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Steel encased polymer concrete under axial compressive loading: Analytical formulations

机译:轴向压缩载荷下的钢包裹聚合物混凝土:分析配方

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Composite structures and in particular steel encased concrete structures, are rapidly emerging as one of the inevitable structural systems for earthquake resistance, as they have been known to exploit the best attributes of steel and concrete, resulting in higher stiffness, strength and ductility. However, limitations imposed by the encased cement concrete, e.g., its brittleness, low tensile strength and diminished durability, further compounded by mounting environmental concerns since the 1997 Kyoto protocol and the need for sustainable development, dictate that novel ecologically benign construction materials be sought for the 21st century. In this context, experimental and analytical studies have been conducted on polymer-based materials (latex cement mortar and epoxy concrete) as supplementary and/ or complementary materials to ordinary cement concrete in composite tubular systems. Results from experimental work on the compres-sive behaviour of steel encased polymeric materials reveal significant increase in strength and/or ductility of polymer and polymer concrete filled steel stub columns. In addition, polymer formulations were found to present an array of basic properties, which could be tailored to meet specific design requirements. In conjunction with the experimental results, existing models by several researchers are evaluated and found to generally underestimate the confined strength of the fill materials. A proposed model, taking into consideration key material properties such as shear and bulk moduli, is found to depict the confined strengths satisfactorily. Finally, force-strain models are developed for the composite stub columns that adequately capture the elastic stiffness and ultimate state, unlike existing models.
机译:复合结构,特别是用钢包裹的混凝土结构,迅速发展成为抗震的必然结构体系之一,因为众所周知,它们利用了钢和混凝土的最佳特性,从而具有更高的刚度,强度和延展性。然而,由于水泥混凝土的脆性,低拉伸强度和耐用性的限制,自1997年《京都议定书》以来对环境的日益关注以及对可持续发展的要求进一步加剧了这种局限性,这就要求寻求新型的生态友好型建筑材料。 21世纪。在这种情况下,已经对作为复合管状系统中普通水泥混凝土的补充和/或补充材料的聚合物基材料(乳胶水泥砂浆和环氧混凝土)进行了实验和分析研究。由钢包裹的聚合物材料的抗压性能的实验工作得出的结果表明,聚合物和聚合物混凝土填充的钢管短柱的强度和/或延展性显着提高。此外,发现聚合物配方具有一系列基本性能,可以对其进行定制以满足特定的设计要求。结合实验结果,对几位研究人员的现有模型进行了评估,发现它们通常低估了填充材料的局限强度。一个建议的模型,考虑到关键的材料特性,例如剪切和体积模量,可以令人满意地描述有限的强度。最后,与现有模型不同,为复合短柱开发了可充分捕获弹性刚度和极限状态的力应变模型。

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