首页|Durability of Concrete Subjected to the Combined Actions of Flexural Stress,Freeze-thaw Cycles and Bittern Solutions

Durability of Concrete Subjected to the Combined Actions of Flexural Stress,Freeze-thaw Cycles and Bittern Solutions

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Freeze-thaw durabilities of three types of concretes-normal portland cement concrete (OPC),high strength concrete (HSC) and steel fiber reinforced high strength concrete (SFRHSC)were systemically investigated under the attacks of chemical solution,and combination of external flexural stress and chemical solution.Four kinds of bitterns from salt lakes in Sinkiang,Qinghai,Inner Mongolia and Tibet provinces of China were used as chemical attack solutions.The relative dynamic modulus (RDM) was used as an index for evaluating the damage degree during the course of chemical attack and stress corrosion.The experimental results show that the freeze-thaw durability of concrete is visibly reduced in the present of the flexural stress,i e,stress accelerates the damage process.In order to quantify the stress accelerated effect,a stress accelerating coefficient was proposed.The stress accelerating coefficient is closely related with the types of bitterns and the numbers of freeze-thaw cycles is.The more numbers of freeze-thaw cycles is,the greater the stress accelerating coefficient for various concretes will be.In addition,there also exists a critical ratio of external stress to the maximum flexural stress.If the stress ratio exceeds the critical one,the freeze-thaw durability of various concretes will be greatly decreased compared to the responding concretes without applied stress.The critical stress ratio of OPC,HSC and SFRHSC is 0.30,0.40 and 0.40,respectively,indicating that HSC and SFRHSC have advantages over OPC and are suitable to use in the bittern erosion regions.

high strength concretesteel fiber reinforced high strength concretechemical attackstress corrosionfreezing-thawing durabilitybittern

YU Hongfa、SUN Wei、ZHANG Yunsheng、GUO Liping、LI Meidan

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Department of Civil Engineering,Nanjing University of Aeronautics and Astronautics,Nanjing 210016,China

College of Materials Science and Engineering,Southeast University,Nanjing 210096,China

College of Materials Science and Engineering,Shenyang Jianzhu University,Shenyang 110168,China

国家自然科学基金国家自然科学基金江苏省自然科学基金

5993817050178044BK2005216

2008

武汉理工大学学报(材料科学版)(英文版)
武汉理工大学

武汉理工大学学报(材料科学版)(英文版)

CSTPCDSCI
影响因子:0.253
ISSN:1000-2413
年,卷(期):2008.23(6)
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