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首页> 外文期刊>Advances in Structural Engineering >Development of strength and elastic modulus of concrete sealed in steel tube under sustained load at early age
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Development of strength and elastic modulus of concrete sealed in steel tube under sustained load at early age

机译:在休眠载荷下钢管中混凝土强度和弹性模量的发展

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摘要

Concrete-Filled Steel Tubular Structures (CFSTSs) have become popular among the structural engineering community due to significantly higher load carrying capacity compared to conventional reinforced-concrete structures. Much research has been conducted on understanding the behavior of CFSTSs under various loading conditions and design theories have been established to predict the load carrying capacities of such structures. However, existing models do not consider the effects of sustained early loads on concrete strength and elastic modulus development of CFSTSs. With the need for rapid construction, CFSTSs may be subjected to loading at an early stage before concrete is fully cured. Such early loading may incur negative effects on strength and elastic modulus development of concrete within the confined environment. This paper propose theoretical models based on the compressive packing model (CPM) to simulate strength and elastic modulus development of early-age concrete under sustained stress. Development of concrete properties at early age is described using Hydration kinetics, and maximum paste thickness in the CPM model is modified using energy conservation to simulate sustained loads. Early concrete strength and the elastic modulus development rules were investigated experimentally for sustained loads. Predictions from the proposed models are compared with conventional models from CEB-FIP Model Code. Results showed that when loaded at a very early stage, a relatively high stress to strength ratio will result in causing damage in concrete. Such damage significantly affects the strength and elastic modulus development. Compared with concrete loaded at 28 days, concrete loaded at early stages showed significant reduction in concrete strength and elastic modulus.
机译:由于与传统的钢筋混凝土结构相比,混凝土钢管结构(CFSTS)在结构工程界中变得流行。已经对理解CFSTS的行为进行了许多研究,并建立了设计理论以预测这种结构的承载能力。然而,现有模型不考虑持续早期负载对CFSTS的混凝土强度和弹性模量开发的影响。随着需要快速施工,可以在混凝土完全固化之前在早期阶段进行CFSTS。这种早期负载可能会对狭窄环境中的混凝土的强度和弹性模量产生产生负面影响。本文提出了基于压缩包装模型(CPM)的理论模型,以模拟持续应力下早期混凝土的强度和弹性模量开发。使用水合动力学描述休假性的混凝土性能的研制,并且使用节能以模拟持续载荷来修改CPM模型中的最大糊状厚度。针对持续载荷实验研究了早期混凝土强度和弹性模量开发规则。将所提出的模型的预测与来自CEB-FIP模型代码的传统模型进行比较。结果表明,当在非常早期的阶段加载时,对强度比的相对高的应力将导致混凝土损坏。这种损坏显着影响强度和弹性模量显影。与28天的混凝土相比,早期阶段加载的混凝土显示出混凝土强度和弹性模量的显着降低。

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