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Deformability and ductility in over-reinforced concrete structures

机译:钢筋混凝土结构的变形性和延展性

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It is often useful to use a high percentage of steel reinforcement in a concrete flexural member in order to minimise structural depth and still provide adequate stiffness. This paper shows that, by placing a steel helix in the compression zone of a heavily over-reinforced concrete beam, considerable strength, stiffness and ductility may be achieved, even when the steel percentage is as high as 7%. This is because the concrete in compression becomes triaxially stressed and confined during loading, leading to a high uniaxial strain capacity in the concrete at an enhanced stress level. It is shown that, even though the serviceability limit states of deflection and cracking are critically important, they are just satisfied under normal conditions. The testing programme described here consisted of seven tests on rectangular steel-reinforced concrete beams. Each helically reinforced specimen contained a single helix with a 20 mm pitch. The helices were formed from either 3 mm or 4.8 mm diameter mild steel wire. To show the full benefit of the presence of a circular helix, control specimens (no helix) and specimens containing a similar volume by weight of rectangular links were tested for direct comparison purposes. This research is exciting, as it demonstrates that it is possible to heavily over-reinforce concrete structures and nonetheless expect a ductile response. This is potentially very useful to clients, consultants and contractors who wish to use shallower concrete members. Further, two analytical approaches are developed here for predictive assessment. A full load-displacement approach is presented, followed by a simpler design-oriented approach. Both methods predict behaviour reasonably accurately.
机译:在混凝土抗弯构件中使用高百分比的钢筋通常是有用的,以使结构深度最小化并仍然提供足够的刚度。本文表明,通过在高度过度钢筋混凝土梁的压缩区域中放置钢螺旋,即使钢含量高达7%,也可以获得相当的强度,刚度和延展性。这是因为处于压缩状态的混凝土在加载过程中会受到三轴应力的限制,从而导致在较高应力水平下混凝土中的高单轴应变能力。结果表明,即使挠性和裂纹的使用寿命极限状态至关重要,但在正常条件下仍能满足要求。这里描述的测试程序包括对矩形钢筋混凝土梁的七个测试。每个螺旋增强的标本都包含一个20毫米间距的螺旋线。螺旋是由直径为3毫米或4.8毫米的低碳钢丝制成的。为了显示出存在圆形螺旋线的全部益处,为了直接比较目的,测试了对照样品(无螺旋线)和按重量计包含相似体积的矩形链节的样品。这项研究令人振奋,因为它表明可以对混凝土结构进行过度的过度加固,但仍有望产生延性响应。对于希望使用较浅的混凝土构件的客户,顾问和承包商而言,这可能非常有用。此外,这里开发了两种分析方法用于预测评估。提出了一种完整的载荷-位移方法,然后是一种更简单的面向设计的方法。两种方法都可以合理准确地预测行为。

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