NASA contributions to the technology of inorganic coatings

Cover of: NASA contributions to the technology of inorganic coatings | Jerry D. Plunkett

Published by National Aeronautics and Space Administration; [for sale by the Supt. of Docs., U.S. Govt. Print. Off.] in Washington,D.C .

Written in English

Read online


  • Heat resistant materials,
  • Protective coatings

Edition Notes

Book details

Statementby Jerry D. Plunkett.
SeriesNASA SP-5014, Technology survey / National Aeronautics and Space Administration, Technology Utilization Division, Technology survey (United States. National Aeronautics and Space Administration. Technology Utilization Division), NASA SP -- -5014.
ContributionsDenver Research Institute.
LC ClassificationsTA418.76 .P568 1964
The Physical Object
Paginationvii, 260 p. :
Number of Pages260
ID Numbers
Open LibraryOL21798830M

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NASA contributions to the technology of inorganic coatings (Vol-1) [Jerry D. Plunkett] on *FREE* shipping on qualifying offers. This book was digitized and reprinted from the collections of the University of California Libraries. It was produced from digital images created through the libraries’ mass digitization efforts.

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NASA contributions to the technology of inorganic coatings. Washington, National Aeronautics and Space. Additional Physical Format: Online version: Plunkett, Jerry D.

NASA contributions to the technology of inorganic coatings. Washington, National Aeronautics and Space Administration; [for sale by the Superintendent of Documents, U.S.

Govt. Print. NASA CONTRIBUTIONS TO THE TECHNOLOGY OF INORGANIC COATIXGS NASA SP m ilte ivide spectrum zf X4SA refear& in in- organic coatings is summarized in this detailed publication.

In discussing thermophototropic coatings, the text constructs a phenomenological model to describe the response of the materials Size: 5MB. Selective Coatings The ideal solar collector should be coated with selective black coating, with an absorptivity 0{ = greater than for solar wavelengths ( to micron) and an emissivity e = less than 0.

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Organic coatings science and technology, 2 nd ed. [Book Reviews] Article (PDF Available) in IEEE Electrical Insulation Magazine 16(6) December with Reads How we measure 'reads'.

(California Institute of Technology/Michael Kelzenberg) The Mechanisms of Stabilizing CIGS Using Nanoscale Self- Assembled Interlayers of Organofunctional Silanes (NASA Glenn Research Center/Timothy Peshek) Organic-Inorganic Perovskite Thin Film Solar Cells for Space Applications (Toledo University/Yanfa Yan) – Break.

Innovators at NASA's Glenn Research Center have developed two durable environmental barrier coatings (EBCs) for use with ceramic matrix composite (CMC) components. CMCs are lightweight composites used to reduce fuel consumption in advanced. The LED technology used in NASA space shuttle plant growth experiments has contributed to the development of medical devices such as award-winning W a hand-held, high-intensity, LED unit developed by Quantum Devices Inc.

The WARP 10 is intended for the temporary relief of minor muscle and joint pain. New coating processing technology is being pioneered at NASA Glenn's Research Center in Cleveland.

The technology is used to protect advanced silicon based ceramic engine components that are being developed for future engines. This coating processing technology will enable more complex and thinner coatings than are currently possible.


NCC prepared by D. Insulation Materials Numerous applications for residential, commercial, and industrial energy use From aerogels and organic polymers to phenolic-impregnated carbon ablators and powder-filled insulating layers, NASA's breakthrough materials have the potential to significantly impact.

But the space agency's contributions to people's everyday lives here on Earth still run wide and deep.

NASA's primary charter is to explore and better understand the cosmos. But much of the technology NASA developed in reaching for the stars has filtered down to the masses. History of the Spinoff publication. Spinoff is a NASA publication featuring technology made available to the public.

SinceNASA has featured an average of 50 technologies each year in the annual publication, and Spinoff maintains a searchable database of these technologies.

When products first spun off from space research, NASA presented a black and white report intitled the. Scott, K.T. and Restall, J.E. () Some aspects of the development and performance of ceramic thermal barrier coatings for gas turbines, in Thermal Spray Technology, New Ideas and Processes.

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This videotape shows how a NASA inorganic coating for metal was used on the Statue of Liberty during it recent refurbishment.

Category Science & Technology. The truth is NASA is doing much more than just studying outer space, since its inception. Today, you use a lot of products in your daily life that you probably didn’t know were the results of NASA research and development.

We are highlighting a few amazing NASA inventions that we take for granted every day. In the early s, a company called Inorganic Coatings Inc. used the concept to produce a nontoxic, water-based coating, IC zinc silicate, which readily bonds with steel and dries within 30 minutes to a hard, ceramiclike finish.

The coating has been applied to bridge girders, pipelines, oil rigs, dock equipment, buoys. Nanomaterials-Based Coatings: Fundamentals and Applications presents the fundamental concepts and applications of nanomaterial-based coatings in anticorrosion, antiwear, antibacterial, antifungal, self-cleaning, superhydrophobic, super hard, super heat resistance, solar reflective, photocatalytic and radar absorbing coatings.

It is an important. NASA has inarguably been responsible for developing some of the most important technologies of the past half-century.

Indeed, NASA has a rich history of ushering in astonishing breakthroughs in science and technology, with its influence felt across nearly all industries and by every single American—and that’s not an exaggeration. Much of the technology NASA developed in reaching for the stars has filtered down to the masses, leading to innovations such as GPS navigation and better, more nutritious infant formula.

Nasa scientists have developed lots of useful substances: anti-corrosion coatings made from zinc dust and potassium silicate have prevented rusting of launch equipment at coastal space centres – as well as the Statue of Liberty – and emulsified zero-valent iron can break down toxic chemicals, including trichloroethylene (‘trike’), that.

Journal Scope. Chemistry of Materials is devoted to the publication of original contributions on forefront, fundamental research at the interface of chemistry, chemical engineering, and materials science. Both theoretical and experimental studies which focus on the preparation or understanding of materials with unusual or useful properties are relevant.

New thermal coatings for spacecraft and satellites developed using metamaterials. A team of researchers, which includes the University of Southampton, have developed new technology which could prompt a significant change for a spacecraft or satellite.

A chemically treated fabric that won't burn or give off fumes was developed by NASA to protect astronauts. It's now used to make suits for race car drivers and pit crews. Heat-resistant paint. Inorganic paint protects the hot parts of automobiles like exhaust.

According to one historical account documented in this book by George Low, NASA’s deputy administrator from toNASA built mock-ups of the entire Apollo spacecraft, and then tried to set them on fire.

If they burned, Low continued, NASA redesigned them, rebuilt them, and tried again. The coating methods are normally categorized as organic, inorganic, and metallurgical coatings.

In more detail, the photo-grafting polymerization, the initiated chemical vapor deposition, and the UV-curable coatings are utilized for organic coatings on polymers.

New thermal coatings for spacecraft and satellites developed using metamaterials by University of Southampton The SpaceX Dragon spacecraft arrives at the International Space Station. Dongming Zhu is a senior Materials Research Engineer at Army Research Laboratory, Vehicle Technology Directorate, and Durability and Protective Coatings Branch of Structures and Materials Division, at NASA Glenn Research Center.

His expertise covers the areas of thermal conductivity, lattice defects and transport, high temperature oxidation. The surface temperature of object rises due to the accumulated heat when it absorbs solar energy, the excessive temperature caused by solar radiation will result in many inconveniences and even troubles in industrial production and daily life; in order to maintain the proper temperature of the object, a large amount of energy is consumed.

The development of effective and economic thermal Cited by: 1. 50 years, 50 giant leaps: How Nasa rocked our world Today, the National Aeronautics and Space Administration marks its first half-century of exploration and discovery.

But missions to the Moon and. A message from David Epner, Pres. Your Web search has landed you on the site of, arguably, the most technically sophisticated specification electroplating company in the country, and maybe in the world according to the University of Leicester in the UK.

To back up that statement, Epner Technology is the only plating company who has had a proprietary process, Laser Gold, selected for its. The microshutters are a new technology that was developed for the James Webb Space Telescope mission. They are basically tiny windows with shutters that each measure by microns, or about the size of a bundle of only a few human hairs.

Engages in research, development, and flight application of advanced materials, structures, and mechanisms for aerospace systems, with activities ranging from materials research at nanoscale to design and testing of structures and mechanical systems for aeronautics and space flight programs.

Research and development activities are focused on developing enabling technologies for. Science & Technology The role of the Science Mission Directorate (SMD) is to enable NASA to achieve its science goals in the context of the national science agenda.

SMD’s strategic decisions regarding future missions and scientific pursuits are guided by Agency goals, input from the science community, and a commitment to preserve a balanced. PCI is the global voice that offers technical solutions for the coatings, inks and adhesives industries, targeting formulators and manufacturers.

AkzoNobel is entering new territory with the help of pioneering technology developed by BYK-Gardner that can digitally measure and control the textured surfaces of powder coatings.

Dan M. Goebel received a B.S. in physics, an M.S. in electrical engineering, and a Ph.D. in applied plasma physics from the University of California, Los Angeles, inand respectively. He is a Fellow and Senior Research Scientist at the Jet Propulsion Laboratory, an Adjunct Professor of Electrical Engineering and Aerospace.

The NASA PCB Working Group (PCB WG) is a resource to NASA for printed circuit board technology assessment knowledge and recommendations for printed circuit board quality assurance policy. The group recommends Safety and Mission Assurance requirements for PCBs to the NASA Office of Safety and Mission Assurance via the NASA Workmanship Standards.

Kimetsan is one of the largest chemical companies in Turkey today. In terms of product number, the company is the biggest manufacturer of laboratory chemicals in Turkey.

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This multidisciplinary workshop focused on fostering successful space missions is free of charge and open for attendance to NASA Centers, Industry, Academia, International Organizations, and others interested in the subject matter.Fire retardant coatings are often required to protect a wide range of products of both flammable and nonflammable against fire.

It is an oldest, most efficient, and easiest method to apply any surface without modifying the intrinsic properties of materials. Moreover, the initial phase of fire always occurs on the surface by ignition, and hence, it is important to concentrate on the surface Author: Thirumal Mariappan.

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