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Flexural fatigue behavior of a self-compacting ultrahigh performance fiber-reinforced concrete

机译:自密实超高性能纤维增强混凝土的弯曲疲劳行为

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摘要

The flexural fatigue behavior of an ultrahigh performance fiber-reinforced concrete (UHPFRC) is investigated. This UHPFRC is a self-compacting and industrially competitive version of an earlier material developed by the second author that is expensive because of the high cost of brass-coated steel fibers used in it. It is found that the distribution of fibers plays a crucial role in the fatigue resistance of this UHPFRC. Uniform distribution of fibers ensures that the material has a very high fatigue endurance limit (19 MPa)-more than 80% of its static flexural strength (24.36 MPa) at a mean stress of 44.5% (10.85 MPa)-but this decreases to approximately 64% (14 MPa) of the static strength (22.02 MPa) at a mean stress of 37% if the distribution is nonuniform with regions of few or no fibers.
机译:研究了超高性能纤维增强混凝土(UHPFRC)的弯曲疲劳行为。该UHPFRC是第二作者开发的早期材料的自压缩和工业竞争版本,由于使用的黄铜涂层钢纤维价格高昂,因此价格昂贵。发现纤维的分布在该UHPFRC的抗疲劳性中起关键作用。纤维的均匀分布可确保材料具有极高的疲劳耐久性极限(19 MPa)-在平均应力为44.5%(10.85 MPa)时超过其静态挠曲强度(24.36 MPa)的80%-但这降低到大约如果分布不均匀且纤维很少或没有纤维区域,则平均应力为37%时静态强度(22.02 MPa)的64%(14 MPa)。

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