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Flexural ductility fundamental mechanisms governing all RC members in particular FRP RC

机译:挠曲延性基本机制控制着所有钢筋混凝土构件,特别是玻璃钢钢筋混凝土

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摘要

The ability of a reinforced concrete structure to absorb energy and maintain applied loads is a vitally important concept and requirement in structural design and yet, in comparison with strengths, it is little understood and difficult to quantify. This has necessitated the use of empirically based solutions in design that can only be used within the bounds of the tests from which they were developed and tend to be conservative. This has held back the development of new products in particular FRP RC. This paper explains the fundamental mechanisms that control the ductility of all RC members and describes a mechanics based model that can simulate these mechanisms. It is shown that the model can simulate RC with any type of reinforcement, with any type of bond and with any type of concrete including fibre concrete; as such it is ideally suited for simulating FRP RC, as the reinforcement properties and bond vary widely, in order to develop simple design procedures.
机译:钢筋混凝土结构吸收能量并保持施加的载荷的能力是结构设计中至关重要的概念和要求,但是与强度相比,它很少被理解并且难以量化。这就需要在设计中使用基于经验的解决方案,该解决方案只能在开发它们的测试范围内使用,并且倾向于保守。这阻碍了新产品尤其是FRP RC的开发。本文介绍了控制所有RC构件延性的基本机制,并描述了可以模拟这些机制的基于力学的模型。结果表明,该模型可以用任何类型的钢筋,任何类型的粘结和任何类型的混凝土(包括纤维混凝土)模拟RC。因此,它非常适合模拟FRP RC,因为增强性能和粘结力变化很大,以便开发简单的设计程序。

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