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Durability and Microstructure Properties of Concrete with Arabic Gum Biopolymer Admixture

机译:阿拉伯胶生物聚合物掺合料混凝土的耐久性和组织性能。

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Arabic gum biopolymer (AGB) has recently been demonstrated to improve mechanical and physical properties of fresh and hardened concrete which makes it a promising sustainable and environmentally friendly water-reducing admixture. The present work focuses on the effect of added AGB on the workability, setting time, and durability of concrete. Furthermore, a microstructure analysis is conducted to provide objective evidence and support for previous findings and hypothetic interpretations. Flow table experiments are conducted on Portland cement mortar mixed with different percentages of AGB to evaluate the workability. The initial setting time of cement paste is measured for different AGB contents. X-ray fluorescence tests are performed on cement-AGB mix powder to determine its chemical composition. Carbonation depth in AGB concrete samples is estimated to assess durability. AGB-added cement powder was subjected to X-ray diffraction and SEM tests to determine the rate of hydration and to expose the microstructure properties of AGB cement mix and help explain its macroscopic behavior, respectively.
机译:阿拉伯胶生物聚合物(AGB)最近被证明可以改善新鲜和硬化混凝土的机械和物理性能,使其成为一种有前途的可持续性和环保型减水剂。目前的工作集中在添加AGB对混凝土的可加工性,凝固时间和耐久性的影响上。此外,进行了微结构分析,以提供客观证据并支持先前的发现和假设解释。在掺有不同百分比的AGB的波特兰水泥砂浆上进行流表实验,以评估其可加工性。针对不同的AGB含量测量水泥浆的初始凝固时间。对水泥-AGB混合粉进行X射线荧光测试,以确定其化学成分。估计AGB混凝土样品中的碳化深度可评估耐久性。对添加了AGB的水泥粉进行X射线衍射和SEM测试,以确定其水合速率并暴露AGB水泥混合物的微观结构特性,并有助于解释其宏观行为。

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