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Constitutive model and reinforcing mechanisms of uniaxial compressive property for reactive powder concrete with super-fine stainless wire

机译:超细不锈钢丝活性粉末混凝土单轴抗压本构模型及增强机理

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摘要

Super-fine stainless wire (SSW) is an excellent reinforcing filler for reactive powder concrete (RPC) due to its high mechanical property, favorable dispersibility, strong interface bonding with matrix, and micron diameter and high aspect ratio. In this paper, the uniaxial compressive strength, deformation and stress-strain curves of SSW reinforced RPC under different curing conditions are studied. Meanwhile, an uniaxial compressive constitutive model is established based on continuum damage theory and the reinforcing mechanisms are revealed through macroscopic, microscopic and Ca(OH)(2) orientation analysis. The uniaxial compressive strength, elastic modulus and Poisson's ratio of RPC are increased by 85.3%, 58.2% and 114.8% respectively and the cyclo-hoop effect is weakened due to the addition of SSW. The ascending-stage of uniaxial compressive stress-strain curves of SSW reinforced RPC shows obvious elastic-plastic region and the longitudinal peak strain is enhanced by 73.8%. The established theoretical uniaxial compressive constitutive model can well describe the stress-strain relationship of SSW reinforced RPC. The change of damage variable demonstrates the delaying effect of SSW on cracks. The reinforcing mechanisms of SSW to RPC include interface effect, overlapping network effect, inter-anchor effect, bridging effect, torsion, stripping and snapping effect and decrease in crystal orientation index of Ca(OH)(2).
机译:超细不锈钢丝(SSW)具有很高的机械性能,良好的分散性,与基体的牢固界面结合以及微米直径和高长宽比,是用于活性粉末混凝土(RPC)的出色补强填料。研究了不同固化条件下SSW增强RPC的单轴抗压强度,变形和应力应变曲线。同时,基于连续介质损伤理论建立了单轴压缩本构模型,并通过宏观,微观和Ca(OH)(2)取向分析揭示了增强机理。 RPC的单轴抗压强度,弹性模量和泊松比分别增加了85.3%,58.2%和114.8%,并且由于添加了SSW,环箍效应减弱了。 SSW增强RPC的单轴压缩应力-应变曲线的上升阶段表现出明显的弹塑性区,纵向峰值应变增大了73.8%。建立的理论单轴压缩本构模型可以很好地描述SSW增强RPC的应力-应变关系。损伤变量的变化证明了SSW对裂纹的延迟作用。 SSW对RPC的增强机制包括界面效应,重叠网络效应,锚间效应,桥接效应,扭转,剥离和折断效应以及Ca(OH)(2)晶体取向指数的降低。

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