Leakage through laminated bladder structures with holes in the diffusion barrier.
Steady state leakage rate by diffusion through laminated composite bladder structure with cylindrical hole
Engineering topics
Publications and source records attributed to Johnson, R. L..
Steady state leakage rate by diffusion through laminated composite bladder structure with cylindrical hole
Spiral groove face seals for improved sealing of liquid sodium flow
Conventional face contact seal performance improved by incorporating spiral groove geometry, discussing liquid sodium containment
This report contains the results of a fifteen month analytical and experimental study of the leakage rate of the pressurant gases (N2, He) and the propellant vapors (N2O4,N2H4) through bladder structures consisting of two layers of Teflon separated by a metallic foil diffusion barrier containing microscopic or larger holes. Results were obtained for the steady state leakage rate through circular holes and long rectangular openings in the barrier for arbitrary thicknesses of the two Teflon layers. The effect of hole shape and relative hole position on the leakage rate were studied. The transient problem was analyzed and it was shown that steady state calculations are adequate for estimating the leakage rate. A computer program entitled "Diffusion Analyzer Program" was developed to calculate the leakage rate, both transient and steady state. Finally, the analytical results were compared to experimentally determined values of the leakage rate through a model laminated bladder structure. The results of the analysis are in good agreement with experiment. The experimental effort (Part II of the Bladder Permeation Program) measured the solubility, diffusion coefficient and permeability of helium, nitrogen and nitrogen tetroxide vapor through Teflon TFE and FEP membranes. Data were obtained in the temperature range of 25 to 100 C at pressures ranging from near vacuum to about 20 atmospheres. Results of the experimental effort were compared with the limited data previously reported. As a verification to the applicability of results to actual bladder systems, counter diffusion tests were performed with a laminated sample containing aluminum foil with a selected group of holes.
Molybdenum disulfide as lubricant, discussing use in bonded solid films, low concentration liquid mixtures, etc
Viscoseal operation in superlaminar flow regime noting pressure patterns, end effect, gas ingestion and sealing capacity
Metallic film diffusion into metal or ceramic surfaces for boundary lubrication in aerospace environments
Wear and friction of impregnated mechanical carbons at high temperatures in air or nitrogen
Improved performance of face contact seal in liquid sodium by incorporation of spiral groove geometry
Viscoseal operation in superlaminar flow regime noting pressure patterns, end effect, gas ingestion and sealing capacity
Lubrication, and friction and wear concepts for high vacuum applications
Lubrication and wear in high vacuum, considering inability to maintain oxide films, evaporation of lubricants, heat transfer and sliding friction
Performance of inerted lubrication system for high temperature turbine engines
Theoretical and experimental study of convective inertia and gas ingestion effects on flow regimes of viscoseal
Wire material /Inconel/ having high friction and low wear characteristics, reduces vibratory stress and prevents compressor blade failure.
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Wear and friction of various polymer laminates in liquid nitrogen and in liquid hydrogen
Pressure patterns, gas ingestion and sealing capacity of viscoseals investigated using oil, water and liquid sodium as sealed fluids