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Effects of Steel Slag Powder and Expansive Agent on the Properties of Ultra-High Performance Concrete (UHPC): Based on a Case Study

机译:基于案例研究的钢渣粉和膨胀剂对超高性能混凝土(UHPC)性能的影响

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摘要

In view of the performance requirements of mass ultra-high performance concrete (UHPC) for the Pang Gong bridge steel cable tower in China, the UHPC incorporating of steel slag powder and hybrid expansive agents is optimized and prepared. The effects of steel slag powder and hybrid expansive agents on the hydration characteristics and persistent shrinkage of UHPC are investigated. The results indicate that 15 wt.% steel slag powder and 5 wt.% hybrid expansive agents can effectively reduce the drying shrinkage deformation of UHPC with a slight decrease of strength. Heat flow calorimetry results show that the incorporation of steel slag powder and expansive agents decreases the hydration heat at three days. Moreover, the obtained adiabatic temperature rise of UHPC is 59.5 °C and the total shrinkage value at 180 days is 286 με. The hydration heat release changes of large volume UHPC in the steel-concrete section of cable tower is agreed with the result of adiabatic temperature rise in the laboratory.
机译:针对我国庞公大桥钢缆塔的超高性能混凝土(UHPC)的性能要求,优化并制备了由钢渣粉和混合膨胀剂组成的UHPC。研究了钢渣粉和混合膨胀剂对UHPC水化特性和持久收缩的影响。结果表明,15%(重量)的钢渣粉和5%(重量)的混合膨胀剂可以有效地减少UHPC的干燥收缩变形,而强度略有降低。热流热分析的结果表明,钢渣粉和膨胀剂的结合降低了三天的水化热。此外,获得的UHPC的绝热温升为59.5℃,在180天时的总收缩值为286μs。电缆塔钢混凝土段大体积UHPC的水化放热变化与实验室绝热温升的结果一致。

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