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Mechanical performance of CFRP-confined sustainable geopolymeric recycled concrete under axial compression

机译:CFRP限制可持续地缘聚合物再生混凝土在轴压下的力学性能

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Sustainable geopolymeric recycled aggregate concrete (RAC) by utilizing environmentally-friendly binder-geopolymer and constructional solid waste-recycled aggregate (RA) will facilitate the sustainability in concrete industry. This study investigated the compressive behavior of sustainable geopolymeric RAC confined by carbon fiber-reinforced polymer (CFRP) jackets. A total of 72 cylindrical fly ash/slag-based geopolymeric concrete specimens, including 48 CFRP-confined specimens and 24 unconfined specimens were fabricated and tested. The testing variables included: coarse aggregate type (i.e., natural aggregate and RA), thickness of CFRP jackets (i.e., 1, 2, and 3 layers) and (iii) slag content (i.e., 0, 10%, 20% and 30% of the total binder by mass). The results indicate that the CFRP confinement remarkably enhances the compressive strength and ultimate strain of geopolymeric concrete, and the enhancement is more pronounced with the increase of CFRP jacket thickness. Moreover, the RA replacement and the inclusion of slag have minor influences on the CFRP confinement performance for the compressive strength, but have obvious effects on the CFRP confinement performance for the ultimate axial strain. Based on the test results, empirical stress and strain models were proposed to predict the ultimate condition of the CFRP-confined geopolymeric concrete.
机译:通过利用环境友好的粘合剂 - 地质聚合物和建筑固体废物再循环骨料(RA),可持续的地壤聚聚体再生混凝土(RAC)将促进混凝土行业的可持续性。本研究研究了可持续地缘聚合物RAC由碳纤维增强聚合物(CFRP)夹套限制的可持续地缘聚合物RAC的压缩行为。总共72个圆柱形粉煤灰/渣的地产聚混凝土样本,包括48个CFRP限制标本和24个非共型非整理标本,并测试。包括:粗骨料型(即,自然骨料和Ra),CFRP夹套厚度(即,1,2和3层)和(III)渣含量(即0,10%,20%和30质量总粘合剂的百分比)。结果表明,CFRP限制显着增强了地瘤混凝土的抗压强度和最终菌株,随着CFRP护套厚度的增加,增强更加明显。此外,RA更换和包含炉渣对抗压强度的CFRP监禁性能具有轻微影响,但对最终轴向应变的CFRP监禁性能具有明显的影响。基于测试结果,提出了经验应力和应变模型来预测CFRP局限性地覆多化混凝土的最终条件。

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