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玄武岩纤维对磷石膏基复合材料耐久性能的影响 被引量:1
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作者 黄莹蓥 孔德文 +2 位作者 崔庚寅 谢浪 王玲玲 《硅酸盐通报》 CAS 北大核心 2023年第7期2521-2531,共11页
通过在磷石膏基复合材料(PGC)中掺入不同直径、长度和掺量的玄武岩纤维(BF),探究BF对PGC耐久性能的影响。结果表明,BF的掺入能显著降低PGC的溶蚀率。随着BF掺量的增加,试样干湿循环和冻融循环强度整体提高,且与绝干强度变化机制类似,其... 通过在磷石膏基复合材料(PGC)中掺入不同直径、长度和掺量的玄武岩纤维(BF),探究BF对PGC耐久性能的影响。结果表明,BF的掺入能显著降低PGC的溶蚀率。随着BF掺量的增加,试样干湿循环和冻融循环强度整体提高,且与绝干强度变化机制类似,其中干湿循环的抗压和抗折强度较空白组分别提高了约22.3%和100.3%,冻融循环的抗压和抗折强度则分别提高了近46.5%和124.0%。同时,PGC的干湿循环与冻融循环强度系数整体随着BF掺量的增多而增大,干湿循环抗压和抗折强度系数分别上升至0.95和0.92,冻融循环抗压和抗折强度系数分别增长至0.71和0.62,这表明PGC耐久性能得到显著改善。此外,BF直径对PGC耐久性能的影响并不显著。本研究结果可以为纤维改性石膏基复合材料的耐久性能研究提供一定的参考。 展开更多
关键词 玄武岩纤维 磷石膏基复合材料 耐久性能 溶蚀率 干湿循环强度 冻融循环强度
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Mechanical and electrical properties of coarse-grained soilaffected by cyclic freeze-thaw in high cold regions 被引量:12
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作者 QU Yong-long NI Wan-kui +3 位作者 NIU Fu-jun MU Yan-hu CHEN Guo-liang LUO Jing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第3期853-866,共14页
To evaluate the geotechnical properties of coarse-grained soil affected by cyclic freeze-thaw,the electrical resistivity and mechanical tests are conducted.The soil specimens are prepared under different water content... To evaluate the geotechnical properties of coarse-grained soil affected by cyclic freeze-thaw,the electrical resistivity and mechanical tests are conducted.The soil specimens are prepared under different water contents,dry densities and exposed to 0?20 freeze-thaw cycles.As a result,the stress?strain behavior of the specimen(w=14.0%andρd=1.90 g/cm^3)changes from strain-hardening into strain-softening due to the freeze-thaw effect.The electrical resistivity of test specimen increases with the freeze-thaw cycles change,but the mechanical parameters(the unconfined compressive strength qu and the deformation modulus E)and brittleness index decrease considerably at the same conditions.All of them tend to be stable after 7?9 cycles.Moreover,both the dry density and the water content have reciprocal effects on the freeze-thaw actions.The failure and pore characteristics of specimens affected by freeze-thaw cycles are discussed by using the image analysis method.Then,an exponential function equation is developed to assess the electrical resistivity of specimens affected by the cyclic freeze-thaw.Linear relations between the mechanical parameters and the electrical resistivity of specimens are established to evaluate the geotechnical properties of the soil exposed to freeze-thaw actions through the corresponding electrical resistivity. 展开更多
关键词 coarse-grained soil freeze-thaw cycle unconfined compressive strength electrical resistivity electrical resistivity model
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Degradation of bond between steel bar and freeze-thaw concrete after electrochemical chloride extraction 被引量:7
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作者 郭育霞 贡金鑫 《Journal of Central South University》 SCIE EI CAS 2010年第2期388-393,共6页
The effect of electrochemical chloride extraction (ECE) on bond strength between steel bar and freeze-thaw concrete contaminated by chloride was experimentally investigated for beam specimens with dimensions of 100 ... The effect of electrochemical chloride extraction (ECE) on bond strength between steel bar and freeze-thaw concrete contaminated by chloride was experimentally investigated for beam specimens with dimensions of 100 mm × 100 mm × 400 ram. During the experiment, 3% NaC1 (vs mass of cement, mass fraction) was mixed into concrete to simulate chloride contamination, and the specimens experienced 0, 25, 50, 75 freeze-thaw cycles before ECE. In the process of ECE, different current densities and durations were adopted. It is indicated that the bond strength between reinforcement and concrete decreases with the increase of freeze-thaw cycles; the more the current and the electric quantity of ECE are, the more the loss of bond strength is; and the largest loss is up to 58.7%. So, it is important to choose proper parameters of ECE for the reinforced concrete structures contaminated by chloride and subjected to freeze-thaw cycles. 展开更多
关键词 CONCRETE bond strength DEGRADATION electrochemical chloride extraction freeze-thaw cycles
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