参考文献/References:
[1] 赵瑜,靳彩,冯幸芳. 大掺量粉煤灰在大体积混凝土中的应用研究[J].新型建筑材料,2002(8):34-35.
ZHAO Yu,JIN Cai, FENG Xingfang. Application high volume fly ash concrete in mass concrete engineering[J]. New Building Materials,2002(8):34-35.
[2] SHAIKH F U A, SUPIT S W M. Mechanical and durability properties of high-volume fly ash(HVFA)concrete containing calcium carbonate(CaCO3)nanoparticles[J]. Constr. Build. Mater. 2014, 70(1): 309-321.
[3] NAIK T R, SINGH S S, HOSSAIN M M. Properties of high performance concrete systems incorporating large amounts of high-lime fly ash[J]. Construction and Building Material.1995,9:195-204.
[4] SIDDIQUE R, KAPOOR K. Effect of polyester fibres on the compressive strength and abrasion resistance of HVFA concrete[J]. Construction and Building Material, 2012,29:270-278.
[5] 史琛,何廷树,李益民,等.粉煤灰对硅酸盐水泥 - 铝酸盐水泥 - 石膏三元体系性能的影响[J].西安建筑科技大学学报:(自然科学版),2016(3):459-462.
SHI Chen,HE Tingshu,LI Yimin,et al. Effects of fly ash on the performances of portland cement-aluminate cement-gypsum ternary cementitious system[J].J.Xi'an Univ. of Arch. & Tech.:(Natural Science Edition),2016(3):459-462.
[6] SAEED M K, RAHMAN M K, BALUCH M H. Influence of steel and polypropylene fibers on cracking due to heat of hydration in mass concrete structures[J]. Structural Concrete,2019,20(2):808-822.
[7] CHALEE W, TEEKAVANIT M, KIATTIKOMOL K, et al. Effect of W/C ratio on covering depth of fly ash concrete in marine environment [J]. Construction and Building Materials, 2007, 21: 965-71.
[8] SHIRZADI J A A. Packing density and surface finishing condition effects on the mechanical properties of various concrete pavements containing cement replacement admixtures[J]. Constr. Build. Mater. 2017,41(1)307-314.
[9] RASHAD A M, SELEEM H E H, SHAHEEN A F, et al. Effect of silica fume and slag on compressive strength and abrasion resistance of hvfa concrete[J]. International Journal of Concrete, Structures and Materials, 2014(8)69-81.
[10]KODUR V K R, DWAIKAT M. A numerical model for predicting the fire resistance of reinforced concrete beams[J]. Cement and Concrete Composites,2007,30(5):431-443.
[11]ATIS C D, CELIK O N. Relation between abrasion resistance and flexural strength of high volume fly ash concrete[J]. Mat Struct, 2020,35:257-260.
[12]韩同伟,贺鹏飞.石墨烯力学性能研究进展[J]. 力学进展, 2011, 41(3): 279-292.
HAN Tongwei, HE Pengfei. Research progress in the mechanical properties of graphene[J]. Advances In Mechanics, 2011, 41(3): 279-292.
[13]刘春燕,李慧民,李东波.基于分子动力学的多晶石墨烯拉伸力学性能的应变率相关性[J].西安建筑科技大学学报(自然科学版),2017,49(4):604-610.
LIU Chunyan, LI Huimin, LI Dongbo. Effects of tensile strain rate on mechanical properties of polycrystalline graphene based on molecular dynamics[J]. J. Xi'an Univ. of Arch.& Tech.(Natural Science Edition),2017,49(4):604-610.
[14]PAN Z, HE L, QIU L, et al. Mechanical properties and microstructure of a graphene oxide-cement composite[J]. Cem. Concr.Compos. 2015,58: 140-147.
[15]MAZZOLI A, CORINALDESI V, DONNINI J, et al. Effect of graphene oxide and metallic fibers on the electromagnetic shielding effect of engineered cementitious composites[J]. Journal of Building Engineering,2018,18:33-39.
[16]AHMADI M, ANSARI R, ROUHI S. Response of graphene reinforced concrete to the external compressive load: A multiscale approach[J]. Structural Concrete,2018,19(6):1702-1712.
[17]徐朋辉,李相国,刘卓霖,等.氧化石墨烯对粉煤灰水泥的水化和力学性能的影响[J].硅酸盐通报,2016,35(12):4066-4069.
XU Penghui, LI Xiangguo, LIU Zhuolin,et al. Influence of graphene oxide on hydration and mechanical properties of fly ash-cement[J]. Bulletin of the Chinese Ceramic Society,2016,35(12):4066-4069.
[18]吕生华, 马宇娟, 邱超超,等. 氧化石墨烯对水泥水化晶体形貌的调控作用及对力学性能的影响[J].功能材料,2013, 44(10):1487-1492.
LÜ Shenghua, MA Yujuan, QIU chaochao, et al. The regulation of graphene oxide on micromorphology of cement hydrate crystals and its impact on mechanical properties[J]. Journal of Functional Materials, 2013, 44(10):1487-1492.