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Effects of strain rate and welding current mode on microstructural properties of SUS 304L PAW welds

机译:应变速率和焊接电流模式对SUS 304L PAW焊缝组织性能的影响

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摘要

This paper uses a compressive split-Hopkinson bar and transmission electron microscopy (TEM) to investigate the impact properties and residual microstructures of Plasma Arc Welded 304L SS weldments. The current specimens were fabricated using either a continuous current (CC) or a pulsed current (PC) welding mode and were then deformed at strain rates ranging from 10{sup}(-3) s{sup}(-1) to 7.7 × 10{sup}(-3) s{sup}(-1) at room temperature. The impacted specimens were polished and etched and then analysed using TEM to investigate the correlation between their dynamic mechanical response and the microstructural evolution of dislocations, mechanical twins and α' martensite structures. The results showed that the microstructural characteristics of the weldments were influenced both by the strain rate and by the welding current mode. Comparing the evolution of the microstructure in the base metal and the fusion zone, it was found that a higher dislocation density existed in the fusion zone, while a larger volume fraction of α' martensite and a greater twinning density were present in the base metal. Furthermore, for both welding current modes, the dislocation density and volume fraction of α' martensite were found to increase with increasing strain rate, whereas the twinning density reduced. Microstructural analysis revealed that the number of dislocations, twins and α' martensite structures varied as an increasing function of the work-hardening stress. Finally, it was determined that the microstructure of the PC weldments enhanced the dynamic impact response.
机译:本文使用压缩裂口霍普金森棒和透射电子显微镜(TEM)来研究等离子弧焊304L SS焊件的冲击性能和残余显微组织。当前样品是使用连续电流(CC)或脉冲电流(PC)焊接模式制造的,然后以10 {sup}(-3)s {sup}(-1)到7.7×的应变速率变形。室温下10 {sup}(-3)s {sup}(-1)。对受冲击的试样进行抛光和蚀刻,然后使用TEM分析,以研究其动态力学响应与位错,力学孪晶和α'马氏体组织的微观结构演变之间的相关性。结果表明,应变率和焊接电流模式都对焊件的显微组织特性产生影响。比较母材和熔合区的显微组织演变,发现熔合区存在较高的位错密度,而母材中存在较大的α'马氏体体积分数和较大的孪生密度。此外,对于两种焊接电流模式,发现α'马氏体的位错密度和体积分数均随应变速率的增加而增加,而孪晶密度则降低。显微组织分析表明,位错,孪晶和α'马氏体结构的数量随着加工硬化应力的增加而变化。最后,确定了PC焊件的微观结构增强了动态冲击响应。

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