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Design with Highly Flowable Fiber-Reinforced Concrete: Overview of the Activity of fib TG 8.8

机译:设计具有高度流动的纤维钢筋混凝土:FIB TG 8.8的活动概述

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Self-compacting fiber-reinforced concrete (SC-FRC) combines the benefits of highly flowable concrete in the fresh state with the enhanced performance in the hardened state in terms of crack control and fracture toughness provided by the wirelike fiber-reinforcement. Thanks to the suitably adapted rheology of the concrete matrix, it is possible to achieve a uniform dispersion of fibers, which is of the foremost importance for a reliable performance of structural elements. Balanced viscosity of concrete may also be helpful to drive the fibers along the concrete flow direction. An ad-hoc designed casting process may hence lead to an orientation of the fibers "tailored" to the intended application, which is along the anticipated directions of the principal tensile stressed within the structural element when in service. This converges towards a "holistic" approach to the design of structure made with highly flowable/self-consolidating FRC, which encompasses the influence of fresh state performance and casting process on fiber dispersion and orientation and the related outcomes in terms of hardened state properties. The fib task Group 8.8 "Structural design with highly flowable concrete", sub-group fiber concrete, appointed in April 2009, aims at drafting recommendations to facilitate and spread the use of these innovative materials, merging together research findings and practical experience.
机译:自压式纤维钢筋混凝土(SC-FRC)将高度流动混凝土在新鲜状态下的好处与耐丝纤维增强件提供的裂缝控制和断裂韧性的增强性能。由于这种混凝土基质的适当适应性的流变学,可以实现纤维的均匀分散,这对于结构元件的可靠性性能最重要。混凝土的平衡粘度也可能有助于沿着混凝土流动方向驱动纤维。 Ad-hoc设计的铸造工艺可以因此导致纤维“定制”到预期应用的方向,这沿着在施用时沿着结构元件内应力的主要拉伸的预期方向。这会收敛于具有高度流动/自合并FRC制造的结构的“整体”方法,它包括新鲜状态性能和铸造过程对纤维分散和方向的影响以及在硬化状态性质方面的相关结果。 FIB任务组8.8“结构设计具有高度流动的混凝土”,亚组纤维混凝土,于2009年4月任命,旨在起草建议,以方便和传播这些创新材料的使用,融合研究调查结果和实践经验。

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