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Application of Stiffness Damage Test on Rubberized Concrete

机译:刚度损伤试验在橡胶混凝土上的应用

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摘要

Utilizing waste rubber tires in concrete as a partial replacement of aggregate reduces its carbon footprint and modifies its performance. Several researchers have evaluated the properties of crumb rubber concrete (CRC). This article evaluated the potential of one of the most promising testing techniques for concrete (i.e., the stiffness damage test (SDT)) for CRC. Fine crumb rubber aggregate (FCRA) was added as a replacement for fine aggregate at a dosage of 10 by volume. Results reveal that compressive strength decreased by 29.5 , 28.4 , and 28.0 , and tensile strength decreased by 31.1 , 31.3 , and 28.0 because of FCRA at 28, 56, and 90 days, respectively. A strong relation was found between the strength and time (i.e., specimen age) and was represented linearly with R2 around 0.99 for compressive and tensile strength. The modulus of elasticity of CRC showed 27.7 , 26.0 , and 25.5 reductions at 28, 56, and 90 days, respectively. Poisson’s ratio for the same mixture exhibited an increase of about 34.7 , 31.3 , and 28.0 at 28, 56, and 90 days, respectively. The results showed that SDT output parameters, including the hysteresis area, stiffness, plasticity deformation, and elasticity, decreased as a function of time and were sensitive enough to quantify the change of CRC mixture properties. In addition, adding FCRA caused an increase in plasticity deformation and elasticity over time.
机译:在混凝土中使用废橡胶轮胎作为骨料的部分替代品,可以减少其碳足迹并改变其性能。几位研究人员评估了碎屑橡胶混凝土 (CRC) 的性能。本文评估了最有前途的混凝土测试技术之一(即刚度损伤测试(SDT))对CRC的潜力。添加细碎屑橡胶骨料(FCRA)作为细骨料的替代品,用量为10%(按体积计)。结果表明:FCRA在28、56和90 d时,抗压强度分别下降了29.5 %、28.4 %和28.0 %,抗拉强度分别下降了31.1 %、31.3 %和28.0 %。强度与时间(即试样年龄)之间存在很强的关系,抗压强度和抗拉强度的R2约为0.99。CRC弹性模量在28、56和90 d时分别降低了27.7%、26.0%和25.5%。相同混合物的泊松比在28、56和90 d时分别增加了约34.7%、31.3%和28.0%。结果表明,SDT输出参数(包括滞后面积、刚度、塑性变形和弹性)随时间推移而减小,并且足够灵敏,可以量化CRC混合性能的变化。此外,添加FCRA会导致塑性变形和弹性随时间推移而增加。

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