Showing 1 - 20 results of 5,757 for search '(( significantly higher release ) OR ( significantly ((longer decrease) OR (largest decrease)) ))', query time: 0.34s Refine Results
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    Architecture Can Significantly Alter the Energy Release Rate from Nanocomposite Energetics by Haiyang Wang (22389)

    Published 2019
    “…However, the large difference in propagation velocity between E-spray and E-spun, given the minor difference in density, clearly points to the importance of microarchitecture on reaction properties. The relative energy release rate of E-spun Al/PVDF compared to the E-sprayed and 3-D printed case is an enhancement of ∼6× and 18×, respectively, and the energy release rate of E-spun Al/AP/PVDF is ∼19× higher than that of E-sprayed and 3D-printed samples. …”
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    Architecture Can Significantly Alter the Energy Release Rate from Nanocomposite Energetics by Haiyang Wang (22389)

    Published 2019
    “…However, the large difference in propagation velocity between E-spray and E-spun, given the minor difference in density, clearly points to the importance of microarchitecture on reaction properties. The relative energy release rate of E-spun Al/PVDF compared to the E-sprayed and 3-D printed case is an enhancement of ∼6× and 18×, respectively, and the energy release rate of E-spun Al/AP/PVDF is ∼19× higher than that of E-sprayed and 3D-printed samples. …”
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