An experimental investigation of the dynamic behavior of the liquid-vapor interface under adverse low-gravitational conditions
Liquid-vapor interface stability and dynamic behavior investigated under low-gravity conditions
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Liquid-vapor interface stability and dynamic behavior investigated under low-gravity conditions
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Liquid-vapor interface in weightless environment noting dynamic behavior, configuration parameters and dependence on model size
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Investigating dynamic nonshock properties of microscale fluctuations in interplanetary medium using plasma and magnetic field data from Mariner 5 space probe
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A torsional pendulum apparatus designed for testing in situ in vacuum, the dynamic mechanical properties of materials is described. The application of this apparatus to an experimental program to measure the effects of vacuum on the mechanical properties of two ablator materials (a foamed material and a filled elastomer) and a solid rocket propellant (a filled elastomer) is presented. Results from the program are discussed as to the effects of vacuum on the mechanical properties of these three materials. In addition, time-temperature-superposition, as a technique for accelerating vacuum induced changes in mechanical properties, is discussed with reference to the three materials tested in the subject program.