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周志威,王杰,余中華,劉佳欣, 肖東
( 成都城投城建科技有限公司 , 四川成都 610500)
摘 要:為有效降低超高性能混凝土 (UHPC) 中鋼纖維的使用成本,采用混摻不同長度鋼纖維方式,對UHPC的基本工作性能和力學性能進行對比研究。結果表明:鋼纖維長度對UHPC擴展度有一定影響,總體上長纖維混摻組的擴展度小于短纖維混摻組,鋼纖維摻量比鋼纖維長度對擴展度的影響更大;熱水養護可以促進UHPC 中氫氧化鈣迅速反應生成強度更高的 C - S- H 凝膠物質,熱水養護3d 的UHPC力學強度明顯高于標準養護28d的力學強度;熱水養護混摻 8 、20 mm 長鋼纖維的UHPC抗壓強度最高,混摻16 、20mm 長鋼纖維的UHPC抗折強度最高,標準養護混摻16 、20mm長鋼纖維的UHPC抗壓和抗折強度最高;通過層次分析法對UHPC綜合性能進行計算分析,發現在采用13、20mm或者16 、20mm 混摻方案時,綜合性能可以超過13mm 長鋼纖維單摻3%的UHPC綜合性能,通過混摻優化可使UHPC材料生產成本降低600 ~ 700元/m3 。
關鍵詞:超高性能混凝土;鋼纖維長度;混摻;層析分析法;綜合性能
中圖分類號:U444
文獻標志碼:A
文章編號:1005- 8249 (2024) 03- 0030- 05
DOI:10.19860/j.cnki.issn1005-8249.2024.03.007
ZHOU Zhiwei, WANG Jie, YU Zhonghua, LIU Jiaxin, XIAO Dong
(Chengdu Chengtou Urban Construction Technology Co. ,Ltd. ,Chengdu 610500 , China)
Abstract : In order to effectively reduce the cost of steel fibres in ultra- high performance concrete ( UHPC) , a comparative study of the basic working and mechanical properties of UHPC was carried out by mixing different lengths of steel fibres . The results show that : the length of steel fibre has a certain effect on the degree of expansion of UHPC , in general , the degree of expansion of the long fibre mixing group is smaller than that of the short fibre mixing group , and the amount of steel fibre mixing has a greater effect on the degree of expansion compared with the length of steel fibre; hot water curing can promote the rapid reaction of calcium hydroxide to generate a higher strength of the C - S- H gel substance in UHPC , and the mechanical strength of the UHPC in hot water curing for 3 d is significantly higher than that of the standard curing. The mechanical strength of UHPC in hot water conditioning for 3d is significantly higher than that of standard conditioning for 28d; the compressive strength of UHPC with 8 and 20 mm steel fibres in hot water conditioning is the highest , the flexural strength of UHPC with 16 and 20 mm steel fibres in hot water conditioning is the highest , and the compressive and flexural strengths of UHPC with 16 and 20 mm steel fibres in standard conditioning are the highest; the comprehensive performance of UHPC was calculated through the hierarchical analysis , and the calculation and analysis of UHPC performance were found to be the highest with the mixing scheme of 13 and 20 mm or 16 and 20 mm. It is found that the comprehensive performance of UHPC with 13 and 20 mm or 16 and 20 mm mixing scheme can exceed the comprehensive performance of UHPC with 13 mm long steel fibre single mixing 3% , and the optimization of mixing can reduce the production cost of UHPC material by 600 ~ 700 RMB/m3 .
Keywords : ultra high performance concrete; steel fiber length; mixing; chromatography analysis method; comprehensive performance
作者簡介:周志威 (1990—) , 男,碩士,工程師,研究方向: 市政 、水利 、建筑材料相關研究工作。
通信作者: 王 杰 (1990—) , 男,本科,工程師,研究方向: 市政 、橋梁方面研究工作。
收稿日期:2023-05-30
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