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A Fracture Mechanics Based Approach to the Assessment of Seismic Resisting Steel Structures

机译:基于骨折的抗震力学抗震钢结构评估方法

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A method for assessing likelihood of brittle fracture in cyclically loaded steel assemblies subjected to inelastic strains is proposed. The method proposed is based upon relationships between monotonic and cyclic endurance of steel specimens proposed by Kuwamura and Takagi, and analysis of crack tip opening displacement (CTOD), Charpy V-Notch (CVN) and tensile results of pre-strained, fatigue pre-cracked and side-grooved specimens of constructional steel. The proposed method allows the influence of displacement ductility classification (as used in seismic design of structures), notch geometry, and cyclic strain amplitude history on crack initiation to be incorporated into a single design analysis approach. Small scale CTOD testing of steel materials with various levels of pre-strain may be used to identify stress intensity and crack tip displacement at crack initiation for use in the analysis. The integration of a fracture mechanics based approach to analysing stress intensity in conjunction with assembly plastic deformation characteristics derived from finite element modeling offers the promise of an improved approach to steel assembly design for cyclic plastic endurance and should result in more reliable structures and reduced need for large scale testing. This has particular relevance to the structural design of seismic resisting steelwork assemblies which are expected to develop dependable ductile behaviour under high strain variable amplitude cyclic actions.
机译:提出了一种用于评估经受无弹性菌株的循环负载钢组件中脆性断裂似然性的方法。所提出的方法是基于Kuwamura和Takagi提出的钢标本的单调和循环耐久性之间的关系,以及分析裂纹尖端开口位移(CTOD),夏比V-antch(CVN)和预紧张,疲劳前的拉伸结果结构钢的破裂和侧沟标本。该方法允许对位移延展性分类(结构的地震设计中使用),缺口几何和循环应变幅度历史的影响结合到单一设计分析方法中。具有各种水平预造型水平的钢材的小规模CTOD测试可用于识别裂纹启动下的应力强度和裂纹尖端位移以用于分析。基于裂缝力学的分析方法与有限元建模的组装塑性变形特性结合分析应力强度的分析方法提供了一种循环塑料耐久性钢结构设计的改进方法的承诺,并应导致更可靠的结构并减少需求大规模测试。这与抗震型钢厂组件的结构设计特别相关,这些组件预期在高应变可变幅度循环动作下开发可靠的延展性行为。

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