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The effect of active and passive confining pressure on compressive behavior of STCC and CFST

机译:主动和被动围压对STCC和CFST压缩行为的影响

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In this paper, an experimental study was conducted on the compressive behavior of steel tube confined concrete (STCC) and concrete-filled steel tube (CFST) columns with active and passive confinement. To create active confinement in the STCC and CFST specimens, an innovative method was used in this study, in which by applying pressure on the fresh concrete, the steel tube was laterally pretensioned and the concrete core was compressed simultaneously. Of the benefits of this technique are improving the composite column behavior, without the use of additives and without the need for vibration, and achieving high prestressing levels. To achieve lower and higher prestressing levels, short and long term pressures were applied to the specimens, respectively. Nineteen STCC and CFST specimens in three groups of passive, short-term active, and long-term active confinement were subjected to axial compression, and their mechanical properties including the compressive strength, modulus of elasticity and axial strain were evaluated. The results showed that the proposed method of prestressing the STCC columns led to a significant increase in the compressive strength (about 60%), initial modulus of elasticity (about 130%) as well as a significant reduction in the axial strain (about 45%). In the CFST columns, the prestressing led to a considerable increase in the compressive strength, a small effect on the initial and secant modulus of elasticity and an increase in the axial strain (about 55%). Moreover, increased prestressing levels negligibly affected the compressive strength of STCCs and CFSTs but slightly increased the elastic modulus of STCCs and significantly decreased that of CFSTs.
机译:本文对主动约束和被动约束的钢管承压混凝土柱和钢管混凝土柱的抗压性能进行了试验研究。为了在STCC和CFST标本中建立有效的约束,本研究中使用了一种创新方法,该方法通过在新鲜混凝土上施加压力,对钢管进行侧向预张,同时对混凝土芯进行压缩。该技术的优点是无需使用添加剂,无需振动即可改善复合柱的性能,并实现高预应力水平。为了达到较低和较高的预应力水平,分别对样品施加了短期和长期压力。对被动,短期主动和长期主动约束三组中的19个STCC和CFST标本进行轴向压缩,并评估其力学性能,包括压缩强度,弹性模量和轴向应变。结果表明,所提出的预应力STCC柱方法导致抗压强度(大约60%),初始弹性模量(大约130%)显着增加以及轴向应变(大约45%)显着减小。 )。在CFST柱中,预应力导致抗压强度显着提高,对初始和割线弹性模量的影响很小,并且轴向应变增加(约55%)。此外,增加的预应力水平对STCC和CFST的抗压强度的影响可以忽略不计,但会稍微增加STCC的弹性模量,而显着降低CFST的弹性模量。

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