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首页> 外文期刊>Engineering Fracture Mechanics >Combined analytical-numerical methodologies for the evaluation of mixed-mode (I+II) fatigue crack growth rates in structural steels
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Combined analytical-numerical methodologies for the evaluation of mixed-mode (I+II) fatigue crack growth rates in structural steels

机译:结构钢混合模式(I + II)疲劳裂纹扩展速率评价的组合分析 - 数值方法

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Highlights?Stress intensity factors (SIFs) are evaluated for fatigue cracks propagating under pure mode I and mixed-mode I+II.?Compact tension (CT) specimens with a side hole are proposed to generate a stress field ahead of the crack tip yielding mixed-mode fatigue crack propagation.?Digital image correlation (DIC) is used to assess mode I and mode II SIF from full-field displacement measurements.?DIC data was used to directly estimate the crack tip location during the fatigue tests.?Finite element simulations are carried out to corroborate the proposed methodology.AbstractThis paper proposes an experimental study aiming to evaluate stress intensity factors (SIFs) for fatigue cracks propagating under pure mode I and mixed-mode I+II for a S235 structural steel. Compact tension (CT) specimens with a side hole were manufactured in order to generate a stress field, ahead of the crack tip, resulting in mixed-mode fatigue crack propagation. Specimens with distinct side hole locations were submitted to fatigue tests under stress controlled conditions for a stress ratio, R=0.01. Fatigue tests were coupled with digital image correlation (DIC) to assess mode I and mode II SIF from full-field displacement measurements. Besides, DIC data was used to directly estimate the crack tip location during the test. A validation study was carried out by comparing this approach with regard to conventional optical measurements. Finite element simulations were also performed to validate the crack branching models and direct identification of SIF values. The proposed DIC approach was demonstrated to be an efficient tool for the automation of crack path detection and stress intensity factors computation. Mixed-mode fatigue crack data correlated well with pure mode I fatigue crack propagation data using the Paris law and an effective stress intensity factor as proposed by Tanaka.]]>
机译:<![cdata [ 亮点 在纯模式I和混合模式i +下传播的疲劳裂缝评估应力强度因子(SIFS) II。 紧凑型张力(CT)具有侧孔的样品,以在裂纹尖端产生压力场之前产生混合模式疲劳裂纹传播。 < CE:列表 - 项目ID =“O0015”> 数字图像相关(DIC)用于评估模式i来自全场位移测量的模式II SIF nts。 DIC数据用于直接估计疲劳测试期间的裂缝尖端位置。 执行有限元模拟以证实提出的方法。 抽象 本文提出了一种实验研究,其旨在评估在纯模式I和S235结构钢下在纯模式I和混合模式I + II下传播的疲劳裂纹的应力强度因子(SIF)。制造具有侧孔的紧凑张力(CT)样品以产生应力场,从而产生裂缝尖端,导致混合模式疲劳裂纹繁殖。具有不同侧孔位置的标本在应力比的应力控制条件下提交疲劳试验,R = 0.01。疲劳试验与数字图像相关(DIC)耦合,以评估模式I和模式II SIF从全场位移测量。此外,DIC数据用于直接估计测试期间的裂缝尖端位置。通过比较传统光学测量的方法来进行验证研究。还执行有限元模拟以验证裂缝分支模型并直接识别SIF值。所提出的DIC方法被证明是裂缝路径检测和应力强度因子计算自动化的有效工具。混合模式疲劳裂纹数据与纯模式I疲劳裂纹传播数据使用巴黎法律和田中提出的有效应力强度因子相关。 ]]>

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