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Uniaxial tensile behavior of ultra-high performance fiber-reinforced concrete (uhpfrc): Experiments and modeling

机译:超高效纤维混凝土的单轴拉伸行为(UHPFRC):实验与造型

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摘要

Ultra-High Performance Fiber-Reinforced Concrete (UHPFRC) is considered a promising material for many structural applications where high strength and high energy absorption capacity are required.The purpose of this work is to study the uniaxial tensile behavior of soft cast (flowable at casting time) UHPFRC by varying the amount of hooked steel fibers (30-mm long) from 0% up to 2.55% by volume. Direct tensile tests have been performed on dog-bone shaped specimens and Digital Image Correlation (DIC) has been used to measure displacements and deformations and to monitor the evolution of cracks. Then, a phase-field model has been implemented in a FE code and numerical simulations have been performed to better understand the effects of different fiber dosages on the mechanical behavior of UHPFRC composites and on their post-elastic evolution. Concrete matrix and fiber reinforcement have been modeled as brittle and elasto-plastic phases of a mixture, whose internal energies are enriched by non-local damage and plasticity contributions. The different failure mechanisms observed in experiments have been reproduced, including the ductile failure experienced by specimens with sufficiently high fiber dosage, which distinguishes for a strain-hardening phase of matrix multi-micro-cracking that anticipates material failure.
机译:超高性能纤维混凝土(UHPFRC)被认为是许多结构应用的有希望的材料,其中需要高强度和高能量吸收能力。这项工作的目的是研究软铸造的单轴拉伸行为(在铸造时可流动时间)UHPFRC通过改变钩状钢纤维(30毫米长)从0%达2.55%的量。已经在狗骨形标本上进行了直接拉伸试验,并且数字图像相关(DIC)已被用于测量位移和变形并监测裂缝的演变。然后,已经在FE代码中实现了相场模型,并且已经进行了数值模拟以更好地了解不同纤维剂量对UHPFRC复合材料的机械行为的影响以及它们的弹性延伸的影响。混凝土基质和纤维增强件已被建模为混合物的脆性和弹性塑料阶段,其内部能量通过非局部损伤和可塑性贡献而富集。在实验中观察到的不同故障机制已经复制,包括标本经历的具有足够高的纤维剂量的延展性失效,这区分了基质多微裂纹的应变 - 硬化相,预期材料失效。

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