menu
{ "item_title" : "Testing and Optimization of Electrically Conductive Spacecraft Coatings", "item_author" : [" R. J. Mell", "G. E. Wertz", "Nasa Technical Reports Server (Ntrs) "], "item_description" : "This is the final report discussing the work done for the Space Environments and Effects (SEE) Program. It discusses test chamber design, coating research, and test results on electrically thermal control coatings. These thermal control coatings are being developed to have several orders of magnitude higher electrical conductivity than most available thermal control coatings. Most current coatings tend to have a range in surface resistivity from 1,011 to 1,013 ohms/sq. Historically, spacecraft have had thermal control surfaces composed of dielectric materials of either polymers (paints and metalized films) or glasses (ceramic paints and optical solar reflectors). Very seldom has the thermal control surface of a spacecraft been a metal where the surface would be intrinsically electrically conductive. The poor thermal optical properties of most metals have, in most cases, stopped them from being used as a thermal control surface. Metals low infrared emittance (generally considered poor for thermal control surfaces) and/or solar absorptance, have resulted in the use of various dielectric coatings or films being applied over the substrate materials in order to obtain the required optical properties.", "item_img_path" : "https://covers2.booksamillion.com/covers/bam/1/28/727/237/1287272371_b.jpg", "price_data" : { "retail_price" : "17.75", "online_price" : "17.75", "our_price" : "17.75", "club_price" : "17.75", "savings_pct" : "0", "savings_amt" : "0.00", "club_savings_pct" : "0", "club_savings_amt" : "0.00", "discount_pct" : "10", "store_price" : "" } }
Testing and Optimization of Electrically Conductive Spacecraft Coatings|R. J. Mell

Testing and Optimization of Electrically Conductive Spacecraft Coatings

local_shippingShip to Me
In Stock.
FREE Shipping for Club Members help

Overview

This is the final report discussing the work done for the Space Environments and Effects (SEE) Program. It discusses test chamber design, coating research, and test results on electrically thermal control coatings. These thermal control coatings are being developed to have several orders of magnitude higher electrical conductivity than most available thermal control coatings. Most current coatings tend to have a range in surface resistivity from 1,011 to 1,013 ohms/sq. Historically, spacecraft have had thermal control surfaces composed of dielectric materials of either polymers (paints and metalized films) or glasses (ceramic paints and optical solar reflectors). Very seldom has the thermal control surface of a spacecraft been a metal where the surface would be intrinsically electrically conductive. The poor thermal optical properties of most metals have, in most cases, stopped them from being used as a thermal control surface. Metals low infrared emittance (generally considered poor for thermal control surfaces) and/or solar absorptance, have resulted in the use of various dielectric coatings or films being applied over the substrate materials in order to obtain the required optical properties.

Customers Also Bought

Details

  • ISBN-13: 9781287272373
  • ISBN-10: 1287272371
  • Publisher: Bibliogov
  • Publish Date: August 2013
  • Dimensions: 9.69 x 7.44 x 0.13 inches
  • Shipping Weight: 0.29 pounds
  • Page Count: 64

Related Categories

You May Also Like...

    1

BAM Customer Reviews