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Circular Concrete-Filled Tubes for Improved Sustainability and Seismic Resilience

机译:圆形混凝土填充管,提高了可持续性和抗震能力

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摘要

Concrete-filled tubes (CFTs) provide an opportunity for more sustainable structural systems through the use of concretes with high volumes of supplementary cementitious materials (SCMs) to replace cement. However, there is concern that the SCM concrete would not be able to sustain the early (construction or dead) loads due to the longer cure time, necessitating stress transfer to the steel tube, possibly leading to tube buckling. Further, these loads are permanent and the long-term response of CFTs with SCM concretes is also unknown. This research evaluates the response of CFTs with conventional and high-volume SCM concretes to immediate compressive, sustained, and extreme loadings. Two large-scale (508 mm diameter) CFT column-to-footing connection specimens, one with a high volume of SCM used to replace portland cement, were tested under long-term compressive and cyclic loadings. Shrinkage and creep were evaluated for both the large-scale CFT and companion cylinders. The total creep strain in the SCM and conventional concretes was found to be much larger in the unsealed cylinders than the CFT specimens. Creep coefficients were found to be similar for the sealed cylinders and the CFT specimens. Drying shrinkage was found to be negligible in the CFTs and the SCM concrete was found to have slightly larger shrinkage than conventional concrete in both sealed and unsealed cylinders. The CFT specimens were subjected to cyclic lateral loading to evaluate their response to extreme loads and the effects of creep loading and the SCM concrete on performance were negligible.
机译:填充混凝土的管(CFT)通过使用具有大量补充胶结材料(SCM)的混凝土来代替水泥,为更可持续的结构系统提供了机会。但是,由于较长的固化时间,SCM混凝土将无​​法承受早期(施工或静载)载荷,这需要将应力转移到钢管上,从而可能导致钢管弯曲。此外,这些载荷是永久性的,使用SCM混凝土的CFT的长期响应也是未知的。这项研究评估了常规和大体积SCM混凝土的CFT对即时压缩,持续和极端荷载的响应。在长期压缩和循环载荷下测试了两个大型(直径508毫米)CFT立柱到脚的连接样品,其中一个具有大量SCM来代替硅酸盐水泥。评估了大型CFT气缸和配套气缸的收缩率和蠕变率。发现在SCM和常规混凝土中,未密封圆柱体中的总蠕变应变比CFT试样大得多。发现密闭圆柱体和CFT样品的蠕变系数相似。发现在CFT中干燥收缩可以忽略不计,并且发现SCM混凝土的密封和未密封圆柱体的收缩率均比常规混凝土大。 CFT试件承受周期性的横向荷载,以评估其对极端荷载的响应,而蠕变荷载和SCM混凝土对性能的影响可以忽略不计。

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