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Sulfate resistance and phase composition of shotcrete
Kaufmann, J., Loser, R., Winnefeld, F., & Leemann, A. (2021). Sulfate resistance and phase composition of shotcrete. Tunnelling and Underground Space Technology, 109, 103760 (13 pp.). https://doi.org/10.1016/j.tust.2020.103760
Sulfate resistance testing of shotcrete - sample preparation in the field and under laboratory conditions
Kaufmann, J., Loser, R., Winnefeld, F., & Leemann, A. (2021). Sulfate resistance testing of shotcrete - sample preparation in the field and under laboratory conditions. Construction and Building Materials, 276, 122233 (10 pp.). https://doi.org/10.1016/j.conbuildmat.2020.122233
Evaluation of the combination of desert sand and calcium sulfoaluminate cement for the production of concrete
Kaufmann, J. (2020). Evaluation of the combination of desert sand and calcium sulfoaluminate cement for the production of concrete. Construction and Building Materials, 243, 118281 (10 pp.). https://doi.org/10.1016/j.conbuildmat.2020.118281
Influence of shotcrete accelerators on the hydration of cement pastes and their impact on sulfate resistance
Winnefeld, F., Kaufmann, J., Loser, R., & Leemann, A. (2020). Influence of shotcrete accelerators on the hydration of cement pastes and their impact on sulfate resistance. Construction and Building Materials, 266(Part A), 120782 (18 pp.). https://doi.org/10.1016/j.conbuildmat.2020.120782
Pore connectivity characterization of shale using integrated wood's metal impregnation, microscopy, tomography, tracer mapping and porosimetry
Zhao, J., Hu, Q., Liu, K., Jin, Z., Dultz, S., Kaufmann, J., & Fan, Y. (2020). Pore connectivity characterization of shale using integrated wood's metal impregnation, microscopy, tomography, tracer mapping and porosimetry. Fuel, 259, 116248 (10 pp.). https://doi.org/10.1016/j.fuel.2019.116248
Seasonal heat storage in calcium sulfoaluminate based hardened cement pastes – experiences with different prototypes
Kaufmann, J., & Winnefeld, F. (2019). Seasonal heat storage in calcium sulfoaluminate based hardened cement pastes – experiences with different prototypes. Journal of Energy Storage, 25, 100850 (12 pp.). https://doi.org/10.1016/j.est.2019.100850
Sulfatwiderstand und Phasenzusammensetzung von modernem Spritzbeton
Kaufmann, J., Loser, R., Winnefeld, F., & Leemann, A. (2019). Sulfatwiderstand und Phasenzusammensetzung von modernem Spritzbeton. (Report No.: 1652). Eidgenössisches Departement für Umwelt, Verkehr, Energie und Kommunikation UVEK; Bundesamt für Strassen.
Sulfate resistance of calcined clay – limestone – Portland cements
Shi, Z., Ferreiro, S., Lothenbach, B., Geiker, M. R., Kunther, W., Kaufmann, J., … Skibsted, J. (2019). Sulfate resistance of calcined clay – limestone – Portland cements. Cement and Concrete Research, 116, 238-251. https://doi.org/10.1016/j.cemconres.2018.11.003
Influence of magnesium-to-phosphate ratio and water-to-cement ratio on hydration and properties of magnesium potassium phosphate cements
Xu, B., Winnefeld, F., Kaufmann, J., & Lothenbach, B. (2019). Influence of magnesium-to-phosphate ratio and water-to-cement ratio on hydration and properties of magnesium potassium phosphate cements. Cement and Concrete Research, 123, 105781 (15 pp.). https://doi.org/10.1016/j.cemconres.2019.105781
Multiscale porosity changes along the pro- and retrograde deformation path: an example from Alpine slates
Akker, I. V., Kaufmann, J., Desbois, G., Klaver, J., Urai, J. L., Berger, A., & Herwegh, M. (2018). Multiscale porosity changes along the pro- and retrograde deformation path: an example from Alpine slates. Solid Earth, 9(5), 1141-1156. https://doi.org/10.5194/se-9-1141-2018
Sulfate resistance and phase composition of modern shotcrete
Kaufmann, J., Loser, R., Winnefeld, F., & Leemann, A. (2018). Sulfate resistance and phase composition of modern shotcrete. In Paper proceedings (pp. 2-10). mci.
Carbonation resistance of calcium sulfoaluminate cement mortars
Winnefeld, F., Hargis, C. W., Steiner, S., Kaufmann, J., Borgschulte, A., Marchi, M., … Lothenbach, B. (2018). Carbonation resistance of calcium sulfoaluminate cement mortars (p. (4 pp.). Presented at the Conference to celebrate the centennial of LMC and Karen Scrivener’s 60th birthday. EPFL.
Carbonatisierungswiderstand von Mörteln auf Basis Calciumsulfoaluminatzement
Winnefeld, F., Hargis, C. W., Steiner, S., Kaufmann, J., Borgschulte, A., Marchi, M., … Lothenbach, B. (2018). Carbonatisierungswiderstand von Mörteln auf Basis Calciumsulfoaluminatzement (p. (8 pp.). Presented at the 20. Internationale Baustofftagung (ibausil). Bauhaus-Universität Weimar.
Bi-component polyolefin fibers used for concrete and shotcrete applications
Akers, S. A. S., Kaufmann, J., & Schwitter, E. (2017). Bi-component polyolefin fibers used for concrete and shotcrete applications. In H. Savastano Junior, J. Fiorelli, & S. F. dos Santos (Eds.), Sustainable and nonconventional construction materials using inorganic bonded fiber composites (pp. 445-452). https://doi.org/10.1016/B978-0-08-102001-2.00019-X
Tracing hail stone impact on external thermal insulation composite systems (ETICS) – an evaluation of standard admission impact tests by means of high-speed-camera recordings
Steinbauer, V., Kaufmann, J., Zurbriggen, R., Bühler, T., & Herwegh, M. (2017). Tracing hail stone impact on external thermal insulation composite systems (ETICS) – an evaluation of standard admission impact tests by means of high-speed-camera recordings. International Journal of Impact Engineering, 109, 354-365. https://doi.org/10.1016/j.ijimpeng.2017.07.016
Effect of high temperatures on the stability of ettringite in calcium sulfoaluminate-based cement pastes
Kaufmann, J., Winnefeld, F., & Lothenbach, B. (2016). Effect of high temperatures on the stability of ettringite in calcium sulfoaluminate-based cement pastes. In Proceedings of the 2nd international conference on the chemistry of construction materials (ICCCM) (pp. 141-144). GDCh.
Stability of ettringite in CSA cement at elevated temperatures
Kaufmann, J., Winnefeld, F., & Lothenbach, B. (2016). Stability of ettringite in CSA cement at elevated temperatures. Advances in Cement Research, 28(4), 251-261. https://doi.org/10.1680/jadcr.15.00029
Chloride resistance of Portland cement – calcined clay – limestone mortars
Shi, Z., Geiker, M. R., De Weerdt, K., Lothenbach, B., Kaufmann, J., Ferreiro Garzón, S., & Skibsted, J. (2016). Chloride resistance of Portland cement – calcined clay – limestone mortars (p. (4 pp.). Presented at the 2nd International conference on the chemistry of construction materials. .
Experimental studies and thermodynamic modeling of the carbonation of Portland cement, metakaolin and limestone mortars
Shi, Z., Lothenbach, B., Geiker, M. R., Kaufmann, J., Leemann, A., Ferreiro, S., & Skibsted, J. (2016). Experimental studies and thermodynamic modeling of the carbonation of Portland cement, metakaolin and limestone mortars. Cement and Concrete Research, 88, 60-72. https://doi.org/10.1016/j.cemconres.2016.06.006
Stronger Hail Storms Require Stronger External Thermal Insulation Composite Systems - The Material Science Behind
Steinbauer, V., Zurbriggen, R., Bühler, T., Kaufmann, J., & Herwegh, M. (2016). Stronger Hail Storms Require Stronger External Thermal Insulation Composite Systems - The Material Science Behind. In F. Leopolder (Ed.), Drymix Mortar Yearbook 2016 (pp. 42-47). drymix.
 

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