Search Items: Shear strength, . hits: 15
** Hellmayr, R; Bischof, S; Wühl, J; Guebitz, GM; Nyanhongo, GS; Schwaiger, N; Liebner, F; Wimmer, R; Enzymatic Conversion of Lignosulfonate into Wood Adhesives: A Next Step towards Fully Biobased Composite Materials..
** Hellmayr, R; Sernek, M; Myna, R; Reichenbach, S; Kromoser, B; Liebner, F; Wimmer, R Heat bonding of wood with starch-lignin mixtures creates new recycling opportunities.
MATER TODAY SUSTAIN. 2022; 19, 100194 WoS FullText FullText_BOKU** Wang, S; Wu, W; Cui, DS On mechanical behaviour of clastic soils: numerical simulations and constitutive modelling.
GEOTECHNIQUE. 2022; 72(8): 706-721. WoS FullText FullText_BOKU** Hogger, EM; Van Herwijnen, HWG; Moser, J; Kantner, W; Konnerth, J Systematic assessment of wheat extenders in formaldehyde-condensation plywood resins: part II - mechanical properties of plywood panels.
J ADHESION. 2021; 97(14): 1310-1321. WoS FullText FullText_BOKU** Solt, P; Rossiger, B; Konnerth, J; van Herwijnen, HWG Lignin Phenol Formaldehyde Resoles Using Base-Catalysed Depolymerized Kraft Lignin.
** Wang, S; Wu, W; Wang, JG; Yin, Z; Cui, DS; Xiang, W Residual-state creep of clastic soil in a reactivated slow-moving landslide in the Three Gorges Reservoir Region, China.
** Strauhal, T; Zangerl, C; Fellin, W; Holzmann, M; Engl, DA; Brandner, R; Tropper, P; Tessadri, R Structure, Mineralogy and Geomechanical Properties of Shear Zones of Deep-Seated Rockslides in Metamorphic Rocks (Tyrol, Austria).
ROCK MECH ROCK ENG. 2017; 50(2): 419-438. WoS FullText FullText_BOKU** Yu, Q; Le, JL; Hubler, MH; Wendner, R; Cusatis, G; Bazant, ZP Comparison of main models for size effect on shear strength of reinforced and prestressed concrete beams.
STRUCT CONCRETE. 2016; 17(5): 778-789. WoS FullText FullText_BOKU** Adusumalli, RB; Reifferscheid, M; Weber, HK; Roeder, T; Sixta, H; Gindl, W Shear strength of the lyocell fiber/polymer matrix interface evaluated with the microbond technique.
J COMPOS MATER. 2012; 46(3): 359-367. WoS FullText FullText_BOKU** Zimmermann, T; Strauss, A; Bergmeister, K Structural behavior of low- and normal-strength interface mortar of masonry.
MATER STRUCT. 2012; 45(6): 829-839. WoS FullText FullText_BOKU** Adusumalli, RB; Weber, HK; Roeder, T; Sixta, H; Gindl, W Evaluation of Experimental Parameters in the Microbond Test with Regard to Lyocell Fibers.
J REINF PLAST COMPOSITE. 2010; 29(15): 2356-2367. WoS FullText FullText_BOKU** Müller, U., Sretenovic, A., Gindl, W., Grabner, M., Wimmer, R., Teischinger, A. Effects of macro- and micro-structural variability on the shear behaviour of softwood.
IAWA Journal, 25, 231-243 WoS FullText FullText_BOKU** Muller, U; Sretenovic, A; Gindl, WA; Teischinger, A Longitudinal shear properties of european larch wood related to cell-wall structure.
WOOD FIBER SCI. 2004; 36(2): 143-151. WoS** Stretenovic, A, Müller, U, Gindl, W, Teischinger, A New shear assay for the simultaneous determination of shear strength and shear modulus in solid wood: finite element modeling and experiemental results.
Wood and Fiber Science, 36, 3, 302-310 WoS FullText** Gindl, W., Teischinger, A. Comparison of the TL-shear strength of normal and compression wood of European larch.
Holzforschung, 57, 421-426 WoS