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Axial compression behaviours of ultra-high performance concrete-filled Q690 high-strength steel tubes at low temperatures

机译:超高性能混凝土Q690高强度钢管的轴向压缩行为在低温下

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This paper proposed the UHPC-filled high-strength steel tube (UHST) for cold-region buildings/bridges. The cold-region low-temperature environment was simulated in the laboratory using a cooling chamber with LNG. Then, low-temperature compression tests were performed on 23 stub UHSTs to study their low-temperature compression behaviour. The studied parameters included four low temperatures (T = -80, -60, -30, and 30 degrees C) and three width-to-thickness ratios (C/t ratio = 48.4, 33.5, 22.0). Test results showed that the P (load) - Delta (shortening) curves exhibited a four-stage manner. The UHPC crushing occurred at the ultimate load capacity and UHPC nonlinearities contributed to the nonlinear behaviour of UHSTs. Outward buckling of HSS tube and welding fracture occurred at the recession stage. The decreasing temperature from 30 degrees C to -80 degrees C improved the compression behaviour of UHSTs. As T decreases form 30 degrees C to -80 degrees C, the ultimate compressive resistance Pu (or initial stiffness K-0) value of UHSTs with C/t ratio of 22.0 receives the increments of 20% (24%). With the same decrease of C/t ratio, the increments of peak load capacity decreased as T decreased from 30. C to -80 degrees C. This paper also developed finite element models (FEMs) and theoretical models to simulate the axial compression behaviour of UHSTs at low temperatures. Validations of simulations against 23 test results proved that both the FEM and theoretical models provided reasonable simulations on axial low-temperature compression behaviours of UHSTs.
机译:本文提出了用于冷区建筑/桥的UHPC填充的高强度钢管(UHST)。使用带LNG的冷却室在实验室模拟冷区域低温环境。然后,在23个短柱中进行低温压缩试验以研究它们的低温压缩行为。所研究的参数包括四个低温(T = -80,-60,-30和30℃),三个宽度到厚度比(C / T比率= 48.4,33.5,22.0)。测试结果表明,P(载荷) - δ(缩短)曲线表现出四级方式。 UHPC粉碎发生在最终的负载能力,UHPC非线性有助于UHST的非线性行为。衰退阶段发生了HSS管和焊接骨折的向外屈曲。从30摄氏度至-80摄氏度的降低温度改善了UHST的压缩行为。由于T降低了30℃至-80℃的形式,UHST的最终压缩电阻PU(或初始刚度K-0),C / T比的C / T比率为22.0,得到20%(24%)的增量。随着C / T比的相同降低,峰值负荷容量的增量随着T从30℃降低而降低。本文还开发了有限元模型(FEMS)和理论模型,以模拟轴向压缩行为低温下的uhsts。针对23个测试结果的模拟验证证明了有限元和理论模型在UHST的轴向低温压缩行为上提供了合理的模拟。

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