首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Influence of welding stresses on relief cracking during heat treatment of a creep-resistant 13CrMoV steel: part I-effect of heat control on welding stresses and stress relief cracking
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Influence of welding stresses on relief cracking during heat treatment of a creep-resistant 13CrMoV steel: part I-effect of heat control on welding stresses and stress relief cracking

机译:焊接应力对抗蠕变13crmov钢热处理期间浮雕裂纹的影响:第一件对焊接应力和应力裂缝的热控制的效果

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摘要

The avoidance of failures during the fabrication or operation of petrochemical reactors made of creep-resistant, low-alloy steels as 13CrMoV9-10 requires still research despite over 60 years of international investigations in the field of stress relief cracking. The quality of modern base materials and filler metals leads to the fact that previously known crack causes, such as impurities of S or P, recede into the background. Rather, the causes are increasingly to be found in the fabrication process. Investigations on the influence of heat control on the stresses in welded components and thus on the stress relief cracking sensitivity under realistic manufacturing conditions are not yet available. This work is subdivided in two parts. Part 1 of this study focused on the effect of heat control during submerged arc welding on the stresses. For this purpose, a testing facility was applied, which allows to observe the forces and moments accumulating during welding or heat treatment in a component-like specimen under shrinkage restraint. The stress acting in the specimen increases with higher preheat/interpass temperatures and higher heat input. During the heat treatment, the stresses are relieved. Nevertheless, cracks are formed already during heating. The total crack length correlates with the heat input.
机译:避免在耐蠕变的低合金钢制成的石油化学反应器的制造或操作期间的故障,尽管在压力缓解裂缝领域超过60年的国际调查,但仍需要研究。现代基础材料和填料金属的质量导致了先前已知的裂缝原因,例如S或P的杂质,退缩到背景中。相反,在制造过程中越来越多地发现原因。对焊接部件应力影响的热控制对逼真制造条件下的应力裂缝裂缝敏感性的影响尚未使用。这项工作分为两部分。本研究的第1部分重点是热控制在浸没电弧焊接期间应力的影响。为此目的,应用了测试设施,这允许观察在收缩约束下的组分样标本中焊接或热处理期间积累的力和力矩。在样品中作用的应力随着预热/接口温度和更高的热输入而增加。在热处理期间,释放应力。然而,在加热过程中已经形成了裂缝。总裂缝长度与热输入相关。

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