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首页> 外文期刊>Cement and Concrete Research >Flexural strain and crack width measurement of steel-fibre-reinforced concrete by optical grid and electrical gauge methods
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Flexural strain and crack width measurement of steel-fibre-reinforced concrete by optical grid and electrical gauge methods

机译:光栅和电表法测量钢纤维混凝土的弯曲应变和裂缝宽度

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摘要

A research programme is discussed, which has investigated the fracture of steel-fibre-reinforced sprayed concrete under flexural loading, with the aim of developing a stress-block model to predict flexural behaviour in the form of a load-deflection response. This paper reports the work associated with establishing the strain and crack width profiles in relation to mid-span beam deflection. A strain analysis technique is described, which combines the use of electrical strain gauges with a semiautomated grid method (using digital image processing) for measuring and monitoring the strain and crack width profile over the depth of a fibre-reinforced beam during a flexural test. This novel strain analysis technique has established strain/crack width data, which forms a key part of a stress-block approach for predicting residual flexural strength, an essential requirement of a much needed design rationale for steel-fibre-reinforced concrete.
机译:讨论了一个研究程序,该程序研究了弯曲载荷下钢纤维增强喷射混凝土的断裂,目的是建立应力块模型以载荷-挠曲响应的形式预测挠曲行为。本文报道了有关建立与中跨梁挠度有关的应变和裂缝宽度分布的工作。描述了一种应变分析技术,该技术将电应变仪与半自动网格方法(使用数字图像处理)结合使用,以在弯曲测试期间测量和监视纤维增强梁深度上的应变和裂缝宽度轮廓。这种新颖的应变分析技术已经建立了应变/裂纹宽度数据,这形成了预测残余弯曲强度的应力块方法的关键部分,这是钢纤维增强混凝土非常需要的设计原理的基本要求。

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