Hypervelocity impacts into stainless-steel tubes armored with reinforced beryllium
Hypervelocity impact into stainless steel tubes armored with reinforced beryllium
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Hypervelocity impact into stainless steel tubes armored with reinforced beryllium
Warpage and creep in stainless steel valve components are decreased by a procedure in which components are machined to a semifinish and then cold soaked in a bath of cryogenic liquid. After the treatment they are returned to ambient temperature and machine finished to the final drawing dimensions.
Fabrication of counterflow double wall tantalum- stainless steel mercury boiler
Stress corrosion cracking evaluation of several precipitation hardened stainless steels
Accelerated test program results show which precipitation hardening stainless steels are resistant to stress corrosion cracking. In certain cases stress corrosion susceptibility was found to be associated with the process procedure.
Particle fracture in oxide dispersed stainless steels during plastic deformation at room temperature
"Dynamic" zirconium polyacrylic membrane is formed directly on stainless steel substrate without excessive corrosion of steel. Membrane is potentially useful in removal of contaminated chemicals from solution through reversed osmosis. Application includes use in filtration and desalination equipment, and in textile industry for separation of dyes from aqueous solvents.
A suitable member formed from sintered, powdered, stainless steel is contacted with a nitrate solution of a soluble alkali metal nitrate and a metal such as zirconium in a pH range and for a time sufficient to effect the formation of a membrane of zirconium oxide preferably including an organic polymeric material such as polyacrylic acid.
Effects of cold rolling on mechanical properties of type 310 stainless steel at room and cryogenic temperatures
Following successful application of Coulomb-Mohr and interaction equations for evaluation of safety margins in Albemet 162 brazed joints, two additional base metal/filler metal systems were investigated. Specimens consisting of stainless steel brazed with silver-base filler metal and titanium brazed with 1100 Al alloy were tested to failure under combined action of tensile, shear, bending and torsion loads. Finite Element Analysis (FEA), hand calculations and digital image comparison (DIC) techniques were used to estimate failure stresses and construct Failure Assessment Diagrams (FAD). This study confirms that interaction equation R(sub sigma) + R(sub tau) = 1, where R(sub sigma) and R(sub t u) are normal and shear stress ratios, can be used as conservative lower bound estimate of the failure criterion in stainless steel and titanium brazed joints.
Effect of surface roughness and spray powders on shear bond strength of plasma-sprayed alumina coatings on stainless steel
Microbial contamination obtained on stainless steel, aluminum, glass, and lucite surfaces after twenty days exposure to room air
Effects of cold rolling on notched and unnotched tensile properties of type 310 stainless steel
Crack propagation, delayed failure, and residual static strength of titanium, aluminum, and stainless steel alloys in air, three percent salt solution, and sea water
Low temperature notch toughness of cryoformed pressure vessels using 301-type stainless steel modifications
Ultrasonic vibration of an assembly of stainless steel instrumentation tubes ensures brazing without flux. Vibration with an ultrasonic transducer permits the brazing material to flow down each tube in contact with a seal plug installed in a pressure vessel wall.
Transmission, and backscatter coefficients for electron irradiated aluminum, and stainless steel foils
Effects of alkali liquid metal gettering agents on stainless steel corrosion