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Studies on weldabllity of iron-based powder metal alloys using pulsed gas tungsten arc welding process

机译:脉冲气体钨极电弧焊工艺研究铁基粉末金属合金的可焊性

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The extended use of powder metal components can be improved by the use of welding joining methods. This work investigates the weldability of iron-based powder metal alloys (Fe-Ni, Fe-Ni-P alloys) using the pulsed gas tungsten arc welding process (GTAW) with three different filler metals (AWS R 70S-6, AWS R 309L, AWS R Fe-Ni). Results revealed that the Fe-Ni powder metal alloy does not present any metallurgical difficulty concerning the weld-ability for all types of filler metal studied. The Fe-Ni-P powder metal alloy, microstructural examinations showed that, despite its high content of phosphorus (0.25 wt%), the utilization of pulsed GTAW process with stainless steel 309L filler metal resulted in welds free of porosities and solidification cracks. Metallographies examinations suggest that the absence of solidification cracks in this alloy can be mainly attributed to the presence of delta ferrite in the stainless steel weld metal which absorbed part of the phosphorus and significantly reduced the formation of the Fe{sub}3P low-melting eutectic in the weld pool during cooling. In contrast, solidification cracks were observed when joining the Fe-Ni-P powder metal alloy using RFe-NI and R70S-6 filler metals. Hardness tests carried out indicated a heat affected zone (HAZ) with no excessive hardening for all alloys studied. Furthermore, tensile tests showed that the fractures always occurred in the base metal with tensile strength slightly superior to the value of unwelded samples. As a result, this investigation showed the feasibility of joining iron-based powder metal alloys by the pulsed GTAW process since a rigid control of the heat input is implemented together with an adequate choice of the filler metal, especially when welding the Fe-Ni-P alloy.
机译:粉末金属零件的广泛使用可以通过使用焊接方法来改善。这项工作使用脉冲气体钨极电弧焊工艺(GTAW)和三种不同的填充金属(AWS R 70S-6,AWS R 309L)研究了铁基粉末金属合金(Fe-Ni,Fe-Ni-P合金)的焊接性,AWS R Fe-Ni)。结果表明,对于所研究的所有类型的填充金属,Fe-Ni粉末金属合金在焊接性方面均不存在任何冶金困难。 Fe-Ni-P粉末金属合金的显微组织检查表明,尽管磷含量高(0.25 wt%),但采用脉冲GTAW工艺和309L不锈钢填充金属仍能产生无气孔和凝固裂纹的焊缝。金相检查表明,该合金中不存在凝固裂纹的主要原因是不锈钢焊缝金属中存在δ铁素体,该铁素体吸收了部分磷并显着减少了Fe {sub} 3P低熔点低共熔物的形成。在冷却过程中在焊池中。相反,当使用RFe-NI和R70S-6填充金属连接Fe-Ni-P粉末金属合金时,观察到凝固裂纹。进行的硬度测试表明,对所有研究的合金而言,热影响区(HAZ)没有过度硬化。此外,拉伸试验表明,断裂总是发生在母材中,其拉伸强度略高于未焊接样品的值。结果,这项研究表明通过脉冲GTAW工艺连接铁基粉末金属合金的可行性,因为对热量输入进行了严格的控制,同时适当地选择了填充金属,特别是在焊接Fe-Ni- P合金。

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