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Modelling the fire resistance of cross‐laminated timber rib panels
Kleinhenz, M., Palma, P., Just, A., & Frangi, A. (2024). Modelling the fire resistance of cross‐laminated timber rib panels. Fire and Materials. https://doi.org/10.1002/fam.3226
An efficient analytical method to obtain the homogenised frequency-independent elastic material properties of cross-laminated timber elements
Vallely, S., & Schoenwald, S. (2023). An efficient analytical method to obtain the homogenised frequency-independent elastic material properties of cross-laminated timber elements. Journal of Sound and Vibration, 546, 117424 (24 pp.). https://doi.org/10.1016/j.jsv.2022.117424
Modelling the radiation efficiency of orthotropic cross-laminated timber plates with simply-supported boundaries
Santoni, A., Schoenwald, S., Fausti, P., & Tröbs, H. M. (2019). Modelling the radiation efficiency of orthotropic cross-laminated timber plates with simply-supported boundaries. Applied Acoustics, 143, 112-124. https://doi.org/10.1016/j.apacoust.2018.08.022
Influence of asphalt pavement on damping ratio and resonance frequencies of timber bridges
Schubert, S., Gsell, D., Steiger, R., & Feltrin, G. (2010). Influence of asphalt pavement on damping ratio and resonance frequencies of timber bridges. Engineering Structures, 32(10), 3122-3129. https://doi.org/10.1016/j.engstruct.2010.05.031
Vibration and damping behaviour of a cable-stayed timber deck bridge with asphalt pavement
Steiger, R., Schubert, S., Gülzow, A., Hugener, M., & Gsell, D. (2010). Vibration and damping behaviour of a cable-stayed timber deck bridge with asphalt pavement (p. (10 pp.). Presented at the 11th world conference on timber engineering (WCTE 2010). .