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早强木纹装饰砂浆板的制备与性能研究 被引量:2
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作者 贾舒婷 《新型建筑材料》 北大核心 2019年第6期76-78,98,共4页
通过改变胶凝材料组成制备早强木纹装饰砂浆板,并测试了不同胶凝材料体系下复合水泥砂浆的初凝时间、力学性能及耐久性能.结果表明:随硫铝酸盐水泥掺量的增加,复合水泥的初凝时间呈先减小后增大的趋势;硫铝酸盐水泥的掺加对砂浆早期力... 通过改变胶凝材料组成制备早强木纹装饰砂浆板,并测试了不同胶凝材料体系下复合水泥砂浆的初凝时间、力学性能及耐久性能.结果表明:随硫铝酸盐水泥掺量的增加,复合水泥的初凝时间呈先减小后增大的趋势;硫铝酸盐水泥的掺加对砂浆早期力学性能和干缩性能有不同程度的改善作用,但对28 d龄期的力学性能和耐磨性存在不利影响.与基准组相比,当硫铝酸盐水泥掺量为50%时,复合水泥砂浆的初凝时间降低84.1%,早期抗折和抗压强度分别提高47.5%和80%,耐磨性降低2.97%,28 d收缩降低42.3%. 展开更多
关键词 早强:木纹装饰砂浆板 初凝时间 力学性能:耐久性
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Main properties of ultra-high performance fiber reinforced cement composites under couple effect of load and environment
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作者 Saly Fathy 顾春平 孙伟 《Journal of Southeast University(English Edition)》 EI CAS 2012年第2期184-189,共6页
This study aims to reveal the mechanism that how the content of steel fibers and strength grades affect the macro performance of the ultra-high performance fiber reinforced cementitious composite (UHPFRCC) and to st... This study aims to reveal the mechanism that how the content of steel fibers and strength grades affect the macro performance of the ultra-high performance fiber reinforced cementitious composite (UHPFRCC) and to study the UHPFRCC durability under the combined effect of loads and environments. Three types of high and ultra-high performance fiber reinforced cement composites with different strength grades (100, 150, 200 MPa) and different steel fiber volume fractions (0%, 1%, 2%, 3%) are prepared. The main properties of mechanical performance and short-term durability are studied. A preloading frame is designed to apply a four- point load external flexural stress with a stress selection ratio of 0.5 for UHPFRCC150 specimens. The results show that the growth in strength grade with a proper content of steel fiber greatly increases the strength and toughness of the HPFRCC and the UHPFRCC while decreasing the dry-shrinkage ratio. For the loaded specimens, the existence of steel fiber can reduce the negative influence of tensile stress on the Cl- penetration resistance of the UHPFRCC in addition to improving its ability to resist the freeze-thaw damage. 展开更多
关键词 ultra-high performance fiber reinforced cementitious composite couple effect of load and environment mechanical properties DURABILITY
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