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EFFECT OF SHORT FIBERS ORIENTATION ON MECHANICAL PROPERTIES OF COMPOSITE MATERIAL – FIBER REINFORCED CONCRETE

机译:短纤维取向对复合材料 - 纤维钢筋混凝土机械性能的影响

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摘要

Traditional fiberconcrete structures have fibres in the mix oriented in all spatial directions, distributed in the struc­tural element volume homogenously, what not easy to obtain in practice. In many situations, structurally more effective is the insertion of fibres into the concrete structural element body by forming layers, with a predetermined fibre concentration and orientation in every layer. In the present investigation, layered fibre concrete is under investigation. Short steel fibres were at­tached to flexible warps with the necessary fibres concentration and orientation. Warps were placed into the prismatic mould separating them by concrete layers without fibres. Prisms were matured and tested under four-point bending. The bending-affected mechanical behaviour of cracked fibre concrete was simulated numerically by using a developed struc­tural model. Comparing the simulation results with experimental data, material micromechanical fracture mechanisms were analysed and evaluated.
机译:传统的纤维晶状体结构具有在所有空间方向上取向的混合物中的纤维,在均匀的结构元素体积中分布,在实践中不容易获得。在许多情况下,结构更有效地通过形成层将纤维插入混凝土结构元件体中,在每个层中具有预定的纤维浓度和取向。在本研究中,分层纤维混凝土正在调查中。用必要的纤维浓度和取向,将短钢纤维连接到柔性翘曲上。将经过棱镜模具置于棱镜模具中,通过纤维的混凝土层分离它们。在四点弯曲下验证并测试棱镜。通过使用开发的结构模型来模拟裂纹纤维混凝土的弯曲受影响的机械行为。将仿真结果与实验数据进行比较,分析和评估了材料微机械骨折机制。

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