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Design and Assessment of a Lightweight Polymer Concrete Utility Manhole

机译:轻型聚合物混凝土公用事业井的设计与评估

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Polymer concrete is a composite using polymer instead of portland cement as a binder. It allows optimizing the tensile and cracking strength and the chemical resistance of a concrete structure. In this study, different formulations were assessed in order to optimize a polymer concrete underground utility manhole with minimum weight. Formulations were based on an epoxy-amine system mixed with fine regular-weight aggregates and ultralightweight aggregates. The objective was to design and assess an underground utility structure with the epoxy chemical resistance, strength, and lightweight and to study whether the replacement of regular-weight aggregates by ultralightweight aggregates would contribute to improve the strength and reduce the structure weight. Two polymer concrete systems were designed from its formulation, and their mechanical performance was evaluated experimentally. A numerical model was developed for a polymer concrete underground utility structure made from the different formulations. It was simplified as a box subjected to typical soil loads. The size of the box is a standard one. Its minimum wall thickness is specified for sustaining the in-use service pressures obtained from numerical simulation. The model predicted that the epoxy/regular-weight aggregate formulation could be used with a wall thickness significantly smaller than the formulation with ultralightweight aggregates. In addition, the underground utility structure made with this formulation would weigh six times less than the same box made with a traditional portland cement concrete.
机译:聚合物混凝土是使用聚合物而不是波特兰水泥作为粘合剂的复合材料。它允许优化混凝土结构的拉伸和裂化强度和耐化学性。在这项研究中,评估了不同的配方,以优化具有最小重量的聚合物混凝土地下实用性孔孔。制剂基于与精细常规重量聚集体和超轻重量聚集体混合的环氧胺系统。目标是通过环氧耐化学性,强度和轻质设计和评估地下实用结构,并研究超级万能聚集体更换常规重量骨料是否有助于提高强度并降低结构重量。两种聚合物混凝土系统采用其配方设计,实验评估其机械性能。为由不同配方制成的聚合物混凝土地下实用结构开发了数值模型。它被简化为经过典型的土壤载荷的盒子。盒子的大小是标准的框。其最小壁厚被规定,用于维持从数值模拟获得的使用压力。该模型预测,环氧/常规重量聚集体配方可以与具有超高级总精聚集体的配方明显小。此外,用这种配方制造的地下实用结构将重量比与传统的波特兰水泥混凝土制成的相同盒子少6倍。

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