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  • (-) Organizational Unit = 302 Cellulose & Wood Materials
  • (-) Publication Year = 2013 - 2013
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Preliminary studies for use of dynamic mechanical analysis (DMA) to verify intensity of thermal wood modifications
Kutnar, A., Widmann, R., & Brémaud, I. (2013). Preliminary studies for use of dynamic mechanical analysis (DMA) to verify intensity of thermal wood modifications. International Wood Products Journal, 4(3), 158-165. https://doi.org/10.1179/2042645313Y.0000000044
Materials design inspired by tree and wood architecture
Burgert, I. (2013). Materials design inspired by tree and wood architecture. In P. Fratzl, J. W. C. Dunlop, & R. Weinkamer (Eds.), RSC smart material: Vol. 4. Materials design inspired by nature: function through inner architecture (pp. 129-149). https://doi.org/10.1039/9781849737555-00128
Cellulose nanofibril/ Layered silicates composite films for barrier applications
Zimmermann, T., Ho, T. T. T., Tingaut, P., & Caseri, W. (2013). Cellulose nanofibril/ Layered silicates composite films for barrier applications. In M. T. Postek, R. J. Moon, A. W. Rudie, & M. A. Bilodeau (Eds.), Production and applications of cellulose nanomaterials (pp. 245-246). Peachtree Corners, GA: Tappi Press.
Novel approach in analysis of light source effects to spectral sensitivity of fir wood surfaces
Živković, V., Arnold, M., Pandey, K. K., Richter, K., & Turkulin, H. (2013). Novel approach in analysis of light source effects to spectral sensitivity of fir wood surfaces. CEEES Publication No. 16. (p. (13 pp.). Presented at the 6th European weathering symposium natural and artificial ageing of polymers 2013. Bratislava, Slovak Republic.
Characterization of wood surface degradation using activation spectra approach
Živković, V., Arnold, M., Richter, K., & Turkulin, H. (2013). Characterization of wood surface degradation using activation spectra approach. In S. Medved & A. Kutnar (Eds.), Characterization of modified wood in relation to wood bonding and coating performance. Workshop proceedings (pp. 268-278). Ljubljana, Slovenia; Koper, Slovenija: University of Ljubljana; University of Primorska.
Einführung
Steiger, R., & Frangi, A. (2013). Einführung. In Dokumentation SIA. Holzbau: Teilrevision der Norm SIA 265, Ausgabe 2012 (pp. 7-12). Zürich: SIA.
Nanostructured composites from wood cellulose nanofibrils
Sehaqui, H. (2013). Nanostructured composites from wood cellulose nanofibrils. In M. T. Postek, R. J. Moon, A. W. Rudie, & M. A. Bilodeau (Eds.), Production and applications of cellulose nanomaterials (pp. 291-293). Peachtree Corners, GA: Tappi Press.
<I>Agrobacterium</I>-mediated transformation of the white-rot fungus <I>Physisporinus vitreus</I>
Schubert, M., Stührk, C., Fuhr, M. J., & Schwarze, F. W. M. R. (2013). Agrobacterium-mediated transformation of the white-rot fungus Physisporinus vitreus. Journal of Microbiological Methods, 95(2), 251-252. https://doi.org/10.1016/j.mimet.2013.09.001
Enhanced design approach for reinforced notched beams
Jockwer, R., Frangi, A., Serrano, E., & Steiger, R. (2013). Enhanced design approach for reinforced notched beams. In R. Görlacher (Ed.), CIB-W18. Proceedings. Meeting 46 (pp. 69-84). Karlsruhe, Germany: Timber Scientific Publishing.
Baustoffe
Steiger, R. (2013). Baustoffe. In Dokumentation SIA. Holzbau: Teilrevision der Norm SIA 265, Ausgabe 2012 (pp. 13-21). Zürich: SIA.
Verstärkung zur Aufnahme von Querzugbeanspruchungen
Jockwer, R., & Frangi, A. (2013). Verstärkung zur Aufnahme von Querzugbeanspruchungen. In Dokumentation SIA. Holzbau: Teilrevision der Norm SIA 265, Ausgabe 2012 (pp. 65-74). Zürich: SIA.
Structural elements made of beech LVL
Kobel, P., Boccadoro, L., Frangi, A., & Steiger, R. (2013). Structural elements made of beech LVL. In R. Görlacher (Ed.), CIB-W18. Proceedings. Meeting 46 (pp. 395-398). Karlsruhe, Germany: Timber Scientific Publishing.
Tragwerksanalyse und Bemessung
Steiger, R., & Jockwer, R. (2013). Tragwerksanalyse und Bemessung. In Dokumentation SIA. Holzbau: Teilrevision der Norm SIA 265, Ausgabe 2012 (pp. 23-30). Zürich: SIA.
Schraubenverbindungen
Jockwer, R., & Pizio, S. (2013). Schraubenverbindungen. In Dokumentation SIA. Holzbau: Teilrevision der Norm SIA 265, Ausgabe 2012 (pp. 41-52). Zürich: SIA.
The molecular structure within dislocations in Cannabis sativa fibres studied by polarised Raman microspectroscopy
Thygesen, L. G., & Gierlinger, N. (2013). The molecular structure within dislocations in Cannabis sativa fibres studied by polarised Raman microspectroscopy. Journal of Structural Biology, 182(3), 219-225. https://doi.org/10.1016/j.jsb.2013.03.010
Relationship between tree morphology and growth stress in mature European beech stands
Jullien, D., Widmann, R., Loup, C., & Thibaut, B. (2013). Relationship between tree morphology and growth stress in mature European beech stands. Annals of Forest Science, 70(2), 133-142. https://doi.org/10.1007/s13595-012-0247-7
Plant micro- and nanomechanics: experimental techniques for plant cell-wall analysis
Burgert, I., & Keplinger, T. (2013). Plant micro- and nanomechanics: experimental techniques for plant cell-wall analysis. Journal of Experimental Botany, 64(15), 4635-4649. https://doi.org/10.1093/jxb/ert255
Environmental-friendly footbridge made of CFRP, GFRP and timber
Meier, U., Brönnimann, R., Widmann, R., Winistörfer, A., Irniger, P., & Deuring, M. (2013). Environmental-friendly footbridge made of CFRP, GFRP and timber (pp. 6260-6267). Presented at the 19th international conference on composite materials (ICCM19). Montreal, Quebec, Canada.
Penetration capacity of the wood-decay fungus <I>Physisporinus vitreus</I>
Fuhr, M. J., Schubert, M., Stührk, C., Schwarze, F. W. M. R., & Herrmann, H. J. (2013). Penetration capacity of the wood-decay fungus Physisporinus vitreus. Complex Adaptive Systems Modeling, 1, 6 (15 pp.). https://doi.org/10.1186/2194-3206-1-6
Stability of amine-functionalized cellulose during temperature-vacuum-swing cycling for CO<SUB>2</SUB> capture from air
Gebald, C., Wurzbacher, J. A., Tingaut, P., & Steinfeld, A. (2013). Stability of amine-functionalized cellulose during temperature-vacuum-swing cycling for CO2 capture from air. Environmental Science and Technology, 47(17), 10063-10070. https://doi.org/10.1021/es401731p