Langley Research Center
The Langley Research Center (LaRC or NASA Langley), located in Hampton, Virginia, near the Chesapeake Bay front of Langley Air Force Base, is the oldest of NASA's field centers. LaRC has focused primarily on aeronautical research but has also tested space hardware such as the Apollo Lunar Module. In addition, many of the earliest high-profile space missions were planned and designed on-site. Langley was also considered a potential site for NASA's Manned Spacecraft Center prior to the eventual selection of Houston, Texas.Established in 1917 by the National Advisory Committee for Aeronautics (NACA), the research center devotes two-thirds of its programs to aeronautics and the rest to space. LaRC researchers use more than 40 wind tunnels to study and improve aircraft and spacecraft safety, performance, and efficiency. Between 1958 and 1963, when NASA (the successor agency to NACA) started Project Mercury, LaRC served as the main office of the Space Task Group.
In September 2019, after previously serving as associate director and deputy director, Clayton P. Turner was appointed director of NASA Langley. Provided by Wikipedia
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Critical combinations of torsion and direct axial stress for thin-walled cylinders
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Critical combinations of shear and longitudinal direct stress for long plates with transverse curvature
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Stresses around rectangular cut-outs in skin-stringer panels under axial loads - II
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Effect of normal pressure on the critical compressive and shear stress of curved sheet
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Effect of normal pressure on the critical compressive stress of curved sheet
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Charts for calculation of the critical compressive stress for local instability of idealized web- and T-stiffened panels
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Critical stress for an infinitely long flat plate with elastically restrained edges under combined shear and direct stress
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Charts for calculation of the critical stress for local instability of columns with I-, Z-, channel, and rectangular-tube section
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Principles of moment distribution applied to stability of structures composed of bars or plates
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Shear lag in box beams methods of analysis and experimental investigations
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Tables of stiffness and carry-over factor for flat rectangular plates under compression
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Critical-stress of thin-walled cylinders in axial compression
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Plastic buckling of simply supported compressed plates
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The effect of internal pressure on the buckling stress of thin-walled circular cylinders under torsion
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Approximate stress analysis of multistringer beams with shear deformation of the flanges
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The strength and stiffness of shear webs with and without lightening holes
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Related Subjects
Strains and stresses
Buckling (Mechanics)
Charts, diagrams, etc
Loads (Mechanics)
Aluminum alloys
Plates (Engineering)
Shear (Mechanics)
Cylinders
Airplanes
Deformations (Mechanics)
Research
Thin-walled structures
Aerodynamics
Holes
Pipe
Shells (Engineering)
Stability
Strength of materials
Torsion
Tubes
Aeronautics
Atmospheric pressure
Axial loads
Bars (Engineering)
Box beams
Columns
Curvature
Design and construction
Elasticity
Flanges