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Micro-computed tomography study on bread dehydration and structural changes during ambient storage
Chen, Y., Parrilli, A., Jaedig, F., Fuhrmann, A., Staedeli, C., Fischer, P., & Windhab, E. J. (2021). Micro-computed tomography study on bread dehydration and structural changes during ambient storage. Journal of Food Engineering, 296, 110462 (10 pp.). https://doi.org/10.1016/j.jfoodeng.2020.110462
3D finite element models from serial section histology of skeletal muscle tissue – The role of micro-architecture on mechanical behaviour
Kuravi, R., Leichsenring, K., Böl, M., & Ehret, A. E. (2021). 3D finite element models from serial section histology of skeletal muscle tissue – The role of micro-architecture on mechanical behaviour. Journal of the Mechanical Behavior of Biomedical Materials, 113, 104109 (19 pp.). https://doi.org/10.1016/j.jmbbm.2020.104109
Fracture mechanics test standards for fiber-reinforced polymer composites: suggestions for adapting them to Industry 4.0 and the digital age
Brunner, A. J. (2020). Fracture mechanics test standards for fiber-reinforced polymer composites: suggestions for adapting them to Industry 4.0 and the digital age. In F. Iacoviello, A. Sedmak, L. Marsavina, B. Blackman, G. A. Ferro, V. Shlyannikov, … L. Banks-Sills (Eds.), Procedia structural integrity: Vol. 28. 1st virtual European conference on fracture - VECF1 (pp. 546-554). https://doi.org/10.1016/j.prostr.2020.10.064
Multiscale imaging and characterization of the effect of mixing temperature on asphalt concrete containing recycled components
Cavalli, M. C., Griffa, M., Bressi, S., Partl, M. N., Tebaldi, G., & Poulikakos, L. D. (2016). Multiscale imaging and characterization of the effect of mixing temperature on asphalt concrete containing recycled components. Journal of Microscopy, 264(1), 22-33. https://doi.org/10.1111/jmi.12412
Morphology characterization of foam bitumen and modeling for low temperature asphalt concrete
Hailesilassie, B. W. (2016). Morphology characterization of foam bitumen and modeling for low temperature asphalt concrete [Doctoral dissertation]. KTH Royal Institute of Technology.
A simple, fast and low-cost method for in situ monitoring of topographical changes and wear rate of a complex tribo-system under mixed lubrication
Meylan, B., Dogan, P., Sage, D., & Wasmer, K. (2016). A simple, fast and low-cost method for in situ monitoring of topographical changes and wear rate of a complex tribo-system under mixed lubrication. Wear, 364-365, 22-30. https://doi.org/10.1016/j.wear.2016.06.006
Structure of cellulose -silica hybrid aerogel at sub-micron scale, studied by synchrotron X-ray tomographic microscopy
Sedighi Gilani, M., Boone, M. N., Fife, J. L., Zhao, S., Koebel, M. M., Zimmermann, T., & Tingaut, P. (2016). Structure of cellulose -silica hybrid aerogel at sub-micron scale, studied by synchrotron X-ray tomographic microscopy. Composites Science and Technology, 124, 71-80. https://doi.org/10.1016/j.compscitech.2016.01.013
Visualization of water drying in porous materials by X-ray phase contrast imaging
Yang, F., Griffa, M., Bonnin, A., Mokso, R., Di Bella, C., Münch, B., … Lura, P. (2016). Visualization of water drying in porous materials by X-ray phase contrast imaging. Journal of Microscopy, 261(1), 88-104. https://doi.org/10.1111/jmi.12319
Pore structure of mortars with cellulose ether additions – study of the air-void structure
Wyrzykowski, M., Kiesewetter, R., Münch, B., Baumann, R., & Lura, P. (2015). Pore structure of mortars with cellulose ether additions – study of the air-void structure. Cement and Concrete Composites, 62, 117-124. https://doi.org/10.1016/j.cemconcomp.2015.04.016
Quantification of fly ash in hydrated, blended Portland cement pastes by backscattered electron imaging
Deschner, F., Münch, B., Winnefeld, F., & Lothenbach, B. (2013). Quantification of fly ash in hydrated, blended Portland cement pastes by backscattered electron imaging. Journal of Microscopy, 251(2), 188-204. https://doi.org/10.1111/jmi.12061
Density mapping of hardened cement paste using ptychographic X-ray computed tomography
Trtik, P., Diaz, A., Guizar-Sicairos, M., Menzel, A., & Bunk, O. (2013). Density mapping of hardened cement paste using ptychographic X-ray computed tomography. Cement and Concrete Composites, 36(1), 71-77. https://doi.org/10.1016/j.cemconcomp.2012.06.001
Size-fractionated characterization and quantification of nanoparticle release rates from a consumer spray product containing engineered nanoparticles
Hagendorfer, H., Lorenz, C., Kaegi, R., Sinnet, B., Gehrig, R., Goetz, N. V., … Ulrich, A. (2010). Size-fractionated characterization and quantification of nanoparticle release rates from a consumer spray product containing engineered nanoparticles. Journal of Nanoparticle Research, 12(7), 2481-2494. https://doi.org/10.1007/s11051-009-9816-6
Factors controlling bacterial attachment and biofilm formation on medium-chain-length polyhydroxyalkanoates (mcl-PHAs)
Mauclaire, L., Brombacher, E., Bünger, J. D., & Zinn, M. (2010). Factors controlling bacterial attachment and biofilm formation on medium-chain-length polyhydroxyalkanoates (mcl-PHAs). Colloids and Surfaces B: Biointerfaces, 76(1), 104-111. https://doi.org/10.1016/j.colsurfb.2009.10.021
Toward reproducible three-dimensional microstructure analysis of granular materials and complex suspensions
Holzer, L., & Münch, B. (2009). Toward reproducible three-dimensional microstructure analysis of granular materials and complex suspensions. Microscopy and Microanalysis, 15(2), 130-146. https://doi.org/10.1017/S1431927609090163
An investigation of the effect of processing conditions on the microstructure of vacuum plasma-sprayed Ti-Zr-Ni quasicrystal coatings
Bandyopadhyay, P. P., & Siegmann, S. (2008). An investigation of the effect of processing conditions on the microstructure of vacuum plasma-sprayed Ti-Zr-Ni quasicrystal coatings. Journal of Coatings Technology Research, 5(3), 379-383. https://doi.org/10.1007/s11998-008-9100-1
The effect of topographic characteristics on cell migration velocity
Kaiser, J. P., Reinmann, A., & Bruinink, A. (2006). The effect of topographic characteristics on cell migration velocity. Biomaterials, 27(30), 5230-5241. https://doi.org/10.1016/j.biomaterials.2006.06.002