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Stress-strain evaluation of steel-strapped high-strength concrete with modified self-regulating end clips

机译:改进型自调节端夹的钢带高强度混凝土的应力应变评估

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摘要

High-strength concrete (HSC) is increasingly used in columns of building all over the world. Although it offers superior properties, it is relatively a brittle material. This study intends to improve the ductility of HSC using modified pretensioning confinement technique. It investigates the effects of the technique on the performance of the column and develops equations to predict the stress-strain. The basis of the technique is to apply a pretensioning force to relatively low-cost steel straps wrapped around the specimens. A modified end clip which is able to be self-regulated is used to secure the strap ends. The parameters studied include various spacing between straps and number of layers of straps. The confined specimens were tested in compression until failure under monotonic loading conditions, focusing particularly on the mode of failure, loads at peak and ultimate conditions and longitudinal and lateral strains in both concrete and straps. It was observed that the pretensioning technique using steel straps enhanced the ductility as well as the strength of the concrete as the confining ratio increases. Moreover, the layers of straps had also delayed the onset of volumetric expansion and therefore, the concrete failure. Based on the regression analysis, new equations of strength and strain for the confined HSC column have been developed to predict its stress-strain behavior.
机译:高强度混凝土(HSC)在世界各地的建筑业中越来越多地使用。尽管它具有优越的性能,但它是一种较脆的材料。本研究旨在使用改良的预张紧约束技术来提高HSC的延展性。它研究了该技术对色谱柱性能的影响,并开发了方程来预测应力应变。该技术的基础是对包裹在试样上的相对廉价的钢带施加预紧力。可以自我调节的改良型端夹用于固定绑带末端。研究的参数包括皮带之间的各种间距以及皮带的层数。在单调加载条件下对受约束的试件进行压缩测试,直至失效,尤其侧重于失效模式,峰值和极限条件下的载荷以及混凝土和皮带中的纵向和横向应变。观察到,随着围护比的增加,使用钢带的预拉伸技术增强了混凝土的延展性以及强度。此外,带子的层也延迟了体积膨胀的开始,因此延迟了混凝土的破坏。在回归分析的基础上,为封闭的HSC柱开发了新的强度和应变方程,以预测其应力-应变行为。

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