can also accommodate multiple laser channels covering a wide range of wavelengths, resulting in...
Briefs: Manufacturing & Prototyping
Next-Generation Microshutter Arrays for Large-Format Imaging and Spectroscopy
A next-generation microshutter array, LArge Microshutter Array (LAMA), was developed as a multi-object field selector. LAMA consists of small-scaled microshutter arrays that can be combined to form large-scale microshutter array mosaics. Microshutter actuation is...
Briefs: Materials
Building on previous knowledge acquired through research on thin-film batteries, three-dimensional (3D) porous macroscopic particles...
Briefs: Materials
Enhanced-Adhesion Multiwalled Carbon Nanotubes on Titanium Substrates for Stray Light Control
Carbon nanotubes previously grown on silicon have extremely low reflectance, making them a good candidate for stray light suppression. Silicon, however, is not a good structural material for stray light components such as tubes, stops, and baffles....
Briefs: Materials
Detection of Carbon Monoxide Using Polymer-Composite Films With a Porphyrin-Functionalized Polypyrrole
Post-fire air constituents that are of interest to NASA include CO and some acid gases (HCl and HCN). CO is an important analyte to be able to sense in human habitats since it is a marker for both pre-fire detection and post-fire cleanup.
Briefs: Materials
Ultra-Lightweight Nanocomposite Foams and Sandwich Structures for Space Structure Applications
Microcellular nanocomposite foams and sandwich structures have been created to have excellent electrical conductivity and radiation-resistant properties using a new method that does not involve or release any toxicity. The nanocomposite structures have...
Application Briefs: Materials
A high-performance thin-film product created specifically for NASA’s Jet Propulsion Laboratory in Pasadena, CA, is being used to ensure the electrical currents from the Mars Rover Curiosity’s...
Techs for License: Materials
MothEye Non-Reflective Display Coating Kills Glare and Improves Contrast
Sub-wavelength nanostructures virtually eliminate glare and minimize reflection while enhancing contrast and light transmission to over 99% in the visible wavelengths. Sony Chemical has developed manufacturing expertise in this nanostructure coating, which is called...
News: Energy
A study of over four million absorbent minerals has determined that industrial minerals called zeolites could help electricity producers slash as much as 30 percent of the parasitic energy...
News: Materials
Seismic Tests of Full-Scale Building Predict Earthquake Damage
What happens when you put a fully equipped five-story building — which includes an intensive care unit, a surgery suite, piping and air conditioning, fire barriers, and even a working elevator — through a series of high-intensity earthquakes?
News: Materials
Creators of a nanotech-based system that captures carbon dioxide from the atmosphere within a submarine while providing a more environmentally friendly removal process have won the...
News: Green Design & Manufacturing
Copper is one of the few metals that can turn carbon dioxide into hydrocarbon fuels with relatively little energy, but it is temperamental and easily oxidized. MIT researchers have...
Briefs: Materials
Over the past 30 years, significant technology gains in polymer engineering have greatly expanded the applications suited to adhesive bonding with epoxy resins. Advanced bonding...
Briefs: Materials
Electrochemical Ultracapacitors Using Graphitic Nanostacks
Electrochemical ultracapacitors (ECs) have been developed using graphitic nanostacks as the electrode material. The advantages of this technology will be the reduction of device size due to superior power densities and relative powers compared to traditional activated carbon electrodes....
Briefs: Manufacturing & Prototyping
Techniques for Solution-Assisted Optical Contacting
A document discusses a “solution-assisted contacting” technique for optical contacting. An optic of surface flatness Lambda/20 was successfully contacted with one of “moderate” surface quality, or Lambda/4. Optics used were both ultra-low expansion (ULE) glass (Lambda/4 and Lambda/20) and...
Briefs: Materials
Large-Strain Transparent Magnetoactive Polymer Nanocomposites
A document discusses polymer nanocomposite superparamagnetic actuators that were prepared by the addition of organically modified superparamagnetic nanoparticles to the polymer matrix. The nanocomposite films exhibited large deformations under a magnetostatic field with a low loading...
Briefs: Manufacturing & Prototyping
Graphene Transparent Conductive Electrodes for Next- Generation Microshutter Arrays
Graphene is a single atomic layer of graphite. It is optically transparent and has high electron mobility, and thus has great potential to make transparent conductive electrodes. This invention contributes towards the development of graphene transparent conductive...
Briefs: Manufacturing & Prototyping
Fabrication of a Cryogenic Terahertz Emitter for Bolometer Focal Plane Calibrations
A fabrication process is reported for prototype emitters of THz radiation, which operate cryogenically, and should provide a fast, stable blackbody source suitable for characterization of THz devices. The fabrication has been demonstrated and, at the time of this...
Briefs: Manufacturing & Prototyping
Fabrication of an Absorber-Coupled MKID Detector
Absorber-coupled microwave kinetic inductance detector (MKID) arrays were developed for submillimeter and farinfrared astronomy. These sensors comprise arrays of lambda/2 stepped microwave impedance resonators patterned on a 1.5-mm-thick silicon membrane, which is optimized for optical coupling. The...
News: Materials
Harnessing solar energy can be as simple as tuning the optical and electronic properties of metal oxides at the atomic level by making an artificial crystal or super-lattice...
News: Materials
'Tunable' Metal Films Increase Electrical Conductivity
Cornell chemists have developed a way to make porous metal films with up to 1,000 times the electrical conductivity offered by previous methods. Their technique opens the door to creating a wide variety of metal nanostructures for engineering and biomedical applications.
The new method builds...
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How Sift's Unified Observability Platform Accelerates Drone Innovation

