曹明莉Mingli Cao

(教授)

 博士生导师  硕士生导师
学位:博士
性别:女
毕业院校:大连理工大学
所在单位:土木工程系
电子邮箱:minglic@dlut.edu.cn

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Optimization of calcium carbonate whisker reinforced cement paste for rheology and fracture properties using response surface methodology

发表时间:2021-03-22 点击次数:

论文名称:Optimization of calcium carbonate whisker reinforced cement paste for rheology and fracture properties using response surface methodology
论文类型:期刊论文
第一作者:Xie, Chaopeng
通讯作者:曹明莉,吕兴军
发表刊物:FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES
卷号:44
期号:3
页面范围:859-875
ISSN号:8756-758X
关键字:calcium carbonate whisker; fracture toughness; response surface methodology; rheological properties; water-cement ratio
摘要:Cement paste is generally used as a grouting joint material for concrete structures. A good rheology property guarantees the workability of fresh cement paste, and an excellent fracture toughness that reflects the good crack resistance of hardened cement paste. Calcium carbonate whisker (CW) is an inorganic mineral reinforcing material with excellent micromechanical performance, microcrack resistance and environmentally friendly nature. In this study, the rheological and three-point bending tests were conducted on CW reinforced cement paste (CWRCP) to evaluate workability and mechanical properties. The results showed that the yield stress (tau(0)) and plastic viscosity (mu) were increased with addition of CW. This was because of the large specific surface area of CW which consumed free water and reduced lubricity between cement particles; and meanwhile, fibrous CW overlapped into net and prevented the flow of fresh cement paste. The addition of CW increased the fracture toughness (K-IC) of cement paste due to its microscopic crack resistance effect. Also, the environmental scanning electron microscopy (ESEM) analysis was performed to study the microstructural characteristics. The response surface methodology (RSM) was used to evaluate the influence of CW content (v(cw)) and water-cement ratio (w/c) to response parameters. Additionally, multiobjective optimization technique was performed to determine best settings for design variables which satisfied ideal response parameters. Conclusively, the optimal solution of CWRCP is beneficial to acquire ideal response goal and provides the basis for engineering applications.
发表时间:2021-03-05