论文著作 | 代表性论文: 1. Cheng Shukai, Chen Kang , Wu Qiaoyun, et al. Influence of industrial-grade graphene oxide on macro and micro properties of ultra-high performance concrete incorporating recycled fine aggregate. Construction and Building Materials, 2024, 417:135427. (SCI,中科院1区,TOP期刊) 2. Chen Kang, Cheng Shukai*, Chen Xuyong, et al. Utilization of recycled fine aggregate in ultra-high performance concrete: Mechanical strength, microstructure and environment impacts. Construction and Building Materials, 2024, 439:137364. (SCI,中科院1区,TOP期刊) 3. Cheng Shukai, Chen Kang , Chen Xuyong, et al. Utilization of construction and demolition waste in ultra-high performance concrete: Macro-micro properties and environmental impacts. Journal of Building Engineering, 2024, 97: 110747. (SCI,中科院2区,TOP期刊) 4. Liu Cijun, Zhang Xiao, Cheng Shukai*, et al. Mechanical properties, hydration behavior and shrinkage deformation of ultra-high performance concrete (UHPC) incorporating MgO expansive agent. Journal of Building Engineering, 2024, 96: 110529. (SCI,中科院2区,TOP期刊) 5. Chen Xuyong, Lv Long, Cheng Shukai*, et al. Optimization on the mix design method of self-compacting concrete with recycled coarse aggregate based on paste rheological threshold theory and material packing characteristics. Construction and Building Materials, 2023, 407:133509. (SCI,中科院1区,TOP期刊) 6. Cheng Shukai, Wu Ziyang, Wu Qiaoyun, et al. Degradation characteristics of Portland cement mortar incorporating supplementary cementitious materials under multi-ions attacks and drying-wetting cycles. Journal of Cleaner Production, 2022, 363:132378(SCI,中科院1区,TOP期刊) 7. Cheng Shukai, Wu Ziyang, Wu Qiaoyun, et al. Mitigation on the shrinkage properties of ultra-high strength concrete via using porous coral sand and shrinkage reducing agent. Journal of Building Engineering, 2022, 57:104861.(SCI,中科院2区,TOP期刊) 8. Cheng Shukai,Ge Keyu,Sun Tao,et al. Pozzolanic activity of mechanochemically and thermally activated coal-series kaolin in cement-based materials. Construction and Building Materials, 2021, 299, 123972.(SCI,中科院1区,TOP期刊) 9. Cheng Shukai, Shui Zhonghe, Gao Xu, et al. Degradation progress of Portland cement mortar under the coupled effects of multiple corrosive ions and drying-wetting cycles. Cement and Concrete Composites, 2020, 111, 103629.(SCI,中科院1区,TOP期刊) 10. Cheng Shukai, Shui Zhonghe, Gao Xu, et al. Degradation mechanisms of Portland cement mortar under seawater attack and drying-wetting cycles. Construction and Building Materials, 2020, 230, 116934.(SCI,中科院1区,TOP期刊) 11. Cheng Shukai, Shui Zhonghe, Sun Tao, et al. Effects of sulfate and magnesium ion on the chloride transportation behavior and binding capacity of Portland cement mortar. Construction and Building Materials, 2019, 204: 265-275.(SCI,中科院1区,TOP期刊) 12. Cheng Shukai, Shui Zhonghe, Sun Tao, et al. Synergistic effects of sulfate and magnesium ions on chloride diffusion behaviors of Portland cement mortar. Construction and Building Materials, 2019, 229, 116878.(SCI,中科院1区,TOP期刊) 13. Cheng Shukai, Shui Zhonghe, Yu Rui, et al. Durability and environment evaluation of an eco-friendly cement-based material incorporating recycled chromium containing slag. Journal of Cleaner Production, 2018, 185: 23-31.(SCI,中科院1区,TOP期刊) 14. Cheng Shukai, Shui Zhonghe, Sun Tao, et al. Effects of seawater and supplementary cementitious materials on the durability and microstructure of lightweight aggregate concrete. Construction and Building Materials, 2018, 190: 1081-1090.(SCI,中科院1区,TOP期刊) 15. Cheng Shukai, Shui Zhonghe, Sun Tao, et al. Durability and microstructure of coral sand concrete incorporating supplementary cementitious materials. Construction and Building Materials, 2018, 171: 44-53.(SCI,中科院1区,TOP期刊) 16. Cheng Shukai, Shui Zhonghe, Yu Rui, et al. Multiple influences of internal curing and supplementary cementitious materials on the shrinkage and microstructure development of reefs aggregate concrete. Construction and Building Materials, 2017, 155: 522-530.(SCI,中科院1区,TOP期刊) 17. Cheng Shukai, Shui Zhonghe, Sun Tao, et al. Effects of fly ash, blast furnace slag and metakaolin on mechanical properties and durability of coral sand concrete. Applied Clay Science, 2017, 141: 111-117.(SCI,中科院1区,TOP期刊) 18. Cheng Shukai, Shui Zhonghe, Li Qiu, et al. Properties, microstructure and hydration products of lightweight aggregate concrete with metakaolin and slag addition. Construction and Building Materials, 2016, 127: 59-67.(SCI,中科院1区,TOP期刊) 19. Chen Feixiang, Cheng Shukai*, Guozhi Zhang, Development of Ultralightweight Cement Composites with Low Density and High-Specific Strength Using Hollow Glass Microspheres. Journal of Materials in Civil Engineering, 2021, 33(6):04021124.(SCI,中科院3区,权威期刊) 20. 程书凯, 游啸, 陈旭勇, 等. 陶砂对石灰石-煅烧黏土-水泥砂浆性能的影响[J]. 建筑材料学报, 2024, 27(1): 16-22. (EI,T1期刊) 代表性专利: [1] 程书凯. 一种石灰石粉煅烧粘土基轻质高强砂浆及其制备方法. ZL 202210867131.4 (授权) [2] 程书凯. 一种渗透结晶型高性能混凝土用防裂抗渗剂及其制备方法. ZL 202111548305.2 (授权) [3] 程书凯. 一种煤矸石基泡沫轻质土及其制备方法. ZL 202011019770.2.(授权) [4] 程书凯. 沸石载体混凝土内养护剂及其制备方法与应用. ZL 202011097532.3.(授权) [5] 程书凯. 多层梯度抗裂水泥基材料的成型方法. ZL 202010172363.9.(授权) |