Zhenhong Wang
- Effect of biochar from municipal solid waste on mechanical and freeze–thaw properties of concrete. In: Construction and Building Materials, v. 368 (März 2023). (2023):
- Early age thermal cracking resistance of basalt fiber-reinforced concrete for mass concrete structures under restraint condition. In: Structures, v. 45 (November 2022). (2022):
- (2022): Simplified Analysis of Thermal Cracks in Low-Heat Portland Cement Concrete. In: Advances in Civil Engineering, v. 2022 (Januar 2022).
- Comparison of thermal cracking potential evaluation criteria for mass concrete structures. In: Materials and Structures, v. 54, n. 6 (20 November 2021). (2021):
- Evaluation of early-age thermal cracking resistance of high w/b, high volume fly ash (HVFA) concrete using temperature stress testing machine. In: Case Studies in Construction Materials, v. 16 (Juni 2022). (2022):
- Environmental impact and thermal cracking resistance of low heat cement (LHC) and moderate heat cement (MHC) concrete at early ages. In: Journal of Building Engineering, v. 32 (November 2020). (2020):
- Evaluation of behavior and cracking potential of early-age cementitious systems using uniaxial restraint tests: A review. In: Construction and Building Materials, v. 231 (Januar 2020). (2020):
- Estimation of thermal stresses in the field test under the restraint method. In: Construction and Building Materials, v. 229 (Dezember 2019). (2019):
- Schematic study on temperature control and crack prevention during spillway tunnel concreting period. In: Materials and Structures, v. 48, n. 11 (November 2015). (2015):
- (2018): Temperature Control Measures and Temperature Stress of Mass Concrete during Construction Period in High-Altitude Regions. In: Advances in Civil Engineering, v. 2018 ( 2018).
- Effect of temperature history and restraint degree on cracking behavior of early-age concrete. In: Construction and Building Materials, v. 192 (Dezember 2018). (2018):