-Based on the experimental data, a stress variation model of the bond stress-slip relationship between steel bar and concrete is established. The characteristic of the model is that the boundary conditions are satisfi...-Based on the experimental data, a stress variation model of the bond stress-slip relationship between steel bar and concrete is established. The characteristic of the model is that the boundary conditions are satisfied very well; the effects of the material properties, the concrete cover, the crack spacing and the distance from the cracked cross section are considered. Good agreement between measured and calculated bond stress-slip relationship is found. This model is useful for the study of the stiffness, deformation and crack width of reinforced concrete members, and for the nonlinear analysis of reinforced concrete structures by the finite element method.展开更多
超高韧性水泥基复合材料(Ultra High Toughness Cementitious Composites,简称UHTCC)是一种新型高性能纤维混凝土,具有卓越的韧性和优良的耐久性能,已被成功地应用于许多实际工程。当在该材料浇注的构件中配制加强钢筋时,除了各自基本...超高韧性水泥基复合材料(Ultra High Toughness Cementitious Composites,简称UHTCC)是一种新型高性能纤维混凝土,具有卓越的韧性和优良的耐久性能,已被成功地应用于许多实际工程。当在该材料浇注的构件中配制加强钢筋时,除了各自基本的材料力学性能外,它们之间的粘结滑移本构关系也是获取正确可靠的结构力学响应所必需的基本参数。基于此,在对6个钢筋内贴片试件进行拉拔试验的基础上,通过实测的钢筋应变和端部滑移,分析了两者之间的粘结应力以及相对滑移沿锚固长度的分布规律,进而推导出沿锚固长度变化的粘结滑移本构关系和反映这种变化的位置函数,并建立考虑锚固位置的粘结滑移本构关系。展开更多
文摘-Based on the experimental data, a stress variation model of the bond stress-slip relationship between steel bar and concrete is established. The characteristic of the model is that the boundary conditions are satisfied very well; the effects of the material properties, the concrete cover, the crack spacing and the distance from the cracked cross section are considered. Good agreement between measured and calculated bond stress-slip relationship is found. This model is useful for the study of the stiffness, deformation and crack width of reinforced concrete members, and for the nonlinear analysis of reinforced concrete structures by the finite element method.
文摘超高韧性水泥基复合材料(Ultra High Toughness Cementitious Composites,简称UHTCC)是一种新型高性能纤维混凝土,具有卓越的韧性和优良的耐久性能,已被成功地应用于许多实际工程。当在该材料浇注的构件中配制加强钢筋时,除了各自基本的材料力学性能外,它们之间的粘结滑移本构关系也是获取正确可靠的结构力学响应所必需的基本参数。基于此,在对6个钢筋内贴片试件进行拉拔试验的基础上,通过实测的钢筋应变和端部滑移,分析了两者之间的粘结应力以及相对滑移沿锚固长度的分布规律,进而推导出沿锚固长度变化的粘结滑移本构关系和反映这种变化的位置函数,并建立考虑锚固位置的粘结滑移本构关系。