Heng Ban

Affiliations: 
Mechanical and Aerospace Utah State University, Logan, UT, United States 
Area:
Mechanical Engineering, Molecular Physics
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"Heng Ban"
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Publications

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Song Z, Zhang L, Wang D, et al. (2021) Thermal diffusivity measurement of microscale slabs by rear-surface detection thermoreflectance technique. The Review of Scientific Instruments. 92: 034903
Hua Z, Spackman J, Ban H. (2019) Characterization of Kapitza resistances of natural grain boundaries in cerium oxide Materialia. 5: 100230
Hua Z, Fleming A, Ban H. (2019) The study of using a multi-layered model to extract thermal property profiles of ion-irradiated materials International Journal of Heat and Mass Transfer. 131: 206-216
Hamaoui G, Horny N, Hua Z, et al. (2018) Electronic contribution in heat transfer at metal-semiconductor and metal silicide-semiconductor interfaces. Scientific Reports. 8: 11352
Guillou J, Lavadiya DN, Munro T, et al. (2018) From lignocellulose to biocomposite: Multi-level modelling and experimental investigation of the thermal properties of kenaf fiber reinforced composites based on constituent materials Applied Thermal Engineering. 128: 1372-1381
Hua Z, Ban H. (2017) Thermal diffusivity measurement of focused-ion-beam fabricated sample using photothermal reflectance technique. The Review of Scientific Instruments. 88: 054901
Fleming A, Folsom C, Ban H, et al. (2017) A general method to analyze the thermal performance of multi-cavity concentrating solar power receivers Solar Energy. 150: 608-618
Xing C, Munro T, Jensen C, et al. (2017) Thermal characterization of natural and synthetic spider silks by both the 3ω and transient electrothermal methods Materials & Design. 119: 22-29
Hua Z, Ban H. (2017) A new measurement approach for interface thermal resistance using frequency-scan photothermal reflectance technique International Journal of Thermal Sciences. 117: 59-67
Munro T, Liu L, Ban H, et al. (2017) Thermophysical properties of thin fibers via photothermal quantum dot fluorescence spectral shape-based thermometry International Journal of Heat and Mass Transfer. 112: 1090-1097
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