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High strain and low cycle fatigue behaviors of rebars produced by QST and V-N microalloying technology

机译:QST和V-N微合金化技术生产的钢筋的高应变和低周疲劳行为

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摘要

Based on the failure model of rebars in reinforced concrete structures (RCS) under earthquake loading, total strain controlled high strain and low cycle fatigue (HSLCF) behaviors of 400 MPa grade 16 mm diameter rebar produced by V-N MA (Microalloying) and QST (Quenched and Self-Tempered) were tested at room temperature. Through the fittings of Coffin-Manson and Hollomon relationship, the rates of energy-absorption under seismic loading was proposed, which was defined as cyclic toughness. The test results showed that although the static mechanical properties of two types of rebars is similar, the V-N MA rebar exhibit higher cyclic toughness, fatigue life and stress amplitude under constant strain amplitude, as well as the transition fatigue life than the QST rebar, suggesting it will have better seismic performance under seismic loading. Additionally, to understand the microstructural basis for this difference in performance, broken specimens were examined using both scanning (SEM) and transmission (TEM) electron microscopy.
机译:根据钢筋混凝土结构(RCS)钢筋在地震作用下的破坏模型,通过VN MA(微合金化)和QST(淬火)制成的400 MPa级16 mm直径钢筋的总应变控制高应变和低周疲劳(HSLCF)行为和自回火)在室温下进行测试。通过Coffin-Manson和Hollomon关系的拟合,提出了地震荷载作用下的能量吸收率,定义为循环韧性。测试结果表明,尽管两种类型的钢筋的静态力学性能相似,但在恒定应变幅度下,VN MA钢筋具有更高的循环韧性,疲劳寿命和应力幅度,以及比QST钢筋更高的过渡疲劳寿命。在地震荷载作用下具有更好的抗震性能。此外,为了了解这种性能差异的微观结构基础,使用扫描(SEM)和透射(TEM)电子显微镜检查了破裂的样品。

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