含再生混凝土骨料的钢筋混凝土梁的力学性能和弯曲性能

Malak H. Dawood, Ali K. Al-Asadi
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摘要

由于环境和经济上的优势,如尽量减少垃圾填埋,节约自然资源,减少污染,增加废物回收利用已成为建筑行业必不可少的过程。从标准压缩试验立方体中粉碎和筛分废料用于生产再生混凝土骨料(RCA)。采用粗骨料替代率分别为0、30、50和70%,制作了一组标准混凝土柱、立方体和梁试件。在第28天阶段,对试件进行抗压强度、应力-应变关系、劈裂抗拉强度和抗弯强度测试。此外,四个钢筋混凝土(RC)梁被浇铸并在四点荷载下进行测试,以评估用RCA部分替代天然骨料的RC梁的抗弯性能。一种是天然骨料(NA)控制梁,另一种是不同的RCA比率(30、50和70%)。结果表明:与普通混凝土(NC)相比,替代量为30%、50%和70%的RCA混凝土抗压强度分别降低9.10%、18.88%和22.57%;RCA混凝土具有较高的应变能力,具有较高的延性。最大RCA型菌株范围为0.0056 ~ 0.0072。混凝土抗折强度较NC略有下降(下降18.83%),其中抗拉强度较NC下降10.61%。RC梁的承载力随替换率的增加而降低10.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical properties and flexural behaviour of reinforced concrete beams containing recycled concrete aggregate
Increasing waste recycling has become an essential process in the construction industry due to the environmental and economic advantages, such as minimizing waste in landfills, saving natural resources, and decreasing pollution. Crushing and sieving waste from standard compression test cubes is used to produce the recycled concrete aggregate (RCA). A set of standard concrete cylinders, cubes, and beam specimens were made by utilizing coarse aggregate replacement ratios of 0, 30, 50 and 70%. At the day 28 stage, the specimens were tested to determine compressive strength, stress–strain relationship, splitting tensile strength, and flexural strength. In addition, four reinforced concrete (RC) beams were cast and tested under a four-point load to evaluate the flexural behaviour of RC beams with partial replacement of the natural aggregate with RCA. One was a natural aggregate (NA) control beam, while the others had varying RCA ratios (30, 50 and 70%). The results show that the compressive strength of RCA concrete with the replacement by 30, 50 and 70% decreased by 9.10, 18.88 and 22.57% respectively, in comparison with the compressive strength of normal concrete (NC). The RCA concrete showed a high strain capacity, which indicated high ductility. The maximum RCA type strains ranged from 0.0056 to 0.0072. Concrete flexural strength showed a slight decrease in comparison to NC (18.83% decrease), where the tensile strength showed a 10.61% decrease in comparison to NC. As for RC beams, the load-carrying capacity decreased by 10.5% with increases in the replacement ratio.
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