Mix design and properties assessment of ultra-high performance fibre reinforced concrete (UHPFRC) R Yu, P Spiesz, HJH Brouwers Cement and concrete research 56, 29-39, 2014 | 950 | 2014 |
Development of an eco-friendly Ultra-High Performance Concrete (UHPC) with efficient cement and mineral admixtures uses R Yu, P Spiesz, HJH Brouwers Cement and Concrete Composites 55, 383-394, 2015 | 634 | 2015 |
Effect of nano-silica on the hydration and microstructure development of Ultra-High Performance Concrete (UHPC) with a low binder amount R Yu, P Spiesz, HJH Brouwers Construction and Building Materials 65, 140-150, 2014 | 618 | 2014 |
SCC modification by use of amorphous nano-silica G Quercia, P Spiesz, G Hüsken, HJH Brouwers Cement and Concrete Composites 45, 69-81, 2014 | 304 | 2014 |
Development of Ultra-High Performance Fibre Reinforced Concrete (UHPFRC): Towards an efficient utilization of binders and fibres R Yu, P Spiesz, HJH Brouwers Construction and building materials 79, 273-282, 2015 | 209 | 2015 |
Static properties and impact resistance of a green Ultra-High Performance Hybrid Fibre Reinforced Concrete (UHPHFRC): Experiments and modeling R Yu, P Spiesz, HJH Brouwers Construction and Building Materials 68, 158-171, 2014 | 203 | 2014 |
Characteristics and application potential of municipal solid waste incineration (MSWI) bottom ashes from two waste-to-energy plants P Tang, MVA Florea, P Spiesz, HJH Brouwers Construction and Building Materials 83, 77-94, 2015 | 202 | 2015 |
Development of cement-based lightweight composites–Part 1: mix design methodology and hardened properties QL Yu, P Spiesz, HJH Brouwers Cement and concrete composites 44, 17-29, 2013 | 178 | 2013 |
A study of multiple effects of nano-silica and hybrid fibres on the properties of Ultra-High Performance Fibre Reinforced Concrete (UHPFRC) incorporating waste bottom ash (WBA) R Yu, P Tang, P Spiesz, HJH Brouwers Construction and Building Materials 60, 98-110, 2014 | 171 | 2014 |
Ultra-lightweight concrete: Conceptual design and performance evaluation QL Yu, P Spiesz, HJH Brouwers Cement and Concrete Composites 61, 18-28, 2015 | 169 | 2015 |
Impact resistance of a sustainable Ultra-High Performance Fibre Reinforced Concrete (UHPFRC) under pendulum impact loadings R Yu, L Van Beers, P Spiesz, HJH Brouwers Construction and Building Materials 107, 203-215, 2016 | 141 | 2016 |
Energy absorption capacity of a sustainable Ultra-High Performance Fibre Reinforced Concrete (UHPFRC) in quasi-static mode and under high velocity projectile impact R Yu, P Spiesz, HJH Brouwers Cement and Concrete Composites 68, 109-122, 2016 | 129 | 2016 |
Development of ultra-lightweight fibre reinforced concrete applying expanded waste glass R Yu, DV Van Onna, P Spiesz, QL Yu, HJH Brouwers Journal of Cleaner Production 112, 690-701, 2016 | 128 | 2016 |
Application of thermally activated municipal solid waste incineration (MSWI) bottom ash fines as binder substitute P Tang, MVA Florea, P Spiesz, HJH Brouwers Cement and Concrete Composites 70, 194-205, 2016 | 122 | 2016 |
Determination of the chloride diffusion coefficient in blended cement mortars V Elfmarkova, P Spiesz, HJH Brouwers Cement and concrete Research 78, 190-199, 2015 | 122 | 2015 |
The apparent and effective chloride migration coefficients obtained in migration tests P Spiesz, HJH Brouwers Cement and concrete Research 48, 116-127, 2013 | 109 | 2013 |
Influence of the applied voltage on the Rapid Chloride Migration (RCM) test P Spiesz, HJH Brouwers Cement and Concrete Research 42 (8), 1072-1082, 2012 | 104 | 2012 |
RCM: A new model accounting for the non-linear chloride binding isotherm and the non-equilibrium conditions between the free-and bound-chloride concentrations P Spiesz, MM Ballari, HJH Brouwers Construction and Building Materials 27 (1), 293-304, 2012 | 101 | 2012 |
Long-term chloride migration coefficient in slag cement-based concrete and resistivity as an alternative test method R Van Noort, M Hunger, P Spiesz Construction and Building Materials 115, 746-759, 2016 | 100 | 2016 |
Utilization of waste glass in translucent and photocatalytic concrete P Spiesz, S Rouvas, HJH Brouwers Construction and Building Materials 128, 436-448, 2016 | 96 | 2016 |