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首页|期刊导航|水利水电科技进展|水工黏土基胶凝材料力学性能试验JIANG Chaohua1,SHAO Zhongyang1,SONG Yuntao2,TAO Guilan1,MA Jie2

水工黏土基胶凝材料力学性能试验JIANG Chaohua1,SHAO Zhongyang1,SONG Yuntao2,TAO Guilan1,MA Jie2

江朝华 邵中洋 宋云涛 陶桂兰 马杰

水利水电科技进展2016,Vol.36Issue(4):42-46,52,6.
水利水电科技进展2016,Vol.36Issue(4):42-46,52,6.DOI:10.3880/j.issn.1006-7647.2016.04.008

水工黏土基胶凝材料力学性能试验JIANG Chaohua1,SHAO Zhongyang1,SONG Yuntao2,TAO Guilan1,MA Jie2

Experimental study on mechanical properties of clay-based cementitious material used in hydraulic engineering

江朝华 1邵中洋 1宋云涛 2陶桂兰 1马杰2

作者信息

  • 1. 河海大学港口海岸与近海工程学院,江苏 南京 210098
  • 2. 长江南京航道工程局,江苏 南京 210011
  • 折叠

摘要

Abstract

In order to develop a clay-based cementitious material used in hydraulic engineering, the waste clay from a waterway revetment was used as a raw material. The influence of different contents of inorganic binder, such as cement, gypsum, and slag, on the mechanical properties of the clay-based cementitious material was studied by testing the compressive strength, splitting tensile strength, and water stability of specimens. A scanning electron microscope ( SEM) was used to analyze the microstructure of specimens. The results show that when the mixing proportions of the waste clay, cement, slag, gypsum, and lime are 65%, 18%, 10%, 2%, and 5%, respectively, the compressive strength, immersion strength, and splitting tensile strength of the clay-based cementitious material at 28 d reach 25. 6 MPa, 24. 1 MPa, and 2. 5 MPa, respectively. SEM results show that cement-based cementitious materials, such as C-S-H, were observed at different hydration ages, and these products effectively improve the mechanical properties of the clay-based cementitious material. It is concluded that the clay-based cementitious material shows high strength and water stability, and it can be used in hydraulic engineering.

关键词

水运工程/航道工程/黏性弃土/固化/胶凝材料/力学性能

Key words

water transport engineering/waterway engineering/waste clay/solidification/cementitious material/mechanical properties

分类

建筑与水利

引用本文复制引用

江朝华,邵中洋,宋云涛,陶桂兰,马杰..水工黏土基胶凝材料力学性能试验JIANG Chaohua1,SHAO Zhongyang1,SONG Yuntao2,TAO Guilan1,MA Jie2[J].水利水电科技进展,2016,36(4):42-46,52,6.

水利水电科技进展

OA北大核心CSCDCSTPCD

1006-7647

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