通过研究废弃混凝土再生粉取代水泥(0、10%、20%、30%、40%、50%取代)对超高性能混凝土(Ultra high performance concrete,UHPC)性能的影响,验证使用废弃混凝土再生粉制备UHPC的可行性。结果表明,再生粉取代水泥降低了UHPC基体的工作性...通过研究废弃混凝土再生粉取代水泥(0、10%、20%、30%、40%、50%取代)对超高性能混凝土(Ultra high performance concrete,UHPC)性能的影响,验证使用废弃混凝土再生粉制备UHPC的可行性。结果表明,再生粉取代水泥降低了UHPC基体的工作性能和抗折强度,但使用50%的再生粉取代水泥制备的UHPC基体28 d抗压强度与基准组相当;使用废弃混凝土再生粉制备UHPC基体具有较好的抗渗性能;随再生粉取代量的增加,UHPC基体的早期自收缩下降;XRD分析结果表明使用废弃混凝土再生粉取代水泥并不改变水化产物的种类;但掺加废弃混凝土再生粉能明显缩短UHPC基体的水化诱导期,降低累积释放热。除此之外,使用废弃混凝土再生粉制备的UHPC基体能耗显著降低。展开更多
Wet granulation is a potential method to develop artificial aggregates.In this paper,the granulation of recycled alkali-activated slag powders with different particle size(d_(50) ranging between 12.9-127.7μm)distribu...Wet granulation is a potential method to develop artificial aggregates.In this paper,the granulation of recycled alkali-activated slag powders with different particle size(d_(50) ranging between 12.9-127.7μm)distributions were investigated in order to find how these affect on the engineering properties of the artificial aggregates.Blast furnace slag was added as co-binder in 10-30 wt.%during the granulation process and to enhance the properties,especially mechanical strength.The results show that the particle size of the raw material significantly affects the engineering properties of the produced aggregates,such as the crushing force(19-131.8 N),bulk density,water absorption,porosity and microstructure of the granules.The results show that granulation is a promising method to recycle alkali-activated materials as lightweight aggregates to replace natural aggregates.展开更多
基金国家自然科学基金(51608409)2016年中山市新型研发机构专项(重大研发平台建设补贴2016F2FC0008)+2 种基金广东省中山市重大科技专项(2017A1021)2016年广东省省级科技计划项目(产学研合作项目2016A090924002)National Key Research and Development Program of China(2016YFC0305101)
文摘通过研究废弃混凝土再生粉取代水泥(0、10%、20%、30%、40%、50%取代)对超高性能混凝土(Ultra high performance concrete,UHPC)性能的影响,验证使用废弃混凝土再生粉制备UHPC的可行性。结果表明,再生粉取代水泥降低了UHPC基体的工作性能和抗折强度,但使用50%的再生粉取代水泥制备的UHPC基体28 d抗压强度与基准组相当;使用废弃混凝土再生粉制备UHPC基体具有较好的抗渗性能;随再生粉取代量的增加,UHPC基体的早期自收缩下降;XRD分析结果表明使用废弃混凝土再生粉取代水泥并不改变水化产物的种类;但掺加废弃混凝土再生粉能明显缩短UHPC基体的水化诱导期,降低累积释放热。除此之外,使用废弃混凝土再生粉制备的UHPC基体能耗显著降低。
基金support received for the project DeConcrete Eco-Efficient Arctic technologies cooperation funded by kolarctic CBC initiative of European Union(KO 4068).XRD analysis was performed at the Center of Microscopy and Nanotechnology(University of Oulu).The authors would like to thank Jarno Karvonen and Elisa Wirkkala for their assistance with the laboratory experiments.
文摘Wet granulation is a potential method to develop artificial aggregates.In this paper,the granulation of recycled alkali-activated slag powders with different particle size(d_(50) ranging between 12.9-127.7μm)distributions were investigated in order to find how these affect on the engineering properties of the artificial aggregates.Blast furnace slag was added as co-binder in 10-30 wt.%during the granulation process and to enhance the properties,especially mechanical strength.The results show that the particle size of the raw material significantly affects the engineering properties of the produced aggregates,such as the crushing force(19-131.8 N),bulk density,water absorption,porosity and microstructure of the granules.The results show that granulation is a promising method to recycle alkali-activated materials as lightweight aggregates to replace natural aggregates.