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Stress intensity factors for axial semi-elliptical surface cracks and embedded elliptical cracks at longitudinal butt welded joints of steel-lined pressure tunnels and shafts considering weld shape

机译:考虑焊接形状的钢衬压力隧道和轴的纵向焊接接头处轴半椭圆形裂缝和嵌入式椭圆裂缝的应力强度因子

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摘要

When for steel liners of pressure tunnels and shafts high-strength steels are used, welded joints are subject to the risk of hydrogen induced cold-cracking in the base material. Longitudinal butt welded joints are critical regions as they are loaded transversely. For an accurate engineering fatigue and fracture assessment, solutions for stress intensity factors (SIF) are required, considering the weld shape and the global behavior of the liner (i.e., geometrical imperfections and interaction with surrounding concrete and rock). In this study, SIF for axial semi-elliptical surface cracks and embedded elliptical cracks at longitudinal butt welded joints of steel liners are studied by means of the finite element method. At first the applicability of published parametric equations for SIF of elliptical cracks in plates is validated. Then the influence of the weld shape is assessed through a systematic parametric study. It is shown that the weld profile has a significant influence on SIF for semi-elliptical surface cracks while it has no significant influence on SIF for embedded elliptical cracks within the studied range of relative crack depth. Finally, a new parametric equation is proposed to estimate the weld shape correction factor for semi-elliptical surface cracks. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当使用压力隧道和轴高强度钢的钢结构时,焊接接头受到基材中氢气诱导的冷裂化的风险。纵向对接接头是横向装载的关键区域。对于准确的工程疲劳和断裂评估,需要考虑焊接形状和衬里的全局行为(即几何缺陷和周围混凝土和岩石的相互作用的焊接强度因子(SIF)的解决方案。在该研究中,通过有限元方法研究了钢结构型钢结构焊接接头处的轴半椭圆形表面裂缝和嵌入式椭圆裂缝的SIF。首先,验证了平板中椭圆裂缝SIF的公布参数方程的适用性。然后通过系统参数研究评估焊接形状的影响。结果表明,焊接轮廓对半椭圆形表面裂缝的SIF具有显着影响,而对SIF对所研究的相对裂纹深度范围内的嵌入式椭圆形裂缝没有显着影响。最后,提出了一种新的参数方程来估计半椭圆形表面裂缝的焊接形状校正因子。 (c)2017 Elsevier Ltd.保留所有权利。

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