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Deformation Properties of Rubberized ECC Incorporating Nano Graphene Using Response Surface Methodology

机译:响应表面方法掺入纳米石墨烯的橡胶ECC的变形性能

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摘要

Engineered cementitious composite (ECC) was discovered as a new substitute of conventional concrete as it provides better results in terms of tensile strain, reaching beyond 3%. From then, more studies were done to partially replace crumb rubber with sand to achieve a more sustainable and eco-friendlier composite from the original ECC. However, the elastic modulus of ECC was noticeably degraded. This could bring potential unseen dangerous consequences as the fatigue might happen at any time without any sign. The replacement of crumb rubber was then found to not only bring a more sustainable and eco-friendlier result but also increase the ductility and the durability of the composite, with lighter specific gravity compared to conventional concrete. This study investigated the effects of crumb rubber (CR) and graphene oxide (GO) toward the deformable properties of rubberized ECC, including the compressive strength, elastic modulus, Poisson’s ratio, and drying shrinkage. Central composite design (CCD) was utilized to provide 13 reasonable trial mixtures with the ranging level of CR replacement from 0–30% and that of GO from 0.01–0.08%. The results show that GO increased the strength of the developed GO-RECC. It was also found that the addition of CR and GO to ECC brought a notable improvement in mechanical and deformable properties. The predicted model that was developed using response surface methodology (RSM) shows that the variables (compression strength, elastic modulus, Poisson’s ratio, and drying shrinkage) rely on the independent (CR and GO) variables and are highly correlated.
机译:由于它在拉伸应变方面提供了更好的常规混凝土替代品种的常规混凝土替代品,因此发现了工程化水泥复合材料(ECC),因为它提供了更好的抗拉菌株,达到超过3%。从那时起,采取更多的研究来部分地用沙子替代碎屑橡胶,以实现来自原始ECC的更可持续和生态友好的复合材料。然而,ECC的弹性模量明显降解。这可能会带来潜在的看不见的危险后果,因为在没有任何迹象的情况下可能会发生疲劳。然后发现替换面包屑橡胶,不仅带来了更可持续和生态更友好的结果,而且还增加了与传统混凝土相比较轻的比重,增加了复合材料的延展性和耐久性。本研究研究了面包屑(Cr)和石墨烯氧化物(GO)对橡胶ECC可变形性能的影响,包括抗压强度,弹性模量,泊松比和干燥收缩。中央复合设计(CCD)用于提供13种合理的试验混合物,其中CR的测距水平从0-30%的替代品,从0.01-0.08%的替代品。结果表明,增加了发达的Go-RECC的强度。还发现添加CR并转到ECC带来了机械和可变形性质的显着改善。使用响应表面方法(RSM)开发的预测模型表明,变量(压缩强度,弹性模量,泊松比和干燥收缩)依赖于独立(CR和GO)变量并高度相关。

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