- Review on self-heating electrically conductive cementitious composites: Focus on deicing and electrical curing. Dans: Construction and Building Materials, v. 439 (août 2024). (2024):
- Self-heating performance of cement composites devised with carbon black and carbon fiber: Roles of superplasticizer and silica fume. Dans: Journal of Building Engineering, v. 80 (décembre 2023). (2023):
- Water migration mechanism during internal curing of cement composites with cellulose microfibers. Dans: Construction and Building Materials, v. 411 (janvier 2024). (2024):
- Characteristics of GGBFS-Based Pervious Concrete Considering Rheological Properties of the Binder. Dans: International Journal of Concrete Structures and Materials, v. 16, n. 1 (décembre 2022). (2022):
- Mitigating self-desiccation of cement composites via cellulose microfibers: Evidence of the microscopic behavior. Dans: Construction and Building Materials, v. 399 (octobre 2023). (2023):
- Assessment of internal curing of cellulose microfibers-incorporated cement composites using destructive and nondestructive methods. Dans: Construction and Building Materials, v. 352 (octobre 2022). (2022):
- Self-heating capacity of electrically conductive cement composites: Effects of curing conditions. Dans: Construction and Building Materials, v. 353 (octobre 2022). (2022):
- Internal curing of cement composites using kenaf cellulose microfibers. Dans: Journal of Building Engineering, v. 47 (avril 2022). (2022):
- Monitoring of self-healing in concrete with micro-capsules using a combination of air-coupled surface wave and computer-vision techniques. Dans: Structural Health Monitoring, v. 21, n. 4 (janvier 2022). (2022):
- Effect of plant cellulose microfibers on hydration of cement composites. Dans: Construction and Building Materials, v. 267 (janvier 2021). (2021):
- Water permeability and rapid self-healing of sustainable sulfur composites using superabsorbent polymer and binary cement. Dans: Construction and Building Materials, v. 265 (décembre 2020). (2020):
- Strength and microstructural characteristics of sulfur polymer composites containing binary cement and waste rubber. Dans: Construction and Building Materials, v. 181 (août 2018). (2018):
- Rheological properties of modified sulfur polymer composites containing cement-fly ash blend at different temperatures. Dans: Construction and Building Materials, v. 228 (décembre 2019). (2019):
- Strength and toughness of hybrid steel and glass fiber-reinforced sulfur polymer composites. Dans: Construction and Building Materials, v. 228 (décembre 2019). (2019):
- Nonlinear modeling parameters of RC coupling beams in a coupled wall system. Dans: Earthquakes and Structures, v. 7, n. 5 (novembre 2014). (2014):
- Sustainable sulfur composites with enhanced strength and lightweightness using waste rubber and fly ash. Dans: Construction and Building Materials, v. 135 (mars 2017). (2017):
- Microstructure evolution and strength development of ultra rapid hardening cement modified with redispersible polymer powder. Dans: Construction and Building Materials, v. 192 (décembre 2018). (2018):
- (2018): Effects of Redispersible Polymer Powder on Mechanical and Durability Properties of Preplaced Aggregate Concrete with Recycled Railway Ballast. Dans: International Journal of Concrete Structures and Materials, v. 12, n. 1 (octobre 2018).