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首页> 外文期刊>Journal of Materials Science >Influence of the submerged arc welding in the mechanical behaviour of the P355NL1 steel—part II: analysis of the low/high cycle fatigue behaviours
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Influence of the submerged arc welding in the mechanical behaviour of the P355NL1 steel—part II: analysis of the low/high cycle fatigue behaviours

机译:埋弧焊对P355NL1钢力学性能的影响-第二部分:低/高周疲劳性能分析

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摘要

A normalized fine grain carbon low alloy steel, P355NL1 (EN10028-3), intended for service in welded pressure vessels, where notch toughness is of high importance, has been investigated. Applications with this steel usually require the intensive use of welds. One of the most common welding processes that are used in the manufacturing of pressure vessels is the submerged arc welding. This welding process is often automated in order to perform the main seam welds of the body of the vessels. The influence of the automated submerged arc welding, in the mechanical performance, is investigated. In this paper (Part II) the low and high cycle fatigue and crack propagation behaviours are compared between the base and welded materials. Several series of small and smooth specimens as well as cracked specimens made of base, welded and heat affected materials, respectively, were fatigue tested. Strain, stress and energy based relations for fatigue life assessment, until crack initiation, are evaluated based on experimental results and compared between the base and welded materials. Finally, the fatigue crack propagation behaviours are compared between the base, welded and heat affected materials.
机译:已研究了用于缺口压力非常重要的焊接压力容器中使用的正火细晶粒碳低合金钢P355NL1(EN10028-3)。使用这种钢的应用通常需要大量使用焊接。压力容器制造中最常用的焊接工艺之一是埋弧焊。该焊接过程通常是自动化的,以便执行容器主体的主要接缝焊接。研究了自动埋弧焊对机械性能的影响。在本文(第二部分)中,比较了基础材料和焊接材料的低,高周疲劳和裂纹扩展行为。分别对由基体材料,焊接材料和热影响材料制成的一系列小而光滑的试样以及破裂试样进行了疲劳测试。根据实验结果评估用于疲劳寿命评估的基于应变,应力和能量的关系,直到出现裂纹为止,并在基础材料和焊接材料之间进行比较。最后,比较了基础材料,焊接材料和热影响材料之间的疲劳裂纹扩展行为。

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  • 来源
    《Journal of Materials Science》 |2007年第15期|5973-5981|共9页
  • 作者单位

    Department of Engineering University of Tras-os-Montes and Alto Douro Quinta de Prados 5001-801 Vila Real Portugal;

    Department of Engineering University of Tras-os-Montes and Alto Douro Quinta de Prados 5001-801 Vila Real Portugal;

    DEMEGI – Faculty of Engineering Universtiy of Porto Rua Dr. Roberto Frias 4200-465 Porto Potugal;

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