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Improving the Mechanical Strength of Ductile Cast Iron Welded Joints Using Different Heat Treatments

机译:通过不同热处理提高球墨铸铁焊接接头的机械强度

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摘要

The main advantage of welding cast iron is to recover parts by repairing defects induced by casting processes (porosities, etc.), before they enter their working cycle, as well as repair cracks or fractures when already in service. This method contributes to decreased foundry industrial waste and avoids the additional energy costs of their immediate recycling. Therefore, it is necessary to have a welded joint with similar or better characteristics than the parent material. The major problem of welding cast iron is that this material has a very high content of carbon in comparison to steel (≈3%). Therefore, when it is heated by the very high temperatures from arc welding and during its process of solidification, very hard and brittle phases originate, known as ledeburite and martensite, and appear in the partially melted zone and in the heat-affected zone. Eventually, this problem can be solved by implementing heat treatments such as preheat or post weld heat treatments under specific parameters. Therefore, in this study, the aim is to collect data about the effects of heat treatments performed at different temperatures on welded joints of high strength ductile cast iron (SiboDur® 450), and to evaluate the effects of heat treatments performed at diverse temperatures on welded joints of this type of material, using Shield Metal Arc Welding and nickel electrodes. Mechanical strength, hardness, and microstructure were analyzed, showing that the best mechanical strength in the joint (380 MPa) was obtained using two passes of E C Ni-Cl (ISO EN 1071:2015) filler metal and post weld heat treatments (PWHT) of 400 °C for two hours.
机译:焊接铸铁的主要优点是,在零件进入工作周期之前,可以通过修补由铸造工艺(孔隙等)引起的缺陷来修复零件,以及在使用中修复裂纹或破裂。这种方法有助于减少铸造工业废物,并避免了立即回收所产生的额外能源成本。因此,需要具有与母材相似或更好的特性的焊接接头。焊接铸铁的主要问题是,与钢相比,这种材料的碳含量非常高(≈3%)。因此,当它被电弧焊的非常高的温度加热并且在其凝固过程中时,会产生非常坚硬的脆性相,称为莱氏体和马氏体,并出现在部分熔化的区域和热影响的区域。最终,可以通过在特定参数下实施热处理(例如预热或焊后热处理)来解决此问题。因此,本研究的目的是收集有关在不同温度下进行的热处理对高强度球墨铸铁(SiboDur ® 450)焊接接头的影响的数据,并评估使用Shield Metal Arc Welding和镍电极在不同温度下对这种材料的焊接接头进行热处理。分析了机械强度,硬度和微观结构,结果表明,使用EC Ni-Cl(ISO EN 1071:2015)填充金属两次焊合和焊后热处理(PWHT)获得了接头中的最佳机械强度(380 MPa)在400°C下放置两个小时。

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