Effects of high temperature on the compressive and splitting strength of the steel-fiber reinforced concrete (SFRC) with different content of steel-fiber were investigated and its mechanism was simply analyzed.Results...Effects of high temperature on the compressive and splitting strength of the steel-fiber reinforced concrete (SFRC) with different content of steel-fiber were investigated and its mechanism was simply analyzed.Results indicate that the compressive and splitting strength of SFRC decrease slowly within 400 ℃ and they decay a little faster when over 400 ℃.The residual compressive and splitting strength rate of SFRC (2% fiber) increase about 27.6% and 9.3% of that of the control concrete without steel-fiber,respectively.The finite element software ANSYS was adopted to analyze the temperature field and stress field of the steel-fiber reinforced concrete at 400 ℃.The simulation results can further explain the effects of fiber content on the thermal field and stress field in SFRC and forecast the crack tendency of SFRC during heating process.展开更多
为研究负载水平对FRP(纤维增强复合材料)约束混凝土柱峰值应力和峰值应变的影响,根据32个CFRP(碳纤维增强复合材料)约束混凝土圆柱构件和16个CFRP约束混凝土方柱构件的试验结果,引入负载影响因子,对J G Teng提出的CFRP约束混凝土柱峰值...为研究负载水平对FRP(纤维增强复合材料)约束混凝土柱峰值应力和峰值应变的影响,根据32个CFRP(碳纤维增强复合材料)约束混凝土圆柱构件和16个CFRP约束混凝土方柱构件的试验结果,引入负载影响因子,对J G Teng提出的CFRP约束混凝土柱峰值应力和峰值应变计算公式进行修正.在此基础上分析了CFRP约束混凝土柱构件轴向-侧向应变关系,以J G Teng本构模型为主动约束关系,建立了负载下CFRP约束混凝土应力-应变分析型模型.研究结果表明:模型理论曲线与试验曲线接近,修正后的峰值应力和峰值应变与试验结果较吻合,圆柱构件的误差约10%,方柱构件的误差在15%左右.展开更多
文摘Effects of high temperature on the compressive and splitting strength of the steel-fiber reinforced concrete (SFRC) with different content of steel-fiber were investigated and its mechanism was simply analyzed.Results indicate that the compressive and splitting strength of SFRC decrease slowly within 400 ℃ and they decay a little faster when over 400 ℃.The residual compressive and splitting strength rate of SFRC (2% fiber) increase about 27.6% and 9.3% of that of the control concrete without steel-fiber,respectively.The finite element software ANSYS was adopted to analyze the temperature field and stress field of the steel-fiber reinforced concrete at 400 ℃.The simulation results can further explain the effects of fiber content on the thermal field and stress field in SFRC and forecast the crack tendency of SFRC during heating process.
文摘为研究负载水平对FRP(纤维增强复合材料)约束混凝土柱峰值应力和峰值应变的影响,根据32个CFRP(碳纤维增强复合材料)约束混凝土圆柱构件和16个CFRP约束混凝土方柱构件的试验结果,引入负载影响因子,对J G Teng提出的CFRP约束混凝土柱峰值应力和峰值应变计算公式进行修正.在此基础上分析了CFRP约束混凝土柱构件轴向-侧向应变关系,以J G Teng本构模型为主动约束关系,建立了负载下CFRP约束混凝土应力-应变分析型模型.研究结果表明:模型理论曲线与试验曲线接近,修正后的峰值应力和峰值应变与试验结果较吻合,圆柱构件的误差约10%,方柱构件的误差在15%左右.