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Study on Behavior of RPC Filled Steel Tubular Stub Columns Under Axial Compression

机译:轴压下RPC填充钢管柱柱的行为研究

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摘要

Reactive powder concrete (RPC) with compressive strength higher than 170 MPa was prepared by using ordinary Portland cement, silica fume, ground granulated blast-furnace slag or fly ash. RPC shows high strength, constant Poisson's ratio, high compressive peak strain but post-peak brittle failure. Based on the RPC mechanical behavior study, investigation of the interaction between steel tubes and core RPC was performed, in view of its effect on the bearing capacity and deformability of RPC filled steel tubular (RPCFT) stub columns subjected to axial loading. RPCFT stub columns have very high ductility and alleviate the RPC disadvantage of brittle failure. However, the confinement effect of steel tubes on RPC is lower than that of normal strength concrete and thus, it can be neglected during the design process for convenience and safety.
机译:通过使用普通的波特兰水泥,二氧化硅烟雾,地造粒的高炉炉渣或飞灰,制备具有高于170MPa的压缩强度高于170MPa的反应性粉末混凝土(RPC)。 RPC显示出高强度,恒定的泊松比,高压缩峰应变,但后峰值脆性失效。 考虑到其对经受轴向载荷的RPC填充钢管(RPCFT)短柱的轴承容量和可变形性的影响,基于RPC力学行为研究,对钢管和核心RPC之间的相互作用进行研究。 RPCFT存根柱具有非常高的延展性并减轻脆性失效的RPC缺点。 然而,钢管对RPC的限制效果低于正常强度混凝土,因此,在设计过程中,可以忽略方便和安全。

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