用于3D打印的纤维增强混凝土界面损伤表征与建模

N. Ducoulombier
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引用次数: 4

摘要

以挤压为基础的胶凝材料增材制造是一项很有前途的未来建筑技术。然而,需要提出新的解决方案来提供延展性,甚至在受拉区域进行加固。使用纤维来加强由挤压制成的结构似乎很有前途,需要在不同的尺度上充分理解。此外,增强效率主要取决于基体和纤维之间的界面特性。在两个不同的尺度上研究了基质与纤维之间的脱黏。一个所谓的拉伸强化试验的细观分析力学模型已经提出了量化阻力和摩擦沿界面从力-伸长曲线。其次,在Synchrotron Soleil的Anatomix光束线的显微断层扫描装置内进行相同的实验测试,以确定不同载荷下基质和纤维之间的微观性质、形状和脱黏的演变。对不同类型的纤维进行比较,观察到不同的损伤机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterisation and modelling of interfacial damage in fibre-reinforced concrete for 3D printing in construction
: Extrusion-based additive manufacturing of cementitious material is a promising technology for the future of construction. Nevertheless, new solutions need to be proposed to provide either ductility or even reinforcement in areas in tension. Using fibres to reinforce the structure made by extrusion seems to be promising and needs to be fully understood at different scales. Moreover, the efficiency of reinforcement depends mainly on the interfacial properties between matrix and fibres. Decohesion between matrix and fibre is studied at two different scales. A mesoscopic analytical mechanical model of a so-called tension stiffening test has been proposed to quantify resistance and friction along the interface from the force-elongation curve. Secondly, the same experimental test is performed inside the microtomography setup of the Anatomix beamline of Synchrotron Soleil permitting to identify the microscopic nature, shape and the evolution of decohesion between matrix and fibres for different loading. Different types of fibres are compared and different damaging mechanisms are observed.
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