The key of this temperature-driven rejuvenation is a fast-heating rate (flash annealing) that brings the glass into a temperature regime above the glass …
Get a quoteenthalpy before the liquid state is reached, thereby leading to a global energy storage. This ultra-fast rejuvenation process is demonstrated for a Zr-based metallic glass, combining …
Get a quoteThere is an increasing prevalence of energy storage systems on the electricity grid network. However, as of yet, there is no overriding standard on how to deal with DC arc …
Get a quoteIn recent years, nitrogen-doped carbons show great application potentials in the fields of electrochemical energy storage and conversion. Here, the ultrafast and …
Get a quoteThis rejuvenation begins to occur in the glass transition temperature regime (defined by the flash‐anneal rate) and is shown both …
Get a quoteThis paper deals with the arc flash hazard calculation in large energy storage systems (ESSs), with specific reference to battery energy storage systems (BESSs)
Get a quoteIn this study, we have synthesized a high-entropy BNT-based ceramic (Bi 0.2 Na 0.2 K 0.2 Ba 0.2 Ca 0.2 TiO 3, BNKBCT) to investigate the effect of high …
Get a quoteThe key of this temperature-driven rejuvenation is a fast-heating rate (flash annealing) that brings the glass into a temperature regime above the glass transition within less than a …
Get a quoteWe predict that "entropy engineering" will be a successful strategy to break through the bottleneck of dielectric materials with high energy storage performance. This …
Get a quoteThis paper discusses the behavior of energy storage systems under arcing conditions and presents the results of available methods to estimate the dc arc-flash incident energy. …
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