肋型对水射流切割钢筋粘结质量影响的试验研究

Rayna Higuchi, Jackson L. Jewett, Josephine V. Carstensen
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引用次数: 2

摘要

随着对钢筋混凝土结构数字化制造的兴趣的增加,大量的结构混凝土设计脱离了标准的棱柱形。这促使人们探索替代经典变形或“肋”钢筋的钢筋加固策略。其中一种是使用水射流切割机从钢板上切割内部钢筋。自动水射流切割钢筋的优点包括高精度和精度高,并且减少了增加(2D)钢筋布局复杂性的成本。然而,目前尚不清楚沿钢筋切割边缘的肋纹的应用如何影响钢-混凝土粘结。本文对三种不同肋型的水射流切割钢板钢筋进行了拉拔试验,并与同等经典钢筋的粘结强度进行了比较。两种测试的几何形状平均在常规钢筋拔出力的90-91%以内,证明了这种替代加固方法的可行性。
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Experimental investigation of ribbing pattern effect on the bonding qualities of water jet cut steel reinforcement

With the rise of interest in digital fabrication of reinforced concrete structures, a great number of structural concrete designs that depart from standard prismatic shapes are being suggested. This has prompted an exploration of steel reinforcement strategies that are alternative to the classical deformed or “ribbed” rebars. One such is to cut internal reinforcement from steel plates using a waterjet cutting machine. Advantages of automated waterjet cutting steel reinforcement include high precision and accuracy, and minimal expense for increasing the complexity of (2D) reinforcement layouts. However, it is not known how the application of ribbing patterns along the cut edge of reinforcing bars affects the steel–concrete bond. This work conducts experimental pullout tests of waterjet-cut steel plate reinforcement with three different ribbing patterns and compares the bond strength with equivalent classic rebars. Two of the tested geometries averaged within 90–91% of the pull-out force of conventional rebar, demonstrating viability of this alternative reinforcement method.

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