首页> 外文期刊>Proceedings of the institution of mechanical engineers >Influence of different filler weld wire chemistries on metallurgical and mechanical behavior of ultrahigh strength steel welded joints
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Influence of different filler weld wire chemistries on metallurgical and mechanical behavior of ultrahigh strength steel welded joints

机译:不同填充焊丝化学性质对超高强度钢焊接接头冶金和力学性能的影响

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摘要

Three different filler combinations comprising of ferritic, austenitic, and (ferritic + austenitic) were used to fabricate butt welded joints on 15 mm thick ultrahigh strength steel using hybrid arc welding processes. Owing to different weld metal compositions, a significant variation in metallurgical properties of these welds was observed, which consequently affected their mechanical properties in terms of tensile and impact toughness. Acicular ferrite with relatively soft zones formed in the ferritic weld metal imparted better impact toughness and ductility, whereas the joints welded using austenitic filler wire due to formation of hard martensitic structure showed high hardness across all their zones which resulted into higher tensile strength but poor ductility and impact toughness. SEM fractographs facilitated studying of shear lip formation and percentage shear area, and could be correlated with the ductility and impact toughness of the welded joints to a reasonable extent. Among all the welds, ferritic filler showed relatively less joint efficiency as well as ultimate tensile strength, but could be considered as a better choice over the austenitic as well their combination (ferritic + austenitic), as it performed better in terms of tensile ductility as well as impact toughness.
机译:使用混合弧焊工艺,在铁素体,奥氏体和(铁素体+奥氏体)中使用了三种不同的填料组合,以在15毫米厚的超高强度钢上制造对接焊缝。由于不同的焊缝金属成分,观察到这些焊缝的冶金性能发生了显着变化,从而影响了它们在拉伸和冲击韧性方面的机械性能。在铁素体焊接金属中形成具有相对较软区域的针状铁素体具有更好的冲击韧性和延展性,而由于形成硬质马氏体组织而使用奥氏体填充焊丝焊接的接头在所有区域均显示出高硬度,从而导致较高的拉伸强度但延展性较差和冲击韧性。 SEM断口扫描仪有助于研究剪切唇的形成和剪切面积百分比,并且可以在一定程度上与焊接接头的延展性和冲击韧性相关。在所有焊缝中,铁素体填料表现出相对较低的接头效率和极限抗拉强度,但可以认为是比奥氏体及其组合(铁素体+奥氏体)更好的选择,因为它在拉伸延展性方面表现更好。以及冲击韧性。

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