Single-pulse MIG welded Perform 700 steel joints with various welding parameters

Fatih Özen
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Abstract

In this work, Perform 700 steel sheets with 5-mm thickness were welded with single pulse MIG welding method with different welding currents and welding speeds. The welded specimens were subjected to tensile tests, hardness measurements and microstructural observations. According to the results, the heat input has an important role in tensile strength of the joint. The maximum tensile strength was obtained as 594.75 MPa at 140A welding current and 450 mm/min welding speed. The tensile specimens were always separated between fusion zone and heat affected zone. The heat affected zones have exhibited tempered martensitic structure. The tempering effect have increased the sizes of the martensitic structure; therefore, the hardness was considerably increased. However, the fusion zone, which was consisted of bainitic structure inside the ferrite matrix, was exhibited soft and ductile behavior. The boundary of soft fusion zone and hard heat affected zone formed the weakest point through the joint.
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采用不同焊接参数的单脉冲 MIG 焊接 Perform 700 钢接头
在这项工作中,采用单脉冲 MIG 焊接法,以不同的焊接电流和焊接速度焊接了厚度为 5 毫米的 Perform 700 钢板。对焊接试样进行了拉伸试验、硬度测量和微观结构观察。结果表明,输入热量对接头的抗拉强度有重要影响。在焊接电流为 140A 和焊接速度为 450 mm/min 时,最大拉伸强度为 594.75 MPa。拉伸试样始终在熔合区和热影响区之间分离。热影响区呈现回火马氏体结构。回火效应增加了马氏体结构的尺寸,因此硬度大大提高。然而,融合区由铁素体基体内部的贝氏体结构组成,表现出软韧性。软熔区和硬热影响区的边界形成了整个接头的最薄弱点。
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