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首页> 外文期刊>Journal of Materials Processing Technology >Weldability of iron-based powder metal materials using pulsed plasma arc welding process
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Weldability of iron-based powder metal materials using pulsed plasma arc welding process

机译:脉冲等离子弧焊接工艺对铁基粉末金属材料的焊接性

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摘要

The objective of this study was to investigate the weldability of three different iron-based powder metal alloys (pure Fe, Fe-Ni and Fe-P-Ni alloys) using the keyhole pulsed plasma arc process (PAW). The work undertaken included the effect of pulsed welding parameters on the microstructure and mechanical characteristics of the welded joints. Microstructural examination results revealed that for the pure Fe and Fe-Ni alloys, the fusion-welded zone was free of porosity and cracks. However, the Fe-P-Ni powder metal alloy with a high level of phosphorus content (0.25 wt%) and 7 mm thickness specimen presented solidification cracks and tunneling failure as a result of high shrinking stress due to the higher volume of molten metal and faster cooling rates. This problem was overcome by reducing the thickness of the specimen to 4mm. No significant differences were noted in the hardness profile of the welded specimens, which warranted a heating affected zone with no excessive hardness. Furthermore, tensile tests showed that the failures of the specimen occurred always in the base metal with tensile strength slightly superior to the value of unwelded samples. Therefore, this study indicates that iron-based powder metal alloys can be successfully joined by keyhole pulsed PAW process without filler metal.
机译:这项研究的目的是使用锁孔脉冲等离子弧工艺(PAW)研究三种不同的铁基粉末金属合金(纯Fe,Fe-Ni和Fe-P-Ni合金)的可焊性。所进行的工作包括脉冲焊接参数对焊接接头的组织和机械特性的影响。显微组织检查结果表明,对于纯Fe和Fe-Ni合金,熔焊区无气孔和裂纹。然而,由于较高的熔融金属体积和较高的收缩应力,具有高磷含量(0.25 wt%)和7 mm厚度的试样的Fe-P-Ni粉末金属合金出现凝固裂纹和隧穿破坏。更快的冷却速度。通过将样品的厚度减小到4mm可以解决此问题。焊接试样的硬度曲线没有显着差异,可以保证受热影响的区域没有过度的硬度。此外,拉伸试验表明,试样的破坏总是发生在母材中,其抗拉强度略好于未焊接试样的值。因此,这项研究表明,铁基粉末金属合金可以通过匙孔脉冲PAW工艺成功地加入而无需填充金属。

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