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 II: mechanisms of stress relief cracking during post weld heat treatment
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Influence of welding stresses on relief cracking during heat treatment of a creep-resistant 13CrMoV steel Part II: mechanisms of stress relief cracking during post weld heat treatment

机译:焊接应力对抗蠕变13crmov钢铁第II的热处理中的浮雕裂纹的影响:焊接后热处理中应力浮雕裂纹的机制

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摘要

Welding of 13CrMoV9-10 vanadium steel requires care due to an increased susceptibility to stress relief cracking during post weld heat treatment. Previous research into the crack formation in creep-resistant steels has focused on thermal and metallurgical factors; however, little knowledge has been gathered regarding the crack formation during post weld heat treatment considering real-life restraint conditions. This work is subdivided in two parts. Part I showed that an increasing heat input during submerged arc welding under restraint led to an increasing stress level in the joint prior to the post weld heat treatment. The magnitude of stress relief cracking observed in the heat-affected zone after the post weld heat treatment is affected by the heat input. In Part II of this work, the cracks and the associated microstructure which occurred under restraint were studied. The application of a special acoustic emission analysis indicated that the cracks formed in a temperature range between 300 and 500 degrees C during the post weld heat treatment. The toughness in the heat-affected zone of the restrained welds was affected by the welding heat input. Microstructural analyses of all specimens revealed accelerated aging due to precipitation of carbides during post weld heat treatment under restraint.
机译:13Crmov9-10钒钢的焊接需要护理,因为在焊接后焊接热处理期间对应力浮雕开裂的易感性增加。以前的抗蠕变钢裂缝形成的研究专注于热和冶金因素;然而,考虑到现实寿命抑制条件,在焊接后热处理期间,已经收集了很少的知识。这项工作分为两部分。第一部分表明,在约束下,浸没电弧焊接期间的增加热输入导致在焊接后热处理前的接头中的应力水平增加。在焊接后焊接热处理后,在热影响区域中观察到的应力消除裂缝的大小受热量输入的影响。在这项工作的第二部分中,研究了抑制下发生的裂缝和相关的微观结构。特殊声发射分析的应用表明,在焊接后热处理期间在300至500摄氏度的温度范围内形成的裂缝。受限制焊缝的热影响区域的韧性受到焊接热输入的影响。所有标本的微观结构分析显示出由于克制后焊接碳化物沉淀的加速老化。

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