王立久   

Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates

Title : 大连理工大学(土木水力学院) 建筑材料研究所 所长 大连理工大学建筑能源技术研究中心 主任 辽宁省复合材料学会常务副理事长兼秘书长 政协辽宁省委员会委员 “建筑技术与应用”“混凝土”和“国外连建材科技“等杂志编委

MORE> Recommended Ph.D.Supervisor Recommended MA Supervisor Institutional Repository Personal Page
Language:English

Paper Publications

Title of Paper:Development of low cost supplementary cementitious materials utilizing thermally activated Pisha sandstone

Hits:

Date of Publication:2018-06-20

Journal:CONSTRUCTION AND BUILDING MATERIALS

Included Journals:SCIE

Volume:174

Page Number:484-495

ISSN No.:0950-0618

Key Words:Pisha sandstone; Thermally activated; Low cost; Cementitious materials; Mechanical properties

Abstract:Pisha sandstone was the main resource of Yellow river sediment mineral with a low pozzolanic activity. This paper reports an investigation of the possibility of development of low cost supplementary cementitious materials using Pisha sandstone via thermally activated. The decomposition of Pisha sandstone when thermally treated at 600 degrees C and 800 degrees C and the effect of this treatment on its physicochemical properties, pozzolanic reactivity in cementitious materials were studied. The hydration of the mineral component, reaction products and micromorphology were studied by TG-DTG, XRD and SEM-EDS technique, respectively. Compressive strength test was conducted to assess the mechanical property of modified pastes, and Mercury intrusion porosimetry (MIP) was employed to investigate the pore structure and pore size distribution. This work confirmed that Pisha sandstone could be acted as a kind of low cost supplementary cementitious materials via thermally activated, and the optimal calcination temperature was 600 degrees C. It was shown that the decomposition of clay mineral of Pisha sandstone via thermal treatment result in an enhance of hydration reaction and mechanical strength, and the sample (calcined at 600 degrees C) exhibited the highest compressive strength (21.9 MPa). The results of the investigation show that the amorphous aluminosilicate gels (C-A-S-H) were the main hydration products. (C) 2018 Elsevier Ltd. All rights reserved.

Address: No.2 Linggong Road, Ganjingzi District, Dalian City, Liaoning Province, P.R.C., 116024
Click:    MOBILE Version DALIAN UNIVERSITY OF TECHNOLOGY Login

Open time:..

The Last Update Time: ..