[1] Zhichao Liu, Will Hansen*. Freezing characteristics of air-entrained concrete in the presence of deicing salt. Cement and Concrete Research, 2015, 74: 10-18.
[2] Zhichao Liu*, Will Hansen. Effect of hydrophobic surface treatment on freeze-thaw durability of concrete. Cement & Concrete Composites, 2016, 69: 49-60.
[3] Zhichao Liu, Will Hansen*. Pore damage in cementitious binders caused by deicer salt frost exposure. Construction and Building Materials, 2015, 98: 204-216.
[4] Zhichao Liu*, Will Hansen. Freeze-thaw durability of high strength concrete under deicer salt exposure. Construction and Building Materials, 2015, 102: 478-485.
[5] Zhichao Liu*, Will Hansen. Aggregate and slag cement effects on autogenous shrinkage in cementitious materials. Construction and Building Materials, 2016, 121: 429-436.
[6] Zhichao Liu*, Will Hansen. Moisture uptake in concrete under freezing-thawing exposure. Magazine of Concrete Research, 2016, 68 (12): 619-631.
[7] Zhichao Liu*, Will Hansen, Bo Meng. Characterization of air-void system in concrete. Magazine of Concrete Research, 2016, 68 (4): 178-186.
[8] Zhichao Liu*, Will Hansen. A hypothesis for salt frost scaling in cementitious materials. Journal of Advanced Concrete Technology, 2015, 13: 403-414.
[9] Will Hansen, Zhichao Liu*, Eddy Koenders. Internal viscoelastic modulus associated with autogenous shrinkage in cementitious materials. Journal of Advanced Concrete Technology, 2014, 12: 496-502.
[10] Zhichao Liu*, Will Hansen. A geometrical model for void saturation in air-entrained concrete under continuous water. Construction and Building Materials, 2016, 124: 475-484.