In a previous research program for the Jet Propulsion- Laboratory, extensive studies led to the development and specifications of three zinc oxide-pigmented thermal-control coatings. The principal objectives of this program are: improvement of the three paints (as engineering materials), determination of the validity of our accelerated space-simulation testing, and continuation of the zinc oxide photolysis studies begun in the preceding program. Specific tasks that are discussed include: improvement of potassium silicate coatings as engineering materials and elucidation of their storage and handling problems; improvement of methyl silicone coatings as engineering materials; studies of zinc oxide photolysis to establish reasons for the obser...
Using zinc orthotitanate-pigmented potassium silicate paints for thermal control surface coating
Mechanisms of recovery of radiation damaged silicate treated zinc oxide thermal control coating
Solar radiation induced damage to optical property of zinc oxide semiconducting pigment coatin
Luminescence studies, chemical analyses, X-ray diffraction examinations, and reflectance measurement...
The development of a large scale manufacturing method for the production of a stable zinc orthotitan...
The preparation and evaluation of zinc orthotitanate and of several new pigments and the environment...
Efforts to develop an engineering paint were concentrated on inorganic silicate-bonded systems as op...
The objective of significantly advancing the state-of-the-art of white, spacecraft-radiator coatings...
Thermal stability of double zirconium silicate pigment coatings, and of potassium silicate treated z...
Reflectance measurements of irradiated specimens of zinc oxide and zinc orthotitanate white pigment ...
Results are given of a class of silicone paints undergoing space qualification on IMP-H. In addition...
The potential of zinc orthotitanate as a pigment for spacecraft thermal control was demonstrated. Th...
Reactive encapsulation methods for thermal stabilization of zinc orthotitanate resin paints for spac...
Development of stable thermal control coatings with low solar absorptance to infrared emittance rati
Degradation model of solar radiation damage to optical properties of zinc oxide pigments used for sp...
Using zinc orthotitanate-pigmented potassium silicate paints for thermal control surface coating
Mechanisms of recovery of radiation damaged silicate treated zinc oxide thermal control coating
Solar radiation induced damage to optical property of zinc oxide semiconducting pigment coatin
Luminescence studies, chemical analyses, X-ray diffraction examinations, and reflectance measurement...
The development of a large scale manufacturing method for the production of a stable zinc orthotitan...
The preparation and evaluation of zinc orthotitanate and of several new pigments and the environment...
Efforts to develop an engineering paint were concentrated on inorganic silicate-bonded systems as op...
The objective of significantly advancing the state-of-the-art of white, spacecraft-radiator coatings...
Thermal stability of double zirconium silicate pigment coatings, and of potassium silicate treated z...
Reflectance measurements of irradiated specimens of zinc oxide and zinc orthotitanate white pigment ...
Results are given of a class of silicone paints undergoing space qualification on IMP-H. In addition...
The potential of zinc orthotitanate as a pigment for spacecraft thermal control was demonstrated. Th...
Reactive encapsulation methods for thermal stabilization of zinc orthotitanate resin paints for spac...
Development of stable thermal control coatings with low solar absorptance to infrared emittance rati
Degradation model of solar radiation damage to optical properties of zinc oxide pigments used for sp...
Using zinc orthotitanate-pigmented potassium silicate paints for thermal control surface coating
Mechanisms of recovery of radiation damaged silicate treated zinc oxide thermal control coating
Solar radiation induced damage to optical property of zinc oxide semiconducting pigment coatin