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Investigation on dynamic mechanical properties of fly ash/slag-based geopolymeric recycled aggregate concrete

机译:粉煤灰/矿渣基地基再生骨料混凝土的动态力学性能研究

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By harnessing the benefits from both construction and demolition waste recycling and geopolymer binders, geopolymeric recycled aggregate concrete (GRAC) can contribute to the green and eco-friendly construction material products. In this study, the compressive behavior of GRAC based on fly ash and slag was experimentally investigated under both quasi-static and dynamic loadings. Quasi-static compressive tests were performed by using a high-force servo-hydraulic test system, while dynamic compressive tests were carried out by using a empty set80-mm split Hopkinson pressure bar (SHPB) apparatus. The compressive properties of GRAC under dynamic loading, including stress-strain curves, energy absorption capability, and failure modes were obtained and compared with those under quasi-static loading. The results show that the compressive properties of GRAC exhibit a strong strain rate dependency. Although the recycled aggregate replacement decreases the quasi-static compressive strength, it exhibits a slight effect on the compressive strength at high strain rates. The dynamic increase factor (DIF) for compressive strength exhibits an significant increasing trend with the recycled aggregate replacement. On the other hand, the incorporation of slag increases the quasi-static compressive strength, dynamic compressive strength, and DIF. As for the energy absorption capacity, a minor enhancement is achieved with the recycled aggregate replacement, while a significant improvement is identified after the inclusion of slag. Empirical DIF formulae for compressive strength of GRAC are proposed, in which the DIF increases approximately linearly with the strain rate in a logarithmic manner.
机译:通过利用建筑和拆除废物回收利用以及地聚合物粘合剂的优势,地聚合物回收骨料混凝土(GRAC)可以为绿色和环保的建筑材料产品做出贡献。在这项研究中,基于粉煤灰和矿渣的GRAC的压缩行为在准静态和动态载荷下都进行了实验研究。准静态压缩测试是通过使用高压伺服液压测试系统进行的,而动态压缩测试是通过使用空置的80mm分离式Hopkinson压力杆(SHPB)仪器进行的。得到了动态荷载作用下GRAC的压缩特性,包括应力-应变曲线,能量吸收能力和破坏模式,并将其与准静态荷载下的特性进行了比较。结果表明,GRAC的压缩特性表现出很强的应变率依赖性。尽管回收的骨料替代物降低了准静态抗压强度,但是在高应变速率下,它对抗压强度表现出轻微的影响。随着再生骨料的替代,抗压强度的动态增加因子(DIF)呈现出明显的增加趋势。另一方面,炉渣的掺入增加了准静态抗压强度,动态抗压强度和DIF。至于能量吸收能力,回收的骨料替代物实现了较小的提高,而夹杂矿渣后发现了显着的提高。提出了GRAC抗压强度的经验DIF公式,其中DIF随应变率以对数方式近似线性增长。

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