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Ultra-high performance concrete and fiber reinforced concrete: achieving strength and ductility without heat curing

机译:超高性能混凝土和纤维增强混凝土:无需加热即可达到强度和延展性

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摘要

Ultra-high performance concrete (UHPC) and ultra-high performance fiber reinforced concrete (UHP-FRC) were introduced in the mid 1990s. Special treatment, such as heat curing, pressure and/or extensive vibration, is often required in order to achieve compressive strengths in excess of 150 MPa (22 ksi). This study focuses on the development of UHP-FRCs without any special treatment and utilizing materials that are commercially available on the US market. Enhanced performance was accomplished by optimizing the packing density of the cementitious matrix, using very high strength steel fibers, tailoring the geometry of the fibers and optimizing the matrix- fiber interface properties. It is shown that addition of 1.5% deformed fibers by volume results in a direct tensile strength of 13 MPa, which is 60% higher than comparable UHP-FRC with smooth steel fibers, and a tensile strain at peak stress of 0.6%, which is about three times that for UHP-FRC with smooth fibers. Compressive strength up to 292 MPa (42 ksi), tensile strength up to 37 MPa (5.4 ksi) and strain at peak stress up to 1.1% were also attained 28 days after casting by using up to 8% volume fraction of high strength steel fibers and infiltrating them with the UHPC matrix.
机译:1990年代中期推出了超高性能混凝土(UHPC)和超高性能纤维增强混凝土(UHP-FRC)。为了获得超过150 MPa(22 ksi)的抗压强度,通常需要特殊处理,例如热固化,压力和/或剧烈振动。这项研究的重点是开发未经任何特殊处理的UHP-FRC,并使用美国市场上可买到的材料。通过使用非常高强度的钢纤维优化水泥基的堆积密度,调整纤维的几何形状以及优化基体-纤维界面特性,可以提高性能。结果表明,按体积添加1.5%的变形纤维会导致13 MPa的直接拉伸强度,这比使用光滑钢纤维的同类UHP-FRC高60%,并且在峰值应力下的拉伸应变为0.6%,这是大约是具有光滑纤维的UHP-FRC的三倍。通过使用高达8%体积分数的高强度钢纤维,在浇铸后28天还可以获得高达292 MPa(42 ksi)的抗压强度,高达37 MPa(5.4 ksi)的抗拉强度和高达1.1%的峰值应力应变。并使用UHPC矩阵将其渗透。

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