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- W3017169871 abstract "We interrogate the extent to which grain size plays a role in augmenting the thermal conductivity and thermal energy storage capacity of a NiTi shape memory alloy (SMA) using the optical pump-probe technique frequency-domain thermoreflectance and advanced calorimetry techniques, respectively. To alter grain size, we apply a solution anneal process to a nanograined commercial NiTi sample and show that grain growth (from ~ 40 nm to ~ 60 µm) significantly increases thermal conductivity in both phases and improves the thermal storage capacity of the material by up to a factor of ~ 50. These results are contrary to the performance metrics achieved using conventional mechanisms that improve PCM thermal conductivity, and provide a viable route to develop elastocaloric refrigeration systems with a high coefficient of performance (COP) as well as large figure-of-merit passive thermal regulation methods for cooling high power density electronics." @default.
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- W3017169871 date "2020-06-01" @default.
- W3017169871 modified "2023-10-16" @default.
- W3017169871 title "Grain growth-induced thermal property enhancement of NiTi shape memory alloys for elastocaloric refrigeration and thermal energy storage systems" @default.
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- W3017169871 doi "https://doi.org/10.1016/j.ijheatmasstransfer.2020.119760" @default.
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