Showing 1 - 11 results of 11 for search 'I.Q. (film)', čas poizvedbe: 0.13s Refine Results
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    Ultrahigh Electrostrictive Effect in Lead-Free Sodium Bismuth Titanate-Based Relaxor Ferroelectric Thick Film od Yizhuo Li, Jinyan Zhao, Zhe Wang, Kun Zheng, Jie Zhang, Chuying Chen, Lingyan Wang, Genshui Wang, Xin Li, Yulong Zhao, Gang Niu, Wei Ren

    Izdano 2024-08-01
    “...Further, in the x = 0.11 thick films with an ergodic relaxor state, an ultrahigh electrostrictive coefficient <i>Q</i> of 0.32 m<sup>4</sup>/C<sup>2</sup> was achieved. ...”
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    Article
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    High Electric Field Enhancement Induced by Modal Coupling for a Plasmonic Dimer Array on a Metallic Film od Jiawei Liu, Ziming Meng, Jinyun Zhou

    Izdano 2024-02-01
    “...In this paper, we investigated a hybrid structure consisting of a hemispheric dimer array and a gold film and realized resonant mode coupling of the surface lattice resonance (SLR) and surface plasmon polariton (SPP). ...”
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    Miniaturized Multi-Cantilever MEMS Resonators with Low Motional Impedance od Haolin Li, Qingrui Yang, Yi Yuan, Shuai Shi, Pengfei Niu, Quanning Li, Xuejiao Chen, Menglun Zhang, Wei Pang

    Izdano 2024-05-01
    “...A double-sided actuating design, which utilizes a resonator with a 2.5 μm thick AlN film as the passive layer, is employed to reduce <i>R<sub>m</sub></i>. ...”
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    Article
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    Heat Transfer Enhancement in a 3D-Printed Compact Heat Exchanger od Marcin Kruzel, Tadeusz Bohdal, Krzysztof Dutkowski

    Izdano 2024-09-01
    “...The tests were carried out under the following thermal and flow conditions: <i>G</i> = 10–450 [kg m−² s<sup>−1</sup>], <i>q</i> = 2000–25,000 [W m<sup>−</sup>²], and <i>t<sub>s</sub></i> = 30–40 [°C]. ...”
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    Article
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    Numerical Investigation of Flow Boiling in Interconnected Microchannels at Varying Mass Fluxes od Yuanhua Li, Zhanxiu Chen, Cang Huhe, Yao Su, Hewei Xing

    Izdano 2024-04-01
    “...It was found that fluid experiences similar bubble and slug flow in different numbers of IMCs and the RMC at low mass flux. At a heat flux of <i>q</i> = 90 W/cm<sup>2</sup>, the downstream regions of the IMCs produce vapor films that span the channels, obstructing the cross-section and weakening the flow exchange between the channels, which lead the heat transfer performance factor of IMC-3, reaching 148.43%, 110.04%, and 116.92% of the RMC, IMC-5, and IMC-7. ...”
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