参考文献/References:
[1]ZHAO L,WANG W,LI Z,et al.Microstructure and pore fractal dimensions of recycled thermal insulation concrete[J]. Materialprufung, 2015,57(4):349-359.
[2]WANG W, LIU Y, JIANG L, et al. Effect of physical properties of recycled coarse aggregate on the mechanical properties of recycled aggregate thermal insulation concrete(RATIC)[J].Construction & Building Materials,2018(180):229-238.
[3]白睿奇,刘元珍,江卫涛.玻化微珠再生保温混凝土剪力墙抗震性能试验及模拟分析[J].混凝土, 2020(4):32-35.
BAI Ruiqi, LIU Ruanzhen, JIANG Weitao, et al. Seismic performance test and simulation analysis of recycled sggregate thermal insulation glazed hollow bead concrete shear wall[J].Concrete, 2020(4):32-35.
[4]XIAO Jianzhuang,SUN Yuedong,FALKNER H. Seismic performance of frame structures with recycled aggregate concrete[J].Engineering Structures,2005,28(1):1-8.
[5]LIU Yuanzhen, WANG Wenjing. Residual stress-strain relationship for thermal insulation concrete with recycled aggregate after high temperature exposure[J].Construction & Building Materials,2016,129:37-47.
[6]LIU Y, JI H, ZHANG J, et al. Mechanical Properties of thermal insulation concrete with recycled coarse aggregates after elevated temperature exposure[J].Materials Testing.2016, 7-8(58):669-677.
[7]肖建庄,兰阳,李佳彬,等. 再生混凝土长期使用性能研究进展[J].结构工程师, 2005(3):73-76.
XIAO Jianzhuang, LAN Yang, LI Jiabin, et al. A review on long-term properties of recycled aggregate concretel[J].Structural Engineers,2005(3):73-76.
[8]XIAO Jianzhuang, Li Long, VIVIAN W.Y. Tam, et al. The State of the Art Regarding the Long-term Properties of Recycled Aggregate Concrete[J].Structural Concrete,2014,15(1):3-12.
[9]王永贵,牛海成,范玉辉. 改性再生混凝土抗压性能与微观结构[J].中国矿业大学学报,2019,48(5):1011-1019.
WANG Yonggui, NIU Haicheng, FAN Yuhui. Compressive properties and microstructure of modified recycled concrete[J].Journal of China Universityof Mining & Technology,2019,48(5):1011-1019.
[10]陈宗平,徐金俊,郑华海,等.再生混凝土基本力学性能试验及应力一应变本构关系[J].建筑材料学报,2013,16(1):24-32.
CHEN Zongping, XU Jinjun, ZHENG Huahai, et al. Basic mechanical properties test and stress-strain constitutive relation of recycled concrete[J].Journal of Building Materials, 2013,16(1):24-32.
[11]成国耀.不同再生骨料取代率混凝土的基本性能试验研究[J].混凝土, 2005(11):68-71.
CHE Guoyao.Experimental study on the basic performance of recycled aggregate concrete with different displacement ratio[J].Concrete, 2005(11):68-71.
[12]王 磊,陈 杏,张 毅.再生骨料混凝土长龄期收缩及基本力学性能研究[J].混凝土, 2013(7):23-25.
WANG Lei, CHEN Xing, ZHANG Yi. Long-age contraction and basic mechanics performance study of regenerated aggregate concrete[J].Concrete, 2013(7):23-25.
[13]DOMINGO A, LAZARO C, LOPEZ-Gayarre F, et al. Creep and shrinkage of recycled aggregate concrete[J].Construction and Building Materials, 2015,100:262-272.
[14]郑居焕,庄金平.再生粗骨料替代率对各龄期再生混凝土强度影响的试验研究[J].福建建筑,2016,8:118-120.
ZHENG Juhuan, ZHUANG Jinping. Experiment research on recycled coarse aggregate replacement rate effects on recycled concrete strength[J].Fujian Architecture & Construction, 2016,8:118-120.
[15]肖建庄,郑世同,王 静.再生混凝土长龄期强度与收缩徐变性能[J].建筑科学与工程学报,2015,32(1):21-26.
XIAO Jianzhuang, ZHENG Shitong, WANG Jing. Long-term strength, shrinkage and creep properties of recycled aggregate concrete[J].Journal of Architecture and Civil Engineering, 2015,32(1):21-26.
[16]Euro-International Committee for Concrete. CEB Bulletin 203-205, CEB-FIP Model Code 1990[S]. London: Thomas Telford, 1993.
[17]王庆贺.考虑非均匀收缩影响的钢-再生混凝土组合板长期性能[D].哈尔滨:哈尔滨工业大学,2017.
WANG Qinghe.Time-dependent behavior of composite steel-recycled aggregate concrete slabs considering non-uniform shrinkage effects[D].Harbin:Harbin Institute of Technology, 2017.
(编辑 桂智刚)