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首页> 外文期刊>Cement & concrete composites >4D characterisation of damage and fracture mechanisms of ultra high performance fibre reinforced concrete by in-situ micro X-Ray computed tomography tests
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4D characterisation of damage and fracture mechanisms of ultra high performance fibre reinforced concrete by in-situ micro X-Ray computed tomography tests

机译:图4D表征超高性能纤维钢筋混凝土损伤和骨折机制通过原位微X射线计算机断层扫描检验

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In-situ microscale X-ray computed tomography (mu XCT) tests of ultra high performance fibre reinforced concrete (UHPFRC) specimens were conducted under progressive wedge-split loading for the first time. A sequence of mu XCT images of two 40 x 20 x 25 mm notched specimens were obtained at different loads with a voxel resolution of 16.9 mu m. Through 3D image processing, the UHPFRC's intemal microstructures are characterised and the complicated damage and fracture mechanisms are visualised, including bridging, bending and pull-out of fibres, spalling and fracture of matrix, and evolution of micro-cracks into macro-cracks. The deformed mu XCT images clearly show the significant effects of steel fibres: suppressing microcracks from propagation, leading to dispersed multiple cracks, and contributing to deviate the originally vertical crack towards the overall fibre orientation across the cracks. It is concluded the in-situ mu XCT tests provide an unrivalled tool for elucidation of complicated damage and fracture evolution in UHPFRC with high-resolution 3D images that will be invaluable for validation of numerical models and optimisation of the material's micro-structures.
机译:原位微观X射线计算机断层扫描(MU XCT)测试的超高性能纤维钢筋混凝土(UHPFRC)标本首次在逐步的楔形载荷下进行。在不同载荷的不同载荷中获得了一系列MU XCT图像的MU XCT图像,具有16.9μm的体素分辨率。通过3D图像处理,UHPFRC的内部微结构特征,并且可视化复杂的损伤和断裂机制,包括桥接,弯曲和拉出纤维,剥离和基质的裂缝,以及微裂纹进入宏观裂纹的微裂纹。变形的MU XCT图像清楚地显示出钢纤维的显着影响:抑制传播的微裂纹,导致分散的多裂缝,并有助于将最初的垂直裂缝朝向整个裂缝的整体纤维取向偏离。它的结论是原位MU XCT测试提供了一种无与伦比的工具,用于阐明UHPFRC的复杂损伤和断裂演进,高分辨率3D图像对于验证数值模型和材料的微结构的优化,这是非常宝贵的。

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