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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Rapid precipitation of intermetallic phases during isothermal treatment of duplex stainless steel joints produced by friction stir welding
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Rapid precipitation of intermetallic phases during isothermal treatment of duplex stainless steel joints produced by friction stir welding

机译:通过摩擦搅拌焊接生产的双相不锈钢接头等温处理期间金属间相的快速降水

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The propensity of duplex stainless steels to form secondary phases that harm their main properties is a metallurgical problem that continues to be studied. Friction stir welding has shown excellent results when applied to duplex stainless steels, enabling the formation of joints that maintain the austenite-ferrite balance, without the presence of secondary phases. Welding processes cause significant microstructural reformulation in the joint microstructure, so the properties and metallurgical behavior of welded joints differ significantly from those of the corresponding base metals. The formation of secondary phases in duplex stainless steels occurs by diffusional transformation processes that are dependent on the transformation time, with the kinetics being influenced by the previous microstructure. Although friction stir welding makes it possible to obtain joints free from secondary phases, it is important to study the propensity of welded joints to subsequently form secondary phases, in order to be able to understand the behavior of these joints when they are subjected to hot operations, such as weld repairs. In this work, friction stir welded joints were treated isothermally at 850 degrees C and were analyzed using scanning electron microscopy, energy-dispersive X-ray spectroscopy, Ferritoscope measurements, and X-ray diffractometry. The results revealed that the friction stir welded joints presented much faster formation of intermetallic phases, compared to the base metals, with the appearance of regions showing advanced stages of intermetallic phase precipitation after only 5 min exposure at 850 degrees C. (C) 2019 Elsevier B.V. All rights reserved.
机译:双相不锈钢的倾向形成危害其主要性质的二次阶段是持续研究的冶金问题。摩擦搅拌焊接在施加到双相不锈钢时显示出优异的结果,使得形成保持奥氏体 - 铁氧体平衡的关节,而不会存在二次相。焊接工艺在关节微观结构中引起显着的微观结构重构,因此焊接接头的性质和冶金行为与相应的基础金属的性质显着不同。双相不锈钢中的二次相的形成通过依赖于转化时间的扩散转化过程而发生,动力学受到先前的微观结构的影响。虽然摩擦搅拌焊接使得可以获得来自二次相的关节,但重要的是研究焊接接头的倾向,随后形成次级相位,以便能够在经受热操作时理解这些关节的行为,如焊接修理。在这项工作中,摩擦搅拌焊接接头在850℃下等温,并使用扫描电子显微镜,能量分散X射线光谱,X射线衍射和X射线衍射测定分析。结果表明,与贱金属相比,摩擦搅拌接头呈现了金属间相的更快地形成了金属间相的形成,具有在850℃的850℃(c)2019年(c)2019 elewsvier下仅5分钟的细分相沉淀的细分相沉淀的晚期阶段BV保留所有权利。

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