苏州混凝土水泥制品研究院有限公司

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发布时间:2020-01-06 00:00:00
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纤维水泥制品

超高性能混凝土的收缩性能及收缩预测模型研究
超高性能混凝土的收缩性能及收缩预测模型研究
  • 徐 怡,陈阳杰,谭 昕,李梦翔,康 璇,童松如,茅俊涛
2023年第5期
摘要
引用本文
 摘   要:试验研究了钢纤维掺量(0、1%、2%)对超高性能混凝土(UHPC)收缩性能的影响,对比分析了5种常用的混凝土收缩预测模型对UHPC的适用性,并基于试验数据建立了适用于UHPC的收缩预测模型。结果表明:掺钢纤维UHPC的收缩应变低于未掺钢纤维的对比组,且钢纤维掺量越大,对UHPC的减缩效果越显著;5种常用的混凝土收缩预测模型对UHPC的适用性较低,其中,ACI 209(92)模型高估了UHPC的40 d后收缩应变,B3模型、CEB-FIP 90模型和中国建科院模型低估了UHPC的收缩应变,GL2000模型对90 d龄期时的收缩应变预测值与试验值相对较为接近;建立的指数函数形式的UHPC收缩应变计算模型的精度较高。 Abstract: The influence of steel fiber content(0, 1%, 2%) on the shrinkage performance of ultra-high performance concrete(UHPC) was studied through experiments. The applicability of five commonly used concrete shrinkage prediction models to UHPC was compared and analyzed, and a shrinkage prediction model suitable for UHPC was established based on the test datas. The results show that the shrinkage strain of UHPC mixed with steel fiber is lower than that of comparison group without steel fiber, and the greater the content of steel fiber, the more significant the shrinkage reduction effect of UHPC. The applicability of five commonly used concrete shrinkage prediction models to UHPC is low. ACI 209(92) model overestimates the shrinkage strain of UHPC after 40 days, B3 model, CEB-FIP 90 model and China Academy of Building Research model underestimate the shrinkage strain of UHPC, and GL2000 model predictes the shrinkage strain at the age of 90 days relatively close to the test value. The calculation model of UHPC shrinkage strain in the form of exponential function has high accuracy.
徐怡,陈阳杰,谭昕,等.超高性能混凝土的收缩性能及收缩预测模型研究[J].混凝土与水泥制品,2023(5):50-54. XU Y,CHEN Y J,TAN X,et al.Study on Shrinkage Performance and Shrinkage Prediction Model of Ultra-High Performance Concrete[J].China Concrete and Cement Product,2023(5):50-54.
碱激发再生骨料纤维混凝土的工作性和力学性能研究
碱激发再生骨料纤维混凝土的工作性和力学性能研究
  • 王连坤,林文皓,刘 杰,梁锡东
2023年第5期
摘要
引用本文
摘   要:研究了碱激发剂浓度(2%、5%、8%)和再生粗骨料取代率(0、25%、50%、75%、100%)对PVA纤维混凝土坍落度、抗压强度、劈裂抗拉强度和轴心抗压强度的影响,建立了碱激发再生骨料纤维混凝土的力学指标换算式。结果表明:随着再生粗骨料取代率和碱激发剂浓度的增加,混凝土拌合物的坍落度降低;试件的抗压强度、劈裂抗拉强度和轴心抗压强度均随着再生粗骨料取代率的增加而减小,随着碱激发剂浓度的增加而增大;建立的抗压强度分别与劈裂抗拉强度和轴心抗压强度的换算式具有较高的拟合精度。 Abstract: The effects of alkali activator concentration (2%, 5%, 8%) and recycled coarse aggregate replacement rate (0, 25%, 50%, 75%, 100%) on the slump, compressive strength, splitting tensile strength and axial compressive strength of PVA fiber concrete were studied, and the mechanical index conversion formulas of alkali activated recycled aggregate fiber concrete were established. The results show that the slump of concrete mixture decreases with the increase of the replacement rate of recycled coarse aggregate and the concentration of alkali activator. The compressive strength, splitting tensile strength and axial compressive strength of the specimen decrease with the increase of the replacement rate of recycled coarse aggregate, and increase with the increase of the concentration of alkali activator. The established conversion formulas of compressive strength, splitting tensile strength and axial compressive strength have high fitting accuracy.
王连坤,林文皓,刘杰,等.碱激发再生骨料纤维混凝土的工作性和力学性能研究[J].混凝土与水泥制品,2023(5):55-58. WANG L K,LIN W H,LIU J,et al.Study on Workability and Mechanical Properties of Alkali Activated Recycled Aggregate Fiber Concrete[J].China Concrete and Cement Product,2023(5):55-58.
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