材料科学
极限抗拉强度
白云石
开裂
复合材料
骨料(复合)
收缩率
抗压强度
体积热力学
体积分数
硬化(计算)
应变硬化指数
纤维
冶金
物理
量子力学
图层(电子)
作者
Sukhoon Pyo,Hyeong-Ki Kim,Bang Yeon Lee
标识
DOI:10.1016/j.cemconcomp.2017.08.014
摘要
This experimental research investigates the mechanical properties and shrinkage of ultra high performance concrete (UHPC) incorporating coarser fine aggregates with maximum particle size of 5 mm. To adequately design UHPC mixtures using various sizes of solid constituents, particle packing theory was adopted. UHPC mixtures containing either dolomite or basalt, and four fiber volume fractions up to two volume percent were investigated. Uniaxial tension test was performed to evaluate the first cracking tensile strength, ultimate tensile strength, tensile strain capacity and cracking pattern. The UHPC mixtures with dolomite and steel fibers with more than one volume percent achieved more than 150 MPa of compressive strength at the age of 56 days, and showed strain hardening behavior and limited decrease in tensile strength compared to typical UHPC without coarser fine aggregates. The experimental results highlight the potential of dolomite used as coarser fine aggregate in UHPC.
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