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Application of Crumb Rubber in Cement-Matrix Composite

机译:粒状橡胶在水泥基复合材料中的应用

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摘要

Many studies have used rubber as an additive to form a cement-matrix composite (rubcrete). However, rubcrete has a lower mechanical strength than standard concrete. To improve the properties of rubcrete, this study performed surface modifications on crumb rubber through a partial oxidization reaction. The optimal ratio of air to nitrogen was determined by experiments to be 1:4. Fourier transform infrared spectroscopy (FT-IR) was used to identify the functional groups on the surface of the crumb rubber. A colloidal probe of calcium silicate hydrate (C–S–H) was prepared, and the intermolecular interactions between the rubber and the C–S–H were measured using an atomic force microscope (AFM). The experimental results showed that the partially oxidized crumb rubber contained more hydrophilic S–O bonds. The intermolecular force between C–S–H and treated rubber increased by 23% compared to the force between the original rubber and C–S–H. The compressive strength of the hardened cement paste (56 days) with the treated crumb rubber increased 50% in comparison with that of the hardened cement paste with the as-received crumb rubber.
机译:许多研究已经使用橡胶作为添加剂来形成水泥基复合材料(混凝土)。但是,红混凝土的机械强度低于标准混凝土。为了改善红宝石的性能,本研究通过部分氧化反应对碎胶进行了表面改性。通过实验确定空气与氮气的最佳比例为1:4。使用傅里叶变换红外光谱(FT-IR)来识别胶粒表面的官能团。准备了水合硅酸钙(C–S–H)的胶体探针,并使用原子力显微镜(AFM)测量了橡胶与C–S–H之间的分子间相互作用。实验结果表明,部分氧化的碎胶含有更多的亲水性S-O键。与原始橡胶和CS–H之间的力相比,C–S–H与已处理橡胶之间的分子间作用力增加了23%。经过处理的生胶的硬化水泥浆(56天)的抗压强度比采用原样的生胶的硬化水泥浆的抗压强度提高了50%。

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