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Mechanism of C_(4)AF Content and Heat-curing Process on the Abrasion Resistance of High Ferrite Cement
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作者 DENG Qingshan feng yuqiu +3 位作者 ZENG Lang WANG Shuaike WEI Shaoshan RAO Meijuan 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2022年第3期440-449,共10页
Cement used in severe maritime environments must be attached with exceptional properties such as high sulfate resistance and abrasion strength.A sulfate resistant material typically used in marine engineering is high ... Cement used in severe maritime environments must be attached with exceptional properties such as high sulfate resistance and abrasion strength.A sulfate resistant material typically used in marine engineering is high ferrite cement,which has been utilized in sulfate-rich environments.This study aims at exploring the effect of C_(4)AF and heat-curing on the abrasion resistance of high ferrite cement(HFC,C_(4)AF:14%-22%)in order to have a comprehensive understanding of this mechanism and promote the application of HFC in marine engineering.A new invention was designed for the abrasion resistance device by considering the sea-wave abrasion and seawater erosion in laboratory.The compressive strength and abrasion resistance of HFC were measured.Additionally,advanced analytical methods were used to explore the abrasion resistance mechanism of HFC,including X-ray fluorescence(XRF),X-ray diffraction(XRD),and thermogravimetric(TG)analyses,as well as mercury intrusion porosimetry(MIP).The results showed that HFC had the best abrasion resistance under appropriate heat-curing system that the curing temperature was 50℃and the hosting time was 4 hours,compared with PI(Portland cement)and LHC(low heat cement),meanwhile the abrasion resistance of HFC had a 62.4%increase when C_(4)AF content is increased from 14%to 22%.It can be ascribed that the content of portlandite is decreased due to the increase of C_(4)AF,which can reduce the portlandite assembled in ITZ(interfacial transition zone).It can also be ascribed that the DEF(delayed ettringite formation)is successfully avoided in HFC and the hydration degree of HFC can continue to be boosted under appropriate heat-curing system. 展开更多
关键词 abrasion resistance high ferrite cement(HFC) C_(4)AF heat-curing
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蒸养条件下矿粉、粉煤灰对高铁相硅酸盐水泥基材料毛细孔和抗侵蚀性能的影响 被引量:1
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作者 陈波 王伟鱼 +1 位作者 丰雨秋 饶美娟 《硅酸盐通报》 CAS 北大核心 2023年第1期162-169,共8页
为提高蒸养高铁相硅酸盐水泥(HFC)构件的抗侵蚀性能,推进HFC在海洋工程中的应用,本文通过力学性能测试、毛细孔测试、氯离子固化测试及X射线衍射等手段,研究了50℃蒸养条件下矿粉(SL)和粉煤灰(FA)对HFC水泥基材料毛细孔结构和抗侵蚀性... 为提高蒸养高铁相硅酸盐水泥(HFC)构件的抗侵蚀性能,推进HFC在海洋工程中的应用,本文通过力学性能测试、毛细孔测试、氯离子固化测试及X射线衍射等手段,研究了50℃蒸养条件下矿粉(SL)和粉煤灰(FA)对HFC水泥基材料毛细孔结构和抗侵蚀性能的影响。结果表明,由于SL具有较高的火山灰反应活性,掺入SL可以提高蒸养HFC砂浆的早期力学性能,同时降低HFC砂浆的28 d毛细孔率。掺入FA显著降低了HFC砂浆的早期力学性能,且后期强度增长缓慢,但FA的“微集料”效应导致HFC砂浆的毛细孔率降低。氯离子固化结果表明,SL促进了水泥对氯离子的物理吸附,而FA促进了水泥对氯离子的化学固化,SL和FA均提高了复合胶凝材料的氯离子结合能力。 展开更多
关键词 高铁相硅酸盐水泥 矿物掺合料 矿粉 粉煤灰 蒸养 毛细孔 氯离子固化
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