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Reliability model for ductile hybrid frp rebar using randomly dispersed chopped fibers

机译:用随机分散短切纤维制备韧性混杂frp钢筋的可靠性模型

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摘要

RELIABILITY MODEL FOR DUCTILE HYBRID FRP REBAR USING RANDOMLY DISPERSED CHOPPED FIBERSFiber reinforced polymer composites or simply FRP composites have become more attractive to civil engineers in the last two decades due to their unique mechanical properties. However, there are many obstacles such as low elasticity modulus, non-ductile behavior, high cost of the fibers, high manufacturing costs, and absence of rigorous characterization of the uncertainties of the mechanical properties that restrict the use of these composites. However, when FRP composites are used to develop reinforcing rebars in concrete structural members to replace the conventional steel, a huge benefit can be achieved since FRP materials donu27t corrode.Two FRP rebar models are proposed that make use of multiple types of fibers to achieve ductility, and chopped fibers are used to reduce the manufacturing costs. In order to reach the most optimum fractional volume of each type of fiber, to minimize the cost of the proposed rebars, and to achieve a safe design by considering uncertainties in the materials and geometry of sections, appropriate material resistance factors have been developed, and a Reliability Based Design Optimization (RBDO), has been conducted for the proposed schemes.
机译:使用随机分散的短切纤维的韧性混合FRP钢筋的可靠性模型在过去的二十年里,纤维增强的聚合物复合材料或简单的FRP复合材料由于其独特的机械性能而变得对土木工程师更具吸引力。然而,存在许多障碍,例如低弹性模量,非延展性,纤维成本高,制造成本高以及缺乏严格的机械性能不确定性表征,这些限制了这些复合材料的使用。但是,当使用FRP复合材料开发混凝土结构构件中的钢筋来代替传统的钢时,由于FRP材料不会腐蚀,因此可以实现巨大的收益。提出了两种FRP钢筋模型,它们使用多种类型的纤维实现延展性,并使用短切纤维来降低制造成本。为了达到每种纤维的最佳分数体积,以最小化建议的钢筋成本,并通过考虑型材的材料和几何形状的不确定性来实现安全的设计,已经开发了适当的材料阻力系数,并且针对所提出的方案进行了基于可靠性的设计优化(RBDO)。

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    Behnam Bashar Ramzi;

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  • 年度 2012
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