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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水泥混凝土制品

荷载与海水环境耦合作用下钢筋混凝土梁的抗弯性能研究
荷载与海水环境耦合作用下钢筋混凝土梁的抗弯性能研究
  • 姜鹏洲,王玉田,姜福香,张 龙,张宝烁
2023年第5期
摘要
引用本文
摘  要:通过对普通钢筋混凝土梁进行前期加载和海水干湿循环试验,使试验梁发生接近实际结构的机械与钢筋锈蚀耦合损伤,并对耦合损伤试验梁进行了抗弯加载试验。结果表明:耦合损伤梁的破坏形态均为适筋破坏;损伤度越高,耦合损伤试验梁的钢筋屈服越早,裂缝发展及顶部混凝土破坏过程相对越快,其屈服荷载、抗弯承载力、刚度退化也越明显;随着荷载的增加,耦合损伤试验梁的刚度退化速度和幅度也越明显。结合耦合损伤梁试验数据,对普通梁抗弯承载力、刚度理论计算公式的相关参数进行了拟合修正,推导出了耦合损伤试验梁的抗弯承载力和刚度计算公式。 Abstract: Through pre-loading and seawater dry-wet cycle tests on ordinary reinforced concrete beams, the test beams had mechanical and steel corrosion coupling damage close to the actual structure, and the flexural loading test of the coupled-damaged test beams was carried out. The results show that the failure modes of coupled-damaged beams are all suitable reinforcement failures. The higher the damage degree of the test beam, the earlier the reinforcement yielded, the faster the crack development and the top concrete failure process, the yield load, flexural bearing capacity and stiffness of the test beam degenerate obviously. As the load increases, the rate and magnitude of stiffness degradation become obvious. In addition, combined with the test datas of coupled-damaged beams, the relevant parameters of the theoretical calculation formulas of flexural bearing capacity and stiffness of ordinary beams are fitted and revised. The calculation formulas of flexural bearing capacity and stiffness of beams with coupling damage of load and seawater environment are deduced.
姜鹏洲,王玉田,姜福香,等.荷载与海水环境耦合作用下钢筋混凝土梁的抗弯性能研究[J].混凝土与水泥制品,2023(5):36-41. JIANG P Z,WANG Y T,JIANG F X,et al.Study on Flexural Performance of Reinforced Concrete Beams Damaged by Coupling of Loads and Seawater Environment[J].China Concrete and Cement Product,2023(5):36-41.
芯模振动成型高强度等级混凝土排水管的试验研究
芯模振动成型高强度等级混凝土排水管的试验研究
  • 谈维汉,侯 雷
2023年第5期
摘要
引用本文
摘   要:为探索芯模振动成型高强混凝土排水管的可行性,结合实际生产经验,确定了C70混凝土配合比和芯模振动成型参数,试制了6根公称内径为1 500 mm的钢筋混凝土排水管,在覆盖淋水和自然养护条件下,分别测试了同条件养护立方体试块和管体芯样强度。结果表明:芯模振动工艺在满足质量控制要求情况下,可以成型高强混凝土的排水管;覆盖淋水养护较自然养护更有利于管体混凝土强度的增长。 Abstract: In order to explore the feasibility of forming high-strength concrete sewer pipes by core mold vibration technology, combined with actual production experience, the C70 concrete mix proportion and core mold vibration molding parameters were determined, and six reinforced concrete sewer pipes with a nominal inner diameter of 1 500 mm were trial-produced. Under the conditions of wet covering and natural curing, the strength of the same curing blocks and the core drilling blocks were tested respectively. The results show that the high-strength reinforced concrete sewer pipes can be formed by the core mold vibration technology under the condition of meeting the quality control requirements. Wet covering curing is more conducive to the strength growth of pipe concrete than natural curing.
谈维汉,侯雷.芯模振动成型高强混凝土排水管试验研究[J].混凝土与水泥制品,2023(5):42-44. TAN W H,HOU L.Experimental Study on High-strength Concrete Sewer Pipes Formed by Core Mold Vibration Technology[J].China Concrete and Cement Product,2023(5):42-44.
CFRP加固钢筋混凝土柱复合受扭性能试验研究及损伤分析
CFRP加固钢筋混凝土柱复合受扭性能试验研究及损伤分析
  • 朱印辛,邵永健,谢 强
2023年第5期
摘要
引用本文
摘  要:为研究CFRP加固钢筋混凝土柱的复合受扭性能,设计了4个CFRP加固钢筋混凝土柱(CCZ柱)试件,开展了压弯剪复合受力状态下的单调受扭试验,研究了配筋率和CFRP加固方式对试件破坏形态、延性系数、扭矩-扭率(T-θ)曲线的影响,并进行了损伤演变分析。结果表明:当CFRP发生断裂后,试件将发生破坏;环贴+纵贴CFRP加固试件的受扭性能和延性较好,且配筋率对试件的受扭性能和延性影响较小;纵筋配筋率会影响试件的损伤形态,纵筋配筋率越大,试件损伤程度越小。 Abstract: In order to study the composite torsional performance of CFRP reinforced concrete columns, four CFRP reinforced concrete columns (CCZ columns) were designed with reinforcement ratio and CFRP reinforcement method as parameters. The monotone torsional tests were carried out under the combined stress state of flexural, shear and torsion. The failure forms, ductility coefficient and torque-torsion curve characteristics were studied, and the damage evolution was analyzed. The results show that the CCZ column is damaged after the carbon fiber cloth around it breaks. The torsional properties and ductility of the specimens reinforced with circumferential and longitudinal CFRP are improved, and the reinforcement ratio has little effect on the torsional properties and ductility. The ratio of longitudinal reinforcement has a great influence on the damage of specimen. The larger the ratio of longitudinal reinforcement, the smaller the damage degree of composite torsion of specimen.
朱印辛,邵永健,谢强.CFRP加固钢筋混凝土柱复合受扭性能试验研究及损伤分析[J].混凝土与水泥制品,2023(5):45-49. ZHU Y X,SHAO Y J,XIE Q.Experimental Study and Damage Analysis of CFRP-Reinforced Concrete Columns Under Combined Torsion[J].China Concrete and Cement Product,2023(5):45-49.
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