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Pull-out mechanisms of twisted steel fibers embedded in concrete

机译:混凝土嵌入式扭钢纤维的拉出机理

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This paper describes some of the parameters leading to the unique bond behavior of newly developed steel fibers, called Torex fibers, which are polygonal in cross section and twisted along their length. Pull-out tests, whereby a single fiber is pulled out from a cementitious matrix, are used to study the bond behavior of these fibers. The results of several series of pull-out tests are described and analyzed based on the following parameters: 1) the cross-sectional shape of the fiber, that is, a triangular or a square cross section, 2) the number of ribs (induced by twisting) per unit length of fiber, 3) the compressive strength of the matrix (from 10 to 50 MPa) and the tensile strength of the fiber, and 4) the embedded length of the fiber. Some comparison with smooth and hooked steel fibers is also provided. The high efficiency of the new fibers implies that a lesser volume of them is needed to achieve a certain level of composite performance. It is concluded that the new fibers are also a key to advancing the development of both strong and ductile high performance fiber reinforced cement composites
机译:本文介绍了一些参数,导致新开发的钢纤维的独特粘合行为,称为梭形纤维,它们是多边形的横截面,沿其长度扭曲。拉出试验,从而从水泥基质中拉出单纤维,用于研究这些纤维的粘合行为。基于以下参数描述和分析了几系列拉出试验的结果:1)光纤的横截面形状,即三角形或方形横截面,2)肋(诱导的通过扭曲)每单位长度的纤维,3)基质(10至50MPa)的压缩强度和纤维的拉伸强度,4)嵌入的纤维长度。还提供了与光滑和钩状钢纤维的一些比较。新纤维的高效率意味着需要较小的体积来实现一定水平的复合性能。结论是,新纤维也是推进强韧性高效纤维增强水泥复合材料的开发的关键

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