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Spatial distribution of steel fibres in sprayed and cast concrete

机译:喷射和浇铸混凝土中钢纤维的空间分布

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摘要

Research has investigated the fracture of steel fibre reinforced sprayed concrete under flexural load with the aim of developing a stress-profile model to predict flexural behaviour in the form of a load-deflection response. This paper reports the work associated with establishing the number, distribution and geometry of the fibres bridging a typical cracked section of both sprayed and cast steel fibre reinforced concrete beams. X-ray photographic analysis and manual counting techniques are described. The simple X-ray technique developed is shown to be capable of determining the. probability distribution associated with fibre embedment length and fibre orientation occurring across a cracked beam section. The results showed that there was little difference between casting (using table vibration) and spraying (wet process) on the resulting fibre orientation distribution properties. The fibre distribution data obtained can be used, in combination with fibre pull-out data, to model the tensile stress-profile of a beam specimen under flexural load. Hence, these data form a key part of a stress-profile model approach for predicting jlexural behaviour ― an essential requirement of a much needed design rationale for steel fibre reinforced concrete.
机译:研究已经研究了钢纤维增强喷射混凝土在挠曲载荷下的断裂,目的是建立应力分布模型以载荷-挠曲响应的形式预测挠曲行为。本文报道了与确定弥散在喷射和铸造钢纤维增强混凝土梁的典型裂纹截面上的纤维的数量,分布和几何形状有关的工作。描述了X射线照相分析和手动计数技术。已显示开发出的简单X射线技术能够确定。与纤维嵌入长度和纤维取向相关的概率分布出现在破裂的光束截面上。结果表明,铸造(使用工作台振动)和喷涂(湿法)之间所产生的纤维取向分布特性几乎没有差异。可以将获得的纤维分布数据与纤维拔出数据结合使用,以模拟梁试样在弯曲载荷下的拉伸应力分布。因此,这些数据构成了预测轮廓行为的应力分布模型方法的关键部分,这是钢纤维增强混凝土迫切需要的设计原理的基本要求。

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