High-power lithium-ion battery characterization dataset for stochastic battery modeling
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Separator system development for primary zinc- silver oxide battery
Prismatic and bobbin electrochemical cells for low temperature battery
Primary zinc, silver oxide battery design
Sterilizable battery separator material preparation process
Development program for separator and modified polyethylene separator material for silver-zinc battery, and program for development of sealed heat sterilizable batteries
Screening tests for separators in silver-zinc batteries
Inorganic separator for high temperature silver- zinc battery
Fabrication and testing of polyethylene battery separator material
Low temperature battery for space probe
Computer programs for processing and analyzing nickel-cadmium battery and time-dependent data
Lithium and copper electrode studies in research and development of high capacity nonaqueous secondary battery
Several phenomenological models that aspire to quantitative description of anomalous nonlinear mesoscopic elasticity are reviewed and compared with laboratory measurements. This class of nonlinearity, best known perhaps for slow dynamics and aging, is seen widely in imperfectly consolidated granular solids but is not well understood. Typical slow dynamic tests show that a modest conditioning oscillatory "pump" strain depresses material stiffness, which then recovers like the logarithm of time after conditioning ceases. Several phenomenological models based on physical arguments have been proposed that predict the material stiffness response to arbitrary pump strain histories during conditioning and recovery. Approximate closed form and numerical solutions to the models are presented that predict the quantitative influence of three key pump parameters: the pump's strain amplitude, the pump's strain rate, and the pump’s duration. Laboratory measurements on Berea sandstone, concrete and a confined single aluminum bead find that slow dynamic responses are linear in pump strain and independent of pump frequency. Measurements also show that, after pump-off, stiffness recovers over times far longer than the pump duration. These observations and others are compared to model predictions. One of the considered models, based on a picture of fast brittle damage and slow healing, successfully matches all these behaviors.
Low temperature batteries for deep space probes and extending battery usefulness by heating
Use of a sealed silver cadmium battery on explorer xii
Low temperature liquid ammonia battery for space probe application
Nickel-cadmium spacecraft battery with auxiliary charge control electrode
Low temperature battery - development of pasted plate cathode construction to extend cell life