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Mechanical expectations of a high performance concrete based on a polymer binder and reinforced with non-metallic rebars

机译:基于聚合物粘结剂并用非金属钢筋增强的高性能混凝土的机械预期

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A high performance concrete, known as polymer concrete, made up of natural aggregates and an orthophthalic polyester binder, reinforced with non-metallic bars (glass reinforced polymer) has been studied. The material is described at micro and macro level, presenting the key physical and mechanical properties using different experimental techniques. Furthermore, a full description of non-metallic bars is presented to evaluate its structural expectancies, embedded in the polymer concrete matrix. Given the closed porosity obtained in polymer concrete, its microstructure continuity and organic nature of the binder, this material is highly protected against atmospheric conditions, corrosion and chemical attacks. The present research work concludes how the structural compatibility, between polymer concrete and non-metallic bars, is obtained in the monotonic bonding tests by providing higher adherence values than traditional reinforced concrete.
机译:已经研究了一种由天然骨料和一种邻苯二甲酸聚酯粘合剂组成的高性能聚合物混凝土,该聚合物由非金属棒(玻璃增强聚合物)增强而成。在微观和宏观层面对材料进行了描述,并使用不同的实验技术展示了关键的物理和机械性能。此外,介绍了非金属钢筋的完整描述以评估其在聚合物混凝土基体中的结构预期。考虑到在聚合物混凝土中获得的封闭孔隙率,其微观结构的连续性和粘合剂的有机性质,该材料在大气条件,腐蚀和化学侵蚀下得到了高度保护。本研究工作总结了如何通过提供比传统钢筋混凝土更高的附着力值,在单调粘结试验中获得聚合物混凝土和非金属钢筋之间的结构相容性。

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